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Question 1
Incorrect
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A 42-year-old woman is brought in by ambulance following a severe car accident. There was a prolonged extraction at the scene, and a complete trauma call is initiated. 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 immobilized with triple precautions. The airway is clear, and her chest examination is normal. Two large-bore cannulas have been inserted in her antecubital fossa, and a comprehensive set of blood tests, including a request for a cross-match, has been sent to the laboratory. She experiences significant tenderness in the suprapubic area upon abdominal palpation, and noticeable bruising is evident around her pelvis. A pelvic X-ray reveals a vertical shear type pelvic fracture.
Approximately how much blood has she lost?Your Answer: Less than 750 mL
Correct Answer: 1500-2000 mL
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 different 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 remains 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.
The patient in this case is in class III hemorrhage, with a blood loss of 1500-2000 mL or 30-40% of the blood volume. The pulse rate is elevated, ranging from 120-140 beats per minute, and the systolic blood pressure is decreased. The pulse pressure is also decreased, and the respiratory rate is elevated to 30-40 breaths per minute. The urine output decreases significantly to 5-15 mL per hour, and the patient may experience anxiety and confusion.
Class IV hemorrhage represents the most severe level of blood loss, with a loss of over 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 decreased, and the respiratory rate is over 40 breaths per minute. The urine output becomes negligible, and the patient may become confused and lethargic.
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This question is part of the following fields:
- Trauma
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Question 2
Incorrect
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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: Infection of burn tissue
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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This question is part of the following fields:
- Trauma
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Question 3
Incorrect
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A 47 year old male visits the emergency department after injuring his knee. The patient explains that he extended his leg after tripping on a flight of stairs, but experienced intense pain around the knee when he landed on his foot. Walking has become challenging for the patient. The patient experiences tenderness above the patella and upon examination, the patella appears to be positioned lower than normal. An X-ray of the knee is requested. What is used to evaluate the accurate placement (height) of the patella on the X-ray?
Your Answer: Apley's ratio
Correct Answer: Insall-Salvati ratio
Explanation:The Insall-Salvati ratio is determined by dividing the length of the patellar tendon (TL) by the length of the patella (PL). This ratio is used to compare the relative lengths of these two structures. A normal ratio is typically 1:1.
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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Question 4
Correct
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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: 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 anxiousCLASS 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 anxiousCLASS 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, confusedCLASS IV:
– Blood loss: More than 2000 mL
– Blood loss (% blood volume): More than 40%
– Pulse rate: More than 140 bpm
– Systolic blood pressure: Decreased
– Pulse pressure: Decreased
– Respiratory rate: More than 40 breaths per minute
– Urine output: Negligible
– CNS/mental status: Confused, lethargic -
This question is part of the following fields:
- Trauma
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Question 5
Incorrect
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A 35-year-old woman is brought in by ambulance after being hit by a car while walking. She is brought to the resuscitation area of your Emergency Department complaining of abdominal and pain on the left side of her chest. There is bruising on the left side of her chest but no visible open wounds. She is experiencing severe shortness of breath, and her vital signs are HR 112, BP 88/51, SaO2 88% on high flow oxygen. Upon examining her chest, you observe that her trachea is deviated to the right and there are no breath sounds and a hyper-resonant percussion note on the left side of her chest. Additionally, she has distended neck veins.
What is the SINGLE most likely diagnosis?Your Answer: Simple pneumothorax
Correct Answer: Tension pneumothorax
Explanation:A tension pneumothorax occurs when there is an air leak from the lung or chest wall that acts like a one-way valve. This causes air to build up in the pleural space without any way to escape. As a result, the pressure in the pleural space increases and pushes the mediastinum into the opposite side of the chest. If left untreated, this can lead to cardiovascular instability and even cardiac arrest.
The clinical features that are typically seen in tension pneumothorax include respiratory distress and cardiovascular instability. Tracheal deviation away from the side of injury, unilateral absence of breath sounds on the affected side, and a hyper-resonant percussion note are also characteristic. Other signs may include distended neck veins and cyanosis, although cyanosis is usually a late sign.
Both tension pneumothorax and massive haemothorax can cause decreased breath sounds on auscultation. However, they can be differentiated by percussion. Hyper-resonance suggests tension pneumothorax, while dullness indicates a massive haemothorax.
It is important to note that tension pneumothorax is a clinical diagnosis and treatment should not be delayed for radiological confirmation. Immediate decompression through needle thoracocentesis is the recommended treatment. Traditionally, a large-bore needle or cannula is inserted into the 2nd intercostal space in the midclavicular line of the affected side. However, studies have shown that using the 4th or 5th intercostal space in the midaxillary line has better success in reaching the thoracic cavity in adult patients. ATLS now recommends this location for needle decompression in adults. The location for children remains the same, and the 2nd intercostal space in the midclavicular line should still be used. It is important to remember that needle thoracocentesis is a temporary measure and definitive treatment involves the insertion of a chest drain.
