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  • Question 1 - You are evaluating a 25-year-old patient who has arrived at the emergency department...

    Incorrect

    • You are evaluating a 25-year-old patient who has arrived at the emergency department by ambulance following a fall from a second-floor balcony. The patient reports experiencing upper abdominal discomfort, which raises concerns about potential hepatic and splenic injuries. In the trauma setting, which imaging modality would be considered the gold standard for assessing these organs?

      Your Answer: Ultrasound

      Correct Answer: Computerised tomography

      Explanation:

      CT scan is considered the most reliable imaging technique for diagnosing intra-abdominal conditions. It is also considered the gold standard for evaluating organ damage. However, it is crucial to carefully consider the specific circumstances before using CT scan, as it may not be suitable for unstable patients or those who clearly require immediate surgical intervention. In such cases, other methods like FAST can be used to detect fluid in the abdominal cavity, although it is not as accurate in assessing injuries to solid organs or hollow structures within the abdomen.

      Further Reading:

      Abdominal trauma can be classified into two categories: blunt trauma and penetrating trauma. Blunt trauma occurs when compressive or deceleration forces are applied to the abdomen, often resulting from road traffic accidents or direct blows during sports. The spleen and liver are the organs most commonly injured in blunt abdominal trauma. On the other hand, penetrating trauma involves injuries that pierce the skin and enter the abdominal cavity, such as stabbings, gunshot wounds, or industrial accidents. The bowel and liver are the organs most commonly affected in penetrating injuries.

      When it comes to imaging in blunt abdominal trauma, there are three main modalities that are commonly used: focused assessment with sonography in trauma (FAST), diagnostic peritoneal lavage (DPL), and computed tomography (CT). FAST is a non-invasive and quick method used to detect free intraperitoneal fluid, aiding in the decision on whether a laparotomy is needed. DPL is also used to detect intraperitoneal blood and can be used in both unstable blunt abdominal trauma and penetrating abdominal trauma. However, it is more invasive and time-consuming compared to FAST and has largely been replaced by it. CT, on the other hand, is the gold standard for diagnosing intra-abdominal pathology and is used in stable abdominal trauma patients. It offers high sensitivity and specificity but requires a stable and cooperative patient. It also involves radiation and may have delays in availability.

      In the case of penetrating trauma, it is important to assess these injuries with the help of a surgical team. Penetrating objects should not be removed in the emergency department as they may be tamponading underlying vessels. Ideally, these injuries should be explored in the operating theater.

      In summary, abdominal trauma can be classified into blunt trauma and penetrating trauma. Blunt trauma is caused by compressive or deceleration forces and commonly affects the spleen and liver. Penetrating trauma involves injuries that pierce the skin and commonly affect the bowel and liver. Imaging modalities such as FAST, DPL, and CT are used to assess and diagnose abdominal trauma, with CT being the gold standard. Penetrating injuries should be assessed by a surgical team and should ideally be explored in the operating theater.

    • This question is part of the following fields:

      • Trauma
      24.6
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  • Question 2 - A 45-year-old woman is brought into the emergency room by an ambulance with...

    Incorrect

    • A 45-year-old woman is brought into the emergency room by an ambulance with sirens blaring after being involved in a car accident. She was hit by a truck while crossing the street and is suspected to have a pelvic injury. Her condition is unstable, and the hospital has activated the massive transfusion protocol. You decide to also administer tranexamic acid and give an initial dose of 1 g intravenously over a period of 10 minutes.
      What should be the subsequent dose of tranexamic acid and how long should it be administered for?

      Your Answer: 1 g IV over 4 hours

      Correct Answer: 1 g IV over 8 hours

      Explanation:

      ATLS guidelines now suggest administering only 1 liter of crystalloid fluid during the initial assessment. If patients do not respond to the crystalloid, it is recommended to quickly transition to blood products. Studies have shown that infusing more than 1.5 liters of crystalloid fluid is associated with higher mortality rates in trauma cases. Therefore, it is advised to prioritize the early use of blood products and avoid large volumes of crystalloid fluid in trauma patients. In cases where it is necessary, massive transfusion should be considered, defined as the transfusion of more than 10 units of blood in 24 hours or more than 4 units of blood in one hour. For patients with evidence of Class III and IV hemorrhage, early resuscitation with blood and blood products in low ratios is recommended.

