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Question 1
Correct
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You are present at a trauma call for an elderly pedestrian who has been hit by a vehicle. She exhibits bruising on the right side of her chest. The primary survey has been conducted, and you have been tasked with conducting a secondary survey.
As per the ATLS guidelines, which of the following would be considered a potentially life-threatening chest injury that should be identified and addressed during the SECONDARY survey?Your Answer: Traumatic aortic disruption
Explanation:The ATLS guidelines categorize chest injuries in trauma into two groups: life-threatening injuries that require immediate identification and treatment in the primary survey, and potentially life-threatening injuries that should be identified and treated in the secondary survey.
During the primary survey, the focus is on identifying and treating life-threatening thoracic injuries. These include airway obstruction, tracheobronchial tree injury, tension pneumothorax, open pneumothorax, massive haemothorax, and cardiac tamponade. Prompt recognition and intervention are crucial in order to prevent further deterioration and potential fatality.
In the secondary survey, attention is given to potentially life-threatening injuries that may not be immediately apparent. These include simple pneumothorax, haemothorax, flail chest, pulmonary contusion, blunt cardiac injury, traumatic aortic disruption, traumatic diaphragmatic injury, and blunt oesophageal rupture. These injuries may not pose an immediate threat to life, but they still require identification and appropriate management to prevent complications and ensure optimal patient outcomes.
By dividing chest injuries into these two categories and addressing them in a systematic manner, healthcare providers can effectively prioritize and manage trauma patients, ultimately improving their chances of survival and recovery.
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This question is part of the following fields:
- Trauma
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Question 2
Correct
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A 28-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 riding a bicycle and is suspected to have a pelvic injury. Her blood pressure is unstable, and the hospital has activated the massive transfusion protocol. You decide to also give her tranexamic acid.
What is the appropriate initial dose of tranexamic acid to administer and over what duration of time?Your Answer: 1 g IV over 10 minutes
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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This question is part of the following fields:
- Trauma
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Question 3
Incorrect
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The FY1 doctor seeks your guidance concerning an elderly patient they are managing who has experienced a head injury. They are uncertain whether to request a CT head scan for their patient. What clinical criteria would necessitate an immediate CT head scan in an elderly individual?
Your Answer: GCS 13 on initial assessment in the emergency department
Correct Answer: Haemotympanum
Explanation:Patients with head injuries who show any signs of basal skull fracture, such as haemotympanum, ‘panda’ eyes, cerebrospinal fluid leakage from the ear or nose, or Battle’s sign, should undergo urgent CT imaging. Additionally, the following indications also warrant a CT scan: a Glasgow Coma Scale (GCS) score of less than 13 on initial assessment in the emergency department (ED), a GCS score of less than 15 at 2 hours after the injury on assessment in the ED, suspected open or depressed skull fracture, post-traumatic seizure, new focal neurological deficit, greater than 1 episode of vomiting, or the patient being on anticoagulation. If any of these signs are present, a CT scan should be performed within 1 hour, except for patients on anticoagulation who should have a CT scan within 8 hours if they do not have any other signs. However, if patients on anticoagulation do have any of the other signs, the CT scan should be performed within 1 hour.
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 vomitingIndications 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
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Question 4
Incorrect
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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: Class III
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 anxiousCLASS 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 anxiousCLASS 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, confusedCLASS 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
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Question 5
Correct
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A 35 year old is brought to the emergency room after a car accident. He has a left sided mid-shaft femoral fracture and is experiencing abdominal pain. He appears restless. The patient's vital signs are as follows:
Blood pressure: 112/94 mmHg
Pulse rate: 102 bpm
Respiration rate: 21 rpm
SpO2: 97% on room air
Temperature: 36 ºC
Which of the following additional parameters would be most helpful in monitoring this patient?Your Answer: Urine output
Explanation:Shock is a condition characterized by inadequate tissue perfusion due to circulatory insufficiency. It can be caused by fluid loss or redistribution, as well as impaired cardiac output. The main causes of shock include haemorrhage, diarrhoea and vomiting, burns, diuresis, sepsis, neurogenic shock, anaphylaxis, massive pulmonary embolism, tension pneumothorax, cardiac tamponade, myocardial infarction, and myocarditis.
