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Question 1
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A 10 year old girl is brought into the emergency department with a 24 hour history of vomiting and becoming increasingly fatigued. Tests confirm diabetic ketoacidosis (DKA). Intravenous fluid is being administered. You are requested to prescribe insulin. What is the most suitable insulin regimen?
Your Answer: IV insulin infusion at 0.05 units/kg/hour
Explanation:To treat DKA, the girl is receiving intravenous fluids to rehydrate her. Additionally, insulin needs to be prescribed to help regulate her blood sugar levels.
The most suitable insulin regimen in this case would be an IV insulin infusion at 0.05 units/kg/hour. This means that the insulin will be administered through an intravenous line at a rate of 0.05 units per kilogram of the girl’s body weight per hour. This dosage is appropriate for managing DKA and will help to lower her blood sugar levels effectively.
Further Reading:
Diabetic ketoacidosis (DKA) is a serious complication of diabetes that occurs due to a lack of insulin in the body. It is most commonly seen in individuals with type 1 diabetes but can also occur in type 2 diabetes. DKA is characterized by hyperglycemia, acidosis, and ketonaemia.
The pathophysiology of DKA involves insulin deficiency, which leads to increased glucose production and decreased glucose uptake by cells. This results in hyperglycemia and osmotic diuresis, leading to dehydration. Insulin deficiency also leads to increased lipolysis and the production of ketone bodies, which are acidic. The body attempts to buffer the pH change through metabolic and respiratory compensation, resulting in metabolic acidosis.
DKA can be precipitated by factors such as infection, physiological stress, non-compliance with insulin therapy, acute medical conditions, and certain medications. The clinical features of DKA include polydipsia, polyuria, signs of dehydration, ketotic breath smell, tachypnea, confusion, headache, nausea, vomiting, lethargy, and abdominal pain.
The diagnosis of DKA is based on the presence of ketonaemia or ketonuria, blood glucose levels above 11 mmol/L or known diabetes mellitus, and a blood pH below 7.3 or bicarbonate levels below 15 mmol/L. Initial investigations include blood gas analysis, urine dipstick for glucose and ketones, blood glucose measurement, and electrolyte levels.
Management of DKA involves fluid replacement, electrolyte correction, insulin therapy, and treatment of any underlying cause. Fluid replacement is typically done with isotonic saline, and potassium may need to be added depending on the patient’s levels. Insulin therapy is initiated with an intravenous infusion, and the rate is adjusted based on blood glucose levels. Monitoring of blood glucose, ketones, bicarbonate, and electrolytes is essential, and the insulin infusion is discontinued once ketones are below 0.3 mmol/L, pH is above 7.3, and bicarbonate is above 18 mmol/L.
Complications of DKA and its treatment include gastric stasis, thromboembolism, electrolyte disturbances, cerebral edema, hypoglycemia, acute respiratory distress syndrome, and acute kidney injury. Prompt medical intervention is crucial in managing DKA to prevent potentially fatal outcomes.
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This question is part of the following fields:
- Paediatric Emergencies
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Question 2
Correct
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A 5 year old girl is brought into the emergency room. Her mother witnessed her putting something in her mouth. She believes it was a small object, but the girl swallowed it and within 5 minutes her face began to swell. You determine that she is experiencing anaphylaxis and start administering the necessary first-line medications. After stabilizing her condition, you decide to administer cetirizine. What is the appropriate dosage of cetirizine for this patient?
Your Answer: Cetirizine 2.5–5 mg
Explanation:Antihistamines do not help in treating the life-threatening aspects of anaphylaxis and should not be used instead of adrenaline. However, they can be used to relieve symptoms such as skin reactions and itching once the patient’s condition has stabilized. The appropriate dose of cetirizine for children between the ages of 2 and 6 is 2.5-5 mg. It is important to note that chlorpheniramine is no longer recommended. The recommended doses of oral cetirizine for different age groups are as follows: less than 2 years – 250 micrograms/kg, 2-6 years – 2.5-5 mg, 6-11 years – 5-10 mg, 12 years and older – 10-20 mg.
Further Reading:
Anaphylaxis is a severe and life-threatening allergic reaction that affects the entire body. It is characterized by a rapid onset and can lead to difficulty breathing, low blood pressure, and loss of consciousness. In paediatrics, anaphylaxis is often caused by food allergies, with nuts being the most common trigger. Other causes include drugs and insect venom, such as from a wasp sting.
