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  • Question 1 - You are requested to insert a central venous catheter into the neck using...

    Correct

    • You are requested to insert a central venous catheter into the neck using ultrasound guidance. What characteristic aids in differentiating between a vein and artery when evaluating the neck vessels using ultrasound?

      Your Answer: Veins are obliterated on compression whereas arteries are not

      Explanation:

      Veins and arteries can be differentiated on ultrasound based on their compressibility, response to valsalva, and shape. When compressed, veins are obliterated while arteries remain unaffected. Additionally, when a patient performs a valsalva maneuver, the neck veins expand. In transverse view, arteries appear circular with a muscular wall, whereas veins tend to have an oval shape. It is important to note that the overall size and internal diameter are not reliable indicators for distinguishing between arteries and veins.

      Further Reading:

      A central venous catheter (CVC) is a type of catheter that is inserted into a large vein in the body, typically in the neck, chest, or groin. It has several important uses, including CVP monitoring, pulmonary artery pressure monitoring, repeated blood sampling, IV access for large volumes of fluids or drugs, TPN administration, dialysis, pacing, and other procedures such as placement of IVC filters or venous stents.

      When inserting a central line, it is ideal to use ultrasound guidance to ensure accurate placement. However, there are certain contraindications to central line insertion, including infection or injury to the planned access site, coagulopathy, thrombosis or stenosis of the intended vein, a combative patient, or raised intracranial pressure for jugular venous lines.

      The most common approaches for central line insertion are the internal jugular, subclavian, femoral, and PICC (peripherally inserted central catheter) veins. The internal jugular vein is often chosen due to its proximity to the carotid artery, but variations in anatomy can occur. Ultrasound can be used to identify the vessels and guide catheter placement, with the IJV typically lying superficial and lateral to the carotid artery. Compression and Valsalva maneuvers can help distinguish between arterial and venous structures, and doppler color flow can highlight the direction of flow.

      In terms of choosing a side for central line insertion, the right side is usually preferred to avoid the risk of injury to the thoracic duct and potential chylothorax. However, the left side can also be used depending on the clinical situation.

      Femoral central lines are another option for central venous access, with the catheter being inserted into the femoral vein in the groin. Local anesthesia is typically used to establish a field block, with lidocaine being the most commonly used agent. Lidocaine works by blocking sodium channels and preventing the propagation of action potentials.

      In summary, central venous catheters have various important uses and should ideally be inserted using ultrasound guidance. There are contraindications to their insertion, and different approaches can be used depending on the clinical situation. Local anesthesia is commonly used for central line insertion, with lidocaine being the preferred agent.

    • This question is part of the following fields:

      • Resus
      10.4
      Seconds
  • Question 2 - A 72 year old female is brought into the emergency department due to...

    Correct

    • A 72 year old female is brought into the emergency department due to near-fainting. Whilst in the department, the patient loses consciousness and upon examination, no pulse is detected. You begin cardiopulmonary resuscitation (CPR). Which two medications (aside from oxygen) are administered as part of the advanced life support resuscitation protocol?

      Your Answer: Adrenaline and amiodarone

      Explanation:

      According to the ALS algorithm, the main drugs used during CPR are oxygen, adrenaline, and amiodarone. Adrenaline is administered every 3-5 minutes as per the 2021 UK ALS algorithm. Amiodarone is given after 3 shocks.

      Further Reading:

      In the event of an adult experiencing cardiorespiratory arrest, it is crucial for doctors to be familiar with the Advanced Life Support (ALS) algorithm. They should also be knowledgeable about the proper technique for chest compressions, the appropriate rhythms for defibrillation, the reversible causes of arrest, and the drugs used in advanced life support.

      During chest compressions, the rate should be between 100-120 compressions per minute, with a depth of compression of 5-6 cm. The ratio of chest compressions to rescue breaths should be 30:2. It is important to change the person giving compressions regularly to prevent fatigue.

