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Question 1
Correct
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You are resuscitating a 68-year-old patient with suspected sepsis and your attending physician requests you perform a central line insertion. You discuss the most appropriate approach for the central line. Which approach carries the highest risk of infection?
Your Answer: Femoral
Explanation:The risk of infection is highest with femoral central lines.
A central venous catheter (CVC) is a type of catheter that is inserted into a large vein in the body, typically in the neck, chest, or groin. It has several important uses, including CVP monitoring, pulmonary artery pressure monitoring, repeated blood sampling, IV access for large volumes of fluids or drugs, TPN administration, dialysis, pacing, and other procedures such as placement of IVC filters or venous stents.
When inserting a central line, it is ideal to use ultrasound guidance to ensure accurate placement. However, there are certain contraindications to central line insertion, including infection or injury to the planned access site, coagulopathy, thrombosis or stenosis of the intended vein, a combative patient, or raised intracranial pressure for jugular venous lines.
The most common approaches for central line insertion are the internal jugular, subclavian, femoral, and PICC (peripherally inserted central catheter) veins. The internal jugular vein is often chosen due to its proximity to the carotid artery, but variations in anatomy can occur. Ultrasound can be used to identify the vessels and guide catheter placement, with the IJV typically lying superficial and lateral to the carotid artery. Compression and Valsalva maneuvers can help distinguish between arterial and venous structures, and doppler color flow can highlight the direction of flow.
In terms of choosing a side for central line insertion, the right side is usually preferred to avoid the risk of injury to the thoracic duct and potential chylothorax. However, the left side can also be used depending on the clinical situation.
Femoral central lines are another option for central venous access, with the catheter being inserted into the femoral vein in the groin. Local anesthesia is typically used to establish a field block, with lidocaine being the most commonly used agent. Lidocaine works by blocking sodium channels and preventing the propagation of action potentials.
In summary, central venous catheters have various important uses and should ideally be inserted using ultrasound guidance. There are contraindications to their insertion, and different approaches can be used depending on the clinical situation. Local anesthesia is commonly used for central line insertion, with lidocaine being the preferred agent.
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This question is part of the following fields:
- Resus
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Question 2
Incorrect
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You are called into the pediatric resuscitation room to assist with a child who has arrested. The team have just started the first cycle of chest compressions and have attached monitoring. You suggest briefly pausing chest compressions to check if the rhythm is shockable.
How long should the brief pause in chest compressions last?Your Answer: 5-10 seconds
Correct Answer: ≤ 5 seconds
Explanation:The duration of the pause in chest compressions should be kept short, not exceeding 5 seconds. This applies to both pausing to assess the rhythm and pausing to administer a shock if the rhythm is deemed shockable. It is important to note that a pulse check lasting less than two seconds may fail to detect a palpable pulse, particularly in individuals with a slow heart rate (bradycardia).
Further Reading:
Cardiopulmonary arrest is a serious event with low survival rates. In non-traumatic cardiac arrest, only about 20% of patients who arrest as an in-patient survive to hospital discharge, while the survival rate for out-of-hospital cardiac arrest is approximately 8%. The Resus Council BLS/AED Algorithm for 2015 recommends chest compressions at a rate of 100-120 per minute with a compression depth of 5-6 cm. The ratio of chest compressions to rescue breaths is 30:2.
After a cardiac arrest, the goal of patient care is to minimize the impact of post cardiac arrest syndrome, which includes brain injury, myocardial dysfunction, the ischaemic/reperfusion response, and the underlying pathology that caused the arrest. The ABCDE approach is used for clinical assessment and general management. Intubation may be necessary if the airway cannot be maintained by simple measures or if it is immediately threatened. Controlled ventilation is aimed at maintaining oxygen saturation levels between 94-98% and normocarbia. Fluid status may be difficult to judge, but a target mean arterial pressure (MAP) between 65 and 100 mmHg is recommended. Inotropes may be administered to maintain blood pressure. Sedation should be adequate to gain control of ventilation, and short-acting sedating agents like propofol are preferred. Blood glucose levels should be maintained below 8 mmol/l. Pyrexia should be avoided, and there is some evidence for controlled mild hypothermia but no consensus on this.
Post ROSC investigations may include a chest X-ray, ECG monitoring, serial potassium and lactate measurements, and other imaging modalities like ultrasonography, echocardiography, CTPA, and CT head, depending on availability and skills in the local department. Treatment should be directed towards the underlying cause, and PCI or thrombolysis may be considered for acute coronary syndrome or suspected pulmonary embolism, respectively.