      Based on the findings of significant trials, such as the CRASH-2 study, the use of tranexamic acid is now recommended within 3 hours. This involves administering a loading dose of 1 gram intravenously over 10 minutes, followed by an infusion of 1 gram over eight hours. In some regions, tranexamic acid is also being utilized in the prehospital setting.

    • This question is part of the following fields:

      • Trauma
      20.1
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  • Question 3 - A 35 year old is brought to the emergency room after a car...

    Correct

    • A 35 year old is brought to the emergency room after a car accident. He has a left sided mid-shaft femoral fracture and is experiencing abdominal pain. He appears restless. The patient's vital signs are as follows:

      Blood pressure: 112/94 mmHg
      Pulse rate: 102 bpm
      Respiration rate: 21 rpm
      SpO2: 97% on room air
      Temperature: 36 ºC

      Which of the following additional parameters would be most helpful in monitoring this patient?

      Your Answer: Urine output

      Explanation:

      Shock is a condition characterized by inadequate tissue perfusion due to circulatory insufficiency. It can be caused by fluid loss or redistribution, as well as impaired cardiac output. The main causes of shock include haemorrhage, diarrhoea and vomiting, burns, diuresis, sepsis, neurogenic shock, anaphylaxis, massive pulmonary embolism, tension pneumothorax, cardiac tamponade, myocardial infarction, and myocarditis.

      One common cause of shock is haemorrhage, which is frequently encountered in the emergency department. Haemorrhagic shock can be classified into different types based on the amount of blood loss. Type 1 haemorrhagic shock involves a blood loss of 15% or less, with less than 750 ml of blood loss. Patients with type 1 shock may have normal blood pressure and heart rate, with a respiratory rate of 12 to 20 breaths per minute.

      Type 2 haemorrhagic shock involves a blood loss of 15 to 30%, with 750 to 1500 ml of blood loss. Patients with type 2 shock may have a pulse rate of 100 to 120 beats per minute and a respiratory rate of 20 to 30 breaths per minute. Blood pressure is typically normal in type 2 shock.

      Type 3 haemorrhagic shock involves a blood loss of 30 to 40%, with 1.5 to 2 litres of blood loss. Patients with type 3 shock may have a pulse rate of 120 to 140 beats per minute and a respiratory rate of more than 30 breaths per minute. Urine output is decreased to 5-15 mls per hour.

      Type 4 haemorrhagic shock involves a blood loss of more than 40%, with more than 2 litres of blood loss. Patients with type 4 shock may have a pulse rate of more than 140 beats per minute and a respiratory rate of more than 35 breaths per minute. They may also be drowsy, confused, and possibly experience loss of consciousness. Urine output may be minimal or absent.

      In summary, shock is a condition characterized by inadequate tissue perfusion. Haemorrhage is a common cause of shock, and it can be classified into different types based on the amount of blood loss. Prompt recognition and management of shock are crucial in order to prevent further complications and improve patient outcomes

    • This question is part of the following fields:

      • Trauma
      54.4
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  • Question 4 - A 28 year old female is brought into the emergency department after a...

    Incorrect

    • A 28 year old female is brought into the emergency department after a jet skiing accident at a local lake. The patient fell off the jet ski but her leg got caught in the handlebars and she was submerged for 2-3 minutes before being freed. The patient's friends started rescue breaths and chest compressions as the patient was unconscious but were stopped after approximately 30 seconds by an off duty lifeguard who assessed the patient and determined she was breathing spontaneously and had a pulse. On examination, the patient is breathing spontaneously with intermittent coughing, oxygen saturation levels are 97% on room air, a few crackling sounds are heard in the lower parts of the lungs, and the patient's Glasgow Coma Scale score is 13 out of 15.

      Which of the following should be included in the initial management of this patient?

      Your Answer: Give 15 litres oxygen by facemask if oxygen saturations drop below 95% on air.

