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Question 1
Incorrect
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A 45-year-old woman presents with overall fatigue and increased skin pigmentation. She has a history of bilateral adrenalectomy for Cushing's syndrome 10 years ago. During the examination of her visual fields, a bitemporal hemianopia is discovered.
What is the SINGLE most probable diagnosis?Your Answer: Addison’s disease
Correct Answer: Nelson’s syndrome
Explanation:Nelson’s syndrome is a rare condition that occurs many years after a bilateral adrenalectomy for Cushing’s syndrome. It is believed to develop due to the loss of the normal negative feedback control that suppresses high cortisol levels. As a result, the hypothalamus starts producing CRH again, which stimulates the growth of a pituitary adenoma that produces adrenocorticotropic hormone (ACTH).
Only 15-20% of patients who undergo bilateral adrenalectomy will develop this condition, and it is now rarely seen as the procedure is no longer commonly performed.
The symptoms and signs of Nelson’s syndrome are related to the growth of the pituitary adenoma and the increased production of ACTH and melanocyte-stimulating hormone (MSH) from the adenoma. These may include headaches, visual field defects (up to 50% of cases), increased skin pigmentation, and the possibility of hypopituitarism.
ACTH levels will be significantly elevated (usually >500 ng/L). Thyroxine, TSH, gonadotrophin, and sex hormone levels may be low. Prolactin levels may be high, but not as high as with a prolactin-producing tumor. MRI or CT scanning can be helpful in identifying the presence of an expanding pituitary mass.
The treatment of choice for Nelson’s syndrome is trans-sphenoidal surgery.
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This question is part of the following fields:
- Endocrinology
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Question 2
Incorrect
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A 55-year-old man presents with a history of excessive urination and increased thirst. A diagnosis of type 2 diabetes mellitus is suspected.
Select from the options below the SINGLE result that is most indicative of a diagnosis of diabetes mellitus.Your Answer: A random plasma glucose of 10.5 mmol/l
Correct Answer: An HbA1c of 50 mmol/mol
Explanation:According to the 2011 recommendations from the World Health Organization (WHO), HbA1c can now be used as a diagnostic test for diabetes. However, this is only applicable if stringent quality assurance tests are in place and the assays are standardized to criteria aligned with international reference values. Additionally, accurate measurement of HbA1c is only possible if there are no conditions present that could hinder its accuracy.
To diagnose diabetes using HbA1c, a value of 48 mmol/mol (6.5%) is recommended as the cut-off point. It’s important to note that a value lower than 48 mmol/mol (6.5%) does not exclude the possibility of diabetes, as glucose tests are still necessary for a definitive diagnosis.
When using glucose tests, the following criteria are considered diagnostic for diabetes mellitus:
– A random venous plasma glucose concentration greater than 11.1 mmol/l
– A fasting plasma glucose concentration greater than 7.0 mmol/l
– A two-hour plasma glucose concentration greater than 11.1 mmol/l, two hours after consuming 75g of anhydrous glucose in an oral glucose tolerance test (OGTT)However, there are certain circumstances where HbA1c is not appropriate for diagnosing diabetes mellitus. These include:
– ALL children and young people
– Patients of any age suspected of having Type 1 diabetes
– Patients with symptoms of diabetes for less than two months
– Patients at high risk of diabetes who are acutely ill, such as those requiring hospital admission
– Patients taking medication that may cause a rapid rise in glucose levels, such as steroids or antipsychotics
– Patients with acute pancreatic damage, including those who have undergone pancreatic surgery
– Pregnant individuals
– Presence of genetic, hematologic, and illness-related factors that can influence HbA1c and its measurement. -
This question is part of the following fields:
- Endocrinology
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Question 3
Correct
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A 37 year old male presents to the emergency department complaining of sudden onset headache, tremor, and palpitations. During triage, his blood pressure is measured at 220/110 mmHg. You start considering the likelihood of secondary causes of hypertension, including the possibility of extra-adrenal phaeochromocytoma. What percentage of phaeochromocytoma cases are extra-adrenal?