Patients who are comatose after ROSC without significant pre-arrest comorbidities should be transferred to the ICU for supportive care. Neurological outcome at 72 hours is the best prognostic indicator of outcome.
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This question is part of the following fields:
- Resus
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Question 3
Correct
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You are managing a 68-year-old patient with suspected sepsis, and your attending physician requests you to place a central line. During your discussion, you both agree to insert a central line into the left internal jugular vein (IJV) for insertion. What potential complication can be avoided by selecting the left side?
Your Answer: Thoracic duct injury
Explanation:Inserting an IJV line on the right side of the neck is preferred because it reduces the risk of damaging the thoracic duct. The thoracic duct is where the largest lymphatic vessel in the body connects to the bloodstream. It is situated where the left subclavian and internal jugular veins meet, as well as the beginning of the brachiocephalic vein. Opting for the right side of the neck helps prevent potential harm to the thoracic duct.
Further Reading:
A central venous catheter (CVC) is a type of catheter that is inserted into a large vein in the body, typically in the neck, chest, or groin. It has several important uses, including CVP monitoring, pulmonary artery pressure monitoring, repeated blood sampling, IV access for large volumes of fluids or drugs, TPN administration, dialysis, pacing, and other procedures such as placement of IVC filters or venous stents.
When inserting a central line, it is ideal to use ultrasound guidance to ensure accurate placement. However, there are certain contraindications to central line insertion, including infection or injury to the planned access site, coagulopathy, thrombosis or stenosis of the intended vein, a combative patient, or raised intracranial pressure for jugular venous lines.
The most common approaches for central line insertion are the internal jugular, subclavian, femoral, and PICC (peripherally inserted central catheter) veins. The internal jugular vein is often chosen due to its proximity to the carotid artery, but variations in anatomy can occur. Ultrasound can be used to identify the vessels and guide catheter placement, with the IJV typically lying superficial and lateral to the carotid artery. Compression and Valsalva maneuvers can help distinguish between arterial and venous structures, and doppler color flow can highlight the direction of flow.
In terms of choosing a side for central line insertion, the right side is usually preferred to avoid the risk of injury to the thoracic duct and potential chylothorax. However, the left side can also be used depending on the clinical situation.
Femoral central lines are another option for central venous access, with the catheter being inserted into the femoral vein in the groin. Local anesthesia is typically used to establish a field block, with lidocaine being the most commonly used agent. Lidocaine works by blocking sodium channels and preventing the propagation of action potentials.
In summary, central venous catheters have various important uses and should ideally be inserted using ultrasound guidance. There are contraindications to their insertion, and different approaches can be used depending on the clinical situation. Local anesthesia is commonly used for central line insertion, with lidocaine being the preferred agent.
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This question is part of the following fields:
- Resus
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Question 4
Incorrect
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The triage nurse contacts you to urgently evaluate a 5-year-old child who seems to be experiencing an anaphylactic reaction. You concur with the assessment and decide to administer adrenaline. What is the appropriate dosage of adrenaline to give to this patient?
Your Answer: 300 micrograms (0.3ml 1 in 1,000) by intramuscular injection
Correct Answer: 150 micrograms (0.15 ml 1 in 1,000) by intramuscular injection
Explanation:Anaphylaxis is a severe and life-threatening hypersensitivity reaction that can have sudden onset and progression. It is characterized by skin or mucosal changes and can lead to life-threatening airway, breathing, or circulatory problems. Anaphylaxis can be allergic or non-allergic in nature.
In allergic anaphylaxis, there is an immediate hypersensitivity reaction where an antigen stimulates the production of IgE antibodies. These antibodies bind to mast cells and basophils. Upon re-exposure to the antigen, the IgE-covered cells release histamine and other inflammatory mediators, causing smooth muscle contraction and vasodilation.
Non-allergic anaphylaxis occurs when mast cells degrade due to a non-immune mediator. The clinical outcome is the same as in allergic anaphylaxis.
The management of anaphylaxis is the same regardless of the cause. Adrenaline is the most important drug and should be administered as soon as possible. The recommended doses for adrenaline vary based on age. Other treatments include high flow oxygen and an IV fluid challenge. Corticosteroids and chlorpheniramine are no longer recommended, while non-sedating antihistamines may be considered as third-line treatment after initial stabilization of airway, breathing, and circulation.
Common causes of anaphylaxis include food (such as nuts, which is the most common cause in children), drugs, and venom (such as wasp stings). Sometimes it can be challenging to determine if a patient had a true episode of anaphylaxis. In such cases, serum tryptase levels may be measured, as they remain elevated for up to 12 hours following an acute episode of anaphylaxis.