One common cause of shock is haemorrhage, which is frequently encountered in the emergency department. Haemorrhagic shock can be classified into different types based on the amount of blood loss. Type 1 haemorrhagic shock involves a blood loss of 15% or less, with less than 750 ml of blood loss. Patients with type 1 shock may have normal blood pressure and heart rate, with a respiratory rate of 12 to 20 breaths per minute.
Type 2 haemorrhagic shock involves a blood loss of 15 to 30%, with 750 to 1500 ml of blood loss. Patients with type 2 shock may have a pulse rate of 100 to 120 beats per minute and a respiratory rate of 20 to 30 breaths per minute. Blood pressure is typically normal in type 2 shock.
Type 3 haemorrhagic shock involves a blood loss of 30 to 40%, with 1.5 to 2 litres of blood loss. Patients with type 3 shock may have a pulse rate of 120 to 140 beats per minute and a respiratory rate of more than 30 breaths per minute. Urine output is decreased to 5-15 mls per hour.
Type 4 haemorrhagic shock involves a blood loss of more than 40%, with more than 2 litres of blood loss. Patients with type 4 shock may have a pulse rate of more than 140 beats per minute and a respiratory rate of more than 35 breaths per minute. They may also be drowsy, confused, and possibly experience loss of consciousness. Urine output may be minimal or absent.
In summary, shock is a condition characterized by inadequate tissue perfusion. Haemorrhage is a common cause of shock, and it can be classified into different types based on the amount of blood loss. Prompt recognition and management of shock are crucial in order to prevent further complications and improve patient outcomes
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This question is part of the following fields:
- Trauma
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Question 6
Incorrect
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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.
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This question is part of the following fields:
- Trauma
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Question 7
Incorrect
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A 35-year-old woman is involved in a car accident. Her observations are taken one hour after arriving at the Emergency Department. Her pulse rate is 88 bpm, BP is 130/50 mmHg, respiratory rate 16 breaths/minute, and her urine output over the past hour has been 40 ml. She has some bruising evident on her arm and is slightly nervous. The patient weighs approximately 65 kg.
How would you classify her haemorrhage according to the ATLS haemorrhagic shock classification?Your Answer: Class II
Correct Answer: Class I
Explanation:This patient’s physiological parameters are mostly within normal range, but there is an increased pulse pressure and slight anxiety, suggesting a class I haemorrhage. It is crucial to be able to identify the degree of blood loss based on vital signs and mental status changes. 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 individual. In a 70 kg male patient, the total circulating blood volume is approximately five litres, which accounts for about 7% of their total body weight.
The ATLS haemorrhagic shock classification is as follows:
CLASS I:
– Blood loss: Up to 750 mL
– Blood loss (% blood volume): Up to 15%
– Pulse rate: Less than 100 bpm
– Systolic BP: Normal
– Pulse pressure: Normal (or increased)
– Respiratory rate: 14-20 breaths per minute
– Urine output: Greater than 30 ml/hr
– CNS/mental status: Slightly anxiousCLASS II:
– Blood loss: 750-1500 mL
– Blood loss (% blood volume): 15-30%
– Pulse rate: 100-120 bpm
– Systolic BP: Normal
– Pulse pressure: Decreased
– Respiratory rate: 20-30 breaths per minute
– Urine output: 20-30 ml/hr
– CNS/mental status: Mildly anxiousCLASS III:
– Blood loss: 1500-2000 mL
– Blood loss (% blood volume): 30-40%
– Pulse rate: 120-140 bpm
– Systolic BP: Decreased
– Pulse pressure: Decreased
– Respiratory rate: 30-40 breaths per minute
– Urine output: 5-15 ml/hr
– CNS/mental status: Anxious, confusedCLASS IV:
– Blood loss: More than 2000 mL
– Blood loss (% blood volume): More than 40%
– Pulse rate: Greater than 140 bpm
– Systolic BP: Decreased
– Pulse pressure: Decreased
– Respiratory rate: More than 40 breaths per minute
– Urine output: Negligible
– CNS/mental status: Confused, lethargic -
This question is part of the following fields:
- Trauma
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Question 8
Correct
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A 35-year-old woman is involved in a car accident. Her observations are taken one hour after arriving in the Emergency Department. Her pulse rate is 110 bpm, BP is 120/80 mmHg, respiratory rate 20 breaths/minute, and her urine output over the past hour has been 30 ml. She is currently mildly anxious. The patient weighs approximately 65 kg.