Your Answer: 10-15%
Explanation:The correct answer is 10-15%. This means that out of all phaeochromocytoma cases, approximately 10-15% occur outside of the adrenal glands.
Further Reading:
Phaeochromocytoma is a rare neuroendocrine tumor that secretes catecholamines. It typically arises from chromaffin tissue in the adrenal medulla, but can also occur in extra-adrenal chromaffin tissue. The majority of cases are spontaneous and occur in individuals aged 40-50 years. However, up to 30% of cases are hereditary and associated with genetic mutations. About 10% of phaeochromocytomas are metastatic, with extra-adrenal tumors more likely to be metastatic.
The clinical features of phaeochromocytoma are a result of excessive catecholamine production. Symptoms are typically paroxysmal and include hypertension, headaches, palpitations, sweating, anxiety, tremor, abdominal and flank pain, and nausea. Catecholamines have various metabolic effects, including glycogenolysis, mobilization of free fatty acids, increased serum lactate, increased metabolic rate, increased myocardial force and rate of contraction, and decreased systemic vascular resistance.
Diagnosis of phaeochromocytoma involves measuring plasma and urine levels of metanephrines, catecholamines, and urine vanillylmandelic acid. Imaging studies such as abdominal CT or MRI are used to determine the location of the tumor. If these fail to find the site, a scan with metaiodobenzylguanidine (MIBG) labeled with radioactive iodine is performed. The highest sensitivity and specificity for diagnosis is achieved with plasma metanephrine assay.
The definitive treatment for phaeochromocytoma is surgery. However, before surgery, the patient must be stabilized with medical management. This typically involves alpha-blockade with medications such as phenoxybenzamine or phentolamine, followed by beta-blockade with medications like propranolol. Alpha blockade is started before beta blockade to allow for expansion of blood volume and to prevent a hypertensive crisis.
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This question is part of the following fields:
- Endocrinology
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Question 4
Correct
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A 35-year-old presents to the emergency department complaining of palpitations. During the history-taking, the patient reveals a recent weight loss of approximately 10 kg over the past 6 months and the presence of hand tremors. Thyroid function tests are ordered and the results confirm hyperthyroidism. What is the predominant cause of thyrotoxicosis in the United Kingdom?
Your Answer: Graves' disease
Explanation:TSH-secreting pituitary adenoma is an uncommon cause of hyperthyroidism in the United Kingdom, accounting for only a small number of cases.
Further Reading:
The thyroid gland is an endocrine organ located in the anterior neck. It consists of two lobes connected by an isthmus. The gland produces hormones called thyroxine (T4) and triiodothyronine (T3), which regulate energy use, protein synthesis, and the body’s sensitivity to other hormones. The production of T4 and T3 is stimulated by thyroid-stimulating hormone (TSH) secreted by the pituitary gland, which is in turn stimulated by thyrotropin-releasing hormone (TRH) from the hypothalamus.
Thyroid disorders can occur when there is an imbalance in the production or regulation of thyroid hormones. Hypothyroidism is characterized by a deficiency of thyroid hormones, while hyperthyroidism is characterized by an excess. The most common cause of hypothyroidism is autoimmune thyroiditis, also known as Hashimoto’s thyroiditis. It is more common in women and is often associated with goiter. Other causes include subacute thyroiditis, atrophic thyroiditis, and iodine deficiency. On the other hand, the most common cause of hyperthyroidism is Graves’ disease, which is also an autoimmune disorder. Other causes include toxic multinodular goiter and subacute thyroiditis.
The symptoms and signs of thyroid disorders can vary depending on whether the thyroid gland is underactive or overactive. In hypothyroidism, common symptoms include weight gain, lethargy, cold intolerance, and dry skin. In hyperthyroidism, common symptoms include weight loss, restlessness, heat intolerance, and increased sweating. Both hypothyroidism and hyperthyroidism can also affect other systems in the body, such as the cardiovascular, gastrointestinal, and neurological systems.