When treating anaphylaxis, time is of the essence and there may not be enough time to look up medication doses. Adrenaline is the most important drug in managing anaphylaxis and should be administered as soon as possible. The recommended doses of adrenaline vary based on the age of the child. For children under 6 months, the dose is 150 micrograms, while for children between 6 months and 6 years, the dose remains the same. For children between 6 and 12 years, the dose is increased to 300 micrograms, and for adults and children over 12 years, the dose is 500 micrograms. Adrenaline can be repeated every 5 minutes if necessary.
The preferred site for administering adrenaline is the anterolateral aspect of the middle third of the thigh. This ensures quick absorption and effectiveness of the medication. It is important to follow the Resuscitation Council guidelines for anaphylaxis management, as they have recently been updated.
In some cases, 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. This can help confirm the diagnosis and guide further management.
Overall, prompt recognition and administration of adrenaline are crucial in managing anaphylaxis in paediatrics. Following the recommended doses and guidelines can help ensure the best outcomes for patients experiencing this severe allergic reaction.
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This question is part of the following fields:
- Paediatric Emergencies
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Question 3
Correct
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You are requested to evaluate a 5-year-old girl who was administered her first dose of amoxicillin for the management of a respiratory tract infection. Her mother observed her face beginning to swell shortly after and her breathing becoming noisy. You determine that she is experiencing anaphylaxis. What would be the most suitable initial treatment?
Your Answer: Adrenaline 300 mcg IM
Explanation:Epinephrine, also known as adrenaline, is the most crucial medication for treating anaphylaxis. It should be administered promptly to individuals experiencing an anaphylactic reaction. The preferred method of treatment is early administration of intramuscular adrenaline. It is important to be familiar with the appropriate dosage for different age groups.
Further Reading:
Anaphylaxis is a severe and life-threatening allergic reaction that affects the entire body. It is characterized by a rapid onset and can lead to difficulty breathing, low blood pressure, and loss of consciousness. In paediatrics, anaphylaxis is often caused by food allergies, with nuts being the most common trigger. Other causes include drugs and insect venom, such as from a wasp sting.
When treating anaphylaxis, time is of the essence and there may not be enough time to look up medication doses. Adrenaline is the most important drug in managing anaphylaxis and should be administered as soon as possible. The recommended doses of adrenaline vary based on the age of the child. For children under 6 months, the dose is 150 micrograms, while for children between 6 months and 6 years, the dose remains the same. For children between 6 and 12 years, the dose is increased to 300 micrograms, and for adults and children over 12 years, the dose is 500 micrograms. Adrenaline can be repeated every 5 minutes if necessary.
The preferred site for administering adrenaline is the anterolateral aspect of the middle third of the thigh. This ensures quick absorption and effectiveness of the medication. It is important to follow the Resuscitation Council guidelines for anaphylaxis management, as they have recently been updated.
In some cases, 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. This can help confirm the diagnosis and guide further management.
Overall, prompt recognition and administration of adrenaline are crucial in managing anaphylaxis in paediatrics. Following the recommended doses and guidelines can help ensure the best outcomes for patients experiencing this severe allergic reaction.
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This question is part of the following fields:
- Paediatric Emergencies
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Question 4
Correct
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A 2-year-old toddler is brought into the emergency department by his parents who are worried that he may have croup. What clinical features would you expect to find in a child with croup?
Your Answer: Barking cough worse at night
Explanation:Croup is identified by a cough that sounds like a seal barking, especially worse during the night. Before the barking cough, there may be initial symptoms of a cough, runny nose, and congestion for 12 to 72 hours. Other signs of croup include a high-pitched sound when breathing (stridor), difficulty breathing (respiratory distress), and fever.
Further Reading:
Croup, also known as laryngotracheobronchitis, is a respiratory infection that primarily affects infants and toddlers. It is characterized by a barking cough and can cause stridor (a high-pitched sound during breathing) and respiratory distress due to swelling of the larynx and excessive secretions. The majority of cases are caused by parainfluenza viruses 1 and 3. Croup is most common in children between 6 months and 3 years of age and tends to occur more frequently in the autumn.
The clinical features of croup include a barking cough that is worse at night, preceded by symptoms of an upper respiratory tract infection such as cough, runny nose, and congestion. Stridor, respiratory distress, and fever may also be present. The severity of croup can be graded using the NICE system, which categorizes it as mild, moderate, severe, or impending respiratory failure based on the presence of symptoms such as cough, stridor, sternal/intercostal recession, agitation, lethargy, and decreased level of consciousness. The Westley croup score is another commonly used tool to assess the severity of croup based on the presence of stridor, retractions, air entry, oxygen saturation levels, and level of consciousness.
