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  • Question 1 - 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 sirens blaring. He has been in a building fire and has sustained severe burns. Upon assessing his airway, you have concerns about potential airway blockage. You decide to proceed with intubation and begin preparing the required equipment.
      What is one reason for performing early intubation in a burn patient?

      Your Answer: Total body surface area of burn of 30%

      Correct Answer: Hoarseness of voice

      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
      28.7
      Seconds
  • Question 2 - 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: Focussed assessment with sonography for trauma scan

      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
      4.2
      Seconds
  • Question 3 - A 14-year-old girl was cycling down a hill when a car backed up...

    Correct

    • A 14-year-old girl was cycling down a hill when a car backed up in front of her, resulting in a collision. She visits the emergency department, reporting upper abdominal pain caused by the handlebars. You determine that a FAST scan is necessary. What is the main objective of performing a FAST scan for blunt abdominal trauma?

      Your Answer: Detect the presence of intraperitoneal fluid

      Explanation:

      The primary goal of performing a FAST scan in cases of blunt abdominal trauma is to identify the existence of intraperitoneal fluid. According to the Royal College of Emergency Medicine (RCEM), the purpose of using ultrasound in the initial evaluation of abdominal trauma is specifically to confirm the presence of fluid within the peritoneal cavity, with the assumption that it is blood. However, it is important to note that ultrasound is not reliable for diagnosing injuries to solid organs or hollow viscus.

      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
      4.6
      Seconds
  • Question 4 - A 45-year-old woman was involved in a car accident where her car collided...

    Correct

    • A 45-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 bruising over her anterior chest wall and is experiencing chest pain. Her chest X-ray in the emergency room reveals evidence of a traumatic aortic injury.
      Which of the following fractures are most indicative of this injury?

      Your Answer: 1st and 2nd ribs

      Explanation:

      Traumatic aortic rupture, also known as traumatic aortic disruption or transection, occurs when the aorta is torn or ruptured due to physical trauma. This condition often leads to sudden death because of severe bleeding. Motor vehicle accidents and falls from great heights are the most common causes of this injury.

      The patients with the highest chances of survival are those who have an incomplete tear near the ligamentum arteriosum of the proximal descending aorta, close to where the left subclavian artery branches off. The presence of an intact adventitial layer or contained mediastinal hematoma helps maintain continuity and prevents immediate bleeding and death. If promptly identified and treated, survivors of these injuries can recover. In cases where traumatic aortic rupture leads to sudden death, approximately 50% of patients have damage at the aortic isthmus, while around 15% have damage in either the ascending aorta or the aortic arch.

      Initial chest X-rays may show signs consistent with a traumatic aortic injury. However, false-positive and false-negative results can occur, and sometimes there may be no abnormalities visible on the X-ray. Some of the possible X-ray findings include a widened mediastinum, hazy left lung field, obliteration of the aortic knob, fractures of the 1st and 2nd ribs, 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.

      A helical contrast-enhanced CT scan of the chest is the preferred initial investigation for suspected blunt aortic injury. It has proven to be highly accurate, with close to 100% sensitivity and specificity. CT scanning should be performed liberally, as chest X-ray findings can be unreliable. However, hemodynamically unstable patients should not be placed in a CT scanner. If the CT results are inconclusive, aortography or trans-oesophageal echo can be performed for further evaluation.

      Immediate surgical intervention is necessary for these injuries. Endovascular repair is the most common method used and has excellent short-term outcomes. Open repair may also be performed depending on the circumstances. It is important to control heart rate and blood pressure during stabilization to reduce the risk of rupture. Pain should be managed with appropriate analgesic

    • This question is part of the following fields:

      • Trauma
      7.2
      Seconds
  • Question 5 - A 52-year-old individual is brought to the emergency room after a car accident....

    Correct

    • A 52-year-old individual is brought to the emergency room after a car accident. They present with a fracture in the middle of their left femur and complain of abdominal pain. The patient appears restless. The following are their vital signs:

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

      Considering the possibility of significant blood loss, what grade of hypovolemic shock would you assign to this patient?

      Your Answer: Grade 2

      Explanation:

      Grade 2 shock is characterized by a pulse rate of 100 to 120 beats per minute and a respiratory rate of 20 to 30 breaths per minute. These clinical features align with the symptoms of grade 2 hypovolemic shock, as indicated in the below notes.

