00
Correct
00
Incorrect
00 : 00 : 00
Session Time
00 : 00
Average Question Time ( Mins)
  • Question 1 - You are summoned to the resuscitation bay to provide assistance for a patient...

    Correct

    • You are summoned to the resuscitation bay to provide assistance for a patient experiencing cardiac arrest. Concerning medications administered during cardiac arrest in adults, which of the following statements is accurate?

      Your Answer: Adrenaline is a non-selective agonist of adrenergic receptors

      Explanation:

      Adrenaline acts on all types of adrenergic receptors without preference. It is administered in doses of 1 mg every 3-5 minutes during cardiac arrest. On the other hand, Amiodarone functions by blocking voltage-gated potassium channels and is typically administered after the third shock.

      Further Reading:

      In the management of respiratory and cardiac arrest, several drugs are commonly used to help restore normal function and improve outcomes. Adrenaline is a non-selective agonist of adrenergic receptors and is administered intravenously at a dose of 1 mg every 3-5 minutes. It works by causing vasoconstriction, increasing systemic vascular resistance (SVR), and improving cardiac output by increasing the force of heart contraction. Adrenaline also has bronchodilatory effects.

      Amiodarone is another drug used in cardiac arrest situations. It blocks voltage-gated potassium channels, which prolongs repolarization and reduces myocardial excitability. The initial dose of amiodarone is 300 mg intravenously after 3 shocks, followed by a dose of 150 mg after 5 shocks.

      Lidocaine is an alternative to amiodarone in cardiac arrest situations. It works by blocking sodium channels and decreasing heart rate. The recommended dose is 1 mg/kg by slow intravenous injection, with a repeat half of the initial dose after 5 minutes. The maximum total dose of lidocaine is 3 mg/kg.

      Magnesium sulfate is used to reverse myocardial hyperexcitability associated with hypomagnesemia. It is administered intravenously at a dose of 2 g over 10-15 minutes. An additional dose may be given if necessary, but the maximum total dose should not exceed 3 g.

      Atropine is an antagonist of muscarinic acetylcholine receptors and is used to counteract the slowing of heart rate caused by the parasympathetic nervous system. It is administered intravenously at a dose of 500 mcg every 3-5 minutes, with a maximum dose of 3 mg.

      Naloxone is a competitive antagonist for opioid receptors and is used in cases of respiratory arrest caused by opioid overdose. It has a short duration of action, so careful monitoring is necessary. The initial dose of naloxone is 400 micrograms, followed by 800 mcg after 1 minute. The dose can be gradually escalated up to 2 mg per dose if there is no response to the preceding dose.

      It is important for healthcare professionals to have knowledge of the pharmacology and dosing schedules of these drugs in order to effectively manage respiratory and cardiac arrest situations.

    • This question is part of the following fields:

      • Basic Anaesthetics
      14.5
      Seconds
  • Question 2 - A 45 year old male patient is brought into the emergency department with...

    Correct

    • A 45 year old male patient is brought into the emergency department with a suspected severe pulmonary embolism. It is decided to intubate him pending transfer to the intensive care unit. Your consultant requests you prepare the patient for rapid sequence intubation. You start pre-oxygenating the patient. What is the recommended minimum duration for sufficient pre-oxygenation?

      Your Answer: 3 minutes

      Explanation:

      Inspired oxygen primarily works by removing nitrogen from the lungs, which would otherwise take up a significant portion of the lung capacity. This nitrogen is replaced with oxygen, leading to improved oxygenation of the tissues and an increased oxygen reserve. As a result, the patient can safely hold their breath for a longer period of time. It is recommended to preoxygenate the patient for at least 3 minutes.

      Further Reading:

      Rapid sequence induction (RSI) is a method used to place an endotracheal tube (ETT) in the trachea while minimizing the risk of aspiration. It involves inducing loss of consciousness while applying cricoid pressure, followed by intubation without face mask ventilation. The steps of RSI can be remembered using the 7 P’s: preparation, pre-oxygenation, pre-treatment, paralysis and induction, protection and positioning, placement with proof, and post-intubation management.

      Preparation involves preparing the patient, equipment, team, and anticipating any difficulties that may arise during the procedure. Pre-oxygenation is important to ensure the patient has an adequate oxygen reserve and prolongs the time before desaturation. This is typically done by breathing 100% oxygen for 3 minutes. Pre-treatment involves administering drugs to counter expected side effects of the procedure and anesthesia agents used.

      Paralysis and induction involve administering a rapid-acting induction agent followed by a neuromuscular blocking agent. Commonly used induction agents include propofol, ketamine, thiopentone, and etomidate. The neuromuscular blocking agents can be depolarizing (such as suxamethonium) or non-depolarizing (such as rocuronium). Depolarizing agents bind to acetylcholine receptors and generate an action potential, while non-depolarizing agents act as competitive antagonists.

      Protection and positioning involve applying cricoid pressure to prevent regurgitation of gastric contents and positioning the patient’s neck appropriately. Tube placement is confirmed by visualizing the tube passing between the vocal cords, auscultation of the chest and stomach, end-tidal CO2 measurement, and visualizing misting of the tube. Post-intubation management includes standard care such as monitoring ECG, SpO2, NIBP, capnography, and maintaining sedation and neuromuscular blockade.

      Overall, RSI is a technique used to quickly and safely secure the airway in patients who may be at risk of aspiration. It involves a series of steps to ensure proper preparation, oxygenation, drug administration, and tube placement. Monitoring and post-intubation care are also important aspects of RSI.

    • This question is part of the following fields:

      • Basic Anaesthetics
      90
      Seconds
  • Question 3 - You are part of the team managing a conscious patient in the emergency...

    Correct

    • You are part of the team managing a conscious patient in the emergency room. You decide to insert a nasopharyngeal airway adjunct. How should you determine the appropriate size of the nasopharyngeal airway?

      Your Answer: Sized according to the distance between the nostril and the tragus of the ear

      Explanation:

      Nasopharyngeal airway adjuncts (NPAs) are selected based on their length, which should match the distance between the nostril and the tragus of the ear.

      Further Reading:

      Techniques to keep the airway open:

      1. Suction: Used to remove obstructing material such as blood, vomit, secretions, and food debris from the oral cavity.

      2. Chin lift manoeuvres: Involves lifting the head off the floor and lifting the chin to extend the head in relation to the neck. Improves alignment of the pharyngeal, laryngeal, and oral axes.

      3. Jaw thrust: Used in trauma patients with cervical spine injury concerns. Fingers are placed under the mandible and gently pushed upward.

      Airway adjuncts:

      1. Oropharyngeal airway (OPA): Prevents the tongue from occluding the airway. Sized according to the patient by measuring from the incisor teeth to the angle of the mandible. Inserted with the tip facing backwards and rotated 180 degrees once it touches the back of the palate or oropharynx.

      2. Nasopharyngeal airway (NPA): Useful when it is difficult to open the mouth or in semi-conscious patients. Sized by length (distance between nostril and tragus of the ear) and diameter (roughly that of the patient’s little finger). Contraindicated in basal skull and midface fractures.

      Laryngeal mask airway (LMA):

      – Supraglottic airway device used as a first line or rescue airway.
      – Easy to insert, sized according to patient’s bodyweight.
      – Advantages: Easy insertion, effective ventilation, some protection from aspiration.
      – Disadvantages: Risk of hypoventilation, greater gastric inflation than endotracheal tube (ETT), risk of aspiration and laryngospasm.

      Note: Proper training and assessment of the patient’s condition are essential for airway management.

    • This question is part of the following fields:

      • Basic Anaesthetics
      30
      Seconds
  • Question 4 - A 30-year-old woman is brought in by ambulance following a car accident where...

    Correct

    • A 30-year-old woman is brought in by ambulance following a car accident where her car was struck by a truck. She has suffered severe facial injuries and shows signs of airway obstruction. Her C-spine is triple immobilized. You perform a LEMON assessment for difficult intubation.
      Which of the following factors indicates a difficult intubation?

      Your Answer: Mallampati score of 4

      Explanation:

      Trauma patients who require a definitively secured airway include those who are apnoeic, have a Glasgow Coma Scale score of less than 9, experience sustained seizure activity, have unstable midface trauma or airway injuries, have a large flail segment or respiratory failure, have a high risk of aspiration, or are unable to maintain an airway or oxygenation through other means.

      To predict difficult intubations, the LEMON assessment can be utilized. The LEMON mnemonic provides a systematic approach to assess potential challenges in intubation. It stands for the following:

      – Look externally: Examine for any characteristics that are known to cause difficult intubation or ventilation.
      – Evaluate the 3-3-2 rule: Measure the incisor distance, hyoid/mental distance, and thyroid-to-mouth distance. If any of these measurements are less than the specified number of fingerbreadths, it may indicate a difficult intubation.
      – Mallampati: Assess the Mallampati score, which is a classification system based on the visibility of certain structures in the mouth and throat. A score of 3 or higher suggests a difficult intubation.
      – Obstruction: Check for the presence of any conditions that could potentially obstruct the airway.
      – Neck mobility: Evaluate the mobility of the patient’s neck, as limited mobility may make intubation more challenging.