The Resuscitation Council (UK) provides guidelines for the management of anaphylaxis, including a visual algorithm that outlines the recommended steps for treatment.
https://www.resus.org.uk/sites/default/files/2021-05/Emergency%20Treatment%20of%20Anaphylaxis%20May%202021_0.pdf -
This question is part of the following fields:
- Resus
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Question 5
Correct
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You are treating a 32-year-old woman with septic shock in resus. She is reviewed by the on-call intensive care team, and a decision is made to place a central venous catheter.
Which of the surface anatomy landmarks will be most useful in placing the central venous catheter?Your Answer: The two lower heads of the sternocleidomastoid muscle
Explanation:The internal jugular vein is a significant vein located close to the surface of the body. It is often chosen for the insertion of central venous catheters due to its accessibility. To locate the vein, a needle is inserted into the middle of a triangular area formed by the lower heads of the sternocleidomastoid muscle and the clavicle. It is important to palpate the carotid artery to ensure that the needle is inserted to the side of the artery.
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This question is part of the following fields:
- Resus
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Question 6
Incorrect
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A 65 year old female is admitted to the hospital after experiencing a cardiac arrest at a local concert venue where she was attending as a spectator. The patient received a shock from an automated defibrillator device after prompt assessment by the medical team at the venue, leading to a return of spontaneous circulation.
Your consultant informs you that the objective now is to minimize the severity of the post-cardiac arrest syndrome. You decide to implement a temperature control strategy. What is the desired temperature range for patients following a cardiac arrest?Your Answer: 36-37ºC
Correct Answer: 32-36ºC
Explanation:After a cardiac arrest, it is recommended to maintain a mild hypothermia state with a target temperature range of 32-36ºC for at least 24 hours. It is important to avoid fever for a period of 72 hours following the cardiac arrest.
Further Reading:
Cardiopulmonary arrest is a serious event with low survival rates. In non-traumatic cardiac arrest, only about 20% of patients who arrest as an in-patient survive to hospital discharge, while the survival rate for out-of-hospital cardiac arrest is approximately 8%. The Resus Council BLS/AED Algorithm for 2015 recommends chest compressions at a rate of 100-120 per minute with a compression depth of 5-6 cm. The ratio of chest compressions to rescue breaths is 30:2.
After a cardiac arrest, the goal of patient care is to minimize the impact of post cardiac arrest syndrome, which includes brain injury, myocardial dysfunction, the ischaemic/reperfusion response, and the underlying pathology that caused the arrest. The ABCDE approach is used for clinical assessment and general management. Intubation may be necessary if the airway cannot be maintained by simple measures or if it is immediately threatened. Controlled ventilation is aimed at maintaining oxygen saturation levels between 94-98% and normocarbia. Fluid status may be difficult to judge, but a target mean arterial pressure (MAP) between 65 and 100 mmHg is recommended. Inotropes may be administered to maintain blood pressure. Sedation should be adequate to gain control of ventilation, and short-acting sedating agents like propofol are preferred. Blood glucose levels should be maintained below 8 mmol/l. Pyrexia should be avoided, and there is some evidence for controlled mild hypothermia but no consensus on this.
Post ROSC investigations may include a chest X-ray, ECG monitoring, serial potassium and lactate measurements, and other imaging modalities like ultrasonography, echocardiography, CTPA, and CT head, depending on availability and skills in the local department. Treatment should be directed towards the underlying cause, and PCI or thrombolysis may be considered for acute coronary syndrome or suspected pulmonary embolism, respectively.
Patients who are comatose after ROSC without significant pre-arrest comorbidities should be transferred to the ICU for supportive care. Neurological outcome at 72 hours is the best prognostic indicator of outcome.
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This question is part of the following fields:
- Resus
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Question 7
Correct
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You are a member of the trauma team and have been assigned the task of inserting an arterial line into the right radial artery. When inserting the radial artery line, what is the angle at which the catheter needle is initially advanced in relation to the skin?
Your Answer: 30-45 degrees
Explanation:The arterial line needle is inserted into the skin at an angle between 30 and 45 degrees. For a more detailed demonstration, please refer to the video provided in the media links section.
Further Reading:
Arterial line insertion is a procedure used to monitor arterial blood pressure continuously and obtain frequent blood gas samples. It is typically done when non-invasive blood pressure monitoring is not possible or when there is an anticipation of hemodynamic instability. The most common site for arterial line insertion is the radial artery, although other sites such as the ulnar, brachial, axillary, posterior tibial, femoral, and dorsalis pedis arteries can also be used.