      Correct Answer: Obtain an arterial blood gas sample for evidence of hypoxia

      Explanation:

      It is recommended to obtain an arterial blood gas (ABG) sample from all patients who have experienced submersion (drowning) as even individuals without symptoms may have a surprising level of hypoxia. Draining the lungs is not effective and not recommended. There is no strong evidence to support the routine use of antibiotics as a preventive measure. Steroids have not been proven to be effective in treating drowning. All drowning patients, except those with normal oxygen levels, normal saturations, and normal lung sounds, should receive supplemental oxygen as significant hypoxia can occur without causing difficulty in breathing.

      Further Reading:

      Drowning is the process of experiencing respiratory impairment from submersion or immersion in liquid. It can be classified as cold-water or warm-water drowning. Risk factors for drowning include young age and male sex. Drowning impairs lung function and gas exchange, leading to hypoxemia and acidosis. It also causes cardiovascular instability, which contributes to metabolic acidosis and cell death.

      When someone is submerged or immersed, they will voluntarily hold their breath to prevent aspiration of water. However, continued breath holding causes progressive hypoxia and hypercapnia, leading to acidosis. Eventually, the respiratory center sends signals to the respiratory muscles, forcing the individual to take an involuntary breath and allowing water to be aspirated into the lungs. Water entering the lungs stimulates a reflex laryngospasm that prevents further penetration of water. Aspirated water can cause significant hypoxia and damage to the alveoli, leading to acute respiratory distress syndrome (ARDS).

      Complications of drowning include cardiac ischemia and infarction, infection with waterborne pathogens, hypothermia, neurological damage, rhabdomyolysis, acute tubular necrosis, and disseminated intravascular coagulation (DIC).

      In children, the diving reflex helps reduce hypoxic injury during submersion. It causes apnea, bradycardia, and peripheral vasoconstriction, reducing cardiac output and myocardial oxygen demand while maintaining perfusion of the brain and vital organs.

      Associated injuries with drowning include head and cervical spine injuries in patients rescued from shallow water. Investigations for drowning include arterial blood gases, chest X-ray, ECG and cardiac monitoring, core temperature measurement, and blood and sputum cultures if secondary infection is suspected.

      Management of drowning involves extricating the patient from water in a horizontal position with spinal precautions if possible. Cardiovascular considerations should be taken into account when removing patients from water to prevent hypotension and circulatory collapse. Airway management, supplemental oxygen, and ventilation strategies are important in maintaining oxygenation and preventing further lung injury. Correcting hypotension, electrolyte disturbances, and hypothermia is also necessary. Attempting to drain water from the lungs is ineffective.

      Patients without associated physical injury who are asymptomatic and have no evidence of respiratory compromise after six hours can be safely discharged home. Ventilation strategies aim to maintain oxygenation while minimizing ventilator-associated lung injury.

    • This question is part of the following fields:

      • Trauma
      73.2
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  • Question 5 - You are overseeing the care of a trauma patient in the resuscitation bay....

    Correct

    • You are overseeing the care of a trauma patient in the resuscitation bay. A chest tube has been inserted through thoracostomy to drain the hemothorax. The initial amount of blood drained is documented, and there are plans to monitor the additional blood volume drained every hour. What would be an indication for thoracotomy in this patient?

      Your Answer: 250 ml blood drained from pleural cavity (in addition to previous volumes) between hours 2 and 3 post insertion

      Explanation:

      The main indications for thoracotomy in patients with haemothorax are prompt drainage of at least 1500 ml of blood, ongoing blood loss of more than 200 ml per hour for 2-4 hours, and the need for continued blood transfusion. Option 3 in the given choices meets these criteria as the blood loss remains above 200 ml per hour for more than 2 hours after the drain is inserted. Option 1 does not meet the criteria as the blood volume is below 1500 ml. Option 2 does not meet the criteria as the blood loss has not been ongoing for at least 2 hours. Option 4 does not meet the criteria as there is no information indicating the need for ongoing blood transfusion.