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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 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 IV
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 7
Incorrect
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A 42 year old man is brought into the emergency department after a car accident. He has significant bruising on the right side of his chest. You suspect he may have a hemothorax. When would thoracotomy be considered as a treatment option?
Your Answer: Associated head injury
Correct Answer: Prompt drainage of ≥1500 ml of blood following chest drain insertion
Explanation:Thoracotomy is recommended when there is a need for prompt drainage of at least 1500 ml of blood following the insertion of a chest drain. Additionally, it is indicated when there is a continuous blood loss of more than 200 ml per hour for a period of 2-4 hours or when there is a persistent requirement for blood transfusion.
Further Reading:
Haemothorax is the accumulation of blood in the pleural cavity of the chest, usually resulting from chest trauma. It can be difficult to differentiate from other causes of pleural effusion on a chest X-ray. Massive haemothorax refers to a large volume of blood in the pleural space, which can impair physiological function by causing blood loss, reducing lung volume for gas exchange, and compressing thoracic structures such as the heart and IVC.
The management of haemothorax involves replacing lost blood volume and decompressing the chest. This is done through supplemental oxygen, IV access and cross-matching blood, IV fluid therapy, and the insertion of a chest tube. The chest tube is connected to an underwater seal and helps drain the fluid, pus, air, or blood from the pleural space. In cases where there is prompt drainage of a large amount of blood, ongoing significant blood loss, or the need for blood transfusion, thoracotomy and ligation of bleeding thoracic vessels may be necessary. It is important to have two IV accesses prior to inserting the chest drain to prevent a drop in blood pressure.
In summary, haemothorax is the accumulation of blood in the pleural cavity due to chest trauma. Managing haemothorax involves replacing lost blood volume and decompressing the chest through various interventions, including the insertion of a chest tube. Prompt intervention may be required in cases of significant blood loss or ongoing need for blood transfusion.
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This question is part of the following fields:
- Trauma
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Question 8
Incorrect
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A 7-year-old girl is brought into the resus room after a car accident. She is struggling to breathe, and you cannot hear any breath sounds on the right side. Her trachea is shifted to the left, and her neck veins are swollen. Based on your clinical assessment, you diagnose her with a tension pneumothorax and decide to perform a needle thoracocentesis.
Where should you perform the needle thoracocentesis?Your Answer: 2nd intercostal space midaxillary line
Correct Answer: 2nd intercostal space midclavicular line
Explanation:A tension pneumothorax occurs when there is an air leak from the lung or chest wall that acts like a one-way valve. This causes air to build up in the pleural space without any way to escape. As a result, pressure in the pleural space increases and pushes the mediastinum into the opposite hemithorax. If left untreated, this can lead to cardiovascular instability, shock, and cardiac arrest.
The clinical features of tension pneumothorax include respiratory distress and cardiovascular instability. Tracheal deviation away from the side of the injury, unilateral absence of breath sounds on the affected side, and a hyper-resonant percussion note are also characteristic. Other signs include distended neck veins and cyanosis, which is a late sign. It’s important to note that both tension pneumothorax and massive haemothorax can cause decreased breath sounds on auscultation. However, percussion can help differentiate between the two conditions. Hyper-resonance suggests tension pneumothorax, while dullness suggests a massive haemothorax.
Tension pneumothorax is a clinical diagnosis and should not be delayed for radiological confirmation. Requesting a chest X-ray in this situation can delay treatment and put the patient at risk. Immediate decompression through needle thoracocentesis is the recommended treatment. Traditionally, a large-bore needle or cannula is inserted into the 2nd intercostal space in the midclavicular line of the affected hemithorax. However, studies on cadavers have shown better success in reaching the thoracic cavity when the 4th or 5th intercostal space in the midaxillary line is used in adult patients. ATLS now recommends this location for needle decompression in adults. The site for needle thoracocentesis in children remains the same, using the 2nd intercostal space in the midclavicular line. It’s important to remember that needle thoracocentesis is a temporary measure, and the insertion of a chest drain is the definitive treatment.
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This question is part of the following fields:
- Trauma
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Question 9
Correct
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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: 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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This question is part of the following fields:
- Trauma
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Question 10
Incorrect
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A 32 year old male is brought into the emergency department following a car accident. You evaluate the patient's risk of cervical spine injury using the Canadian C-spine rule. What is included in the assessment for the Canadian C-spine rule?