      By utilizing the LEMON assessment, healthcare providers can identify potential difficulties in securing the airway and make appropriate interventions to ensure patient safety.

    • This question is part of the following fields:

      • Basic Anaesthetics
      32.7
      Seconds
  • Question 5 - You are managing a 42 year old female who has been brought into...

    Correct

    • You are managing a 42 year old female who has been brought into the emergency department with burns and suspected inhalation injury following a house fire. Due to concerns about the patient's ability to maintain their airway it is decided to proceed with intubation and ventilation. Your initial attempt to intubate the patient fails. What is the maximum number of intubation attempts that should be made?

      Your Answer: 3

      Explanation:

      According to the guidelines of the Difficult Airway Society, it is recommended to limit intubation attempts to a maximum of three. However, if the first three attempts are unsuccessful, a more experienced colleague may make a fourth attempt. If all four attempts are unsuccessful, the intubation should be declared as a failure.

      Further Reading:

      A difficult airway refers to a situation where factors have been identified that make airway management more challenging. These factors can include body habitus, head and neck anatomy, mouth characteristics, jaw abnormalities, and neck mobility. The LEMON criteria can be used to predict difficult intubation by assessing these factors. The criteria include looking externally at these factors, evaluating the 3-3-2 rule which assesses the space in the mouth and neck, assessing the Mallampati score which measures the distance between the tongue base and roof of the mouth, and considering any upper airway obstructions or reduced neck mobility.

      Direct laryngoscopy is a method used to visualize the larynx and assess the size of the tracheal opening. The Cormack-Lehane grading system can be used to classify the tracheal opening, with higher grades indicating more difficult access. In cases of a failed airway, where intubation attempts are unsuccessful and oxygenation cannot be maintained, the immediate priority is to oxygenate the patient and prevent hypoxic brain injury. This can be done through various measures such as using a bag-valve-mask ventilation, high flow oxygen, suctioning, and optimizing head positioning.

      If oxygenation cannot be maintained, it is important to call for help from senior medical professionals and obtain a difficult airway trolley if not already available. If basic airway management techniques do not improve oxygenation, further intubation attempts may be considered using different equipment or techniques. If oxygen saturations remain below 90%, a surgical airway such as a cricothyroidotomy may be necessary.

      Post-intubation hypoxia can occur for various reasons, and the mnemonic DOPES can be used to identify and address potential problems. DOPES stands for displacement of the endotracheal tube, obstruction, pneumothorax, equipment failure, and stacked breaths. If intubation attempts fail, a maximum of three attempts should be made before moving to an alternative plan, such as using a laryngeal mask airway or considering a cricothyroidotomy.

    • This question is part of the following fields:

      • Basic Anaesthetics
      19.9
      Seconds
  • Question 6 - You have just performed rapid sequence induction using ketamine and rocuronium and placed...

    Incorrect

    • You have just performed rapid sequence induction using ketamine and rocuronium and placed an endotracheal tube under consultant supervision. What is the time interval from administration of rocuronium to the onset of paralysis?

      Your Answer: Less than 20 seconds

      Correct Answer: 45-60 seconds

      Explanation:

      Both suxamethonium and rocuronium take approximately 45-60 seconds to induce paralysis. The time it takes for rocuronium to cause paralysis is similar to that of suxamethonium, which is also around 45-60 seconds.

      Further Reading:

      Rapid sequence induction (RSI) is a method used to place an endotracheal tube (ETT) in the trachea while minimizing the risk of aspiration. It involves inducing loss of consciousness while applying cricoid pressure, followed by intubation without face mask ventilation. The steps of RSI can be remembered using the 7 P’s: preparation, pre-oxygenation, pre-treatment, paralysis and induction, protection and positioning, placement with proof, and post-intubation management.

      Preparation involves preparing the patient, equipment, team, and anticipating any difficulties that may arise during the procedure. Pre-oxygenation is important to ensure the patient has an adequate oxygen reserve and prolongs the time before desaturation. This is typically done by breathing 100% oxygen for 3 minutes. Pre-treatment involves administering drugs to counter expected side effects of the procedure and anesthesia agents used.

      Paralysis and induction involve administering a rapid-acting induction agent followed by a neuromuscular blocking agent. Commonly used induction agents include propofol, ketamine, thiopentone, and etomidate. The neuromuscular blocking agents can be depolarizing (such as suxamethonium) or non-depolarizing (such as rocuronium). Depolarizing agents bind to acetylcholine receptors and generate an action potential, while non-depolarizing agents act as competitive antagonists.

      Protection and positioning involve applying cricoid pressure to prevent regurgitation of gastric contents and positioning the patient’s neck appropriately. Tube placement is confirmed by visualizing the tube passing between the vocal cords, auscultation of the chest and stomach, end-tidal CO2 measurement, and visualizing misting of the tube. Post-intubation management includes standard care such as monitoring ECG, SpO2, NIBP, capnography, and maintaining sedation and neuromuscular blockade.

      Overall, RSI is a technique used to quickly and safely secure the airway in patients who may be at risk of aspiration. It involves a series of steps to ensure proper preparation, oxygenation, drug administration, and tube placement. Monitoring and post-intubation care are also important aspects of RSI.

    • This question is part of the following fields:

      • Basic Anaesthetics
      14.5
      Seconds
  • Question 7 - You examine the X-ray of a 70 year old male who has fallen...

    Incorrect

    • You examine the X-ray of a 70 year old male who has fallen onto his outstretched right hand. The X-ray confirms a fracture of the distal radius with dorsal displacement. Your plan is to perform a reduction of the fracture using intravenous regional anesthesia (Bier's block). The patient's blood pressure is 145/90 mmHg and his pulse rate is 75 bpm. What inflation pressure would you use when inflating the cuff?

      Your Answer: 300 mmHg

      Correct Answer: 250 mmHg

      Explanation:

      During Bier’s block, the cuff is inflated to a pressure that is 100 mmHg higher than the patient’s systolic blood pressure. For example, if the systolic blood pressure is 150 mmHg, the cuff would be inflated to 250 mmHg. It is important to note that Bier’s block should not be performed if the systolic blood pressure is greater than 200 mmHg, as this is considered a contraindication. Therefore, the maximum pressure ever used during Bier’s block is 300mmHg.

      Further Reading:

      Bier’s block is a regional intravenous anesthesia technique commonly used for minor surgical procedures of the forearm or for reducing distal radius fractures in the emergency department (ED). It is recommended by NICE as the preferred anesthesia block for adults requiring manipulation of distal forearm fractures in the ED.

      Before performing the procedure, a pre-procedure checklist should be completed, including obtaining consent, recording the patient’s weight, ensuring the resuscitative equipment is available, and monitoring the patient’s vital signs throughout the procedure. The air cylinder should be checked if not using an electronic machine, and the cuff should be checked for leaks.

      During the procedure, a double cuff tourniquet is placed on the upper arm, and the arm is elevated to exsanguinate the limb. The proximal cuff is inflated to a pressure 100 mmHg above the systolic blood pressure, up to a maximum of 300 mmHg. The time of inflation and pressure should be recorded, and the absence of the radial pulse should be confirmed. 0.5% plain prilocaine is then injected slowly, and the time of injection is recorded. The patient should be warned about the potential cold/hot sensation and mottled appearance of the arm. After injection, the cannula is removed and pressure is applied to the venipuncture site to prevent bleeding. After approximately 10 minutes, the patient should have anesthesia and should not feel pain during manipulation. If anesthesia is successful, the manipulation can be performed, and a plaster can be applied by a second staff member. A check x-ray should be obtained with the arm lowered onto a pillow. The tourniquet should be monitored at all times, and the cuff should be inflated for a minimum of 20 minutes and a maximum of 45 minutes. If rotation of the cuff is required, it should be done after the manipulation and plaster application. After the post-reduction x-ray is satisfactory, the cuff can be deflated while observing the patient and monitors. Limb circulation should be checked prior to discharge, and appropriate follow-up and analgesia should be arranged.

      There are several contraindications to performing Bier’s block, including allergy to local anesthetic, hypertension over 200 mm Hg, infection in the limb, lymphedema, methemoglobinemia, morbid obesity, peripheral vascular disease, procedures needed in both arms, Raynaud’s phenomenon, scleroderma, severe hypertension and sickle cell disease.

    • This question is part of the following fields:

      • Basic Anaesthetics
      20.8
      Seconds
  • Question 8 - A 72 year old male presents to the emergency department after a fall...

    Incorrect

    • A 72 year old male presents to the emergency department after a fall on his outstretched arm. X-ray results confirm a dislocated shoulder. Your consultant recommends reducing it under sedation. What are the four essential elements for successful procedural sedation?

      Your Answer: Sedation, paralysis, analgesia and dissociation

      Correct Answer: Analgesia, anxiolysis, sedation and amnesia

      Explanation:

      The four essential elements for effective procedural sedation are analgesia, anxiolysis, sedation, and amnesia. According to the Royal College of Emergency Medicine (RCEM), it is important to prioritize pain management before sedation, using appropriate analgesics based on the patient’s pain level. Non-pharmacological methods should be considered to reduce anxiety, such as creating a comfortable environment and involving supportive family members. The level of sedation required should be determined in advance, with most procedures in the emergency department requiring moderate to deep sedation. Lastly, providing a degree of amnesia will help minimize any unpleasant memories associated with the procedure.

