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  • Question 1 - You are overseeing the care of a 70-year-old male who suffered extensive burns...

    Correct

    • You are overseeing the care of a 70-year-old male who suffered extensive burns in a residential fire. After careful calculation, you have determined that the patient will require 6 liters of fluid over the course of the next 24 hours. Which intravenous fluid would be the most suitable to prescribe?

      Your Answer: Hartmann's solution

      Explanation:

      When it comes to managing acute burns, Hartmann’s or lactated Ringers are the preferred intravenous fluids. There is no scientific evidence to support the use of colloids in burn management. In the United Kingdom, Hartmann’s solution is the most commonly used fluid for this purpose.

      Further Reading:

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

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

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

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

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

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

    • This question is part of the following fields:

      • Trauma
      11.3
      Seconds
  • Question 2 - You are managing a 35 year old patient with severe burns. You determine...

    Incorrect

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

      Your Answer: 4000 ml

      Correct Answer: 6400 ml

      Explanation:

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

      Further Reading:

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

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

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

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

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

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

    • This question is part of the following fields:

      • Trauma
      75.8
      Seconds
  • Question 3 - A 45-year-old presents to the emergency department following a seemingly minor rear-end car...

    Correct

    • A 45-year-old presents to the emergency department following a seemingly minor rear-end car accident. There are no reported sensory deficits. What clinical finding would indicate the need for radiological evaluation of the cervical spine in this scenario?

      Your Answer: Patient unable to actively rotate their neck 45 degrees to the left and right

      Explanation:

      The ability to rotate the neck actively by 45 degrees to the left and right is a crucial distinction between the ‘no risk’ and ‘low risk’ categories when applying the Canadian C-spine rules. In this case, the patient does not exhibit any high-risk factors for cervical spine injury according to the Canadian C-spine rule. However, they do have a low-risk factor due to their involvement in a minor rear-end motor collision. If a patient with a low-risk factor is unable to actively rotate their neck by 45 degrees in either direction, they should undergo imaging. It is important to note that while the patient’s use of anticoagulation medication may affect the need for brain imaging, it typically does not impact the decision to perform a CT scan of the cervical spine.

      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
      10.7
      Seconds
  • Question 4 - A 35 year old female presents to the emergency department following a motor...

    Correct

    • A 35 year old female presents to the emergency department following a motor vehicle collision. Which system should be utilized to evaluate the potential for cervical spine injury?

      Your Answer: Canadian C-spine rules

      Explanation:

      When a 35-year-old female comes to the emergency department after a motor vehicle collision, it is important to assess the potential for cervical spine injury. To do this, the Canadian C-spine rules should be utilized. These rules provide a systematic approach to determine whether imaging, such as X-rays, is necessary to evaluate the cervical spine. The Canadian C-spine rules take into account various factors such as the patient’s age, mechanism of injury, and presence of certain symptoms or physical findings. By following these rules, healthcare professionals can effectively evaluate the potential for cervical spine injury and determine the appropriate course of action for further assessment and management.

      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
      4.8
      Seconds
  • Question 5 - A 5-year-old child is brought into the emergency room by an ambulance with...

    Correct

    • A 5-year-old child is brought into the emergency room by an ambulance with sirens blaring. The child has been in a house fire and has sustained severe burns. The anesthesiologist examines the child's airway and is worried about the potential for airway blockage. Intubation is scheduled for the patient, and the necessary equipment is being prepared.
      As per the ATLS recommendations, what is the smallest internal diameter endotracheal tube that should be utilized?

      Your Answer: 4.5 mm

      Explanation:

      Patients who have suffered burns should receive high-flow oxygen (15 L) through a reservoir bag while their breathing is being evaluated. If intubation is necessary, it is crucial to use an appropriately sized endotracheal tube (ETT). Using a tube that is too small can make it difficult or even impossible to ventilate the patient, clear secretions, or perform bronchoscopy.