Your Answer: Ask patient to grip fingers to assess grip strength
Correct Answer: Ask patient to rotate their neck 45 degrees to the left and right
Explanation:The Canadian C-spine assessment includes evaluating for tenderness along the midline of the spine, checking for any abnormal sensations in the limbs, and assessing the ability to rotate the neck 45 degrees to the left and right. While a significant portion of the assessment relies on gathering information from the patient’s history, there are also physical examination components involved. These include testing for tenderness along the midline of the cervical spine, asking the patient to perform neck rotations, ensuring they are comfortable in a sitting position, and assessing for any sensory deficits in the limbs. It is important to note that any reported paraesthesia in the upper or lower limbs can also be taken into consideration during the assessment.
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.
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This question is part of the following fields:
- Trauma
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Question 11
Correct
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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: 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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This question is part of the following fields:
- Trauma
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Question 12
Incorrect
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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: Diagnostic peritoneal lavage
Correct 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.
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This question is part of the following fields:
- Trauma
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Question 13
Incorrect
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You are managing an elderly trauma patient in the resuscitation bay. The patient has sustained severe chest contusions and you have concerns regarding the presence of cardiac tamponade. What is considered a classic clinical sign of cardiac tamponade?
Your Answer: Loud S2 heart sound with splitting
Correct Answer: Neck vein distension
Explanation:Cardiac tamponade is characterized by several classic clinical signs. These include distended neck veins, hypotension, and muffled heart sounds. These three signs are collectively known as Beck’s triad. Additionally, patients with cardiac tamponade may also experience pulseless electrical activity (PEA). It is important to recognize these signs as they can indicate the presence of cardiac tamponade.
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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This question is part of the following fields:
- Trauma
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Question 14
Incorrect
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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.
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This question is part of the following fields:
- Trauma
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Question 15
Incorrect
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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.
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This question is part of the following fields:
- Trauma
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Question 16
Incorrect
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A 45-year-old woman is brought into the emergency room by an ambulance after being involved in a car accident. She was hit by a truck while driving her car and is suspected to have a pelvic injury. She is currently immobilized on a backboard with cervical spine protection and a pelvic binder in place.
According to the ATLS guidelines, how much crystalloid fluid should be administered during the initial assessment?Your Answer: 200 mL
Correct Answer: 1 L
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 17
Incorrect
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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: Tension pneumothorax
Correct 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.
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This question is part of the following fields:
- Trauma
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Question 18
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 affect only the epidermis
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 19
Incorrect
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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: Albumin 2%
Correct 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.
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This question is part of the following fields:
- Trauma
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Question 20
Incorrect
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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: Ventricular tachycardia
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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This question is part of the following fields:
- Trauma
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Question 21
Correct
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You are present at a trauma call and have been asked to examine the chest of a child who has been hit by a car. According to the ATLS guidelines, what are the life-threatening chest injuries that should be identified and treated in the PRIMARY survey?
Your Answer: Open pneumothorax
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 22
Incorrect
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You are overseeing the care of a trauma patient in the resuscitation bay. A chest tube has been inserted through thoracostomy to drain the hemothorax. The initial amount of blood drained is documented, and there are plans to monitor the additional blood volume drained every hour. What would be an indication for thoracotomy in this patient?
Your Answer: 780 ml blood drained from pleural cavity on initial insertion of chest drain
Correct Answer: 250 ml blood drained from pleural cavity (in addition to previous volumes) between hours 2 and 3 post insertion
Explanation:The main indications for thoracotomy in patients with haemothorax are prompt drainage of at least 1500 ml of blood, ongoing blood loss of more than 200 ml per hour for 2-4 hours, and the need for continued blood transfusion. Option 3 in the given choices meets these criteria as the blood loss remains above 200 ml per hour for more than 2 hours after the drain is inserted. Option 1 does not meet the criteria as the blood volume is below 1500 ml. Option 2 does not meet the criteria as the blood loss has not been ongoing for at least 2 hours. Option 4 does not meet the criteria as there is no information indicating the need for ongoing blood transfusion.
Further Reading:
Haemothorax is the accumulation of blood in the pleural cavity of the chest, usually resulting from chest trauma. It can be difficult to differentiate from other causes of pleural effusion on a chest X-ray. Massive haemothorax refers to a large volume of blood in the pleural space, which can impair physiological function by causing blood loss, reducing lung volume for gas exchange, and compressing thoracic structures such as the heart and IVC.
The management of haemothorax involves replacing lost blood volume and decompressing the chest. This is done through supplemental oxygen, IV access and cross-matching blood, IV fluid therapy, and the insertion of a chest tube. The chest tube is connected to an underwater seal and helps drain the fluid, pus, air, or blood from the pleural space. In cases where there is prompt drainage of a large amount of blood, ongoing significant blood loss, or the need for blood transfusion, thoracotomy and ligation of bleeding thoracic vessels may be necessary. It is important to have two IV accesses prior to inserting the chest drain to prevent a drop in blood pressure.
In summary, haemothorax is the accumulation of blood in the pleural cavity due to chest trauma. Managing haemothorax involves replacing lost blood volume and decompressing the chest through various interventions, including the insertion of a chest tube. Prompt intervention may be required in cases of significant blood loss or ongoing need for blood transfusion.