How would you classify her haemorrhage according to the ATLS haemorrhagic shock classification?Your Answer: Class II
Explanation:This patient is showing a slightly elevated heart rate and respiratory rate, as well as a slightly reduced urine output. These signs indicate that the patient has experienced a class II haemorrhage at this point. It is important to be able to recognize the degree of blood loss based on vital sign and mental status abnormalities. The Advanced Trauma Life Support (ATLS) haemorrhagic shock classification provides a way to link the amount of blood loss to expected physiological responses in a healthy 70 kg patient. In a 70 kg male patient, the total circulating blood volume is approximately five liters, which accounts for about 7% of their total body weight.
The ATLS haemorrhagic shock classification is summarized as follows:
CLASS I:
– Blood loss: Up to 750 mL
– Blood loss (% blood volume): Up to 15%
– Pulse rate: Less than 100 bpm
– Systolic BP: Normal
– Pulse pressure: Normal (or increased)
– Respiratory rate: 14-20 breaths per minute
– Urine output: Greater than 30 mL/hr
– CNS/mental status: Slightly anxiousCLASS II:
– Blood loss: 750-1500 mL
– Blood loss (% blood volume): 15-30%
– Pulse rate: 100-120 bpm
– Systolic BP: Normal
– Pulse pressure: Decreased
– Respiratory rate: 20-30 breaths per minute
– Urine output: 20-30 mL/hr
– CNS/mental status: Mildly anxiousCLASS III:
– Blood loss: 1500-2000 mL
– Blood loss (% blood volume): 30-40%
– Pulse rate: 120-140 bpm
– Systolic BP: Decreased
– Pulse pressure: Decreased
– Respiratory rate: 30-40 breaths per minute
– Urine output: 5-15 mL/hr
– CNS/mental status: Anxious, confusedCLASS IV:
– Blood loss: More than 2000 mL
– Blood loss (% blood volume): More than 40%
– Pulse rate: More than 140 bpm
– Systolic BP: Decreased
– Pulse pressure: Decreased
– Respiratory rate: More than 40 breaths per minute
– Urine output: Negligible
– CNS/mental status: Confused, lethargic -
This question is part of the following fields:
- Trauma
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Question 9
Incorrect
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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: They destroy both the epidermis and dermis
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.
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This question is part of the following fields:
- Trauma
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Question 10
Incorrect
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You are requested to evaluate a 42-year-old individual with a knee injury sustained from leaping off a tall wall and landing on a leg that was completely extended. It is suspected that the patient may have experienced a quadriceps tendon rupture. Which of the subsequent observations would indicate this diagnosis?
Your Answer: Superior displacement of patella
Correct Answer: Loss of of active knee extension
Explanation:When a complete quadriceps rupture occurs, it leads to the inability to actively extend the knee. Please refer to the following notes for more detailed information.
Further Reading:
A quadriceps tendon tear or rupture is a traumatic lower limb and joint injury that occurs when there is heavy loading on the leg, causing forced contraction of the quadriceps while the foot is planted and the knee is partially bent. These tears most commonly happen at the osteotendinous junction between the tendon and the superior pole of the patella. Quadriceps tendon ruptures are more common than patellar tendon ruptures.
When a quadriceps tendon tear occurs, the patient usually experiences a tearing sensation and immediate pain. They will then typically complain of pain around the knee and over the tendon. Clinically, there will often be a knee effusion and weakness or inability to actively extend the knee.
In cases of complete quadriceps tears, the patella will be displaced distally, resulting in a low lying patella or patella infera, also known as patella baja. Radiological measurements, such as the Insall-Salvati ratio, can be used to measure patella height. The Insall-Salvati ratio is calculated by dividing the patellar tendon length by the patellar length. A normal ratio is between 0.8 to 1.2, while a low lying patella (patella baja) is less than 0.8 and a high lying patella (patella alta) is greater than 1.2.
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This question is part of the following fields:
- Trauma
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