00
Correct
00
Incorrect
00 : 00 : 00
Session Time
00 : 00
Average Question Time ( Mins)
  • Question 1 - A 35-year-old woman is involved in a car accident. Her observations are taken...

    Correct

    • A 35-year-old woman is involved in a car accident. Her observations are taken one hour after arriving in the Emergency Department. Her pulse rate is 110 bpm, BP is 120/80 mmHg, respiratory rate 20 breaths/minute, and her urine output over the past hour has been 30 ml. She is currently mildly anxious. The patient weighs approximately 65 kg.
      How would you classify her haemorrhage according to the ATLS haemorrhagic shock classification?

      Your Answer: Class II

      Explanation:

      This patient is showing a slightly elevated heart rate and respiratory rate, as well as a slightly reduced urine output. These signs indicate that the patient has experienced a class II haemorrhage at this point. It is important to be able to recognize the degree of blood loss based on vital sign and mental status abnormalities. The Advanced Trauma Life Support (ATLS) haemorrhagic shock classification provides a way to link the amount of blood loss to expected physiological responses in a healthy 70 kg patient. In a 70 kg male patient, the total circulating blood volume is approximately five liters, which accounts for about 7% of their total body weight.

      The ATLS haemorrhagic shock classification is summarized as follows:

      CLASS I:
      – Blood loss: Up to 750 mL
      – Blood loss (% blood volume): Up to 15%
      – Pulse rate: Less than 100 bpm
      – Systolic BP: Normal
      – Pulse pressure: Normal (or increased)
      – Respiratory rate: 14-20 breaths per minute
      – Urine output: Greater than 30 mL/hr
      – CNS/mental status: Slightly anxious

      CLASS II:
      – Blood loss: 750-1500 mL
      – Blood loss (% blood volume): 15-30%
      – Pulse rate: 100-120 bpm
      – Systolic BP: Normal
      – Pulse pressure: Decreased
      – Respiratory rate: 20-30 breaths per minute
      – Urine output: 20-30 mL/hr
      – CNS/mental status: Mildly anxious

      CLASS III:
      – Blood loss: 1500-2000 mL
      – Blood loss (% blood volume): 30-40%
      – Pulse rate: 120-140 bpm
      – Systolic BP: Decreased
      – Pulse pressure: Decreased
      – Respiratory rate: 30-40 breaths per minute
      – Urine output: 5-15 mL/hr
      – CNS/mental status: Anxious, confused

      CLASS IV:
      – Blood loss: More than 2000 mL
      – Blood loss (% blood volume): More than 40%
      – Pulse rate: More than 140 bpm
      – Systolic BP: Decreased
      – Pulse pressure: Decreased
      – Respiratory rate: More than 40 breaths per minute
      – Urine output: Negligible
      – CNS/mental status: Confused, lethargic

    • This question is part of the following fields:

      • Trauma
      11.4
      Seconds
  • Question 2 - A 42-year-old woman was involved in a car accident where her car collided...

    Correct

    • A 42-year-old woman was involved in a car accident where her car collided with a tree at high speed. She was not wearing a seatbelt and was thrown forward onto the steering wheel of her car. She has severe bruising over her anterior chest wall and is experiencing chest pain. A chest X-ray reveals a significantly widened mediastinum, deviation of the trachea to the left, and fractures of the third and fourth ribs. Her vital signs are HR 88, BP 130/78, SaO2 98% on high flow oxygen.

      At which anatomical site is an injury MOST likely to have occurred in this case?

      Your Answer: Near the ligamentum arteriosum

      Explanation:

      Traumatic aortic rupture is a relatively common cause of sudden death following major trauma, especially high-speed road traffic accidents (RTAs). It is estimated that 15-20% of deaths from RTAs are due to this injury. If the aortic rupture is promptly recognized and treated, patients who survive the initial injury can fully recover.

      Surviving patients often have an incomplete laceration near the ligamentum arteriosum of the aorta. The continuity is maintained by either an intact adventitial layer or a contained mediastinal hematoma, which prevents immediate exsanguination and death.