      Further Reading:

      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
      24.1
      Seconds
  • Question 6 - You evaluate a 38-year-old woman who was hit on the side of her...

    Correct

    • You evaluate a 38-year-old woman who was hit on the side of her leg by a soccer player while spectating the match from the sidelines. You suspect a tibial plateau fracture and order an X-ray of the affected knee. Besides the fracture line, what other radiographic indication is frequently observed in individuals with acute tibial plateau fractures?

      Your Answer: Lipohaemathrosis evident in suprapatellar pouch

      Explanation:

      Lipohaemathrosis is commonly seen in the suprapatellar pouch in individuals who have tibial plateau fractures. Notable X-ray characteristics of tibial plateau fractures include a visible fracture of the tibial plateau and the presence of lipohaemathrosis in the suprapatellar pouch.

      Further Reading:

      Tibial plateau fractures are a type of traumatic lower limb and joint injury that can involve the medial or lateral tibial plateau, or both. These fractures are classified using the Schatzker classification, with higher grades indicating a worse prognosis. X-ray imaging can show visible fractures of the tibial plateau and the presence of lipohaemathrosis in the suprapatellar pouch. However, X-rays often underestimate the severity of these fractures, so CT scans are typically used for a more accurate assessment.

      Tibial spine fractures, on the other hand, are separate from tibial plateau fractures. They occur when the tibial spine is avulsed by the anterior cruciate ligament (ACL). This can happen due to forced knee hyperextension or a direct blow to the femur when the knee is flexed. These fractures are most common in children aged 8-14.

      Tibial tuberosity avulsion fractures primarily affect adolescent boys and are often caused by jumping or landing from a jump. These fractures can be associated with Osgood-Schlatter disease. The treatment for these fractures depends on their grading. Low-grade fractures may be managed with immobilization for 4-6 weeks, while more significant avulsions are best treated with surgical fixation.

    • This question is part of the following fields:

      • Trauma
      13.8
      Seconds
  • Question 7 - A 35-year-old woman that has been involved in a car accident is estimated...

    Correct

    • 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: 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
      15
      Seconds
  • Question 8 - A 15 year old female patient is brought to the emergency department after...

    Correct

    • A 15 year old female patient is brought to the emergency department after being kicked by a horse multiple times. The patient had recently started work cleaning stables and was kicked several times whilst behind one of the horses. The patients observations are shown below:

      Parameter Result
      Blood pressure 108/62 mmHg
      Pulse rate 124 bpm
      Respiration rate 30 rpm
      SpO2 95% on air

      On examination there is significant bruising to the right anterolateral aspect of the chest wall, the patient is clammy, there is reduced air entry with dull percussion to the right lung base and the trachea is central. What is the likely diagnosis?

      Your Answer: Massive haemothorax

      Explanation:

      Massive haemothorax is characterized by the presence of more than 1.5 litres of blood in the pleural space. The patient’s history and examination findings are indicative of haemothorax. When blood loss exceeds 1500ml, it is classified as grade 3 hypovolemic shock, which is considered severe. Symptoms such as a pulse rate over 120, respiration rate over 30, and low blood pressure align with grade 3 shock and are consistent with massive haemothorax. In the case of pneumothorax, percussion reveals a resonant or hyper-resonant sound. Chylothorax, on the other hand, is a rare condition that typically occurs due to injury to the thoracic duct.

      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
      38.4
      Seconds
  • Question 9 - A 35-year-old woman presents to the emergency department with neck pain after a...

    Incorrect

    • A 35-year-old woman presents to the emergency department with neck pain after a car accident. After conducting a clinical examination and identifying a low-risk factor for cervical spine injury, you decide to order imaging for this patient. What type of imaging would you recommend?

      Your Answer: Lateral and AP cervical spine X-rays

      Correct Answer: CT cervical spine

      Explanation:

      According to NICE guidelines, when it comes to imaging for cervical spine injury, CT is recommended as the primary modality for adults aged 16 and above, while MRI is recommended for children. This applies to patients who are either at high risk for cervical spine injury or are unable to actively rotate their neck 45 degrees to the left and right.