      There are two shockable ECG rhythms that doctors should be aware of: ventricular fibrillation (VF) and pulseless ventricular tachycardia (pVT). These rhythms require defibrillation.

      There are four reversible causes of cardiorespiratory arrest, known as the 4 H’s and 4 T’s. The 4 H’s include hypoxia, hypovolemia, hypo or hyperkalemia or metabolic abnormalities, and hypothermia. The 4 T’s include thrombosis (coronary or pulmonary), tension pneumothorax, tamponade, and toxins. Identifying and treating these reversible causes is crucial for successful resuscitation.

      When it comes to resus drugs, they are considered of secondary importance during CPR due to the lack of high-quality evidence for their efficacy. However, adrenaline (epinephrine) and amiodarone are the two drugs included in the ALS algorithm. Doctors should be familiar with the dosing, route, and timing of administration for both drugs.

      Adrenaline should be administered intravenously at a concentration of 1 in 10,000 (100 micrograms/mL). It should be repeated every 3-5 minutes. Amiodarone is initially given at a dose of 300 mg, either from a pre-filled syringe or diluted in 20 mL of Glucose 5%. If required, an additional dose of 150 mg can be given by intravenous injection. This is followed by an intravenous infusion of 900 mg over 24 hours. The first dose of amiodarone is given after 3 shocks.

    • This question is part of the following fields:

      • Resus
      10.8
      Seconds
  • Question 3 - A 35 year old male is brought into the emergency department with burns...

    Correct

    • A 35 year old male is brought into the emergency department with burns to the face and neck. It is decided to insert a central line into the femoral vein.

      What is the positioning of the femoral vein in relation to the femoral artery?

      Your Answer: The femoral vein lies immediately medial to the femoral artery

      Explanation:

      A central venous catheter (CVC) is a type of catheter that is inserted into a large vein in the body, typically in the neck, chest, or groin. It has several important uses, including CVP monitoring, pulmonary artery pressure monitoring, repeated blood sampling, IV access for large volumes of fluids or drugs, TPN administration, dialysis, pacing, and other procedures such as placement of IVC filters or venous stents.

      When inserting a central line, it is ideal to use ultrasound guidance to ensure accurate placement. However, there are certain contraindications to central line insertion, including infection or injury to the planned access site, coagulopathy, thrombosis or stenosis of the intended vein, a combative patient, or raised intracranial pressure for jugular venous lines.

      The most common approaches for central line insertion are the internal jugular, subclavian, femoral, and PICC (peripherally inserted central catheter) veins. The internal jugular vein is often chosen due to its proximity to the carotid artery, but variations in anatomy can occur. Ultrasound can be used to identify the vessels and guide catheter placement, with the IJV typically lying superficial and lateral to the carotid artery. Compression and Valsalva maneuvers can help distinguish between arterial and venous structures, and doppler color flow can highlight the direction of flow.

      In terms of choosing a side for central line insertion, the right side is usually preferred to avoid the risk of injury to the thoracic duct and potential chylothorax. However, the left side can also be used depending on the clinical situation.

      Femoral central lines are another option for central venous access, with the catheter being inserted into the femoral vein in the groin. Local anesthesia is typically used to establish a field block, with lidocaine being the most commonly used agent. Lidocaine works by blocking sodium channels and preventing the propagation of action potentials.

      In summary, central venous catheters have various important uses and should ideally be inserted using ultrasound guidance. There are contraindications to their insertion, and different approaches can be used depending on the clinical situation. Local anesthesia is commonly used for central line insertion, with lidocaine being the preferred agent.

    • This question is part of the following fields:

      • Resus
      12.2
      Seconds
  • Question 4 - You are summoned to the resuscitation room to provide assistance with a 68-year-old...

    Correct

    • You are summoned to the resuscitation room to provide assistance with a 68-year-old individual who is undergoing treatment for cardiac arrest. After three defibrillation attempts and the administration of adrenaline and amiodarone, the patient experiences a restoration of spontaneous circulation.