Complications of thyroid disorders can include dyslipidemia, metabolic syndrome, coronary heart disease, heart failure, subfertility and infertility, impaired special senses, and myxedema coma in severe cases of hypothyroidism. In hyperthyroidism, complications can include Graves’ orbitopathy, compression of the esophagus or trachea by goiter, thyrotoxic periodic paralysis, arrhythmias, osteoporosis, mood disorders, and increased obstetric complications.
Myxedema coma is a rare and life-threatening complication of severe hypothyroidism. It can be triggered by factors such as infection or physiological insult and presents with lethargy, bradycardia, hypothermia, hypotension, hypoventilation, altered mental state, seizures and/or coma.
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This question is part of the following fields:
- Endocrinology
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Question 5
Correct
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A 60 year old male is brought to the emergency department by his wife as he has become increasingly lethargic and confused over the past 5 days. You observe that the patient had a pituitary adenoma removed through transsphenoidal resection about 2 months ago and is currently on a medication regimen of desmopressin 100 micrograms 3 times daily. You suspect that his symptoms may be attributed to his medication. What is the most probable cause of his symptoms?
Your Answer: Hyponatraemia
Explanation:Desmopressin, a common treatment for cranial diabetes insipidus (DI) following pituitary surgery, can often lead to hyponatremia as a side effect. Therefore, it is important for patients to have their electrolyte levels regularly monitored. Symptoms of hyponatremia may include nausea, vomiting, headache, confusion, lethargy, fatigue, restlessness, irritability, muscle weakness or spasms, seizures, and drowsiness (which can progress to coma in severe cases).
Further Reading:
Diabetes insipidus (DI) is a condition characterized by either a decrease in the secretion of antidiuretic hormone (cranial DI) or insensitivity to antidiuretic hormone (nephrogenic DI). Antidiuretic hormone, also known as arginine vasopressin, is produced in the hypothalamus and released from the posterior pituitary. The typical biochemical disturbances seen in DI include elevated plasma osmolality, low urine osmolality, polyuria, and hypernatraemia.
Cranial DI can be caused by various factors such as head injury, CNS infections, pituitary tumors, and pituitary surgery. Nephrogenic DI, on the other hand, can be genetic or result from electrolyte disturbances or the use of certain drugs. Symptoms of DI include polyuria, polydipsia, nocturia, signs of dehydration, and in children, irritability, failure to thrive, and fatigue.
To diagnose DI, a 24-hour urine collection is done to confirm polyuria, and U&Es will typically show hypernatraemia. High plasma osmolality with low urine osmolality is also observed. Imaging studies such as MRI of the pituitary, hypothalamus, and surrounding tissues may be done, as well as a fluid deprivation test to evaluate the response to desmopressin.
Management of cranial DI involves supplementation with desmopressin, a synthetic form of arginine vasopressin. However, hyponatraemia is a common side effect that needs to be monitored. In nephrogenic DI, desmopressin supplementation is usually not effective, and management focuses on ensuring adequate fluid intake to offset water loss and monitoring electrolyte levels. Causative drugs need to be stopped, and there is a risk of developing complications such as hydroureteronephrosis and an overdistended bladder.
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This question is part of the following fields:
- Endocrinology
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Question 6
Correct
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You organize a teaching session for the junior doctors on the syndrome of inappropriate antidiuretic hormone secretion. Which of the following biochemical abnormalities is typical of SIADH?
Your Answer: Hyponatraemia
Explanation:SIADH is characterized by hyponatremia, which is a condition where there is a low level of sodium in the blood. This occurs because the body is unable to properly excrete excess water, leading to a dilution of sodium levels. SIADH is specifically classified as euvolemic, meaning that there is a normal amount of fluid in the body, and hypotonic, indicating that the concentration of solutes in the blood is lower than normal.