      Further Reading:

      When assessing for cervical spine injury, it is recommended to use the Canadian C-spine rules. These rules help determine the risk level for a potential injury. High-risk factors include being over the age of 65, experiencing a dangerous mechanism of injury (such as a fall from a height or a high-speed motor vehicle collision), or having paraesthesia in the upper or lower limbs. Low-risk factors include being involved in a minor rear-end motor vehicle collision, being comfortable in a sitting position, being ambulatory since the injury, having no midline cervical spine tenderness, or experiencing a delayed onset of neck pain. If a person is unable to actively rotate their neck 45 degrees to the left and right, their risk level is considered low. If they have one of the low-risk factors and can actively rotate their neck, their risk level remains low.

      If a high-risk factor is identified or if a low-risk factor is identified and the person is unable to actively rotate their neck, full in-line spinal immobilization should be maintained and imaging should be requested. Additionally, if a patient has risk factors for thoracic or lumbar spine injury, imaging should be requested. However, if a patient has low-risk factors for cervical spine injury, is pain-free, and can actively rotate their neck, full in-line spinal immobilization and imaging are not necessary.

      NICE recommends CT as the primary imaging modality for cervical spine injury in adults aged 16 and older, while MRI is recommended as the primary imaging modality for children under 16.

      Different mechanisms of spinal trauma can cause injury to the spine in predictable ways. The majority of cervical spine injuries are caused by flexion combined with rotation. Hyperflexion can result in compression of the anterior aspects of the vertebral bodies, stretching and tearing of the posterior ligament complex, chance fractures (also known as seatbelt fractures), flexion teardrop fractures, and odontoid peg fractures. Flexion and rotation can lead to disruption of the posterior ligament complex and posterior column, fractures of facet joints, lamina, transverse processes, and vertebral bodies, and avulsion of spinous processes. Hyperextension can cause injury to the anterior column, anterior fractures of the vertebral body, and potential retropulsion of bony fragments or discs into the spinal canal. Rotation can result in injury to the posterior ligament complex and facet joint dislocation.

    • This question is part of the following fields:

      • Trauma
      16
      Seconds
  • Question 10 - You are managing a 32-year-old male patient who leaped off a bridge. There...

    Correct

    • You are managing a 32-year-old male patient who leaped off a bridge. There is noticeable bruising and extreme sensitivity over the calcaneus. You are currently waiting for an X-ray to confirm the presence of a calcaneal fracture. Which of the following statements is accurate regarding the assessment of the X-ray?

      Your Answer: The normal angle of Gissane is 120-145°

      Explanation:

      The typical range for the normal angle of Gissane is between 120 and 145 degrees. An increase in this angle suggests that the posterior facet of the subtalar joint is depressed, which may indicate a calcaneal fracture. Similarly, the normal range for Bohler’s angle is between 20 and 40 degrees. For more detailed information and visual representations of these angles, please refer to the accompanying notes.

      Further Reading:

      calcaneus fractures are a common type of lower limb and joint injury. The calcaneus, or heel bone, is the most frequently fractured tarsal bone. These fractures are often intra-articular, meaning they involve the joint. The most common cause of calcaneus fractures is a fall or jump from a height.

      When assessing calcaneus fractures, X-rays are used to visualize the fracture lines. Two angles are commonly assessed to determine the severity of the fracture. Böhler’s angle, which measures the angle between two tangent lines drawn across the anterior and posterior borders of the calcaneus, should be between 20-40 degrees. If it is less than 20 degrees, it indicates a calcaneal fracture with flattening. The angle of Gissane, which measures the depression of the posterior facet of the subtalar joint, should be between 120-145 degrees. An increased angle of Gissane suggests a calcaneal fracture.

      In the emergency department, the management of a fractured calcaneus involves identifying the injury and any associated injuries, providing pain relief, elevating the affected limb(s), and referring the patient to an orthopedic specialist. It is important to be aware that calcaneus fractures are often accompanied by other injuries, such as bilateral fractures of vertebral fractures.

      The definitive management of a fractured calcaneus can be done conservatively or through surgery, specifically open reduction internal fixation (ORIF). The orthopedic team will typically order a CT or MRI scan to classify the fracture and determine the most appropriate treatment. However, a recent UK heel fracture trial suggests that in most cases, ORIF does not improve fracture outcomes.

    • This question is part of the following fields:

      • Trauma
      8.9
      Seconds
  • Question 11 - 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:

      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
      0
      Seconds
  • Question 12 - A 35-year-old woman is involved in a car accident. Her observations are taken...