      What is the recommended target SpO2 following a cardiac arrest?

      Your Answer: 94-98%

      Explanation:

      The recommended target SpO2, which measures the percentage of oxygen saturation in the blood, following a cardiac arrest is 94-98%. This range ensures that the patient receives adequate oxygenation without the risk of hyperoxia, which is an excess of oxygen in the body.

      Further Reading:

      Cardiopulmonary arrest is a serious event with low survival rates. In non-traumatic cardiac arrest, only about 20% of patients who arrest as an in-patient survive to hospital discharge, while the survival rate for out-of-hospital cardiac arrest is approximately 8%. The Resus Council BLS/AED Algorithm for 2015 recommends chest compressions at a rate of 100-120 per minute with a compression depth of 5-6 cm. The ratio of chest compressions to rescue breaths is 30:2.

      After a cardiac arrest, the goal of patient care is to minimize the impact of post cardiac arrest syndrome, which includes brain injury, myocardial dysfunction, the ischaemic/reperfusion response, and the underlying pathology that caused the arrest. The ABCDE approach is used for clinical assessment and general management. Intubation may be necessary if the airway cannot be maintained by simple measures or if it is immediately threatened. Controlled ventilation is aimed at maintaining oxygen saturation levels between 94-98% and normocarbia. Fluid status may be difficult to judge, but a target mean arterial pressure (MAP) between 65 and 100 mmHg is recommended. Inotropes may be administered to maintain blood pressure. Sedation should be adequate to gain control of ventilation, and short-acting sedating agents like propofol are preferred. Blood glucose levels should be maintained below 8 mmol/l. Pyrexia should be avoided, and there is some evidence for controlled mild hypothermia but no consensus on this.

      Post ROSC investigations may include a chest X-ray, ECG monitoring, serial potassium and lactate measurements, and other imaging modalities like ultrasonography, echocardiography, CTPA, and CT head, depending on availability and skills in the local department. Treatment should be directed towards the underlying cause, and PCI or thrombolysis may be considered for acute coronary syndrome or suspected pulmonary embolism, respectively.

      Patients who are comatose after ROSC without significant pre-arrest comorbidities should be transferred to the ICU for supportive care. Neurological outcome at 72 hours is the best prognostic indicator of outcome.

    • This question is part of the following fields:

      • Resus
      11.8
      Seconds
  • Question 5 - You are requested to standby in the resuscitation bay as the paramedics are...

    Correct

    • You are requested to standby in the resuscitation bay as the paramedics are transporting a 70-year-old male who has experienced cardiac arrest at a shopping mall. What is the primary cause for the majority of out-of-hospital cardiac arrests?

      Your Answer: Cardiovascular disease

      Explanation:

      The primary cause for the majority of out-of-hospital cardiac arrests is cardiovascular disease. This refers to conditions that affect the heart and blood vessels, such as coronary artery disease, heart attacks, and arrhythmias. These conditions can lead to sudden cardiac arrest.

      Further Reading:

      Cardiopulmonary arrest is a serious event with low survival rates. In non-traumatic cardiac arrest, only about 20% of patients who arrest as an in-patient survive to hospital discharge, while the survival rate for out-of-hospital cardiac arrest is approximately 8%. The Resus Council BLS/AED Algorithm for 2015 recommends chest compressions at a rate of 100-120 per minute with a compression depth of 5-6 cm. The ratio of chest compressions to rescue breaths is 30:2.

      After a cardiac arrest, the goal of patient care is to minimize the impact of post cardiac arrest syndrome, which includes brain injury, myocardial dysfunction, the ischaemic/reperfusion response, and the underlying pathology that caused the arrest. The ABCDE approach is used for clinical assessment and general management. Intubation may be necessary if the airway cannot be maintained by simple measures or if it is immediately threatened. Controlled ventilation is aimed at maintaining oxygen saturation levels between 94-98% and normocarbia. Fluid status may be difficult to judge, but a target mean arterial pressure (MAP) between 65 and 100 mmHg is recommended. Inotropes may be administered to maintain blood pressure. Sedation should be adequate to gain control of ventilation, and short-acting sedating agents like propofol are preferred. Blood glucose levels should be maintained below 8 mmol/l. Pyrexia should be avoided, and there is some evidence for controlled mild hypothermia but no consensus on this.