In cases of severe croup with significant airway obstruction and impending respiratory failure, symptoms may include a minimal barking cough, harder-to-hear stridor, chest wall recession, fatigue, pallor or cyanosis, decreased level of consciousness, and tachycardia. A respiratory rate over 70 breaths per minute is also indicative of severe respiratory distress.
Children with moderate or severe croup, as well as those with certain risk factors such as chronic lung disease, congenital heart disease, neuromuscular disorders, immunodeficiency, age under 3 months, inadequate fluid intake, concerns about care at home, or high fever or a toxic appearance, should be admitted to the hospital. The mainstay of treatment for croup is corticosteroids, which are typically given orally. If the child is too unwell to take oral medication, inhaled budesonide or intramuscular dexamethasone may be used as alternatives. Severe cases may require high-flow oxygen and nebulized adrenaline.
When considering the differential diagnosis for acute stridor and breathing difficulty, non-infective causes such as inhaled foreign bodies
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This question is part of the following fields:
- Paediatric Emergencies
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Question 5
Correct
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A child with a known severe peanut allergy is brought into the emergency room after experiencing lip swelling and difficulty breathing following a suspected exposure. Which medication is the most suitable to administer to patients with anaphylaxis after initial resuscitation?
Your Answer: Cetirizine
Explanation:In cases of anaphylaxis, it is important to administer non-sedating antihistamines after adrenaline administration and initial resuscitation. Previous guidelines recommended the use of chlorpheniramine and hydrocortisone as third line treatments, but the 2021 guidelines have removed this recommendation. Corticosteroids are no longer advised. Instead, it is now recommended to use non-sedating antihistamines such as cetirizine, loratadine, and fexofenadine, as alternatives to the sedating antihistamine chlorpheniramine. The top priority treatments for anaphylaxis are adrenaline, oxygen, and fluids. The Resuscitation Council advises that administration of non-sedating antihistamines should occur after the initial resuscitation.
Further Reading:
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.
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This question is part of the following fields:
- Paediatric Emergencies
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Question 6
Incorrect
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A 9 year old girl is brought into the emergency department with a worsening sore throat, fever, and feeling unwell. The patient reports that the symptoms began 4 days ago. During the examination, the patient has a temperature of 38.1ºC, bilateral palpable cervical lymphadenopathy, and exudate on both tonsils. Glandular fever is suspected.
What would be the most suitable approach for investigation?Your Answer: Send blood test for Monospot test
Correct Answer: Arrange blood test for Epstein-Barr virus (EBV) viral serology in 2-3 days time
Explanation:The most suitable approach for investigation in this case would be to send a blood test for Epstein-Barr virus (EBV) viral serology. Glandular fever, also known as infectious mononucleosis, is commonly caused by the Epstein-Barr virus. The symptoms described by the patient, including a sore throat, fever, and feeling unwell, are consistent with this condition. To confirm the diagnosis, a blood test for EBV viral serology can be performed. This test detects antibodies produced by the body in response to the virus. It is important to note that the Monospot test, which is another blood test for infectious mononucleosis, may not be as accurate in younger children. Therefore, the most appropriate option would be to send a blood test for EBV viral serology in 2-3 days time. This will allow for the detection of specific antibodies and provide a more accurate diagnosis.
Further Reading:
Glandular fever, also known as infectious mononucleosis or mono, is a clinical syndrome characterized by symptoms such as sore throat, fever, and swollen lymph nodes. It is primarily caused by the Epstein-Barr virus (EBV), with other viruses and infections accounting for the remaining cases. Glandular fever is transmitted through infected saliva and primarily affects adolescents and young adults. The incubation period is 4-8 weeks.
The majority of EBV infections are asymptomatic, with over 95% of adults worldwide having evidence of prior infection. Clinical features of glandular fever include fever, sore throat, exudative tonsillitis, lymphadenopathy, and prodromal symptoms such as fatigue and headache. Splenomegaly (enlarged spleen) and hepatomegaly (enlarged liver) may also be present, and a non-pruritic macular rash can sometimes occur.
Glandular fever can lead to complications such as splenic rupture, which increases the risk of rupture in the spleen. Approximately 50% of splenic ruptures associated with glandular fever are spontaneous, while the other 50% follow trauma. Diagnosis of glandular fever involves various investigations, including viral serology for EBV, monospot test, and liver function tests. Additional serology tests may be conducted if EBV testing is negative.