    Incorrect

    • 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 145 bpm, BP is 72/38 mmHg, respiratory rate 45 breaths/minute, and her urine output over the past hour has been negligible. She is drowsy, lethargic, and confused. The patient weighs approximately 70 kg.
      How would you classify her hemorrhage according to the ATLS hemorrhagic shock classification?

      Your Answer:

      Correct Answer: Class IV

      Explanation:

      This patient is showing significant signs of distress, including a highly elevated heart rate and respiratory rate, as well as very little urine output. Additionally, they are experiencing drowsiness, lethargy, and confusion. These symptoms indicate that the patient has suffered a class IV haemorrhage at this stage.

      Recognizing the extent of blood loss based on vital signs and mental status abnormalities is a crucial skill. The Advanced Trauma Life Support (ATLS) classification for haemorrhagic shock correlates the amount of blood loss with expected physiological responses in a healthy 70 kg patient. In a 70 kg male patient, the total circulating blood volume is approximately five litres, accounting for around 7% of their total body weight.

      The ATLS haemorrhagic shock classification is summarized as follows:

      CLASS I
      Blood loss (mL): Up to 750
      Blood loss (% blood volume): Up to 15%
      Pulse rate (bpm): <100
      Systolic BP: Normal
      Pulse pressure: Normal (or increased)
      Respiratory rate: 14-20
      Urine output (ml/hr): >30
      CNS/mental status: Slightly anxious

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

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

      CLASS IV
      Blood loss (mL): >2000
      Blood loss (% blood volume): >40%
      Pulse rate (bpm): >140
      Systolic BP: Decreased
      Pulse pressure: Decreased
      Respiratory rate: >40
      Urine output (ml/hr): Negligible
      CNS/mental status: Confused, lethargic

    • This question is part of the following fields:

      • Trauma
      0
      Seconds
  • Question 13 - A 42-year-old woman was in a car crash where her vehicle collided with...

    Incorrect

    • A 42-year-old woman was in a car crash where her vehicle collided with a wall at a high speed. She was not wearing a seatbelt and was thrown forward onto the steering wheel. She has bruising on her front chest wall and is experiencing chest pain. The chest X-ray taken in the emergency room shows signs of a traumatic aortic injury.

      Which of the following chest X-ray findings is most indicative of this injury?

      Your Answer:

      Correct Answer: Presence of a pleural cap

      Explanation:

      Traumatic aortic rupture, also known as traumatic aortic disruption or transection, occurs when the aorta is torn or ruptured due to physical trauma. This condition often leads to sudden death because of severe bleeding. Motor vehicle accidents and falls from great heights are the most common causes of this injury.

      The patients with the highest chances of survival are those who have an incomplete tear near the ligamentum arteriosum of the proximal descending aorta, close to where the left subclavian artery branches off. The presence of an intact adventitial layer or contained mediastinal hematoma helps maintain continuity and prevents immediate bleeding and death. If promptly identified and treated, survivors of these injuries can recover. In cases where traumatic aortic rupture leads to sudden death, approximately 50% of patients have damage at the aortic isthmus, while around 15% have damage in either the ascending aorta or the aortic arch.

      Initial chest X-rays may show signs consistent with a traumatic aortic injury. However, false-positive and false-negative results can occur, and sometimes there may be no abnormalities visible on the X-ray. Some of the possible X-ray findings include a widened mediastinum, hazy left lung field, obliteration of the aortic knob, fractures of the 1st and 2nd ribs, 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.

      A helical contrast-enhanced CT scan of the chest is the preferred initial investigation for suspected blunt aortic injury. It has proven to be highly accurate, with close to 100% sensitivity and specificity. CT scanning should be performed liberally, as chest X-ray findings can be unreliable. However, hemodynamically unstable patients should not be placed in a CT scanner. If the CT results are inconclusive, aortography or trans-oesophageal echo can be performed for further evaluation.

      Immediate surgical intervention is necessary for these injuries. Endovascular repair is the most common method used and has excellent short-term outcomes. Open repair may also be performed depending on the circumstances. It is important to control heart rate and blood pressure during stabilization to reduce the risk of rupture. Pain should be managed with appropriate analgesic

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  • Question 14 - A 35-year-old woman who has been involved in a car accident is estimated...

    Incorrect

    • A 35-year-old woman who has been involved in a car accident is estimated to have suffered a class I 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 I haemorrhage?