The radial artery is preferred for arterial line insertion due to its superficial location, ease of identification and access, and lower complication rate compared to other sites. Before inserting the arterial line, it is important to perform Allen’s test to check for collateral circulation to the hand.
The procedure begins by identifying the artery by palpating the pulse at the wrist and confirming its position with doppler ultrasound if necessary. The wrist is then positioned dorsiflexed, and the skin is prepared and aseptic technique is maintained throughout the procedure. Local anesthesia is infiltrated at the insertion site, and the catheter needle is inserted at an angle of 30-45 degrees to the skin. Once flashback of pulsatile blood is seen, the catheter angle is flattened and advanced a few millimeters into the artery. Alternatively, a guide wire can be used with an over the wire technique.
After the catheter is advanced, the needle is withdrawn, and the catheter is connected to the transducer system and secured in place with sutures. It is important to be aware of absolute and relative contraindications to arterial line placement, as well as potential complications such as infection, thrombosis, hemorrhage, emboli, pseudo-aneurysm formation, AV fistula formation, arterial dissection, and nerve injury/compression.
Overall, arterial line insertion is a valuable procedure for continuous arterial blood pressure monitoring and frequent blood gas sampling, and the radial artery is the most commonly used site due to its accessibility and lower complication rate.
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This question is part of the following fields:
- Resus
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Question 8
Correct
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A 65 year old female is brought into the hospital after experiencing a cardiac arrest at the nearby soccer field where she was watching a game. The patient was promptly assessed by the medical team at the field and received a shock from an automated defibrillator device, leading to a return of spontaneous circulation.
Your consultant informs you that the objective now is to minimize the severity of the post-cardiac arrest syndrome. Which of the following is NOT one of the four elements of the post-cardiac arrest syndrome?Your Answer: Post-cardiac arrest renal dysfunction
Explanation:The post-cardiac arrest syndrome consists of four components. The first component is post-cardiac arrest brain injury, which refers to any damage or impairment to the brain that occurs after a cardiac arrest. The second component is post-cardiac arrest myocardial dysfunction, which is a condition where the heart muscle does not function properly after a cardiac arrest.
Further Reading:
Cardiopulmonary arrest is a serious event with low survival rates. In non-traumatic cardiac arrest, only about 20% of patients who arrest as an in-patient survive to hospital discharge, while the survival rate for out-of-hospital cardiac arrest is approximately 8%. The Resus Council BLS/AED Algorithm for 2015 recommends chest compressions at a rate of 100-120 per minute with a compression depth of 5-6 cm. The ratio of chest compressions to rescue breaths is 30:2.
After a cardiac arrest, the goal of patient care is to minimize the impact of post cardiac arrest syndrome, which includes brain injury, myocardial dysfunction, the ischaemic/reperfusion response, and the underlying pathology that caused the arrest. The ABCDE approach is used for clinical assessment and general management. Intubation may be necessary if the airway cannot be maintained by simple measures or if it is immediately threatened. Controlled ventilation is aimed at maintaining oxygen saturation levels between 94-98% and normocarbia. Fluid status may be difficult to judge, but a target mean arterial pressure (MAP) between 65 and 100 mmHg is recommended. Inotropes may be administered to maintain blood pressure. Sedation should be adequate to gain control of ventilation, and short-acting sedating agents like propofol are preferred. Blood glucose levels should be maintained below 8 mmol/l. Pyrexia should be avoided, and there is some evidence for controlled mild hypothermia but no consensus on this.
Post ROSC investigations may include a chest X-ray, ECG monitoring, serial potassium and lactate measurements, and other imaging modalities like ultrasonography, echocardiography, CTPA, and CT head, depending on availability and skills in the local department. Treatment should be directed towards the underlying cause, and PCI or thrombolysis may be considered for acute coronary syndrome or suspected pulmonary embolism, respectively.
Patients who are comatose after ROSC without significant pre-arrest comorbidities should be transferred to the ICU for supportive care. Neurological outcome at 72 hours is the best prognostic indicator of outcome.
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This question is part of the following fields:
- Resus
-
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Question 9
Correct
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You are treating a 35-year-old with limb injuries resulting from a rock climbing incident. Your responsibility is to insert a central venous line. The attending physician requests you to place the central venous line in the internal jugular vein. What is the ideal patient positioning for this procedure?