      Detecting traumatic aortic rupture can be challenging as many patients do not exhibit specific symptoms, and other injuries may also be present, making the diagnosis unclear.

      Chest X-ray findings can aid in the diagnosis and include fractures of the 1st and 2nd ribs, a grossly widened mediastinum, a hazy left lung field, obliteration of the aortic knob, deviation of the trachea to the right, presence of a pleural cap, elevation and rightward shift of the right mainstem bronchus, depression of the left mainstem bronchus, obliteration of the space between the pulmonary artery and aorta, and deviation of the esophagus (or NG tube) to the right.

      Helical contrast-enhanced CT scanning is highly sensitive and specific for detecting aortic rupture, but it should only be performed on hemodynamically stable patients.

      Treatment options include primary repair or resection of the torn segment with replacement using an interposition graft. Endovascular repair is also now considered an acceptable alternative approach.

    • This question is part of the following fields:

      • Trauma
      337
      Seconds
  • Question 3 - A 32-year-old construction worker is brought into the emergency department with burns to...

    Correct

    • A 32-year-old construction worker is brought into the emergency department with burns to the right forearm. The patient explains that he was smoking a cigarette while driving back from work when the cigarette accidentally fell onto his arm, igniting his sleeve which might have been soaked in gasoline from work. You observe circumferential burns encompassing the entire right forearm. What would be your primary concern regarding potential complications?

      Your Answer: Compartment syndrome

      Explanation:

      Compartment syndrome can occur when there are circumferential burns on the arms or legs. This typically happens with full thickness burns, where the burnt skin becomes stiff and compresses the compartment, making it difficult for blood to flow out. To treat this condition, escharotomy and possibly fasciotomy may be necessary.

      Further Reading:

      Burn injuries can be classified based on their type (degree, partial thickness or full thickness), extent as a percentage of total body surface area (TBSA), and severity (minor, moderate, major/severe). Severe burns are defined as a >10% TBSA in a child and >15% TBSA in an adult.

      When assessing a burn, it is important to consider airway injury, carbon monoxide poisoning, type of burn, extent of burn, special considerations, and fluid status. Special considerations may include head and neck burns, circumferential burns, thorax burns, electrical burns, hand burns, and burns to the genitalia.

      Airway management is a priority in burn injuries. Inhalation of hot particles can cause damage to the respiratory epithelium and lead to airway compromise. Signs of inhalation injury include visible burns or erythema to the face, soot around the nostrils and mouth, burnt/singed nasal hairs, hoarse voice, wheeze or stridor, swollen tissues in the mouth or nostrils, and tachypnea and tachycardia. Supplemental oxygen should be provided, and endotracheal intubation may be necessary if there is airway obstruction or impending obstruction.

      The initial management of a patient with burn injuries involves conserving body heat, covering burns with clean or sterile coverings, establishing IV access, providing pain relief, initiating fluid resuscitation, measuring urinary output with a catheter, maintaining nil by mouth status, closely monitoring vital signs and urine output, monitoring the airway, preparing for surgery if necessary, and administering medications.

      Burns can be classified based on the depth of injury, ranging from simple erythema to full thickness burns that penetrate into subcutaneous tissue. The extent of a burn can be estimated using methods such as the rule of nines or the Lund and Browder chart, which takes into account age-specific body proportions.

      Fluid management is crucial in burn injuries due to significant fluid losses. Evaporative fluid loss from burnt skin and increased permeability of blood vessels can lead to reduced intravascular volume and tissue perfusion. Fluid resuscitation should be aggressive in severe burns, while burns <15% in adults and <10% in children may not require immediate fluid resuscitation. The Parkland formula can be used to calculate the intravenous fluid requirements for someone with a significant burn injury.

    • This question is part of the following fields:

      • Trauma
      11.9
      Seconds
  • Question 4 - 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. The anesthesiologist has tried to intubate her but is unsuccessful and decides to perform a surgical cricothyroidotomy.