      Your Answer:

      Correct Answer: Increased pulse pressure

      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

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  • Question 15 - A 35 year old is brought to the emergency room after a car...

    Incorrect

    • 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:

      Correct 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

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  • Question 16 - A 45-year-old woman was involved in a car accident where her car collided...

    Incorrect

    • A 45-year-old woman was involved in a car accident where her car collided with a tree at a high speed. She was not wearing a seatbelt and was thrown forward onto the steering wheel of her car. She has bruising over her anterior chest wall and is experiencing chest pain. Her chest X-ray in the resuscitation room shows potential signs of a traumatic aortic injury, but it is uncertain.

      Which investigation should be prioritized for further examination?

      Your Answer:

      Correct Answer: Contrast-enhanced CT scan of the chest

      Explanation:

      Traumatic aortic rupture, also known as traumatic aortic disruption or transection, occurs when the aorta is torn or ruptured due to physical trauma. This condition often leads to sudden death because of severe bleeding. Motor vehicle accidents and falls from great heights are the most common causes of this injury.

      The patients with the highest chances of survival are those who have an incomplete tear near the ligamentum arteriosum of the proximal descending aorta, close to where the left subclavian artery branches off. The presence of an intact adventitial layer or contained mediastinal hematoma helps maintain continuity and prevents immediate bleeding and death. If promptly identified and treated, survivors of these injuries can recover. In cases where traumatic aortic rupture leads to sudden death, approximately 50% of patients have damage at the aortic isthmus, while around 15% have damage in either the ascending aorta or the aortic arch.

      Initial chest X-rays may show signs consistent with a traumatic aortic injury. However, false-positive and false-negative results can occur, and sometimes there may be no abnormalities visible on the X-ray. Some of the possible X-ray findings include a widened mediastinum, hazy left lung field, obliteration of the aortic knob, fractures of the 1st and 2nd ribs, 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.

      A helical contrast-enhanced CT scan of the chest is the preferred initial investigation for suspected blunt aortic injury. It has proven to be highly accurate, with close to 100% sensitivity and specificity. CT scanning should be performed liberally, as chest X-ray findings can be unreliable. However, hemodynamically unstable patients should not be placed in a CT scanner. If the CT results are inconclusive, aortography or trans-oesophageal echo can be performed for further evaluation.

      Immediate surgical intervention is necessary for these injuries. Endovascular repair is the most common method used and has excellent short-term outcomes. Open repair may also be performed depending on the circumstances. It is important to control heart rate and blood pressure during stabilization to reduce the risk of rupture. Pain should be managed with appropriate analgesic

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  • Question 17 - 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.
      Which of the following is NOT a beta-adrenergic effect of adrenaline?

      Your Answer:

      Correct Answer: Systemic vasoconstriction

      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.

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  • Question 18 - A 45-year-old woman is brought into the emergency department after a car accident....

    Incorrect

    • A 45-year-old woman is brought into the emergency department after a car accident. She has significant bruising on the right side of her chest. You suspect she may have a hemothorax. What clinical signs would you anticipate observing in a patient with a hemothorax?

      Your Answer:

      Correct Answer: Decreased fremitus on affected side

      Explanation:

      Haemothorax often leads to reduced or absent air entry, a dull percussion sound, and decreased fremitus on the affected side. Commonly observed symptoms in patients with haemothorax include decreased or absent air entry, a dull percussion note when the affected side is tapped, reduced fremitus on the affected side, and in cases of massive haemothorax, tracheal deviation away from the affected side. Other signs that may be present include a rapid heart rate (tachycardia), rapid breathing (tachypnoea), low blood pressure (hypotension), and signs of shock.

      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.

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  • Question 19 - A 48 year old welder is admitted to the emergency department with burns...

    Incorrect

    • A 48 year old welder is admitted to the emergency department with burns to the chest after sparks from the welding machine ignited some gasoline-soaked rags that were nearby on the ground, causing his T-shirt to catch fire. Upon examination, the patient presents with full thickness burns encircling the chest. What would be the primary complication you would be most worried about in this case?