      Post ROSC investigations may include a chest X-ray, ECG monitoring, serial potassium and lactate measurements, and other imaging modalities like ultrasonography, echocardiography, CTPA, and CT head, depending on availability and skills in the local department. Treatment should be directed towards the underlying cause, and PCI or thrombolysis may be considered for acute coronary syndrome or suspected pulmonary embolism, respectively.

      Patients who are comatose after ROSC without significant pre-arrest comorbidities should be transferred to the ICU for supportive care. Neurological outcome at 72 hours is the best prognostic indicator of outcome.

    • This question is part of the following fields:

      • Resus
      7.3
      Seconds
  • Question 6 - A 30-year-old woman is brought into resus following a car accident. She is...

    Incorrect

    • A 30-year-old woman is brought into resus following a car accident. She is experiencing difficulty breathing, and you are unable to hear breath sounds on the left-hand side. Her trachea is deviated to the right, and her neck veins are distended. You make a clinical diagnosis of a tension pneumothorax and decide to perform a needle thoracocentesis.
      At which anatomical landmark should this procedure be performed?

      Your Answer: 2nd intercostal space midclavicular line

      Correct Answer: 5th intercostal space midaxillary line

      Explanation:

      A tension pneumothorax occurs when there is an air leak from the lung or chest wall that acts like a one-way valve. This causes air to build up in the pleural space without any way to escape. As a result, pressure in the pleural space increases and pushes the mediastinum into the opposite hemithorax. If left untreated, this can lead to cardiovascular instability, shock, and cardiac arrest.

      The clinical features of tension pneumothorax include respiratory distress and cardiovascular instability. Tracheal deviation away from the side of the injury, unilateral absence of breath sounds on the affected side, and a hyper-resonant percussion note are also characteristic. Other signs include distended neck veins and cyanosis, which is a late sign. It’s important to note that both tension pneumothorax and massive haemothorax can cause decreased breath sounds on auscultation. However, percussion can help differentiate between the two conditions. Hyper-resonance suggests tension pneumothorax, while dullness suggests a massive haemothorax.

      Tension pneumothorax is a clinical diagnosis and should not be delayed for radiological confirmation. Requesting a chest X-ray in this situation can delay treatment and put the patient at risk. Immediate decompression through needle thoracocentesis is the recommended treatment. Traditionally, a large-bore needle or cannula is inserted into the 2nd intercostal space in the midclavicular line of the affected hemithorax. However, studies on cadavers have shown better success in reaching the thoracic cavity when the 4th or 5th intercostal space in the midaxillary line is used in adult patients. ATLS now recommends this location for needle decompression in adults. The site for needle thoracocentesis in children remains the same, using the 2nd intercostal space in the midclavicular line. It’s important to remember that needle thoracocentesis is a temporary measure, and the insertion of a chest drain is the definitive treatment.

    • This question is part of the following fields:

      • Resus
      21.1
      Seconds
  • Question 7 - You are treating a 32-year-old woman with septic shock in resus. She is...

    Correct

    • You are treating a 32-year-old woman with septic shock in resus. She is reviewed by the on-call intensive care team, and a decision is made to place a central venous catheter.
      Which of the surface anatomy landmarks will be most useful in placing the central venous catheter?

      Your Answer: The two lower heads of the sternocleidomastoid muscle

      Explanation:

      The internal jugular vein is a significant vein located close to the surface of the body. It is often chosen for the insertion of central venous catheters due to its accessibility. To locate the vein, a needle is inserted into the middle of a triangular area formed by the lower heads of the sternocleidomastoid muscle and the clavicle. It is important to palpate the carotid artery to ensure that the needle is inserted to the side of the artery.