      Further Reading:

      Procedural sedation is commonly used by emergency department (ED) doctors to minimize pain and discomfort during procedures that may be painful or distressing for patients. Effective procedural sedation requires the administration of analgesia, anxiolysis, sedation, and amnesia. This is typically achieved through the use of a combination of short-acting analgesics and sedatives.

      There are different levels of sedation, ranging from minimal sedation (anxiolysis) to general anesthesia. It is important for clinicians to understand the level of sedation being used and to be able to manage any unintended deeper levels of sedation that may occur. Deeper levels of sedation are similar to general anesthesia and require the same level of care and monitoring.

      Various drugs can be used for procedural sedation, including propofol, midazolam, ketamine, and fentanyl. Each of these drugs has its own mechanism of action and side effects. Propofol is commonly used for sedation, amnesia, and induction and maintenance of general anesthesia. Midazolam is a benzodiazepine that enhances the effect of GABA on the GABA A receptors. Ketamine is an NMDA receptor antagonist and is used for dissociative sedation. Fentanyl is a highly potent opioid used for analgesia and sedation.

      The doses of these drugs for procedural sedation in the ED vary depending on the drug and the route of administration. It is important for clinicians to be familiar with the appropriate doses and onset and peak effect times for each drug.

      Safe sedation requires certain requirements, including appropriate staffing levels, competencies of the sedating practitioner, location and facilities, and monitoring. The level of sedation being used determines the specific requirements for safe sedation.

      After the procedure, patients should be monitored until they meet the criteria for safe discharge. This includes returning to their baseline level of consciousness, having vital signs within normal limits, and not experiencing compromised respiratory status. Pain and discomfort should also be addressed before discharge.

    • This question is part of the following fields:

      • Basic Anaesthetics
      477.3
      Seconds
  • Question 9 - A 35-year-old woman is brought in by ambulance following a car accident where...

    Correct

    • A 35-year-old woman is brought in by ambulance following a car accident where her car was hit by a truck. She has sustained severe facial injuries and shows signs of airway obstruction. Her cervical spine is immobilized. She has suffered significant midface trauma, and the anesthesiologist decides to secure a definitive airway by intubating the patient.

      Which of the following does NOT indicate proper placement of the endotracheal tube?

      Your Answer: Presence of borborygmi in the epigastrium

      Explanation:

      The presence of borborygmi in the epigastrium can indicate that the endotracheal tube (ETT) is incorrectly placed in the esophagus. There are several ways to verify the correct placement of the endotracheal tube (ETT).

      One method is through direct visualization, where the ETT is observed passing through the vocal cords. Another method is by checking for fogging in the ETT, which can indicate proper placement. Auscultation of bilateral equal breath sounds is also a reliable way to confirm correct ETT placement.

      Additionally, the absence of borborygmi in the epigastrium is a positive sign that the ETT is in the correct position. Capnography or using a CO2 detector can provide further confirmation of proper ETT placement. Finally, chest radiography can be used to visually assess the placement of the endotracheal tube.

    • This question is part of the following fields:

      • Basic Anaesthetics
      4.3
      Seconds
  • Question 10 - You are part of the team managing a pediatric trauma patient in the...

    Correct

    • You are part of the team managing a pediatric trauma patient in the resuscitation room. You are assisting the attending physician who is performing rapid sequence induction. The attending physician asks you to apply cricoid pressure. What is the recommended amount of pressure that should be applied to the cricoid?

      Your Answer: 30-40 Newtons

      Explanation:

      To prevent the aspiration of gastric contents, it is recommended to apply a force of 30-40 Newtons to the cricoid cartilage during cricoid pressure.

      Further Reading:

      Rapid sequence induction (RSI) is a method used to place an endotracheal tube (ETT) in the trachea while minimizing the risk of aspiration. It involves inducing loss of consciousness while applying cricoid pressure, followed by intubation without face mask ventilation. The steps of RSI can be remembered using the 7 P’s: preparation, pre-oxygenation, pre-treatment, paralysis and induction, protection and positioning, placement with proof, and post-intubation management.

      Preparation involves preparing the patient, equipment, team, and anticipating any difficulties that may arise during the procedure. Pre-oxygenation is important to ensure the patient has an adequate oxygen reserve and prolongs the time before desaturation. This is typically done by breathing 100% oxygen for 3 minutes. Pre-treatment involves administering drugs to counter expected side effects of the procedure and anesthesia agents used.

      Paralysis and induction involve administering a rapid-acting induction agent followed by a neuromuscular blocking agent. Commonly used induction agents include propofol, ketamine, thiopentone, and etomidate. The neuromuscular blocking agents can be depolarizing (such as suxamethonium) or non-depolarizing (such as rocuronium). Depolarizing agents bind to acetylcholine receptors and generate an action potential, while non-depolarizing agents act as competitive antagonists.

      Protection and positioning involve applying cricoid pressure to prevent regurgitation of gastric contents and positioning the patient’s neck appropriately. Tube placement is confirmed by visualizing the tube passing between the vocal cords, auscultation of the chest and stomach, end-tidal CO2 measurement, and visualizing misting of the tube. Post-intubation management includes standard care such as monitoring ECG, SpO2, NIBP, capnography, and maintaining sedation and neuromuscular blockade.

      Overall, RSI is a technique used to quickly and safely secure the airway in patients who may be at risk of aspiration. It involves a series of steps to ensure proper preparation, oxygenation, drug administration, and tube placement. Monitoring and post-intubation care are also important aspects of RSI.

    • This question is part of the following fields:

      • Basic Anaesthetics
      498.1
      Seconds
  • Question 11 - You are asked to help with a 68-year-old patient who initially arrived at...

    Incorrect

    • You are asked to help with a 68-year-old patient who initially arrived at the emergency department complaining of chest discomfort and was found to have a slow heart rate before experiencing a cardiac arrest. Which of the following statements about medications used during cardiac arrest and peri-arrest is accurate?

      Your Answer: The initial dose of amiodarone for an adult patient who has arrested is 100mg IV

      Correct Answer: Atropine is an antagonist of muscarinic acetylcholine receptors

      Explanation:

      Atropine acts as a blocker for muscarinic acetylcholine receptors, making it an antagonist. It is commonly administered during peri-arrest bradycardia. In adults, a dose of 500 mcg is given every 3-5 minutes, with a maximum total dose of 3mg. On the other hand, the initial intravenous dose of amiodarone is 300 mg. Amiodarone works by prolonging repolarization and decreasing myocardial excitability. Additionally, lidocaine functions by blocking sodium channels.

      Further Reading:

      In the management of respiratory and cardiac arrest, several drugs are commonly used to help restore normal function and improve outcomes. Adrenaline is a non-selective agonist of adrenergic receptors and is administered intravenously at a dose of 1 mg every 3-5 minutes. It works by causing vasoconstriction, increasing systemic vascular resistance (SVR), and improving cardiac output by increasing the force of heart contraction. Adrenaline also has bronchodilatory effects.

      Amiodarone is another drug used in cardiac arrest situations. It blocks voltage-gated potassium channels, which prolongs repolarization and reduces myocardial excitability. The initial dose of amiodarone is 300 mg intravenously after 3 shocks, followed by a dose of 150 mg after 5 shocks.

      Lidocaine is an alternative to amiodarone in cardiac arrest situations. It works by blocking sodium channels and decreasing heart rate. The recommended dose is 1 mg/kg by slow intravenous injection, with a repeat half of the initial dose after 5 minutes. The maximum total dose of lidocaine is 3 mg/kg.

      Magnesium sulfate is used to reverse myocardial hyperexcitability associated with hypomagnesemia. It is administered intravenously at a dose of 2 g over 10-15 minutes. An additional dose may be given if necessary, but the maximum total dose should not exceed 3 g.

      Atropine is an antagonist of muscarinic acetylcholine receptors and is used to counteract the slowing of heart rate caused by the parasympathetic nervous system. It is administered intravenously at a dose of 500 mcg every 3-5 minutes, with a maximum dose of 3 mg.

      Naloxone is a competitive antagonist for opioid receptors and is used in cases of respiratory arrest caused by opioid overdose. It has a short duration of action, so careful monitoring is necessary. The initial dose of naloxone is 400 micrograms, followed by 800 mcg after 1 minute. The dose can be gradually escalated up to 2 mg per dose if there is no response to the preceding dose.

      It is important for healthcare professionals to have knowledge of the pharmacology and dosing schedules of these drugs in order to effectively manage respiratory and cardiac arrest situations.

    • This question is part of the following fields:

      • Basic Anaesthetics
      26.1
      Seconds
  • Question 12 - A 32-year-old patient presents to the emergency department with a 6 cm leg...

    Incorrect

    • A 32-year-old patient presents to the emergency department with a 6 cm leg laceration. After assessing the wound, it is determined that suturing under anesthesia is necessary. You intend to supervise one of the medical students in closing the wound. Before beginning the procedure, you have a discussion about the risks associated with local anesthesia. Methemoglobinemia is primarily associated with which type of anesthetic agent?