Further Reading:
Syndrome of inappropriate antidiuretic hormone (SIADH) is a condition characterized by low sodium levels in the blood due to excessive secretion of antidiuretic hormone (ADH). ADH, also known as arginine vasopressin (AVP), is responsible for promoting water and sodium reabsorption in the body. SIADH occurs when there is impaired free water excretion, leading to euvolemic (normal fluid volume) hypotonic hyponatremia.
There are various causes of SIADH, including malignancies such as small cell lung cancer, stomach cancer, and prostate cancer, as well as neurological conditions like stroke, subarachnoid hemorrhage, and meningitis. Infections such as tuberculosis and pneumonia, as well as certain medications like thiazide diuretics and selective serotonin reuptake inhibitors (SSRIs), can also contribute to SIADH.
The diagnostic features of SIADH include low plasma osmolality, inappropriately elevated urine osmolality, urinary sodium levels above 30 mmol/L, and euvolemic. Symptoms of hyponatremia, which is a common consequence of SIADH, include nausea, vomiting, headache, confusion, lethargy, muscle weakness, seizures, and coma.
Management of SIADH involves correcting hyponatremia slowly to avoid complications such as central pontine myelinolysis. The underlying cause of SIADH should be treated if possible, such as discontinuing causative medications. Fluid restriction is typically recommended, with a daily limit of around 1000 ml for adults. In severe cases with neurological symptoms, intravenous hypertonic saline may be used. Medications like demeclocycline, which blocks ADH receptors, or ADH receptor antagonists like tolvaptan may also be considered.
It is important to monitor serum sodium levels closely during treatment, especially if using hypertonic saline, to prevent rapid correction that can lead to central pontine myelinolysis. Osmolality abnormalities can help determine the underlying cause of hyponatremia, with increased urine osmolality indicating dehydration or renal disease, and decreased urine osmolality suggesting SIADH or overhydration.
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This question is part of the following fields:
- Endocrinology
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Question 7
Correct
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A 65-year-old diabetic man presents with a gradual decrease in consciousness and confusion over the past week. He normally controls his diabetes with metformin 500 mg twice a day. He recently received treatment for a urinary tract infection from his doctor, and his family reports that he has been excessively thirsty. He has vomited multiple times today. A urine dipstick test shows a small amount of white blood cells and 1+ ketones. His arterial blood gas results are as follows:
pH: 7.29
pO2: 11.1 kPa
pCO2: 4.6 kPa
HCO3-: 22 mmol/l
Na+: 154 mmol/l
K+: 3.2 mmol/l
Cl-: 100 mmol/l
Urea: 17.6 mmol/l
Glucose: 32 mmol/l
What is the SINGLE most likely diagnosis?Your Answer: Hyperosmolar hyperglycaemic state
Explanation:In an elderly patient with a history of gradual decline accompanied by high blood sugar levels, excessive thirst, and recent infection, the most likely diagnosis is hyperosmolar hyperglycemic state (HHS). This condition can be life-threatening, with a mortality rate of approximately 50%. Common symptoms include dehydration, elevated blood sugar levels, altered mental status, and electrolyte imbalances. About half of the patients with HHS also experience hypernatremia.
To calculate the serum osmolality, the formula is 2(K+ + Na+) + urea + glucose. In this case, the serum osmolality is 364 mmol/l, indicating a high level. It is important to discontinue the use of metformin in this patient due to the risk of metformin-associated lactic acidosis (MALA). Additionally, an intravenous infusion of insulin should be initiated.
The treatment goals for HHS are to address the underlying cause and gradually and safely:
– Normalize the osmolality
– Replace fluid and electrolyte losses
– Normalize blood glucose levelsIf significant ketonaemia is present (3β-hydroxybutyrate is more than 1 mmol/L), it indicates a relative lack of insulin, and insulin should be administered immediately. However, if significant ketonaemia is not present, insulin should not be started.
Patients with HHS are at a high risk of thromboembolism, and it is recommended to routinely administer low molecular weight heparin. In cases where the serum osmolality exceeds 350 mmol/l, full heparinization should be considered.