      Which of the following statements about surgical cricothyroidotomy is correct?

      Your Answer: It is contraindicated in the presence of a laryngeal fracture

      Explanation:

      A surgical cricothyroidotomy is a procedure performed in emergency situations to secure the airway by making an incision in the cricothyroid membrane. It is also known as an emergency surgical airway (ESA) and is typically done when intubation and oxygenation are not possible.

      There are certain conditions in which a surgical cricothyroidotomy should not be performed. These include patients who are under 12 years old, those with laryngeal fractures or pre-existing or acute laryngeal pathology, individuals with tracheal transection and retraction of the trachea into the mediastinum, and cases where the anatomical landmarks are obscured due to trauma.

      The procedure is carried out in the following steps:
      1. Gathering and preparing the necessary equipment.
      2. Positioning the patient on their back with the neck in a neutral position.
      3. Sterilizing the patient’s neck using antiseptic swabs.
      4. Administering local anesthesia, if time permits.
      5. Locating the cricothyroid membrane, which is situated between the thyroid and cricoid cartilage.
      6. Stabilizing the trachea with the left hand until it can be intubated.
      7. Making a transverse incision through the cricothyroid membrane.
      8. Inserting the scalpel handle into the incision and rotating it 90°. Alternatively, a haemostat can be used to open the airway.
      9. Placing a properly-sized, cuffed endotracheal tube (usually a size 5 or 6) into the incision, directing it into the trachea.
      10. Inflating the cuff and providing ventilation.
      11. Monitoring for chest rise and auscultating the chest to ensure adequate ventilation.
      12. Securing the airway to prevent displacement.

      Potential complications of a surgical cricothyroidotomy include aspiration of blood, creation of a false passage into the tissues, subglottic stenosis or edema, laryngeal stenosis, hemorrhage or hematoma formation, laceration of the esophagus or trachea, mediastinal emphysema, and vocal cord paralysis or hoarseness.

    • This question is part of the following fields:

      • Trauma
      30.5
      Seconds
  • Question 5 - A 25-year-old woman is stabbed in the chest during a fight outside a...

    Correct

    • A 25-year-old woman is stabbed in the chest during a fight outside a bar. A FAST scan is conducted, revealing the presence of free fluid in the chest cavity.

      Which of the following organs is most likely to be damaged in this scenario?

      Your Answer: Liver

      Explanation:

      Stab wounds to the abdomen result in tissue damage through laceration and cutting. When patients experience penetrating abdominal trauma due to stab wounds, the organs that are most commonly affected include the liver (40% of cases), small bowel (30% of cases), diaphragm (20% of cases), and colon (15% of cases). These statistics are derived from the latest edition of the ATLS manual.

    • This question is part of the following fields:

      • Trauma
      22.1
      Seconds
  • Question 6 - A 47-year-old man with a past medical history of alcohol-related visits to the...

    Correct

    • A 47-year-old man with a past medical history of alcohol-related visits to the emergency department presents to the ED after falling while intoxicated. He has a 6 cm laceration on the occipital region of his scalp. You examine the wound under local anesthesia. As you remove the dressing and clean away a significant blood clot, you notice pulsatile bleeding from the wound. Which arteries provide blood supply to the posterior scalp?

      Your Answer: External carotid

      Explanation:

      The scalp is primarily supplied with blood from branches of the external carotid artery. The posterior half of the scalp is specifically supplied by three branches of the external carotid artery. These branches are the superficial temporal artery, which supplies blood to the frontal and temporal regions of the scalp, the posterior auricular artery, which supplies blood to the area above and behind the external ear, and the occipital artery, which supplies blood to the back of the scalp.

      Further Reading:

      The scalp is the area of the head that is bordered by the face in the front and the neck on the sides and back. It consists of several layers, including the skin, connective tissue, aponeurosis, loose connective tissue, and periosteum of the skull. These layers provide protection and support to the underlying structures of the head.