      Your Answer: Lidocaine with adrenaline

      Correct Answer: Prilocaine

      Explanation:

      Methaemoglobinaemia is a condition that can occur when prilocaine is used, particularly when administered at doses higher than 16 mg/kg.

      Further Reading:

      Local anaesthetics, such as lidocaine, bupivacaine, and prilocaine, are commonly used in the emergency department for topical or local infiltration to establish a field block. Lidocaine is often the first choice for field block prior to central line insertion. These anaesthetics work by blocking sodium channels, preventing the propagation of action potentials.

      However, local anaesthetics can enter the systemic circulation and cause toxic side effects if administered in high doses. Clinicians must be aware of the signs and symptoms of local anaesthetic systemic toxicity (LAST) and know how to respond. Early signs of LAST include numbness around the mouth or tongue, metallic taste, dizziness, visual and auditory disturbances, disorientation, and drowsiness. If not addressed, LAST can progress to more severe symptoms such as seizures, coma, respiratory depression, and cardiovascular dysfunction.

      The management of LAST is largely supportive. Immediate steps include stopping the administration of local anaesthetic, calling for help, providing 100% oxygen and securing the airway, establishing IV access, and controlling seizures with benzodiazepines or other medications. Cardiovascular status should be continuously assessed, and conventional therapies may be used to treat hypotension or arrhythmias. Intravenous lipid emulsion (intralipid) may also be considered as a treatment option.

      If the patient goes into cardiac arrest, CPR should be initiated following ALS arrest algorithms, but lidocaine should not be used as an anti-arrhythmic therapy. Prolonged resuscitation may be necessary, and intravenous lipid emulsion should be administered. After the acute episode, the patient should be transferred to a clinical area with appropriate equipment and staff for further monitoring and care.

      It is important to report cases of local anaesthetic toxicity to the appropriate authorities, such as the National Patient Safety Agency in the UK or the Irish Medicines Board in the Republic of Ireland. Additionally, regular clinical review should be conducted to exclude pancreatitis, as intravenous lipid emulsion can interfere with amylase or lipase assays.

    • This question is part of the following fields:

      • Basic Anaesthetics
      21.1
      Seconds
  • Question 13 - You examine the X-ray of a 65 year old male who has tripped...

    Incorrect

    • You examine the X-ray of a 65 year old male who has tripped and landed on his extended right hand. The X-ray confirms a fracture of the distal radius with dorsal displacement. You intend to perform a reduction of the fracture using intravenous regional anesthesia (Bier's block). How many healthcare professionals should be present during the entire procedure?

      Your Answer: 5

      Correct Answer: 2

      Explanation:

      Bier’s block is a regional intravenous anesthesia technique commonly used for minor surgical procedures of the forearm or for reducing distal radius fractures in the emergency department (ED). It is recommended by NICE as the preferred anesthesia block for adults requiring manipulation of distal forearm fractures in the ED.

      Before performing the procedure, a pre-procedure checklist should be completed, including obtaining consent, recording the patient’s weight, ensuring the resuscitative equipment is available, and monitoring the patient’s vital signs throughout the procedure. The air cylinder should be checked if not using an electronic machine, and the cuff should be checked for leaks.

      During the procedure, a double cuff tourniquet is placed on the upper arm, and the arm is elevated to exsanguinate the limb. The proximal cuff is inflated to a pressure 100 mmHg above the systolic blood pressure, up to a maximum of 300 mmHg. The time of inflation and pressure should be recorded, and the absence of the radial pulse should be confirmed. 0.5% plain prilocaine is then injected slowly, and the time of injection is recorded. The patient should be warned about the potential cold/hot sensation and mottled appearance of the arm. After injection, the cannula is removed and pressure is applied to the venipuncture site to prevent bleeding. After approximately 10 minutes, the patient should have anesthesia and should not feel pain during manipulation. If anesthesia is successful, the manipulation can be performed, and a plaster can be applied by a second staff member. A check x-ray should be obtained with the arm lowered onto a pillow. The tourniquet should be monitored at all times, and the cuff should be inflated for a minimum of 20 minutes and a maximum of 45 minutes. If rotation of the cuff is required, it should be done after the manipulation and plaster application. After the post-reduction x-ray is satisfactory, the cuff can be deflated while observing the patient and monitors. Limb circulation should be checked prior to discharge, and appropriate follow-up and analgesia should be arranged.

      There are several contraindications to performing Bier’s block, including allergy to local anesthetic, hypertension over 200 mm Hg, infection in the limb, lymphedema, methemoglobinemia, morbid obesity, peripheral vascular disease, procedures needed in both arms, Raynaud’s phenomenon, scleroderma, severe hypertension and sickle cell disease.

    • This question is part of the following fields:

      • Basic Anaesthetics
      24.6
      Seconds
  • Question 14 - A 35 year old male is brought to the emergency department with severe...

    Correct

    • A 35 year old male is brought to the emergency department with severe head and chest injuries. As his GCS continues to decline, it is determined that intubation is necessary. You begin preparing for rapid sequence induction (RSI). What is the appropriate dosage of sodium thiopentone for an adult undergoing RSI?

      Your Answer: 3-5 mg/kg

      Explanation:

      To perform rapid sequence induction in adults, it is recommended to administer a dose of sodium thiopentone ranging from 3 to 5 mg per kilogram of body weight.

      Further Reading:

      There are four commonly used induction agents in the UK: propofol, ketamine, thiopentone, and etomidate.

      Propofol is a 1% solution that produces significant venodilation and myocardial depression. It can also reduce cerebral perfusion pressure. The typical dose for propofol is 1.5-2.5 mg/kg. However, it can cause side effects such as hypotension, respiratory depression, and pain at the site of injection.

      Ketamine is another induction agent that produces a dissociative state. It does not display a dose-response continuum, meaning that the effects do not necessarily increase with higher doses. Ketamine can cause bronchodilation, which is useful in patients with asthma. The initial dose for ketamine is 0.5-2 mg/kg, with a typical IV dose of 1.5 mg/kg. Side effects of ketamine include tachycardia, hypertension, laryngospasm, unpleasant hallucinations, nausea and vomiting, hypersalivation, increased intracranial and intraocular pressure, nystagmus and diplopia, abnormal movements, and skin reactions.

      Thiopentone is an ultra-short acting barbiturate that acts on the GABA receptor complex. It decreases cerebral metabolic oxygen and reduces cerebral blood flow and intracranial pressure. The adult dose for thiopentone is 3-5 mg/kg, while the child dose is 5-8 mg/kg. However, these doses should be halved in patients with hypovolemia. Side effects of thiopentone include venodilation, myocardial depression, and hypotension. It is contraindicated in patients with acute porphyrias and myotonic dystrophy.

      Etomidate is the most haemodynamically stable induction agent and is useful in patients with hypovolemia, anaphylaxis, and asthma. It has similar cerebral effects to thiopentone. The dose for etomidate is 0.15-0.3 mg/kg. Side effects of etomidate include injection site pain, movement disorders, adrenal insufficiency, and apnoea. It is contraindicated in patients with sepsis due to adrenal suppression.

    • This question is part of the following fields:

      • Basic Anaesthetics
      18.7
      Seconds
  • Question 15 - You are managing a pediatric patient in the emergency department who needs sedation...

    Incorrect

    • You are managing a pediatric patient in the emergency department who needs sedation for suturing. You are considering using ketamine. What is an absolute contraindication to using ketamine in this case?

      Your Answer: Systolic blood pressure below 120 mmHg

      Correct Answer: Aged less than 12 months

      Explanation:

      Ketamine should not be used in children under 12 months old due to the increased risk of laryngospasm and airway complications. The Royal College of Emergency Medicine advises against using ketamine in children under 1 year old in the emergency department, and it should only be administered by experienced clinicians in children aged 5 and under. Ketamine may cause a slight increase in blood pressure and heart rate, making it a suitable option for those with low blood pressure. However, it is contraindicated in individuals with malignant hypertension (blood pressure above 180 mmHg). Please refer to the notes below for additional contraindications.

      Further Reading:

      Procedural sedation is commonly used by emergency department (ED) doctors to minimize pain and discomfort during procedures that may be painful or distressing for patients. Effective procedural sedation requires the administration of analgesia, anxiolysis, sedation, and amnesia. This is typically achieved through the use of a combination of short-acting analgesics and sedatives.

      There are different levels of sedation, ranging from minimal sedation (anxiolysis) to general anesthesia. It is important for clinicians to understand the level of sedation being used and to be able to manage any unintended deeper levels of sedation that may occur. Deeper levels of sedation are similar to general anesthesia and require the same level of care and monitoring.

      Various drugs can be used for procedural sedation, including propofol, midazolam, ketamine, and fentanyl. Each of these drugs has its own mechanism of action and side effects. Propofol is commonly used for sedation, amnesia, and induction and maintenance of general anesthesia. Midazolam is a benzodiazepine that enhances the effect of GABA on the GABA A receptors. Ketamine is an NMDA receptor antagonist and is used for dissociative sedation. Fentanyl is a highly potent opioid used for analgesia and sedation.