Management of glandular fever involves supportive care and symptomatic relief with simple analgesia. Antiviral medication has not been shown to be beneficial. It is important to identify patients at risk of serious complications, such as airway obstruction, splenic rupture, and dehydration, and provide appropriate management. Patients can be advised to return to normal activities as soon as possible, avoiding heavy lifting and contact sports for the first month to reduce the risk of splenic rupture.
Rare but serious complications associated with glandular fever include hepatitis, upper airway obstruction, cardiac complications, renal complications, neurological complications, haematological complications, chronic fatigue, and an increased risk of lymphoproliferative cancers and multiple sclerosis.
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This question is part of the following fields:
- Paediatric Emergencies
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Question 7
Correct
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A 2-year-old male is brought to the emergency department by his father who is concerned as the child has developed a rash. The father tells you the rash started yesterday evening but only affected the face and behind the ears. Dad thought the child had a cold as he has had a dry cough, itchy eyes, and runny nose for the past 2-3 days but became concerned when the rash and high fever appeared. On examination, you note the child has a widespread rash to the trunk, limbs, and face which is maculopapular in some areas while the erythema is more confluent in other areas. There are small blue-white spots seen to the buccal mucosa. The child's temperature is 39ºC. You note the child has not received any childhood vaccines.
What is the likely diagnosis?Your Answer: Measles
Explanation:The rash in measles typically begins as a maculopapular rash on the face and behind the ears. Within 24-36 hours, it spreads to the trunk and limbs. The rash may merge together, especially on the face, creating a confluent appearance. Usually, the rash appears along with a high fever. Before the rash appears, there are usually symptoms of a cold for 2-3 days. Koplik spots, which are blue-white spots on the inside of the cheeks (usually seen opposite the molars), can be observed 1-2 days before the rash appears and can be detected during a mouth examination.
It is important to note that the rash in rubella infection is similar to that of measles. However, there are two key differences: the presence of Koplik spots and a high fever (>38.3ºC) are characteristic of measles. Erythema infectiosum, on the other hand, causes a rash that resembles a slapped cheek.
Further Reading:
Measles is a highly contagious viral infection caused by an RNA paramyxovirus. It is primarily spread through aerosol transmission, specifically through droplets in the air. The incubation period for measles is typically 10-14 days, during which patients are infectious from 4 days before the appearance of the rash to 4 days after.
Common complications of measles include pneumonia, otitis media (middle ear infection), and encephalopathy (brain inflammation). However, a rare but fatal complication called subacute sclerosing panencephalitis (SSPE) can also occur, typically presenting 5-10 years after the initial illness.
The onset of measles is characterized by a prodrome, which includes symptoms such as irritability, malaise, conjunctivitis, and fever. Before the appearance of the rash, white spots known as Koplik spots can be seen on the buccal mucosa. The rash itself starts behind the ears and then spreads to the entire body, presenting as a discrete maculopapular rash that becomes blotchy and confluent.
In terms of complications, encephalitis typically occurs 1-2 weeks after the onset of the illness. Febrile convulsions, giant cell pneumonia, keratoconjunctivitis, corneal ulceration, diarrhea, increased incidence of appendicitis, and myocarditis are also possible complications of measles.
When managing contacts of individuals with measles, it is important to offer the MMR vaccine to children who have not been immunized against measles. The vaccine-induced measles antibody develops more rapidly than that following natural infection, so it should be administered within 72 hours of contact.
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This question is part of the following fields:
- Paediatric Emergencies
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Question 8
Incorrect
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You are present at a pediatric cardiac arrest. The cardiac arrest team has, unfortunately, been unable to establish IV access, and an intraosseous needle is inserted. The child weighs 20 kg.
What is the appropriate dose of adrenaline to administer via the IO route in this situation?Your Answer: 150 mcg
Correct Answer: 300 mcg
Explanation:When administering adrenaline to a pediatric patient experiencing cardiac arrest, the dosage given through the intraosseous (IO) route is identical to that given through the intravenous (IV) route. Both routes require a dosage of 10 mcg/kg. For instance, if the child weighs 30 kg, the appropriate dosage would be 300 mcg (0.3 mg).
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This question is part of the following fields:
- Paediatric Emergencies
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Question 9
Incorrect
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A 6 month old infant is brought to the emergency department by his father due to a 24 hour history of fever, fussiness, and crying. On examination, the infant is alert and responsive, with a temperature of 38.3ºC. The capillary refill time is less than 2 seconds, and there is mild redness in the throat. The left tympanic membrane appears red and bulging, while the chest is clear and the abdomen is soft with no rashes.