      Your Answer:

      Correct Answer: Impaired ventilation

      Explanation:

      Circumferential burns on the thorax can limit the expansion of the chest and hinder proper ventilation. When burns penetrate deeply, they can cause the formation of dead tissue called eschar, which is usually white or black in color. This eschar is contracted and inflexible compared to healthy tissue, leading to restricted movement and impaired breathing. In some cases, burns on the thorax can result in respiratory failure. Marjolin’s ulcer, a rare condition, refers to the development of squamous cell carcinoma in burnt or scarred tissue. Burn injuries often lead to the release of excess potassium into the bloodstream, which can cause hyperkalemia. Carbon monoxide poisoning typically occurs when someone inhales CO over a prolonged period, usually due to incomplete combustion of hydrocarbons. However, the history provided in this case does not align with prolonged exposure to carbon monoxide.

      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.

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  • Question 20 - A 45 year old male is brought into the emergency department following a...

    Incorrect

    • A 45 year old male is brought into the emergency department following a car crash. There is significant bruising on the right side of the chest. You suspect the patient has a haemothorax. What are the two main objectives in managing this condition?

      Your Answer:

      Correct Answer: Replace lost circulating blood volume and decompression of the pleural space

      Explanation:

      The main objectives in managing haemothorax are to restore the lost blood volume and relieve pressure in the pleural space. These actions are crucial for improving the patient’s oxygen levels.

      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.

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  • Question 21 - You are evaluating a 25-year-old male with a puncture wound to the stomach....

    Incorrect

    • You are evaluating a 25-year-old male with a puncture wound to the stomach. Which of the following is NOT a reason for immediate laparotomy in cases of penetrating abdominal injury?

      Your Answer:

      Correct Answer: Negative diagnostic peritoneal lavage

      Explanation:

      Urgent laparotomy is necessary in cases of penetrating abdominal trauma when certain indications are present. These indications include peritonism, the presence of free air under the diaphragm on an upright chest X-ray, evisceration, hypotension or signs of unstable blood flow, a gunshot wound that has penetrated the peritoneum or retroperitoneum, gastrointestinal bleeding following penetrating trauma, genitourinary bleeding following penetrating trauma, the presence of a penetrating object that is still in place (as removal may result in significant bleeding), and the identification of free fluid on a focused assessment with sonography for trauma (FAST) or a positive diagnostic peritoneal lavage (DPL).

      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.

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  • Question 22 - A 35-year-old woman is brought in by ambulance following a car accident where...

    Incorrect

    • A 35-year-old woman is brought in by ambulance following a car accident where her vehicle was hit by a truck. She has sustained severe facial injuries and shows signs of airway blockage. Her cervical spine is immobilized in three places.

      Which two fundamental airway techniques are recommended by ATLS guidelines to clear the airway in trauma patients?

      Your Answer:

      Correct Answer: Chin-lift and jaw-thrust manoeuvres

      Explanation:

      The most recent ATLS guidelines recommend using either the jaw-thrust or chin-lift techniques as the initial approach to open the airway in trauma patients. It is important to avoid moving the head and neck in patients with suspected cervical spine injuries. However, if the patient is unconscious and does not have a gag reflex, temporarily placing an oropharyngeal airway can be beneficial.

      To perform the chin-lift technique, gently place your fingers under the mandible and lift it upwards to bring the chin forward. Use your thumb to slightly depress the lower lip and open the mouth. Alternatively, you can place your thumb behind the lower incisors while gently lifting the chin. It is crucial not to hyperextend the neck during the chin-lift technique.

      For the jaw thrust technique, place one hand on each side of the mandible and push it forward. This can be done in conjunction with a bag-mask device to achieve a good seal and provide adequate ventilation. Just like with the chin-lift technique, be cautious not to extend the patient’s neck.

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  • Question 23 - A 35-year-old man is brought in by ambulance following a car crash. A...

    Incorrect

    • A 35-year-old man is brought in by ambulance following a car crash. A FAST scan is conducted to assess for the presence of a haemoperitoneum.
      Where is free fluid most likely to be observed if a haemoperitoneum is present?

      Your Answer:

      Correct Answer: Liver

      Explanation:

      A Focussed Assessment with Sonography for Trauma (FAST) scan is a point-of-care ultrasound examination conducted when a trauma patient arrives. Its primary purpose is to identify the presence of intra-abdominal free fluid, which is typically assumed to be haemoperitoneum in the context of trauma. This information is crucial for making decisions regarding further management of the patient.

      The sensitivity of FAST scanning for detecting intraperitoneal fluid is approximately 90%, while its specificity is around 95%. However, its sensitivity for detecting solid organ injuries is much lower. As a result, FAST scanning has largely replaced diagnostic peritoneal lavage as the preferred initial method for assessing haemoperitoneum.