      The blood supply to the scalp primarily comes from branches of the external carotid artery and the ophthalmic artery, which is a branch of the internal carotid artery. These arteries provide oxygen and nutrients to the scalp tissues.

      The scalp also has a complex venous drainage system, which is divided into superficial and deep networks. The superficial veins correspond to the arterial branches and are responsible for draining blood from the scalp. The deep venous network is drained by the pterygoid venous plexus.

      In terms of innervation, the scalp receives sensory input from branches of the trigeminal nerve and the cervical nerves. These nerves transmit sensory information from the scalp to the brain, allowing us to perceive touch, pain, and temperature in this area.

    • This question is part of the following fields:

      • Trauma
      6.8
      Seconds
  • Question 7 - A 32 year old woman is brought into the emergency department with burns...

    Correct

    • A 32 year old woman is brought into the emergency department with burns to her chest and arms. The patient was trying to handle a grease fire but accidentally spilled the burning contents onto herself. Your consultant requests you to evaluate the severity of the burns. What is used to estimate the extent of a burn injury?

      Your Answer: Lund and Browder chart

      Explanation:

      TBSA, or Total Body Surface Area, is a method commonly used to estimate the size of small burns and very large burns by including the area of unburnt skin. However, it is not considered a reliable method for medium-sized burns.

      Further Reading:

      Burn injuries can be classified based on their type (degree, partial thickness or full thickness), extent as a percentage of total body surface area (TBSA), and severity (minor, moderate, major/severe). Severe burns are defined as a >10% TBSA in a child and >15% TBSA in an adult.

      When assessing a burn, it is important to consider airway injury, carbon monoxide poisoning, type of burn, extent of burn, special considerations, and fluid status. Special considerations may include head and neck burns, circumferential burns, thorax burns, electrical burns, hand burns, and burns to the genitalia.

      Airway management is a priority in burn injuries. Inhalation of hot particles can cause damage to the respiratory epithelium and lead to airway compromise. Signs of inhalation injury include visible burns or erythema to the face, soot around the nostrils and mouth, burnt/singed nasal hairs, hoarse voice, wheeze or stridor, swollen tissues in the mouth or nostrils, and tachypnea and tachycardia. Supplemental oxygen should be provided, and endotracheal intubation may be necessary if there is airway obstruction or impending obstruction.

      The initial management of a patient with burn injuries involves conserving body heat, covering burns with clean or sterile coverings, establishing IV access, providing pain relief, initiating fluid resuscitation, measuring urinary output with a catheter, maintaining nil by mouth status, closely monitoring vital signs and urine output, monitoring the airway, preparing for surgery if necessary, and administering medications.

      Burns can be classified based on the depth of injury, ranging from simple erythema to full thickness burns that penetrate into subcutaneous tissue. The extent of a burn can be estimated using methods such as the rule of nines or the Lund and Browder chart, which takes into account age-specific body proportions.

      Fluid management is crucial in burn injuries due to significant fluid losses. Evaporative fluid loss from burnt skin and increased permeability of blood vessels can lead to reduced intravascular volume and tissue perfusion. Fluid resuscitation should be aggressive in severe burns, while burns <15% in adults and <10% in children may not require immediate fluid resuscitation. The Parkland formula can be used to calculate the intravenous fluid requirements for someone with a significant burn injury.

    • This question is part of the following fields:

      • Trauma
      7.7
      Seconds
  • Question 8 - A 45-year-old individual is brought into the emergency department following a head injury...

    Correct

    • A 45-year-old individual is brought into the emergency department following a head injury from a ladder fall. The patient's condition worsens. You proceed to re-evaluate the patient's GCS. At what GCS range is intubation recommended?

