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  • Question 1 - A 35-year-old man is brought into resus by blue light ambulance. He has...

    Incorrect

    • A 35-year-old man is brought into resus by blue light ambulance. He has been involved in a car accident and has suffered severe injuries. You assess his airway and are concerned about the potential for airway obstruction.
      What is the primary risk factor for airway obstruction in a patient with severe injuries?

      Your Answer: Visible burns on the left side of the chest

      Correct Answer: A carboxyhaemoglobin level of 15%

      Explanation:

      Early assessment of the airway is a critical aspect of managing a patient who has suffered burns. Airway blockage can occur rapidly due to direct injury, such as inhalation injury, or as a result of swelling caused by the burn. If there is a history of trauma, the airway should be evaluated and treated while maintaining control of the cervical spine.

      Signs of airway obstruction may not be immediately apparent, as swelling typically does not occur right away. Children with thermal burns are at a higher risk of airway obstruction compared to adults due to their smaller airway size, so they require careful observation.

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

    • This question is part of the following fields:

      • Trauma
      45.5
      Seconds
  • Question 2 - A 37 year old male is brought into the emergency department with severe...

    Correct

    • A 37 year old male is brought into the emergency department with severe chest injuries following a car accident. FAST scanning shows the presence of around 100 ml of fluid in the pericardium. The patient's blood pressure is 118/78 mmHg and pulse rate is 92. What is the recommended course of action for managing this patient?

      Your Answer: Transfer to theatre for thoracotomy

      Explanation:

      For individuals with traumatic cardiac tamponade, thoracotomy is the recommended treatment. In the case of a trauma patient with a significant buildup of fluid around the heart and the potential for tamponade, it is advised to transfer stable patients to the operating room for thoracotomy instead of performing pericardiocentesis. Pericardiocentesis, when done correctly, is likely to be unsuccessful due to the presence of clotted blood in the pericardium. Additionally, performing pericardiocentesis would cause a delay in the thoracotomy procedure. If access to the operating room is not possible, pericardiocentesis may be considered as a temporary solution.

      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.

    • This question is part of the following fields:

      • Trauma
      11.5
      Seconds
  • Question 3 - A 52 year old male visits the emergency department after crashing into the...

    Correct

    • A 52 year old male visits the emergency department after crashing into the side of a car while riding his bicycle downhill at a fast pace. The handlebars were forcefully pushed into his abdomen, resulting in a noticeable large contusion on the front of his abdominal wall. The patient's vital signs are as follows:

      Blood pressure: 92/60 mmHg
      Pulse rate: 104 bpm
      Temperature: 37.1ºC
      SpO2: 97% on room air

      Which two abdominal organs are most commonly affected in cases of blunt abdominal trauma?

      Your Answer: Liver and spleen

      Explanation:

      Blunt abdominal trauma often results in injury to the liver and spleen, which are the two organs most commonly affected. The liver, being the largest and located in a vulnerable position, is particularly prone to injury in such cases.

      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
      18.9
      Seconds
  • Question 4 - A female trauma victim that has experienced substantial blood loss is estimated to...

    Incorrect

    • A female trauma victim that has experienced substantial blood loss is estimated to have experienced a grade III haemorrhage. The patient's weight is approximately 60 kg.
      Which of the following physiological indicators aligns with a diagnosis of grade III haemorrhage?

      Your Answer: Loss of 25% of blood volume

      Correct Answer: Urine output of 10 ml/hr

      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
      32
      Seconds
  • Question 5 - A 48-year-old male presents to the emergency department following a workplace injury. He...

    Correct

    • A 48-year-old male presents to the emergency department following a workplace injury. He sustained a large contusion to the anterior abdominal wall after a pneumatic tool discharged into his abdomen. The patient's vital signs are as follows:

      - Blood pressure: 92/60 mmHg
      - Pulse rate: 104 bpm
      - Temperature: 37.1ºC
      - SpO2: 97% on air

      Which imaging modality would be most appropriate for evaluating this patient with blunt abdominal trauma?

      Your Answer: FAST scan

      Explanation:

      The preferred imaging method for unstable patients with blunt abdominal trauma is FAST scanning (Focused Assessment with Sonography in Trauma). It has replaced DPL as the imaging modality of choice. It is important to note that the primary purpose of a FAST scan is to detect intraperitoneal fluid, assumed to be blood, and guide the decision on whether a laparotomy is necessary. In this case, a CT scan is not recommended as the patient is unstable with tachycardia and hypotension. While CT is the most diagnostically accurate imaging technique, it requires a stable and cooperative patient.

      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
      3.8
      Seconds
  • Question 6 - 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 blood pressure is unstable, and the hospital has initiated the massive transfusion protocol. You decide to administer tranexamic acid as well.
      What is the recommended time frame for administering tranexamic acid in a trauma situation?

      Your Answer: Within 1 hour

      Correct Answer: Within 3 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
      14.2
      Seconds
  • Question 7 - A 35-year-old woman is brought in by ambulance following a car accident where...