      During a standard FAST scan, four regions are examined. The subxiphoid transverse view is used to assess for pericardial effusion and left lobe liver injuries. The longitudinal view of the right upper quadrant helps identify right liver injuries, right kidney injury, and fluid in the hepatorenal recess (Morison’s pouch). The longitudinal view of the left upper quadrant is used to assess for splenic injury and left kidney injury. Lastly, the transverse and longitudinal views of the suprapubic region are used to examine the bladder and fluid in the pouch of Douglas.

      In addition to the standard FAST scan, an extended FAST or eFAST may be performed to assess the left and right thoracic regions. This helps determine the presence of pneumothorax and haemothorax.

      The hepatorenal recess is the deepest part of the peritoneal cavity when the patient is lying flat. Consequently, it is the most likely area for fluid to accumulate.

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  • Question 24 - A 4-year-old girl is brought in by an emergency ambulance after being involved...

    Incorrect

    • A 4-year-old girl is brought in by an emergency ambulance after being involved in a car accident. A trauma alert is activated, and you are tasked with obtaining intravenous access and administering a fluid bolus. However, you are unable to successfully establish intravenous access and decide to prepare for intraosseous access instead.

      Which of the following anatomical sites would be the most appropriate for insertion?

      Your Answer:

      Correct Answer: Proximal humerus

      Explanation:

      Intraosseous access is recommended in trauma, burns, or resuscitation situations when other attempts at venous access fail or would take longer than one minute. It is particularly recommended for circulatory access in pediatric cardiac arrest cases. This technique can also be used when urgent blood sampling or intravenous access is needed and traditional cannulation is difficult and time-consuming. It serves as a temporary measure to stabilize the patient and facilitate long-term intravenous access.

      Potential complications of intraosseous access include compartment syndrome, infection, and fracture. Therefore, it is contraindicated to use this method on the side of definitively fractured bones or limbs with possible proximal fractures. It should also not be used at sites of previous attempts or in patients with conditions such as osteogenesis imperfecta or osteopetrosis.

      There are several possible sites for intraosseous access insertion. These include the proximal humerus, approximately 1 cm above the surgical neck; the proximal tibia, on the anterior surface, 2-3 cm below the tibial tuberosity; the distal tibia, 3 cm proximal to the most prominent aspect of the medial malleolus; the femoral region, on the anterolateral surface, 3 cm above the lateral condyle; the iliac crest; and the sternum.

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  • Question 25 - 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:

      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.

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  • Question 26 - You are caring for a polytrauma patient with a penetrating chest injury. The...

    Incorrect

    • You are caring for a polytrauma patient with a penetrating chest injury. The FAST scan shows cardiac tamponade. If left untreated, expanding cardiac tamponade can lead to which of the following arrhythmias?

      Your Answer:

      Correct Answer: Pulseless electrical activity

      Explanation:

      If a polytrauma patient with a penetrating chest injury has an expanding cardiac tamponade that is left untreated, it can potentially lead to pulseless electrical activity.

      Further Reading:

      Cardiac tamponade, also known as pericardial tamponade, occurs when fluid accumulates in the pericardial sac and compresses the heart, leading to compromised blood flow. Classic clinical signs of cardiac tamponade include distended neck veins, hypotension, muffled heart sounds, and pulseless electrical activity (PEA). Diagnosis is typically done through a FAST scan or an echocardiogram.

      Management of cardiac tamponade involves assessing for other injuries, administering IV fluids to reduce preload, performing pericardiocentesis (inserting a needle into the pericardial cavity to drain fluid), and potentially performing a thoracotomy. It is important to note that untreated expanding cardiac tamponade can progress to PEA cardiac arrest.

      Pericardiocentesis can be done using the subxiphoid approach or by inserting a needle between the 5th and 6th intercostal spaces at the left sternal border. Echo guidance is the gold standard for pericardiocentesis, but it may not be available in a resuscitation situation. Complications of pericardiocentesis include ST elevation or ventricular ectopics, myocardial perforation, bleeding, pneumothorax, arrhythmia, acute pulmonary edema, and acute ventricular dilatation.

      It is important to note that pericardiocentesis is typically used as a temporary measure until a thoracotomy can be performed. Recent articles published on the RCEM learning platform suggest that pericardiocentesis has a low success rate and may delay thoracotomy, so it is advised against unless there are no other options available.