      The doses of these drugs for procedural sedation in the ED vary depending on the drug and the route of administration. It is important for clinicians to be familiar with the appropriate doses and onset and peak effect times for each drug.

      Safe sedation requires certain requirements, including appropriate staffing levels, competencies of the sedating practitioner, location and facilities, and monitoring. The level of sedation being used determines the specific requirements for safe sedation.

      After the procedure, patients should be monitored until they meet the criteria for safe discharge. This includes returning to their baseline level of consciousness, having vital signs within normal limits, and not experiencing compromised respiratory status. Pain and discomfort should also be addressed before discharge.

    • This question is part of the following fields:

      • Basic Anaesthetics
      44.6
      Seconds
  • Question 16 - A 25-year-old individual who was attacked with a baseball bat returns from the...

    Incorrect

    • A 25-year-old individual who was attacked with a baseball bat returns from the radiology department after undergoing a CT head scan. The CT images show the presence of intracranial bleeding, and after consulting with the on-call neurosurgical registrar, it is decided that the patient will be transferred to the nearby neurosurgical unit after intubation. How can you determine the amount of oxygen that will be required during the transfer?

      Your Answer: Tidal volume x transfer time in minutes

      Correct Answer: 2 x Minute Volume (MV) x FiO2 x transfer time in minutes

      Explanation:

      To determine the amount of oxygen needed for a transfer, you can use the formula: 2 x Minute Volume (MV) x FiO2 x transfer time in minutes. This formula calculates the volume of oxygen that should be taken on the transfer. The Minute Volume (MV) represents the expected oxygen consumption. It is recommended to double the expected consumption to account for any unforeseen delays or increased oxygen demand during the transfer. Therefore, the second equation is used to calculate the volume of oxygen that will be taken on the transfer.

      Further Reading:

      Transfer of critically ill patients in the emergency department is a common occurrence and can involve intra-hospital transfers or transfers to another hospital. However, there are several risks associated with these transfers that doctors need to be aware of and manage effectively.

      Technical risks include equipment failure or inadequate equipment, unreliable power or oxygen supply, incompatible equipment, restricted positioning, and restricted monitoring equipment. These technical issues can hinder the ability to detect and treat problems with ventilation, blood pressure control, and arrhythmias during the transfer.

      Non-technical risks involve limited personal and medical team during the transfer, isolation and lack of resources in the receiving hospital, and problems with communication and liaison between the origin and destination sites.

      Organizational risks can be mitigated by having a dedicated consultant lead for transfers who is responsible for producing guidelines, training staff, standardizing protocols, equipment, and documentation, as well as capturing data and conducting audits.

      To optimize the patient’s clinical condition before transfer, several key steps should be taken. These include ensuring a low threshold for intubation and anticipating airway and ventilation problems, securing the endotracheal tube (ETT) and verifying its position, calculating oxygen requirements and ensuring an adequate supply, monitoring for circulatory issues and inserting at least two IV accesses, providing ongoing analgesia and sedation, controlling seizures, and addressing any fractures or temperature changes.

      It is also important to have the necessary equipment and personnel for the transfer. Standard monitoring equipment should include ECG, oxygen saturation, blood pressure, temperature, and capnographic monitoring for ventilated patients. Additional monitoring may be required depending on the level of care needed by the patient.

      In terms of oxygen supply, it is standard practice to calculate the expected oxygen consumption during transfer and multiply it by two to ensure an additional supply in case of delays. The suggested oxygen supply for transfer can be calculated using the minute volume, fraction of inspired oxygen, and estimated transfer time.

      Overall, managing the risks associated with patient transfers requires careful planning, communication, and coordination to ensure the safety and well-being of critically ill patients.

    • This question is part of the following fields:

      • Basic Anaesthetics
      34
      Seconds
  • Question 17 - You examine the X-ray of a 55-year-old male who has fallen onto his...

    Incorrect

    • You examine the X-ray of a 55-year-old male who has fallen onto his extended right hand. The X-ray confirms a fracture of the distal radius with dorsal displacement. Your plan is to perform a reduction of the fracture using intravenous regional anesthesia (Bier's block). While conducting the procedure, you take note of the duration of cuff inflation. What is the maximum duration the cuff should remain inflated?

      Your Answer: 1 hour

      Correct Answer: 45 minutes

      Explanation:

      According to the RCEM, the minimum time for cuff inflation during Bier’s block is 20 minutes, while the maximum time is 45 minutes.

      Further Reading:

      Bier’s block is a regional intravenous anesthesia technique commonly used for minor surgical procedures of the forearm or for reducing distal radius fractures in the emergency department (ED). It is recommended by NICE as the preferred anesthesia block for adults requiring manipulation of distal forearm fractures in the ED.

      Before performing the procedure, a pre-procedure checklist should be completed, including obtaining consent, recording the patient’s weight, ensuring the resuscitative equipment is available, and monitoring the patient’s vital signs throughout the procedure. The air cylinder should be checked if not using an electronic machine, and the cuff should be checked for leaks.

      During the procedure, a double cuff tourniquet is placed on the upper arm, and the arm is elevated to exsanguinate the limb. The proximal cuff is inflated to a pressure 100 mmHg above the systolic blood pressure, up to a maximum of 300 mmHg. The time of inflation and pressure should be recorded, and the absence of the radial pulse should be confirmed. 0.5% plain prilocaine is then injected slowly, and the time of injection is recorded. The patient should be warned about the potential cold/hot sensation and mottled appearance of the arm. After injection, the cannula is removed and pressure is applied to the venipuncture site to prevent bleeding. After approximately 10 minutes, the patient should have anesthesia and should not feel pain during manipulation. If anesthesia is successful, the manipulation can be performed, and a plaster can be applied by a second staff member. A check x-ray should be obtained with the arm lowered onto a pillow. The tourniquet should be monitored at all times, and the cuff should be inflated for a minimum of 20 minutes and a maximum of 45 minutes. If rotation of the cuff is required, it should be done after the manipulation and plaster application. After the post-reduction x-ray is satisfactory, the cuff can be deflated while observing the patient and monitors. Limb circulation should be checked prior to discharge, and appropriate follow-up and analgesia should be arranged.

      There are several contraindications to performing Bier’s block, including allergy to local anesthetic, hypertension over 200 mm Hg, infection in the limb, lymphedema, methemoglobinemia, morbid obesity, peripheral vascular disease, procedures needed in both arms, Raynaud’s phenomenon, scleroderma, severe hypertension and sickle cell disease.

    • This question is part of the following fields:

      • Basic Anaesthetics
      18.5
      Seconds
  • Question 18 - A 52 year old male is brought into the emergency room after an...

    Incorrect

    • A 52 year old male is brought into the emergency room after an accident at a construction site resulting in a severe blunt abdominal injury. The patient is experiencing hypotension. The surgical team is preparing for immediate transfer to the operating room. The consultant requests you to prepare intravenous ketamine for rapid sequence induction. What would be the appropriate initial dose of IV ketamine for this patient?

      Your Answer: 10 mg/kg IV

      Correct Answer: 1.5 mg/kg IV

      Explanation:

      The recommended dose of ketamine for rapid sequence intubation (RSI) is typically 1.5 mg/kg administered intravenously. This dosage is commonly used in UK medical centers. According to the British National Formulary (BNF), intravenous induction doses of ketamine range from 0.5 to 2 mg/kg for longer procedures and 1 to 4.5 mg/kg for shorter procedures. Ketamine is known to cause an increase in blood pressure, making it a suitable option for individuals with hemodynamic compromise.

      Further Reading:

      There are four commonly used induction agents in the UK: propofol, ketamine, thiopentone, and etomidate.

      Propofol is a 1% solution that produces significant venodilation and myocardial depression. It can also reduce cerebral perfusion pressure. The typical dose for propofol is 1.5-2.5 mg/kg. However, it can cause side effects such as hypotension, respiratory depression, and pain at the site of injection.

      Ketamine is another induction agent that produces a dissociative state. It does not display a dose-response continuum, meaning that the effects do not necessarily increase with higher doses. Ketamine can cause bronchodilation, which is useful in patients with asthma. The initial dose for ketamine is 0.5-2 mg/kg, with a typical IV dose of 1.5 mg/kg. Side effects of ketamine include tachycardia, hypertension, laryngospasm, unpleasant hallucinations, nausea and vomiting, hypersalivation, increased intracranial and intraocular pressure, nystagmus and diplopia, abnormal movements, and skin reactions.

      Thiopentone is an ultra-short acting barbiturate that acts on the GABA receptor complex. It decreases cerebral metabolic oxygen and reduces cerebral blood flow and intracranial pressure. The adult dose for thiopentone is 3-5 mg/kg, while the child dose is 5-8 mg/kg. However, these doses should be halved in patients with hypovolemia. Side effects of thiopentone include venodilation, myocardial depression, and hypotension. It is contraindicated in patients with acute porphyrias and myotonic dystrophy.

      Etomidate is the most haemodynamically stable induction agent and is useful in patients with hypovolemia, anaphylaxis, and asthma. It has similar cerebral effects to thiopentone. The dose for etomidate is 0.15-0.3 mg/kg. Side effects of etomidate include injection site pain, movement disorders, adrenal insufficiency, and apnoea. It is contraindicated in patients with sepsis due to adrenal suppression.