    Correct

    • A 35-year-old woman is brought in by ambulance following a car accident where her car was struck by a truck. She has suffered severe facial injuries and shows signs of airway obstruction. Her neck is immobilized. She has suffered significant midface trauma, and the anesthesiologist decides to secure a definitive airway by intubating the patient. He is unable to pass an endotracheal tube, and he decides to perform a needle cricothyroidotomy.

      Which of the following statements about needle cricothyroidotomy is correct?

      Your Answer: Evidence of local infection is a valid contraindication

      Explanation:

      A needle cricothyroidotomy is a procedure used in emergency situations to provide oxygenation when intubation and oxygenation are not possible. It is typically performed when a patient cannot be intubated or oxygenated. There are certain conditions that make this procedure contraindicated, such as local infection, distorted anatomy, previous failed attempts, and swelling or mass lesions.

      To perform a needle cricothyroidotomy, the necessary equipment should be assembled and prepared. The patient should be positioned supine with their neck in a neutral position. The neck should be cleaned in a sterile manner using antiseptic swabs. If time allows, the area should be anesthetized locally. A 12 or 14 gauge over-the-needle catheter should be assembled to a 10 mL syringe.

      The cricothyroid membrane, located between the thyroid and cricoid cartilage, should be identified anteriorly. The trachea should be stabilized with the thumb and forefinger of one hand. Using the other hand, the skin should be punctured in the midline with the needle over the cricothyroid membrane. The needle should be directed at a 45° angle caudally while negative pressure is applied to the syringe. Needle aspiration should be maintained as the needle is inserted through the lower half of the cricothyroid membrane, with air aspiration indicating entry into the tracheal lumen.

      Once the needle is in place, the syringe and needle should be removed while the catheter is advanced to the hub. The oxygen catheter should be attached and the airway secured. It is important to be aware of possible complications, such as technique failure, cannula obstruction or dislodgement, injury to local structures, and surgical emphysema if high flow oxygen is administered through a malpositioned cannula.

    • This question is part of the following fields:

      • Trauma
      29.9
      Seconds
  • Question 8 - A 21 year old patient is brought into the emergency department with burns...

    Correct

    • A 21 year old patient is brought into the emergency department with burns to the left arm. The patient informs you that one of their friends had accidentally set their sleeve on fire with a lighter, causing the material to quickly burn and stick to their skin. The patient's entire left arm is burned, with the front part experiencing superficial partial thickness burns and the back part having areas of deep partial thickness and full thickness burns. What is the estimated total body surface area of burn in this patient?

      Your Answer: 9%

      Explanation:

      To estimate the total body surface area of burn, we need to consider the rule of nines. This rule divides the body into different regions, each representing a certain percentage of the total body surface area. According to the rule of nines, the left arm accounts for 9% of the total body surface area. Therefore, the estimated total body surface area of burn in this patient is 9%.

      Further Reading:

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

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

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

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

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

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

    • This question is part of the following fields:

      • Trauma
      14.5
      Seconds
  • Question 9 - A child presents with a thermal burn affecting her left hand that occurred...

    Incorrect

    • A child presents with a thermal burn affecting her left hand that occurred in the kitchen while baking. You evaluate the burn and observe that it is a deep partial-thickness burn.
      Which of the following statements about deep partial-thickness burns is accurate?

      Your Answer: There is no sensation in the area

      Correct Answer: They do not blanch with pressure

      Explanation:

      Assessing the depth of a burn is crucial for determining the severity of the injury and planning appropriate wound care. Burns are typically classified as first-, second-, or third-degree, depending on how deeply they penetrate the skin’s surface.

      First-degree burns, also known as superficial burns, only affect the outer layer of skin called the epidermis. These burns are characterized by redness and pain, with dry skin and no blistering. An example of a first-degree burn is mild sunburn. They usually do not require intravenous fluid replacement and are not included in the assessment of the burn’s extent. Long-term tissue damage is rare with these burns.

      Second-degree burns, also called partial-thickness burns, involve both the epidermis and part of the dermis layer of skin. They can be further categorized as superficial partial-thickness or deep partial-thickness burns. Superficial partial-thickness burns are moist, hypersensitive, potentially blistered, uniformly pink, and blanch when touched. Deep partial-thickness burns are drier, less painful, potentially blistered, red or mottled in appearance, and do not blanch when touched.

      Third-degree burns, also known as full-thickness burns, destroy both the epidermis and dermis layers of skin and extend into the subcutaneous tissue. These burns may also damage underlying bones, muscles, and tendons. The burn site appears translucent or waxy white, or it can be charred. Once the epidermis is removed, the underlying dermis may initially appear red but does not blanch under pressure. This dermis is typically dry and does not produce any fluid. Since the nerve endings are destroyed, there is no sensation in the affected area.

    • This question is part of the following fields:

      • Trauma
      23.5
      Seconds
  • Question 10 - 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: Accessory respiratory muscle use

      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
      31.5
      Seconds

SESSION STATS - PERFORMANCE PER SPECIALTY

Trauma (5/10) 50%
Passmed