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  • Question 27 - A child who has been involved in a car accident undergoes a traumatic...

    Incorrect

    • A child who has been involved in a car accident undergoes a traumatic cardiac arrest. You perform an anterolateral thoracotomy.
      What is the accurate anatomical location for the incision that needs to be made?

      Your Answer:

      Correct Answer: 4th intercostal space from the sternum to the posterior axillary line

      Explanation:

      An anterolateral thoracotomy is a surgical procedure performed on the front part of the chest wall. It is commonly used in Emergency Department thoracotomy, with a preference for a left-sided approach in patients with traumatic arrest or left-sided chest injuries. However, in patients with right-sided chest injuries and profound hypotension but have not arrested, a right-sided approach is recommended.

      The procedure is carried out in the following steps:
      – An incision is made along the 4th or 5th intercostal space, starting from the sternum at the front and extending to the posterior axillary line.
      – The incision should be deep enough to partially cut through the latissimus dorsi muscle.
      – The skin, subcutaneous fat, and superficial portions of the pectoralis and serratus muscles are divided.
      – The parietal pleura is divided, allowing entry into the pleural cavity.
      – The intercostal muscles are completely cut, and a rib spreader is placed and opened to provide visualization of the thoracic cavity.
      – The anterolateral approach allows access to important anatomical structures during resuscitation, including the pulmonary hilum, heart, and aorta.

      In cases where there is suspicion of a right-sided heart injury, an additional incision can be made on the right side, extending across the entire chest. This is known as a bilateral anterolateral thoracotomy or a clamshell thoracotomy.

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      • Trauma
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  • Question 28 - A 25-year-old woman is brought into the emergency department after sustaining a single...

    Incorrect

    • A 25-year-old woman is brought into the emergency department after sustaining a single stab wound to the abdomen while attempting to intervene in a fight. The patient's observations are as follows:

      Parameter Reading
      Blood pressure: 122/84 mmHg
      Pulse rate: 88 bpm
      Respiration rate: 12 rpm
      SpO2: 98% on air

      Which two organs are frequently affected in cases of penetrating abdominal trauma?

      Your Answer:

      Correct Answer: Liver and small bowel

      Explanation:

      In cases of penetrating abdominal trauma, two organs that are frequently affected are the liver and the small bowel. This means that when a person sustains a stab wound or any other type of injury that penetrates the abdomen, these two organs are at a higher risk of being damaged.

      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.

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      • Trauma
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  • Question 29 - A 42-year-old woman is brought in by ambulance following a high-speed car accident....

    Incorrect

    • 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 placed. 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 triple immobilized. 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 have been sent to the laboratory, including a request for a cross-match. She experiences significant suprapubic tenderness upon abdominal palpation, and there is noticeable bruising around her pelvis. A pelvic X-ray reveals a vertical shear type pelvic fracture.
      What type of shock is she experiencing?

      Your Answer:

      Correct Answer: Class III

      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 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 is still 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.

      In class III hemorrhage, like the case of this patient, the blood loss is between 1500-2000 mL or 30-40% of the blood volume. The pulse rate further increases to 120-140 beats per minute, and the systolic blood pressure decreases. The pulse pressure continues to decrease, and the respiratory rate rises to 30-40 breaths per minute. The urine output significantly decreases to 5-15 mL per hour, and the patient becomes anxious and confused.

      In class IV hemorrhage, the blood loss exceeds 2000 mL or more than 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 further decreased, and the respiratory rate exceeds 40 breaths per minute. The urine output becomes negligible, and the patient’s CNS/mental status deteriorates to a state of confusion and lethargy.

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      • Trauma
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  • Question 30 - A 45-year-old woman is brought into resus by blue light ambulance following a...

    Incorrect

    • A 45-year-old woman is brought into resus by blue light ambulance following a car accident. She was hit by a truck while crossing the road and has a suspected pelvic injury. She is currently on a backboard with cervical spine protection and a pelvic binder in place. The massive transfusion protocol is activated.
      According to the ATLS guidelines, what other medication should be administered?

      Your Answer:

      Correct Answer: Tranexamic acid

      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.

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      • Trauma
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SESSION STATS - PERFORMANCE PER SPECIALTY

Trauma (7/10) 70%
Passmed