    • This question is part of the following fields:

      • Basic Anaesthetics
      29.8
      Seconds
  • Question 19 - A 72 year old male patient is brought into the emergency department with...

    Incorrect

    • A 72 year old male patient is brought into the emergency department with suspected COVID-19 pneumonia and sepsis. It is decided to intubate him pending transfer to ITU. Your consultant requests you prepare propofol and suxamethonium for rapid sequence intubation. What class of drug is suxamethonium?

      Your Answer: Synthetic opioid

      Correct Answer: Depolarising neuromuscular blocker

      Explanation:

      Suxamethonium, also called succinylcholine, is currently the sole depolarising neuromuscular blocking drug used in clinical settings. It functions by binding to acetylcholine (Ach) receptors as an agonist. Unlike acetylcholine, it is not broken down by acetylcholinesterase, leading to a longer duration of binding and prolonged inhibition of neuromuscular transmission. Eventually, it is metabolized by plasma cholinesterase (pseudocholinesterase).

      Further Reading:

      Rapid sequence induction (RSI) is a method used to place an endotracheal tube (ETT) in the trachea while minimizing the risk of aspiration. It involves inducing loss of consciousness while applying cricoid pressure, followed by intubation without face mask ventilation. The steps of RSI can be remembered using the 7 P’s: preparation, pre-oxygenation, pre-treatment, paralysis and induction, protection and positioning, placement with proof, and post-intubation management.

      Preparation involves preparing the patient, equipment, team, and anticipating any difficulties that may arise during the procedure. Pre-oxygenation is important to ensure the patient has an adequate oxygen reserve and prolongs the time before desaturation. This is typically done by breathing 100% oxygen for 3 minutes. Pre-treatment involves administering drugs to counter expected side effects of the procedure and anesthesia agents used.

      Paralysis and induction involve administering a rapid-acting induction agent followed by a neuromuscular blocking agent. Commonly used induction agents include propofol, ketamine, thiopentone, and etomidate. The neuromuscular blocking agents can be depolarizing (such as suxamethonium) or non-depolarizing (such as rocuronium). Depolarizing agents bind to acetylcholine receptors and generate an action potential, while non-depolarizing agents act as competitive antagonists.

      Protection and positioning involve applying cricoid pressure to prevent regurgitation of gastric contents and positioning the patient’s neck appropriately. Tube placement is confirmed by visualizing the tube passing between the vocal cords, auscultation of the chest and stomach, end-tidal CO2 measurement, and visualizing misting of the tube. Post-intubation management includes standard care such as monitoring ECG, SpO2, NIBP, capnography, and maintaining sedation and neuromuscular blockade.

      Overall, RSI is a technique used to quickly and safely secure the airway in patients who may be at risk of aspiration. It involves a series of steps to ensure proper preparation, oxygenation, drug administration, and tube placement. Monitoring and post-intubation care are also important aspects of RSI.

    • This question is part of the following fields:

      • Basic Anaesthetics
      83.3
      Seconds
  • Question 20 - A 45 year old male patient is brought into the emergency department with...

    Correct

    • A 45 year old male patient is brought into the emergency department with a suspected massive pulmonary embolism. It is decided to intubate him pending transfer to ITU. Your consultant requests you prepare the patient for rapid sequence intubation. You start pre-oxygenating the patient. What is the gold standard evaluation for ensuring sufficient pre-oxygenation?

      Your Answer: End tidal O2 > 85%

      Explanation:

      The blood gas measurement of pO2 should be equal to or greater than 18 kilopascals (kPa) at a level of 10.

      Further Reading:

      Rapid sequence induction (RSI) is a method used to place an endotracheal tube (ETT) in the trachea while minimizing the risk of aspiration. It involves inducing loss of consciousness while applying cricoid pressure, followed by intubation without face mask ventilation. The steps of RSI can be remembered using the 7 P’s: preparation, pre-oxygenation, pre-treatment, paralysis and induction, protection and positioning, placement with proof, and post-intubation management.

      Preparation involves preparing the patient, equipment, team, and anticipating any difficulties that may arise during the procedure. Pre-oxygenation is important to ensure the patient has an adequate oxygen reserve and prolongs the time before desaturation. This is typically done by breathing 100% oxygen for 3 minutes. Pre-treatment involves administering drugs to counter expected side effects of the procedure and anesthesia agents used.

      Paralysis and induction involve administering a rapid-acting induction agent followed by a neuromuscular blocking agent. Commonly used induction agents include propofol, ketamine, thiopentone, and etomidate. The neuromuscular blocking agents can be depolarizing (such as suxamethonium) or non-depolarizing (such as rocuronium). Depolarizing agents bind to acetylcholine receptors and generate an action potential, while non-depolarizing agents act as competitive antagonists.

      Protection and positioning involve applying cricoid pressure to prevent regurgitation of gastric contents and positioning the patient’s neck appropriately. Tube placement is confirmed by visualizing the tube passing between the vocal cords, auscultation of the chest and stomach, end-tidal CO2 measurement, and visualizing misting of the tube. Post-intubation management includes standard care such as monitoring ECG, SpO2, NIBP, capnography, and maintaining sedation and neuromuscular blockade.

      Overall, RSI is a technique used to quickly and safely secure the airway in patients who may be at risk of aspiration. It involves a series of steps to ensure proper preparation, oxygenation, drug administration, and tube placement. Monitoring and post-intubation care are also important aspects of RSI.

    • This question is part of the following fields:

      • Basic Anaesthetics
      100.9
      Seconds
  • Question 21 - You are managing a 62-year-old woman who has suffered a displaced fracture of...

    Incorrect

    • You are managing a 62-year-old woman who has suffered a displaced fracture of the distal radius. Your plan is to perform a reduction of the fracture using intravenous regional anesthesia (Bier's block). You opt to administer prilocaine 0.5% for the regional block. What would be the appropriate dosage for this patient?

      Your Answer: 1 mg/kg

      Correct Answer: 3 mg/kg

      Explanation:

      The suggested amount of Prilocaine for Bier’s block is 3mg per kilogram of body weight. It is important to note that there is no available formulation of prilocaine combined with adrenaline, unlike other local anesthetics.

      Further Reading:

      Bier’s block is a regional intravenous anesthesia technique commonly used for minor surgical procedures of the forearm or for reducing distal radius fractures in the emergency department (ED). It is recommended by NICE as the preferred anesthesia block for adults requiring manipulation of distal forearm fractures in the ED.

      Before performing the procedure, a pre-procedure checklist should be completed, including obtaining consent, recording the patient’s weight, ensuring the resuscitative equipment is available, and monitoring the patient’s vital signs throughout the procedure. The air cylinder should be checked if not using an electronic machine, and the cuff should be checked for leaks.

      During the procedure, a double cuff tourniquet is placed on the upper arm, and the arm is elevated to exsanguinate the limb. The proximal cuff is inflated to a pressure 100 mmHg above the systolic blood pressure, up to a maximum of 300 mmHg. The time of inflation and pressure should be recorded, and the absence of the radial pulse should be confirmed. 0.5% plain prilocaine is then injected slowly, and the time of injection is recorded. The patient should be warned about the potential cold/hot sensation and mottled appearance of the arm. After injection, the cannula is removed and pressure is applied to the venipuncture site to prevent bleeding. After approximately 10 minutes, the patient should have anesthesia and should not feel pain during manipulation. If anesthesia is successful, the manipulation can be performed, and a plaster can be applied by a second staff member. A check x-ray should be obtained with the arm lowered onto a pillow. The tourniquet should be monitored at all times, and the cuff should be inflated for a minimum of 20 minutes and a maximum of 45 minutes. If rotation of the cuff is required, it should be done after the manipulation and plaster application. After the post-reduction x-ray is satisfactory, the cuff can be deflated while observing the patient and monitors. Limb circulation should be checked prior to discharge, and appropriate follow-up and analgesia should be arranged.

      There are several contraindications to performing Bier’s block, including allergy to local anesthetic, hypertension over 200 mm Hg, infection in the limb, lymphedema, methemoglobinemia, morbid obesity, peripheral vascular disease, procedures needed in both arms, Raynaud’s phenomenon, scleroderma, severe hypertension and sickle cell disease.

    • This question is part of the following fields:

      • Basic Anaesthetics
      18.5
      Seconds
  • Question 22 - A 32-year-old man that has been involved in a car crash develops symptoms...

    Incorrect

    • A 32-year-old man that has been involved in a car crash develops symptoms of acute airway blockage. You conclude that he needs to be intubated using a rapid sequence induction. You intend to use thiopental sodium as your induction medication.
      What type of receptor does thiopental sodium act on to produce its effects?

      Your Answer: Dopamine

      Correct Answer: Gamma-aminobutyric acid (GABA)

      Explanation:

      Thiopental sodium is a barbiturate with a very short duration of action. It is primarily used to induce anesthesia. Barbiturates are believed to primarily affect synapses by reducing the sensitivity of postsynaptic receptors to neurotransmitters and by interfering with the release of neurotransmitters from presynaptic neurons.