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This question is part of the following fields:
- Trauma
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Question 23
Incorrect
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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: Soot on the chest wall
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.
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This question is part of the following fields:
- Trauma
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Question 24
Incorrect
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A 15 year old is brought into the emergency department with burns to the feet which she sustained whilst removing an item from a lit bonfire. The patient's father is worried she has full thickness burns. Which of the following signs is indicative of a full thickness burn?
Your Answer: Bistering
Correct Answer: Painless
Explanation:Full thickness burns are devoid of pain as they result in the complete destruction of the superficial nerve endings. These burns usually display characteristics such as a lack of sensation, a coloration of the burnt skin in shades of white, brown, or black, a texture that is waxy or leathery, and a dry appearance without any blistering.
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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This question is part of the following fields:
- Trauma
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Question 25
Incorrect
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A 35 year old male presents to the emergency department after twisting his right ankle while playing basketball. He reports pain on the outer side of his ankle and foot, and experiences discomfort when putting weight on it.
After conducting a physical examination, the healthcare provider decides to order ankle and foot X-rays based on the Ottawa foot & ankle rules. According to these guidelines, which of the following scenarios would warrant a foot X-ray?Your Answer: Tenderness anterior edge lateral malleolus
Correct Answer: Tenderness over navicular
Explanation:An X-ray of the foot is recommended when there is pain in the base of the fifth metatarsal or the navicular bone, as well as an inability to bear weight immediately after an injury or in the emergency department. The Ottawa ankle rules can also be used to determine if an X-ray is necessary for ankle injuries. These rules focus on two specific areas (the malleolar and midfoot zones) to determine if an X-ray of the ankle or foot is needed. More information on these rules can be found in the notes below.
Further Reading:
Ankle fractures are traumatic lower limb and joint injuries that involve the articulation between the tibia, fibula, and talus bones. The ankle joint allows for plantar and dorsiflexion of the foot. The key bony prominences of the ankle are called malleoli, with the medial and posterior malleolus being prominences of the distal tibia and the lateral malleolus being a prominence of the distal fibula. The distal fibula and tibia are joined together by the distal tibiofibular joint or syndesmosis, which is comprised of three key ligaments. An ankle X-ray series is often used to guide clinical decision making in patients with ankle injuries, using the Ottawa ankle rules to determine if an X-ray is necessary. Ankle fractures are commonly described by the anatomical fracture pattern seen on X-ray relative to the malleoli involved, such as isolated malleolus fractures, bimalleolar fractures, and trimalleolar fractures. The Weber classification is a commonly used system for distal fibula fractures, categorizing them as Weber A, B, or C based on the level and extent of the fracture.
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This question is part of the following fields:
- Trauma
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Question 26
Incorrect
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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 Bohler's angle is 120-145°
Correct 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.
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This question is part of the following fields:
- Trauma
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Question 27
Incorrect
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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: Provision of analgesia and supplemental oxygen
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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This question is part of the following fields:
- Trauma
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Question 28
Incorrect
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You are overseeing the care of a 25-year-old male who has sustained a stab wound to the chest. During your examination, you observe air bubbling from the wound, indicating a potential sucking chest wound. What is the primary intervention that should be prioritized in managing this injury?
Your Answer: Withhold interventions and organise patient transfer to theatre
Correct Answer: Application of an occlusive dressing with one side left open
Explanation:Dressings that function as flutter valves are beneficial in the initial treatment of open pneumothorax. The first step involves applying an occlusive dressing that covers the wound, with one side intentionally left open to create a flutter-valve effect. Alternatively, a chest seal device can be used. The occlusive dressing should be square or rectangular in shape, with three sides securely sealed and one side left unsealed. When the patient inhales, the dressing is drawn against the chest wall, preventing air from entering the chest cavity. However, during exhalation, air can still escape through the open side of the dressing. Another option is to use a chest seal device that includes a built-in one-way (flutter) valve. Definitive management typically involves surgical intervention to repair the defect and address any other injuries. The Royal College of Emergency Medicine (RCEM) also recommends surgery as the definitive treatment, as inserting a chest drain may disrupt tissues that could otherwise be used to cover the defect with muscle flaps.
Further Reading:
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.
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This question is part of the following fields:
- Trauma
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Question 29
Incorrect
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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: Para-colic
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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This question is part of the following fields:
- Trauma
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Question 30
Incorrect
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You evaluate the airway and breathing of a child who has been brought into the emergency room by an ambulance after being rescued from a house fire. You suspect that the child may have signs of airway obstruction.
Which of the following statements about managing the airway and breathing in burned patients is correct?Your Answer:
Correct Answer:
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.
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This question is part of the following fields:
- Trauma
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