      Your Answer: 8 or less

      Explanation:

      Intubation is necessary for patients with a compromised airway. In comatose patients, a Glasgow Coma Scale (GCS) score of 8 or less indicates the need for intubation. According to NICE guidelines, immediate intubation and ventilation are advised in cases of coma where the patient is not responsive to commands, not speaking, and not opening their eyes. Other indications for intubation include the loss of protective laryngeal reflexes, ventilatory insufficiency as indicated by abnormal blood gases, spontaneous hyperventilation, irregular respirations, significantly deteriorating conscious level, unstable fractures of the facial skeleton, copious bleeding into the mouth, and seizures. In certain cases, intubation and ventilation should be performed before the patient begins their journey.

      Further Reading:

      Indications for CT Scanning in Head Injuries (Adults):
      – CT head scan should be performed within 1 hour if any of the following features are present:
      – GCS < 13 on initial assessment in the ED
      – GCS < 15 at 2 hours after the injury on assessment in the ED
      – Suspected open or depressed skull fracture
      – Any sign of basal skull fracture (haemotympanum, ‘panda’ eyes, cerebrospinal fluid leakage from the ear or nose, Battle’s sign)
      – Post-traumatic seizure
      – New focal neurological deficit
      – > 1 episode of vomiting

      Indications for CT Scanning in Head Injuries (Children):
      – CT head scan should be performed within 1 hour if any of the features in List 1 are present:
      – Suspicion of non-accidental injury
      – Post-traumatic seizure but no history of epilepsy
      – GCS < 14 on initial assessment in the ED for children more than 1 year of age
      – Paediatric GCS < 15 on initial assessment in the ED for children under 1 year of age
      – At 2 hours after the injury, GCS < 15
      – Suspected open or depressed skull fracture or tense fontanelle
      – Any sign of basal skull fracture (haemotympanum, ‘panda’ eyes, cerebrospinal fluid leakage from the ear or nose, Battle’s sign)
      – New focal neurological deficit
      – For children under 1 year, presence of bruise, swelling or laceration of more than 5 cm on the head

      – CT head scan should be performed within 1 hour if none of the above features are present but two or more of the features in List 2 are present:
      – Loss of consciousness lasting more than 5 minutes (witnessed)
      – Abnormal drowsiness
      – Three or more discrete episodes of vomiting
      – Dangerous mechanism of injury (high-speed road traffic accident, fall from a height)

    • This question is part of the following fields:

      • Trauma
      5.3
      Seconds
  • Question 9 - You are managing a 35 year old patient with severe burns. You determine...

    Correct

    • You are managing a 35 year old patient with severe burns. You determine that the patient needs urgent fluid replacement. The patient weighs 75 kg and has burns covering 15% of their total body surface area. How much fluid should be administered to the patient over a 24-hour period?

      Your Answer: 6400 ml

      Explanation:

      To calculate the total fluid requirement over 24 hours, you need to multiply the TBSA (Total Body Surface Area) by the weight in kilograms. In this particular case, the calculation would be 4 multiplied by 20 multiplied by 80, resulting in a total of 6400 milliliters.

      Further Reading:

      Burn injuries can be classified based on their type (degree, partial thickness or full thickness), extent as a percentage of total body surface area (TBSA), and severity (minor, moderate, major/severe). Severe burns are defined as a >10% TBSA in a child and >15% TBSA in an adult.

      When assessing a burn, it is important to consider airway injury, carbon monoxide poisoning, type of burn, extent of burn, special considerations, and fluid status. Special considerations may include head and neck burns, circumferential burns, thorax burns, electrical burns, hand burns, and burns to the genitalia.

      Airway management is a priority in burn injuries. Inhalation of hot particles can cause damage to the respiratory epithelium and lead to airway compromise. Signs of inhalation injury include visible burns or erythema to the face, soot around the nostrils and mouth, burnt/singed nasal hairs, hoarse voice, wheeze or stridor, swollen tissues in the mouth or nostrils, and tachypnea and tachycardia. Supplemental oxygen should be provided, and endotracheal intubation may be necessary if there is airway obstruction or impending obstruction.