    • This question is part of the following fields:

      • Resus
      20.1
      Seconds
  • Question 8 - A 65 year old female is brought into the hospital after experiencing a...

    Correct

    • A 65 year old female is brought into the hospital after experiencing a cardiac arrest at the nearby soccer field where she was watching a game. The patient was promptly assessed by the medical team at the field and received a shock from an automated defibrillator device, leading to a return of spontaneous circulation.

      Your consultant informs you that the objective now is to minimize the severity of the post-cardiac arrest syndrome. Which of the following is NOT one of the four elements of the post-cardiac arrest syndrome?

      Your Answer: Post-cardiac arrest renal dysfunction

      Explanation:

      The post-cardiac arrest syndrome consists of four components. The first component is post-cardiac arrest brain injury, which refers to any damage or impairment to the brain that occurs after a cardiac arrest. The second component is post-cardiac arrest myocardial dysfunction, which is a condition where the heart muscle does not function properly after a cardiac arrest.

      Further Reading:

      Cardiopulmonary arrest is a serious event with low survival rates. In non-traumatic cardiac arrest, only about 20% of patients who arrest as an in-patient survive to hospital discharge, while the survival rate for out-of-hospital cardiac arrest is approximately 8%. The Resus Council BLS/AED Algorithm for 2015 recommends chest compressions at a rate of 100-120 per minute with a compression depth of 5-6 cm. The ratio of chest compressions to rescue breaths is 30:2.

      After a cardiac arrest, the goal of patient care is to minimize the impact of post cardiac arrest syndrome, which includes brain injury, myocardial dysfunction, the ischaemic/reperfusion response, and the underlying pathology that caused the arrest. The ABCDE approach is used for clinical assessment and general management. Intubation may be necessary if the airway cannot be maintained by simple measures or if it is immediately threatened. Controlled ventilation is aimed at maintaining oxygen saturation levels between 94-98% and normocarbia. Fluid status may be difficult to judge, but a target mean arterial pressure (MAP) between 65 and 100 mmHg is recommended. Inotropes may be administered to maintain blood pressure. Sedation should be adequate to gain control of ventilation, and short-acting sedating agents like propofol are preferred. Blood glucose levels should be maintained below 8 mmol/l. Pyrexia should be avoided, and there is some evidence for controlled mild hypothermia but no consensus on this.

      Post ROSC investigations may include a chest X-ray, ECG monitoring, serial potassium and lactate measurements, and other imaging modalities like ultrasonography, echocardiography, CTPA, and CT head, depending on availability and skills in the local department. Treatment should be directed towards the underlying cause, and PCI or thrombolysis may be considered for acute coronary syndrome or suspected pulmonary embolism, respectively.

      Patients who are comatose after ROSC without significant pre-arrest comorbidities should be transferred to the ICU for supportive care. Neurological outcome at 72 hours is the best prognostic indicator of outcome.

    • This question is part of the following fields:

      • Resus
      13.5
      Seconds
  • Question 9 - You are resuscitating a trauma patient who is 42 years old and your...

    Correct

    • You are resuscitating a trauma patient who is 42 years old and your consultant asks you to perform a central venous catheter insertion. During your discussion, you consider which approach carries the greatest risk of pneumothorax.

      Your Answer: Subclavian

      Explanation:

      The subclavian approach for central lines carries the highest risk of pneumothorax. However, it does have advantages such as being accessible during airway control and having easily identifiable landmarks for insertion, even in obese patients. It is important to note that the carotid is not used for CVC’s.

      Further Reading:

      A central venous catheter (CVC) is a type of catheter that is inserted into a large vein in the body, typically in the neck, chest, or groin. It has several important uses, including CVP monitoring, pulmonary artery pressure monitoring, repeated blood sampling, IV access for large volumes of fluids or drugs, TPN administration, dialysis, pacing, and other procedures such as placement of IVC filters or venous stents.