      Further Reading:

      Haemothorax is the accumulation of blood in the pleural cavity of the chest, usually resulting from chest trauma. It can be difficult to differentiate from other causes of pleural effusion on a chest X-ray. Massive haemothorax refers to a large volume of blood in the pleural space, which can impair physiological function by causing blood loss, reducing lung volume for gas exchange, and compressing thoracic structures such as the heart and IVC.

      The management of haemothorax involves replacing lost blood volume and decompressing the chest. This is done through supplemental oxygen, IV access and cross-matching blood, IV fluid therapy, and the insertion of a chest tube. The chest tube is connected to an underwater seal and helps drain the fluid, pus, air, or blood from the pleural space. In cases where there is prompt drainage of a large amount of blood, ongoing significant blood loss, or the need for blood transfusion, thoracotomy and ligation of bleeding thoracic vessels may be necessary. It is important to have two IV accesses prior to inserting the chest drain to prevent a drop in blood pressure.

      In summary, haemothorax is the accumulation of blood in the pleural cavity due to chest trauma. Managing haemothorax involves replacing lost blood volume and decompressing the chest through various interventions, including the insertion of a chest tube. Prompt intervention may be required in cases of significant blood loss or ongoing need for blood transfusion.

    • This question is part of the following fields:

      • Trauma
      13.4
      Seconds
  • Question 6 - A 45 year old is brought into the emergency department after sustaining a...

    Incorrect

    • A 45 year old is brought into the emergency department after sustaining a head injury after falling from a staircase. The patient opens his eyes to voice and localises to pain. The patient's speech is slurred and he appears disoriented. What is this patient's Glasgow Coma Score (GCS)?

      Your Answer: 10

      Correct Answer: 12

      Explanation:

      In this case, the patient opens his eyes to voice, which corresponds to a score of 3 on the eye opening component. The patient localizes to pain, indicating a purposeful motor response, which corresponds to a score of 5 on the motor response component. However, the patient’s speech is slurred and he appears disoriented, suggesting an impaired verbal response. This would correspond to a score of 4 on the verbal response component.

      To calculate the GCS, we sum up the scores from each component. In this case, the patient’s GCS would be 3 + 4 + 5 = 12

      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
      136.7
      Seconds
  • Question 7 - A 42 year old man is brought into the emergency department after a...

    Correct

    • A 42 year old man is brought into the emergency department after a car accident. He has significant bruising on the right side of his chest. You suspect he may have a hemothorax. When would thoracotomy be considered as a treatment option?

      Your Answer: Prompt drainage of ≥1500 ml of blood following chest drain insertion

      Explanation:

      Thoracotomy is recommended when there is a need for prompt drainage of at least 1500 ml of blood following the insertion of a chest drain. Additionally, it is indicated when there is a continuous blood loss of more than 200 ml per hour for a period of 2-4 hours or when there is a persistent requirement for blood transfusion.

      Further Reading:

      Haemothorax is the accumulation of blood in the pleural cavity of the chest, usually resulting from chest trauma. It can be difficult to differentiate from other causes of pleural effusion on a chest X-ray. Massive haemothorax refers to a large volume of blood in the pleural space, which can impair physiological function by causing blood loss, reducing lung volume for gas exchange, and compressing thoracic structures such as the heart and IVC.

      The management of haemothorax involves replacing lost blood volume and decompressing the chest. This is done through supplemental oxygen, IV access and cross-matching blood, IV fluid therapy, and the insertion of a chest tube. The chest tube is connected to an underwater seal and helps drain the fluid, pus, air, or blood from the pleural space. In cases where there is prompt drainage of a large amount of blood, ongoing significant blood loss, or the need for blood transfusion, thoracotomy and ligation of bleeding thoracic vessels may be necessary. It is important to have two IV accesses prior to inserting the chest drain to prevent a drop in blood pressure.

      In summary, haemothorax is the accumulation of blood in the pleural cavity due to chest trauma. Managing haemothorax involves replacing lost blood volume and decompressing the chest through various interventions, including the insertion of a chest tube. Prompt intervention may be required in cases of significant blood loss or ongoing need for blood transfusion.

    • This question is part of the following fields:

      • Trauma
      9.4
      Seconds
  • Question 8 - You are summoned to a cardiac arrest in the resuscitation area of your...