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This question is part of the following fields:
- Endocrinology
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Question 8
Correct
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A 35 year old male asylum seeker from Syria is admitted to the emergency department presenting with fatigue, fever, abdominal pain, and muscle aches. Upon assessment, the patient is found to be hypotensive and tachycardic. Laboratory results indicate electrolyte imbalances consistent with Addison's disease.
What is the primary cause of Addison's disease globally?Your Answer: Tuberculosis
Explanation:Addison’s disease, a condition characterized by insufficient production of hormones by the adrenal glands, has different causes depending on the geographical location. Tuberculosis is the leading cause of Addison’s disease globally, while autoimmune adrenalitis is the most common cause in developed countries like the UK.
Further Reading:
Addison’s disease, also known as primary adrenal insufficiency or hypoadrenalism, is a rare disorder caused by the destruction of the adrenal cortex. This leads to reduced production of glucocorticoids, mineralocorticoids, and adrenal androgens. The deficiency of cortisol results in increased production of adrenocorticotropic hormone (ACTH) due to reduced negative feedback to the pituitary gland. This condition can cause metabolic disturbances such as hyperkalemia, hyponatremia, hypercalcemia, and hypoglycemia.
The symptoms of Addison’s disease can vary but commonly include fatigue, weight loss, muscle weakness, and low blood pressure. It is more common in women and typically affects individuals between the ages of 30-50. The most common cause of primary hypoadrenalism in developed countries is autoimmune destruction of the adrenal glands. Other causes include tuberculosis, adrenal metastases, meningococcal septicaemia, HIV, and genetic disorders.
The diagnosis of Addison’s disease is often suspected based on low cortisol levels and electrolyte abnormalities. The adrenocorticotropic hormone stimulation test is commonly used for confirmation. Other investigations may include adrenal autoantibodies, imaging scans, and genetic screening.
Addisonian crisis is a potentially life-threatening condition that occurs when there is an acute deficiency of cortisol and aldosterone. It can be the first presentation of undiagnosed Addison’s disease. Precipitating factors of an Addisonian crisis include infection, dehydration, surgery, trauma, physiological stress, pregnancy, hypoglycemia, and acute withdrawal of long-term steroids. Symptoms of an Addisonian crisis include malaise, fatigue, nausea or vomiting, abdominal pain, fever, muscle pains, dehydration, confusion, and loss of consciousness.
There is no fixed consensus on diagnostic criteria for an Addisonian crisis, as symptoms are non-specific. Investigations may include blood tests, blood gas analysis, and septic screens if infection is suspected. Management involves administering hydrocortisone and fluids. Hydrocortisone is given parenterally, and the dosage varies depending on the age of the patient. Fluid resuscitation with saline is necessary to correct any electrolyte disturbances and maintain blood pressure. The underlying cause of the crisis should also be identified and treated. Close monitoring of sodium levels is important to prevent complications such as osmotic demyelination syndrome.
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This question is part of the following fields:
- Endocrinology
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Question 9
Incorrect
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A 45 year old male comes to the emergency department complaining of fatigue and a headache. The medical team records his vital signs and takes blood samples. The results are as follows:
Blood pressure: 192/98 mmHg
Pulse: 84 bpm
Respiration rate: 17 bpm
Temperature: 36.9ºC
Sodium (Na+): 149 mmol/l
Potassium (K+): 3.0 mmol/l
Urea: 3.8 mmol/l
Creatinine: 81 µmol/l
What is the most likely diagnosis?Your Answer: Pheochromocytoma
Correct Answer: Primary hyperaldosteronism
Explanation:Primary hyperaldosteronism is the leading endocrine cause of secondary hypertension, commonly affecting individuals between the ages of 30 and 50. It is characterized by metabolic alkalosis and often presents with hypernatraemia, although normal sodium levels can also be observed. When compared to pheochromocytoma, primary hyperaldosteronism is more frequently encountered. The diagnostic test of choice is the plasma aldosterone-to-renin ratio.