      When inserting a central line, it is ideal to use ultrasound guidance to ensure accurate placement. However, there are certain contraindications to central line insertion, including infection or injury to the planned access site, coagulopathy, thrombosis or stenosis of the intended vein, a combative patient, or raised intracranial pressure for jugular venous lines.

      The most common approaches for central line insertion are the internal jugular, subclavian, femoral, and PICC (peripherally inserted central catheter) veins. The internal jugular vein is often chosen due to its proximity to the carotid artery, but variations in anatomy can occur. Ultrasound can be used to identify the vessels and guide catheter placement, with the IJV typically lying superficial and lateral to the carotid artery. Compression and Valsalva maneuvers can help distinguish between arterial and venous structures, and doppler color flow can highlight the direction of flow.

      In terms of choosing a side for central line insertion, the right side is usually preferred to avoid the risk of injury to the thoracic duct and potential chylothorax. However, the left side can also be used depending on the clinical situation.

      Femoral central lines are another option for central venous access, with the catheter being inserted into the femoral vein in the groin. Local anesthesia is typically used to establish a field block, with lidocaine being the most commonly used agent. Lidocaine works by blocking sodium channels and preventing the propagation of action potentials.

      In summary, central venous catheters have various important uses and should ideally be inserted using ultrasound guidance. There are contraindications to their insertion, and different approaches can be used depending on the clinical situation. Local anesthesia is commonly used for central line insertion, with lidocaine being the preferred agent.

    • This question is part of the following fields:

      • Resus
      10.8
      Seconds
  • Question 10 - A 65 year old male is brought into the emergency department following a...

    Incorrect

    • A 65 year old male is brought into the emergency department following a fall with a suspected fracture of the hip. You gather a 20 gauge cannula for administration of IV fluids and pain relief. What would be considered the best approach for preparing the skin before cannulation?

      Your Answer: Skin cleaned for 30 seconds with 90% isopropyl alcohol

      Correct Answer: Skin cleaned for 30 seconds with 2% chlorhexidine gluconate in 70% alcohol

      Explanation:

      To minimize the risk of infection and promote proper healing, the best approach for preparing the skin would be to clean it for 30 seconds with 2% chlorhexidine gluconate in 70% alcohol. This solution has been shown to effectively kill bacteria and reduce the risk of infection. Other options such as povidone-iodine, 90% isopropyl alcohol, and 30% isopropyl alcohol may also have some antimicrobial properties, but they are not as effective as chlorhexidine gluconate.

      Further Reading:

      Peripheral venous cannulation is a procedure that should be performed following established guidelines to minimize the risk of infection, injury, extravasation, and early failure of the cannula. It is important to maintain good hand hygiene, use personal protective equipment, ensure sharps safety, and employ an aseptic non-touch technique during the procedure.

      According to the National Institute for Health and Care Excellence (NICE), the skin should be disinfected with a solution of 2% chlorhexidine gluconate and 70% alcohol before inserting the catheter. It is crucial to allow the disinfectant to completely dry before inserting the cannula.

      The flow rates of IV cannulas can vary depending on factors such as the gauge, color, type of fluid used, presence of a bio-connector, length of the cannula, and whether the fluid is drained under gravity or pumped under pressure. However, the following are typical flow rates for different gauge sizes: 14 gauge (orange) has a flow rate of 270 ml/minute, 16 gauge (grey) has a flow rate of 180 ml/minute, 18 gauge (green) has a flow rate of 90 ml/minute, 20 gauge (pink) has a flow rate of 60 ml/minute, and 22 gauge (blue) has a flow rate of 36 ml/minute. These flow rates are based on infusing 1000 ml of normal saline under ideal circumstances, but they may vary in practice.

    • This question is part of the following fields:

      • Resus
      26.2
      Seconds

SESSION STATS - PERFORMANCE PER SPECIALTY

Resus (8/10) 80%
Passmed