    Incorrect

    • You are summoned to a cardiac arrest in the resuscitation area of your Emergency Department. As part of your treatment, a dose of adrenaline is given.
      What is one alpha-adrenergic effect of adrenaline?

      Your Answer:

      Correct Answer: Increased cerebral perfusion pressures

      Explanation:

      The effects of adrenaline on alpha-adrenergic receptors result in the narrowing of blood vessels throughout the body, leading to increased pressure in the coronary and cerebral arteries. On the other hand, the effects of adrenaline on beta-adrenergic receptors enhance the strength of the heart’s contractions and increase the heart rate, which can potentially improve blood flow to the coronary and cerebral arteries. However, it is important to note that these positive effects may be counteracted by the simultaneous increase in oxygen consumption by the heart, the occurrence of abnormal heart rhythms, reduced oxygen levels due to abnormal blood flow patterns, impaired small blood vessel function, and worsened heart function following a cardiac arrest.

    • This question is part of the following fields:

      • Trauma
      0
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  • Question 9 - A 35-year-old man is brought into the emergency room by an ambulance with...

    Incorrect

    • A 35-year-old man is brought into the emergency room by an ambulance with flashing lights. He has been involved in a building fire and has sustained severe burns. You evaluate his airway and have concerns about potential airway blockage. You decide to perform intubation on the patient and begin preparing the required equipment.
      Which of the following is NOT a reason for performing early intubation in a burn patient?

      Your Answer:

      Correct Answer: Superficial partial-thickness circumferential neck burns

      Explanation:

      Early assessment of the airway is a critical aspect of managing a burned patient. Airway obstruction can occur rapidly due to direct injury or swelling from the burn. If there is a history of trauma, the airway should be evaluated while maintaining cervical spine control.

      There are several risk factors for airway obstruction in burned patients, including inhalation injury, soot in the mouth or nostrils, singed nasal hairs, burns to the head, face, and neck, burns inside the mouth, large burn area and increasing burn depth, associated trauma, and a carboxyhemoglobin level above 10%.

      In cases where significant swelling is anticipated, it may be necessary to urgently secure the airway with an uncut endotracheal tube before the swelling becomes severe. Delaying recognition of impending airway obstruction can make intubation difficult, and a surgical airway may be required.

      The American Burn Life Support (ABLS) guidelines recommend early intubation in certain situations. These include signs of airway obstruction, extensive burns, deep facial burns, burns inside the mouth, significant swelling or risk of swelling, difficulty swallowing, respiratory compromise, decreased level of consciousness, and anticipated transfer of a patient with a large burn and airway issues without qualified personnel to intubate during transport.

      Circumferential burns of the neck can cause tissue swelling around the airway, making early intubation necessary in these cases as well.

    • This question is part of the following fields:

      • Trauma
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  • Question 10 - A 35-year-old woman that has been involved in a car accident is estimated...

    Incorrect

    • A 35-year-old woman that has been involved in a car accident is estimated to have suffered a class II haemorrhage according to the Advanced Trauma Life Support (ATLS) haemorrhagic shock classification. The patient weighs approximately 60 kg.
      Which of the following physiological parameters is consistent with a diagnosis of class II haemorrhage?

      Your Answer:

      Correct Answer: Heart rate of 110 bpm

      Explanation:

      Recognizing the extent of blood loss based on vital sign and mental status abnormalities is a crucial skill. The Advanced Trauma Life Support (ATLS) classification for hemorrhagic shock correlates the amount of blood loss with expected physiological responses in a healthy individual weighing 70 kg. In terms of body weight, the total circulating blood volume accounts for approximately 7%, which is roughly equivalent to five liters in an average 70 kg male patient.

      The ATLS classification for hemorrhagic shock is as follows:

      CLASS I:
      – Blood loss: Up to 750 mL
      – Blood loss (% blood volume): Up to 15%
      – Pulse rate: Less than 100 beats per minute (bpm)
      – Systolic blood pressure: 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 blood pressure: 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 blood pressure: 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 blood pressure: 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
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SESSION STATS - PERFORMANCE PER SPECIALTY

Trauma (3/7) 43%
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