      Thiopental sodium specifically binds to a unique site associated with a chloride ionophore at the GABAA receptor, which is responsible for the opening of chloride ion channels. This binding increases the length of time that the chloride ionophore remains open. As a result, the inhibitory effect of GABA on postsynaptic neurons in the thalamus is prolonged.

      In summary, thiopental sodium acts as a short-acting barbiturate that is commonly used to induce anesthesia. It affects synapses by reducing postsynaptic receptor sensitivity and interfering with neurotransmitter release. By binding to a specific site at the GABAA receptor, thiopental sodium prolongs the inhibitory effect of GABA in the thalamus.

    • This question is part of the following fields:

      • Basic Anaesthetics
      18.1
      Seconds
  • Question 23 - You are overseeing the care of a 72-year-old patient who is experiencing a...

    Correct

    • You are overseeing the care of a 72-year-old patient who is experiencing a peri-arrest arrhythmia. Laboratory results indicate that the patient has a significant deficiency of magnesium in their blood. After careful consideration, you determine that administering magnesium sulfate is necessary. What is the appropriate dosage regimen for this treatment?

      Your Answer: 2g IV given over 10-15 minutes

      Explanation:

      To treat serious arrhythmia caused by hypomagnesaemia, it is recommended to administer 2 g of magnesium sulphate intravenously over a period of 10-15 minutes.

      Further Reading:

      In the management of respiratory and cardiac arrest, several drugs are commonly used to help restore normal function and improve outcomes. Adrenaline is a non-selective agonist of adrenergic receptors and is administered intravenously at a dose of 1 mg every 3-5 minutes. It works by causing vasoconstriction, increasing systemic vascular resistance (SVR), and improving cardiac output by increasing the force of heart contraction. Adrenaline also has bronchodilatory effects.

      Amiodarone is another drug used in cardiac arrest situations. It blocks voltage-gated potassium channels, which prolongs repolarization and reduces myocardial excitability. The initial dose of amiodarone is 300 mg intravenously after 3 shocks, followed by a dose of 150 mg after 5 shocks.

      Lidocaine is an alternative to amiodarone in cardiac arrest situations. It works by blocking sodium channels and decreasing heart rate. The recommended dose is 1 mg/kg by slow intravenous injection, with a repeat half of the initial dose after 5 minutes. The maximum total dose of lidocaine is 3 mg/kg.

      Magnesium sulfate is used to reverse myocardial hyperexcitability associated with hypomagnesemia. It is administered intravenously at a dose of 2 g over 10-15 minutes. An additional dose may be given if necessary, but the maximum total dose should not exceed 3 g.

      Atropine is an antagonist of muscarinic acetylcholine receptors and is used to counteract the slowing of heart rate caused by the parasympathetic nervous system. It is administered intravenously at a dose of 500 mcg every 3-5 minutes, with a maximum dose of 3 mg.

      Naloxone is a competitive antagonist for opioid receptors and is used in cases of respiratory arrest caused by opioid overdose. It has a short duration of action, so careful monitoring is necessary. The initial dose of naloxone is 400 micrograms, followed by 800 mcg after 1 minute. The dose can be gradually escalated up to 2 mg per dose if there is no response to the preceding dose.

      It is important for healthcare professionals to have knowledge of the pharmacology and dosing schedules of these drugs in order to effectively manage respiratory and cardiac arrest situations.

    • This question is part of the following fields:

      • Basic Anaesthetics
      41.1
      Seconds
  • Question 24 - You are part of the team managing a pediatric patient, your consultant asks...

    Incorrect

    • You are part of the team managing a pediatric patient, your consultant asks you what the patient's Mallampati score is. What criteria is utilized to assess the Mallampati score?

      Your Answer: The view of the vocal cords and epiglottis

      Correct Answer: The distance between the tongue base and the roof of the mouth

      Explanation:

      The Mallampati score is a measure that assesses the distance between the base of the tongue and the roof of the mouth. This score is used to classify the level of airway obstruction during certain medical procedures. Please refer to the notes below for the complete classification.

      Further Reading:

      A difficult airway refers to a situation where factors have been identified that make airway management more challenging. These factors can include body habitus, head and neck anatomy, mouth characteristics, jaw abnormalities, and neck mobility. The LEMON criteria can be used to predict difficult intubation by assessing these factors. The criteria include looking externally at these factors, evaluating the 3-3-2 rule which assesses the space in the mouth and neck, assessing the Mallampati score which measures the distance between the tongue base and roof of the mouth, and considering any upper airway obstructions or reduced neck mobility.

      Direct laryngoscopy is a method used to visualize the larynx and assess the size of the tracheal opening. The Cormack-Lehane grading system can be used to classify the tracheal opening, with higher grades indicating more difficult access. In cases of a failed airway, where intubation attempts are unsuccessful and oxygenation cannot be maintained, the immediate priority is to oxygenate the patient and prevent hypoxic brain injury. This can be done through various measures such as using a bag-valve-mask ventilation, high flow oxygen, suctioning, and optimizing head positioning.

      If oxygenation cannot be maintained, it is important to call for help from senior medical professionals and obtain a difficult airway trolley if not already available. If basic airway management techniques do not improve oxygenation, further intubation attempts may be considered using different equipment or techniques. If oxygen saturations remain below 90%, a surgical airway such as a cricothyroidotomy may be necessary.

      Post-intubation hypoxia can occur for various reasons, and the mnemonic DOPES can be used to identify and address potential problems. DOPES stands for displacement of the endotracheal tube, obstruction, pneumothorax, equipment failure, and stacked breaths. If intubation attempts fail, a maximum of three attempts should be made before moving to an alternative plan, such as using a laryngeal mask airway or considering a cricothyroidotomy.

    • This question is part of the following fields:

      • Basic Anaesthetics
      20.9
      Seconds
  • Question 25 - What is the main pharmacological factor that influences the speed of onset for...

    Correct

    • What is the main pharmacological factor that influences the speed of onset for local anaesthetic agents, resulting in a rapid onset of action?

      Your Answer: Lipid Solubility

      Explanation:

      The speed at which local anesthetics take effect is primarily determined by their lipid solubility. The onset of action is directly influenced by how well the anesthetic can dissolve in lipids, which is in turn related to its pKa value. A higher lipid solubility leads to a faster onset of action. The pKa value, which represents the acid-dissociation constant, is an indicator of lipid solubility. An anesthetic agent with a pKa value closer to 7.4 is more likely to be highly lipid soluble.

      Further Reading:

      Local anaesthetics, such as lidocaine, bupivacaine, and prilocaine, are commonly used in the emergency department for topical or local infiltration to establish a field block. Lidocaine is often the first choice for field block prior to central line insertion. These anaesthetics work by blocking sodium channels, preventing the propagation of action potentials.

      However, local anaesthetics can enter the systemic circulation and cause toxic side effects if administered in high doses. Clinicians must be aware of the signs and symptoms of local anaesthetic systemic toxicity (LAST) and know how to respond. Early signs of LAST include numbness around the mouth or tongue, metallic taste, dizziness, visual and auditory disturbances, disorientation, and drowsiness. If not addressed, LAST can progress to more severe symptoms such as seizures, coma, respiratory depression, and cardiovascular dysfunction.

      The management of LAST is largely supportive. Immediate steps include stopping the administration of local anaesthetic, calling for help, providing 100% oxygen and securing the airway, establishing IV access, and controlling seizures with benzodiazepines or other medications. Cardiovascular status should be continuously assessed, and conventional therapies may be used to treat hypotension or arrhythmias. Intravenous lipid emulsion (intralipid) may also be considered as a treatment option.

      If the patient goes into cardiac arrest, CPR should be initiated following ALS arrest algorithms, but lidocaine should not be used as an anti-arrhythmic therapy. Prolonged resuscitation may be necessary, and intravenous lipid emulsion should be administered. After the acute episode, the patient should be transferred to a clinical area with appropriate equipment and staff for further monitoring and care.

      It is important to report cases of local anaesthetic toxicity to the appropriate authorities, such as the National Patient Safety Agency in the UK or the Irish Medicines Board in the Republic of Ireland. Additionally, regular clinical review should be conducted to exclude pancreatitis, as intravenous lipid emulsion can interfere with amylase or lipase assays.

    • This question is part of the following fields:

      • Basic Anaesthetics
      11
      Seconds
  • Question 26 - A 32-year-old man that has been involved in a car crash develops symptoms...

    Incorrect

    • A 32-year-old man that has been involved in a car crash develops symptoms of acute airway blockage. You determine that he needs intubation through a rapid sequence induction. You intend to use etomidate as your induction medication.
      Etomidate functions by acting on what type of receptor?

      Your Answer: Serotonin

      Correct Answer: Gamma-aminobutyric acid (GABA)

      Explanation:

      Etomidate is a derivative of imidazole that is commonly used to induce anesthesia due to its short-acting nature. Its main mechanism of action is believed to involve the modulation of fast inhibitory synaptic transmission within the central nervous system by acting on GABA type A receptors.

    • This question is part of the following fields:

      • Basic Anaesthetics
      259.8
      Seconds
  • Question 27 - A 14 year old male is brought into the emergency department with a...