      According to the ATLS guidelines, adults should be intubated using an ETT with an internal diameter (ID) of at least 7.5 mm or larger. Children, on the other hand, should have an ETT with an ID of at least 4.5 mm. Once a patient has been intubated, it is important to continue administering 100% oxygen until their carboxyhemoglobin levels drop to less than 5%.

      To protect the lungs, it is recommended to use lung protective ventilation techniques. This involves using low tidal volumes (4-8 mL/kg) and ensuring that peak inspiratory pressures do not exceed 30 cmH2O.

    • This question is part of the following fields:

      • Trauma
      17.4
      Seconds
  • Question 6 - A 45-year-old individual is brought into the emergency department following a head injury...

    Correct

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

      Your Answer: 8 or less

      Explanation:

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

      Further Reading:

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

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

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

    • This question is part of the following fields:

      • Trauma
      6.8
      Seconds
  • Question 7 - You are summoned to a cardiac arrest in the resuscitation area of your...

    Incorrect

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

      Your Answer: Increased myocardial oxygen consumption

      Correct Answer: Increased cerebral perfusion pressures

      Explanation:

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

    • This question is part of the following fields:

      • Trauma
      24.8
      Seconds
  • Question 8 - A 32-year-old woman comes to the emergency department after falling while drunk. She...

    Correct

    • A 32-year-old woman comes to the emergency department after falling while drunk. She has a 6.5 cm cut on the back of her head and says she feels a tingling sensation in the area of the cut. Which of the following structures provides sensory innervation to the back of the head?

      Your Answer: C2 and C3 cervical nerves

      Explanation:

      The main sensory supply to the back of the scalp comes from the C2 and C3 cervical nerves. The scalp receives innervation from branches of both the trigeminal nerve and the cervical nerves, as depicted in the illustration in the notes. The C2 and C3 cervical nerves are primarily responsible for supplying sensation to the posterior scalp.

      Further Reading:

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

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

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

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

    • This question is part of the following fields:

      • Trauma
      20.2
      Seconds
  • Question 9 - A 22 year old male patient is brought into the emergency department with...

    Correct

    • A 22 year old male patient is brought into the emergency department with a stab wound to the left side of the chest. During assessment, you observe a 2 cm wide entry wound overlying the 4th intercostal space anterior axillary line, and you can hear a bubbling sound when the patient exhales. Upon examination, the trachea is central, there is reduced air entry on the left side, and percussion reveals a resonant left hemithorax.

      What is the probable diagnosis?

      Your Answer: Open pneumothorax

      Explanation:

      An open pneumothorax, also known as a sucking chest wound, occurs when air enters the pleural space due to an open chest wound or physical defect. This can lead to ineffective ventilation, causing hypoxia and hypercarbia. Air can enter the pleural cavity passively or be sucked in during inspiration, leading to lung collapse on that side. Sucking wounds can be heard audibly as air passes through the chest defect, and entry wounds are usually visible.

      To manage an open pneumothorax, respiratory compromise can be alleviated by covering the wound with a dressing or using a chest seal device. It is important to ensure that one side of the dressing is not occluded, allowing the dressing to function as a flutter valve and prevent significant air ingress during inspiration while allowing air to escape the pleural cavity. If tension pneumothorax is suspected after applying a dressing, the dressing may need to be temporarily removed for decompression.

      Intubation and intermittent positive pressure ventilation (IPPV) can be used to ventilate the patient and alleviate respiratory distress. Definitive management involves either inserting a chest drain or surgically repairing the defect. Surgical repair is typically preferred, especially for large wounds.

    • This question is part of the following fields:

      • Trauma
      12.6
      Seconds
  • Question 10 - A 42-year-old woman was involved in a car accident where her car collided...

    Incorrect

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

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

      Your Answer: Near the opening of the aortic valve

      Correct Answer: Near the ligamentum arteriosum

      Explanation:

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

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

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

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

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

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

    • This question is part of the following fields:

      • Trauma
      18.3
      Seconds

SESSION STATS - PERFORMANCE PER SPECIALTY

Trauma (7/10) 70%
Passmed