Your Answer: Trendelenburg position
Explanation:To insert an IJV line, the patient should be positioned in the Trendelenburg position. This means that the patient should lie on their back with their head tilted down by at least 15 degrees. Additionally, the patient’s head should be turned away or laterally rotated from the side where the cannulation will take place. This positioning helps to distend the neck veins, making it easier to access them for the procedure.
Further Reading:
A central venous catheter (CVC) is a type of catheter that is inserted into a large vein in the body, typically in the neck, chest, or groin. It has several important uses, including CVP monitoring, pulmonary artery pressure monitoring, repeated blood sampling, IV access for large volumes of fluids or drugs, TPN administration, dialysis, pacing, and other procedures such as placement of IVC filters or venous stents.
When inserting a central line, it is ideal to use ultrasound guidance to ensure accurate placement. However, there are certain contraindications to central line insertion, including infection or injury to the planned access site, coagulopathy, thrombosis or stenosis of the intended vein, a combative patient, or raised intracranial pressure for jugular venous lines.
The most common approaches for central line insertion are the internal jugular, subclavian, femoral, and PICC (peripherally inserted central catheter) veins. The internal jugular vein is often chosen due to its proximity to the carotid artery, but variations in anatomy can occur. Ultrasound can be used to identify the vessels and guide catheter placement, with the IJV typically lying superficial and lateral to the carotid artery. Compression and Valsalva maneuvers can help distinguish between arterial and venous structures, and doppler color flow can highlight the direction of flow.
In terms of choosing a side for central line insertion, the right side is usually preferred to avoid the risk of injury to the thoracic duct and potential chylothorax. However, the left side can also be used depending on the clinical situation.
Femoral central lines are another option for central venous access, with the catheter being inserted into the femoral vein in the groin. Local anesthesia is typically used to establish a field block, with lidocaine being the most commonly used agent. Lidocaine works by blocking sodium channels and preventing the propagation of action potentials.
In summary, central venous catheters have various important uses and should ideally be inserted using ultrasound guidance. There are contraindications to their insertion, and different approaches can be used depending on the clinical situation. Local anesthesia is commonly used for central line insertion, with lidocaine being the preferred agent.
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This question is part of the following fields:
- Resus
-
-
Question 10
Correct
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You receive a call from the paramedics notifying you that they are bringing a 45-year-old male patient to the emergency department (ED) who experienced a cardiac arrest. What is the survival rate to hospital discharge for patients who suffer an out-of-hospital cardiac arrest?
Your Answer: 7-8%
Explanation:The percentage of patients who survive to hospital discharge after experiencing an out of hospital cardiac arrest.
Further Reading:
Cardiopulmonary arrest is a serious event with low survival rates. In non-traumatic cardiac arrest, only about 20% of patients who arrest as an in-patient survive to hospital discharge, while the survival rate for out-of-hospital cardiac arrest is approximately 8%. The Resus Council BLS/AED Algorithm for 2015 recommends chest compressions at a rate of 100-120 per minute with a compression depth of 5-6 cm. The ratio of chest compressions to rescue breaths is 30:2.
After a cardiac arrest, the goal of patient care is to minimize the impact of post cardiac arrest syndrome, which includes brain injury, myocardial dysfunction, the ischaemic/reperfusion response, and the underlying pathology that caused the arrest. The ABCDE approach is used for clinical assessment and general management. Intubation may be necessary if the airway cannot be maintained by simple measures or if it is immediately threatened. Controlled ventilation is aimed at maintaining oxygen saturation levels between 94-98% and normocarbia. Fluid status may be difficult to judge, but a target mean arterial pressure (MAP) between 65 and 100 mmHg is recommended. Inotropes may be administered to maintain blood pressure. Sedation should be adequate to gain control of ventilation, and short-acting sedating agents like propofol are preferred. Blood glucose levels should be maintained below 8 mmol/l. Pyrexia should be avoided, and there is some evidence for controlled mild hypothermia but no consensus on this.
Post ROSC investigations may include a chest X-ray, ECG monitoring, serial potassium and lactate measurements, and other imaging modalities like ultrasonography, echocardiography, CTPA, and CT head, depending on availability and skills in the local department. Treatment should be directed towards the underlying cause, and PCI or thrombolysis may be considered for acute coronary syndrome or suspected pulmonary embolism, respectively.
Patients who are comatose after ROSC without significant pre-arrest comorbidities should be transferred to the ICU for supportive care. Neurological outcome at 72 hours is the best prognostic indicator of outcome.
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This question is part of the following fields:
- Resus
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