    Incorrect

    • A 14 year old male is brought into the emergency department with a dislocated shoulder following a fall from a skateboard. The patient has been receiving Entonox during ambulance transport. What is a contraindication to administering Entonox in this case?

      Your Answer: Anaemia

      Correct Answer: Pneumothorax

      Explanation:

      Nitrous oxide should not be used in cases where there is trapped air, such as pneumothorax. This is because nitrous oxide can diffuse into the trapped air and increase the pressure, which can be harmful. This can be particularly dangerous in conditions like pneumothorax, where the trapped air can expand and affect breathing, or in cases of intracranial air after a head injury, trapped air after a recent underwater dive, or recent injection of gas into the eye.

      Further Reading:

      Entonox® is a mixture of 50% nitrous oxide and 50% oxygen that can be used for self-administration to reduce anxiety. It can also be used alongside other anesthesia agents. However, its mechanism of action for anxiety reduction is not fully understood. The Entonox bottles are typically identified by blue and white color-coded collars, but a new standard will replace these with dark blue shoulders in the future. It is important to note that Entonox alone cannot be used as the sole maintenance agent in anesthesia.

      One of the effects of nitrous oxide is the second-gas effect, where it speeds up the absorption of other inhaled anesthesia agents. Nitrous oxide enters the alveoli and diffuses into the blood, displacing nitrogen. This displacement causes the remaining alveolar gases to become more concentrated, increasing the fractional content of inhaled anesthesia gases and accelerating the uptake of volatile agents into the blood.

      However, when nitrous oxide administration is stopped, it can cause diffusion hypoxia. Nitrous oxide exits the blood and diffuses back into the alveoli, while nitrogen diffuses in the opposite direction. Nitrous oxide enters the alveoli much faster than nitrogen leaves, resulting in the dilution of oxygen within the alveoli. This can lead to diffusion hypoxia, where the oxygen concentration in the alveoli is diluted, potentially causing oxygen deprivation in patients breathing air.

      There are certain contraindications for using nitrous oxide, as it can expand in air-filled spaces. It should be avoided in conditions such as head injuries with intracranial air, pneumothorax, recent intraocular gas injection, and entrapped air following a recent underwater dive.

    • This question is part of the following fields:

      • Basic Anaesthetics
      292.1
      Seconds
  • Question 28 - A 35-year-old male is brought to the emergency department with a severe head...

    Incorrect

    • A 35-year-old male is brought to the emergency department with a severe head injury. Due to a decreasing Glasgow Coma Scale (GCS), it is decided to intubate him. You prepare for rapid sequence induction (RSI) and plan to use propofol as the induction agent. Which of the following statements about propofol and its impact on blood pressure is accurate?

      Your Answer: Propofol causes hypotension via decreased myocardial contractility

      Correct Answer: Propofol causes hypotension via venodilation

      Explanation:

      The administration of propofol can result in venodilation, leading to a significant drop in blood pressure. This effect is particularly significant in patients who are already experiencing unstable blood flow.

      Further Reading:

      There are four commonly used induction agents in the UK: propofol, ketamine, thiopentone, and etomidate.

      Propofol is a 1% solution that produces significant venodilation and myocardial depression. It can also reduce cerebral perfusion pressure. The typical dose for propofol is 1.5-2.5 mg/kg. However, it can cause side effects such as hypotension, respiratory depression, and pain at the site of injection.

      Ketamine is another induction agent that produces a dissociative state. It does not display a dose-response continuum, meaning that the effects do not necessarily increase with higher doses. Ketamine can cause bronchodilation, which is useful in patients with asthma. The initial dose for ketamine is 0.5-2 mg/kg, with a typical IV dose of 1.5 mg/kg. Side effects of ketamine include tachycardia, hypertension, laryngospasm, unpleasant hallucinations, nausea and vomiting, hypersalivation, increased intracranial and intraocular pressure, nystagmus and diplopia, abnormal movements, and skin reactions.

      Thiopentone is an ultra-short acting barbiturate that acts on the GABA receptor complex. It decreases cerebral metabolic oxygen and reduces cerebral blood flow and intracranial pressure. The adult dose for thiopentone is 3-5 mg/kg, while the child dose is 5-8 mg/kg. However, these doses should be halved in patients with hypovolemia. Side effects of thiopentone include venodilation, myocardial depression, and hypotension. It is contraindicated in patients with acute porphyrias and myotonic dystrophy.

      Etomidate is the most haemodynamically stable induction agent and is useful in patients with hypovolemia, anaphylaxis, and asthma. It has similar cerebral effects to thiopentone. The dose for etomidate is 0.15-0.3 mg/kg. Side effects of etomidate include injection site pain, movement disorders, adrenal insufficiency, and apnoea. It is contraindicated in patients with sepsis due to adrenal suppression.

    • This question is part of the following fields:

      • Basic Anaesthetics
      26.3
      Seconds
  • Question 29 - A 45 year old female patient has been brought to the emergency department...

    Incorrect

    • A 45 year old female patient has been brought to the emergency department with multiple injuries following a fall while hiking in the mountains. You observe significant injuries to the face. There is also bruising to the chest wall and a fracture dislocation to the ankle. The patient has undergone rapid sequence induction with Propofol and Suxamethonium. A chest X-ray shows multiple rib fractures but no pneumothorax or visible pulmonary contusion. You notice that the patient's end tidal CO2 has steadily increased since being intubated from 4.5 KPa to 7.4 KPa. You observe esophageal temperature is 39.3ºC. What is the likely cause of these readings?

      Your Answer: Sepsis

      Correct Answer: Malignant hyperthermia

      Explanation:

      The earliest and most frequent clinical indication of malignant hyperthermia is typically an increase in end tidal CO2. An unexplained elevation in end tidal CO2 is often the initial and most reliable sign of this condition.

      Further Reading:

      Malignant hyperthermia is a rare and life-threatening syndrome that can be triggered by certain medications in individuals who are genetically susceptible. The most common triggers are suxamethonium and inhalational anaesthetic agents. The syndrome is caused by the release of stored calcium ions from skeletal muscle cells, leading to uncontrolled muscle contraction and excessive heat production. This results in symptoms such as high fever, sweating, flushed skin, rapid heartbeat, and muscle rigidity. It can also lead to complications such as acute kidney injury, rhabdomyolysis, and metabolic acidosis. Treatment involves discontinuing the trigger medication, administering dantrolene to inhibit calcium release and promote muscle relaxation, and managing any associated complications such as hyperkalemia and acidosis. Referral to a malignant hyperthermia center for further investigation is also recommended.

    • This question is part of the following fields:

      • Basic Anaesthetics
      6.2
      Seconds
  • Question 30 - A 68 year old has been brought to the emergency department by ambulance...

    Correct

    • A 68 year old has been brought to the emergency department by ambulance with a history of collapsing shortly after complaining of severe chest pain and difficulty breathing. It has been determined that the patient needs rapid sequence induction after pre-oxygenation. What is the best position for the patient to be in during pre-oxygenation?

      Your Answer: 20-30 degrees head up tilt

      Explanation:

      Several studies have shown that elevating the head by 20-30 degrees is beneficial for increasing oxygen levels compared to lying flat on the back.

      Further Reading:

      Rapid sequence induction (RSI) is a method used to place an endotracheal tube (ETT) in the trachea while minimizing the risk of aspiration. It involves inducing loss of consciousness while applying cricoid pressure, followed by intubation without face mask ventilation. The steps of RSI can be remembered using the 7 P’s: preparation, pre-oxygenation, pre-treatment, paralysis and induction, protection and positioning, placement with proof, and post-intubation management.

      Preparation involves preparing the patient, equipment, team, and anticipating any difficulties that may arise during the procedure. Pre-oxygenation is important to ensure the patient has an adequate oxygen reserve and prolongs the time before desaturation. This is typically done by breathing 100% oxygen for 3 minutes. Pre-treatment involves administering drugs to counter expected side effects of the procedure and anesthesia agents used.

      Paralysis and induction involve administering a rapid-acting induction agent followed by a neuromuscular blocking agent. Commonly used induction agents include propofol, ketamine, thiopentone, and etomidate. The neuromuscular blocking agents can be depolarizing (such as suxamethonium) or non-depolarizing (such as rocuronium). Depolarizing agents bind to acetylcholine receptors and generate an action potential, while non-depolarizing agents act as competitive antagonists.

      Protection and positioning involve applying cricoid pressure to prevent regurgitation of gastric contents and positioning the patient’s neck appropriately. Tube placement is confirmed by visualizing the tube passing between the vocal cords, auscultation of the chest and stomach, end-tidal CO2 measurement, and visualizing misting of the tube. Post-intubation management includes standard care such as monitoring ECG, SpO2, NIBP, capnography, and maintaining sedation and neuromuscular blockade.

      Overall, RSI is a technique used to quickly and safely secure the airway in patients who may be at risk of aspiration. It involves a series of steps to ensure proper preparation, oxygenation, drug administration, and tube placement. Monitoring and post-intubation care are also important aspects of RSI.

    • This question is part of the following fields:

      • Basic Anaesthetics
      15.7
      Seconds

SESSION STATS - PERFORMANCE PER SPECIALTY

Basic Anaesthetics (26/30) 87%
Passmed