      The initial management of a patient with burn injuries involves conserving body heat, covering burns with clean or sterile coverings, establishing IV access, providing pain relief, initiating fluid resuscitation, measuring urinary output with a catheter, maintaining nil by mouth status, closely monitoring vital signs and urine output, monitoring the airway, preparing for surgery if necessary, and administering medications.

      Burns can be classified based on the depth of injury, ranging from simple erythema to full thickness burns that penetrate into subcutaneous tissue. The extent of a burn can be estimated using methods such as the rule of nines or the Lund and Browder chart, which takes into account age-specific body proportions.

      Fluid management is crucial in burn injuries due to significant fluid losses. Evaporative fluid loss from burnt skin and increased permeability of blood vessels can lead to reduced intravascular volume and tissue perfusion. Fluid resuscitation should be aggressive in severe burns, while burns <15% in adults and <10% in children may not require immediate fluid resuscitation. The Parkland formula can be used to calculate the intravenous fluid requirements for someone with a significant burn injury.

    • This question is part of the following fields:

      • Trauma
      143.1
      Seconds
  • Question 10 - A 42-year-old woman is brought in by ambulance following a high-speed car accident....

    Correct

    • A 42-year-old woman is brought in by ambulance following a high-speed car accident. There was a prolonged extraction at the scene, and a full trauma call is made. She is disoriented and slightly restless. Her vital signs are as follows: heart rate 125, blood pressure 83/45, oxygen saturation 98% on high-flow oxygen, respiratory rate 31, temperature 36.1°C. Her capillary refill time is 5 seconds, and her extremities appear pale and cool to the touch. Her cervical spine is immobilized with triple precautions. The airway is clear, and her chest examination is normal. Two large-bore needles have been inserted in her antecubital fossa, and a complete set of blood tests, including a request for a cross-match, has been sent to the laboratory. She experiences significant tenderness in the suprapubic area upon abdominal palpation, and noticeable bruising is evident around her pelvis. A pelvic X-ray reveals a vertical shear type pelvic fracture.
      What approximate percentage of her circulatory volume has she lost?

      Your Answer: 30-40%

      Explanation:

      This patient is currently experiencing moderate shock, classified as class III. This level of shock corresponds to a loss of 30-40% of their circulatory volume, which is equivalent to a blood loss of 1500-2000 mL.

      Hemorrhage can be categorized into four different classes based on physiological parameters and clinical signs. These classes are classified as class I, class II, class III, and class IV.

      In class I hemorrhage, the blood loss is up to 750 mL or up to 15% of the blood volume. The pulse rate is less than 100 beats per minute, and the systolic blood pressure is normal. The pulse pressure may be normal or increased, and the respiratory rate is within the range of 14-20 breaths per minute. The urine output is greater than 30 mL per hour, and the patient’s CNS/mental status is slightly anxious.

      In class II hemorrhage, the blood loss ranges from 750-1500 mL or 15-30% of the blood volume. The pulse rate is between 100-120 beats per minute, and the systolic blood pressure remains normal. The pulse pressure is decreased, and the respiratory rate increases to 20-30 breaths per minute. The urine output decreases to 20-30 mL per hour, and the patient may experience mild anxiety.

      The patient in this case is in class III hemorrhage, with a blood loss of 1500-2000 mL or 30-40% of the blood volume. The pulse rate is elevated, ranging from 120-140 beats per minute, and the systolic blood pressure is decreased. The pulse pressure is also decreased, and the respiratory rate is elevated to 30-40 breaths per minute. The urine output decreases significantly to 5-15 mL per hour, and the patient may experience anxiety and confusion.

      Class IV hemorrhage represents the most severe level of blood loss, with a loss of over 40% of the blood volume. The pulse rate is greater than 140 beats per minute, and the systolic blood pressure is significantly decreased. The pulse pressure is decreased, and the respiratory rate is over 40 breaths per minute. The urine output becomes negligible, and the patient may become confused and lethargic.

    • This question is part of the following fields:

      • Trauma
      53.7
      Seconds

SESSION STATS - PERFORMANCE PER SPECIALTY

Trauma (10/10) 100%
Passmed