What is the most suitable course of action?Your Answer: Discharge with advice to give regular paracetamol and ibuprofen and to return to the ED if the child becomes more unwell
Correct Answer: Admit under paediatrics
Explanation:If a child under 3 months old has a temperature of 38ºC or higher, it is considered a red flag according to the NICE traffic light system. This indicates that the child may have acute otitis media and it is recommended that they be admitted for further evaluation and treatment.
Further Reading:
Acute otitis media (AOM) is an inflammation in the middle ear accompanied by symptoms and signs of an ear infection. It is commonly seen in young children below 4 years of age, with the highest incidence occurring between 9 to 15 months of age. AOM can be caused by viral or bacterial pathogens, and co-infection with both is common. The most common viral pathogens include respiratory syncytial virus (RSV), rhinovirus, adenovirus, influenza virus, and parainfluenza virus. The most common bacterial pathogens include Streptococcus pneumoniae, Haemophilus influenzae, Moraxella catarrhalis, and Streptococcus pyogenes.
Clinical features of AOM include ear pain (otalgia), fever, a red or cloudy tympanic membrane, and a bulging tympanic membrane with loss of anatomical landmarks. In young children, symptoms may also include crying, grabbing or rubbing the affected ear, restlessness, and poor feeding.
Most children with AOM will recover within 3 days without treatment. Serious complications are rare but can include persistent otitis media with effusion, recurrence of infection, temporary hearing loss, tympanic membrane perforation, labyrinthitis, mastoiditis, meningitis, intracranial abscess, sinus thrombosis, and facial nerve paralysis.
Management of AOM involves determining whether admission to the hospital is necessary based on the severity of systemic infection or suspected acute complications. For patients who do not require admission, regular pain relief with paracetamol or ibuprofen is advised. Decongestants or antihistamines are not recommended. Antibiotics may be offered immediately for patients who are systemically unwell, have symptoms and signs of a more serious illness or condition, or have a high risk of complications. For other patients, a decision needs to be made on the antibiotic strategy, considering the rarity of acute complications and the possible adverse effects of antibiotics. Options include no antibiotic prescription with advice to seek medical help if symptoms worsen rapidly or significantly, a back-up antibiotic prescription to be used if symptoms do not improve within 3 days, or an immediate antibiotic prescription with advice to seek medical advice if symptoms worsen rapidly or significantly.
The first-line antibiotic choice for AOM is a 5-7 day course of amoxicillin. For individuals allergic to or intolerant of penicillin, clarithromycin or erythromycin a 5–7 day course of clarithromycin or erythromycin (erythromycin is preferred in pregnant women).
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This question is part of the following fields:
- Paediatric Emergencies
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Question 10
Incorrect
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You are requested to evaluate a 6 year old girl. She was playing in the backyard when she suddenly burst into tears. Her mother suspects she stepped on a bee. Shortly after, her face began to swell and her breathing became rapid and noisy. Your diagnosis is anaphylaxis. What is the appropriate dosage of adrenaline to administer?
Your Answer: 300 micrograms by IM injection
Correct Answer: 150 micrograms by IM injection
Explanation:The appropriate dose of adrenaline for treating anaphylaxis in children under 6 years old is 150 micrograms, which is equivalent to 0.15 ml of a 1 in 1,000 solution.
Further Reading:
Anaphylaxis is a severe and life-threatening allergic reaction that affects the entire body. It is characterized by a rapid onset and can lead to difficulty breathing, low blood pressure, and loss of consciousness. In paediatrics, anaphylaxis is often caused by food allergies, with nuts being the most common trigger. Other causes include drugs and insect venom, such as from a wasp sting.
When treating anaphylaxis, time is of the essence and there may not be enough time to look up medication doses. Adrenaline is the most important drug in managing anaphylaxis and should be administered as soon as possible. The recommended doses of adrenaline vary based on the age of the child. For children under 6 months, the dose is 150 micrograms, while for children between 6 months and 6 years, the dose remains the same. For children between 6 and 12 years, the dose is increased to 300 micrograms, and for adults and children over 12 years, the dose is 500 micrograms. Adrenaline can be repeated every 5 minutes if necessary.
The preferred site for administering adrenaline is the anterolateral aspect of the middle third of the thigh. This ensures quick absorption and effectiveness of the medication. It is important to follow the Resuscitation Council guidelines for anaphylaxis management, as they have recently been updated.
In some cases, 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. This can help confirm the diagnosis and guide further management.
Overall, prompt recognition and administration of adrenaline are crucial in managing anaphylaxis in paediatrics. Following the recommended doses and guidelines can help ensure the best outcomes for patients experiencing this severe allergic reaction.
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This question is part of the following fields:
- Paediatric Emergencies
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