Further Reading:
Hyperaldosteronism is a condition characterized by excessive production of aldosterone by the adrenal glands. It can be classified into primary and secondary hyperaldosteronism. Primary hyperaldosteronism, also known as Conn’s syndrome, is typically caused by adrenal hyperplasia or adrenal tumors. Secondary hyperaldosteronism, on the other hand, is a result of high renin levels in response to reduced blood flow across the juxtaglomerular apparatus.
Aldosterone is the main mineralocorticoid steroid hormone produced by the adrenal cortex. It acts on the distal renal tubule and collecting duct of the nephron, promoting the reabsorption of sodium ions and water while secreting potassium ions.
The causes of hyperaldosteronism vary depending on whether it is primary or secondary. Primary hyperaldosteronism can be caused by adrenal adenoma, adrenal hyperplasia, adrenal carcinoma, or familial hyperaldosteronism. Secondary hyperaldosteronism can be caused by renal artery stenosis, reninoma, renal tubular acidosis, nutcracker syndrome, ectopic tumors, massive ascites, left ventricular failure, or cor pulmonale.
Clinical features of hyperaldosteronism include hypertension, hypokalemia, metabolic alkalosis, hypernatremia, polyuria, polydipsia, headaches, lethargy, muscle weakness and spasms, and numbness. It is estimated that hyperaldosteronism is present in 5-10% of patients with hypertension, and hypertension in primary hyperaldosteronism is often resistant to drug treatment.
Diagnosis of hyperaldosteronism involves various investigations, including U&Es to assess electrolyte disturbances, aldosterone-to-renin plasma ratio (ARR) as the gold standard diagnostic test, ECG to detect arrhythmia, CT/MRI scans to locate adenoma, fludrocortisone suppression test or oral salt testing to confirm primary hyperaldosteronism, genetic testing to identify familial hyperaldosteronism, and adrenal venous sampling to determine lateralization prior to surgery.
Treatment of primary hyperaldosteronism typically involves surgical adrenalectomy for patients with unilateral primary aldosteronism. Diet modification with sodium restriction and potassium supplementation may also be recommended.
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This question is part of the following fields:
- Endocrinology
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Question 10
Correct
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You assess a 58-year-old individual who has arrived at the emergency department complaining of chest pain resembling a cardiac condition. Upon reviewing the patient's medical history, you discover a previous diagnosis of hyperaldosteronism. In terms of aldosterone production, where is it typically synthesized?
Your Answer: Zona glomerulosa of the adrenal cortex
Explanation:The secretion of aldosterone occurs in the zona glomerulosa of the adrenal cortex.
Further Reading:
Hyperaldosteronism is a condition characterized by excessive production of aldosterone by the adrenal glands. It can be classified into primary and secondary hyperaldosteronism. Primary hyperaldosteronism, also known as Conn’s syndrome, is typically caused by adrenal hyperplasia or adrenal tumors. Secondary hyperaldosteronism, on the other hand, is a result of high renin levels in response to reduced blood flow across the juxtaglomerular apparatus.
Aldosterone is the main mineralocorticoid steroid hormone produced by the adrenal cortex. It acts on the distal renal tubule and collecting duct of the nephron, promoting the reabsorption of sodium ions and water while secreting potassium ions.
The causes of hyperaldosteronism vary depending on whether it is primary or secondary. Primary hyperaldosteronism can be caused by adrenal adenoma, adrenal hyperplasia, adrenal carcinoma, or familial hyperaldosteronism. Secondary hyperaldosteronism can be caused by renal artery stenosis, reninoma, renal tubular acidosis, nutcracker syndrome, ectopic tumors, massive ascites, left ventricular failure, or cor pulmonale.
Clinical features of hyperaldosteronism include hypertension, hypokalemia, metabolic alkalosis, hypernatremia, polyuria, polydipsia, headaches, lethargy, muscle weakness and spasms, and numbness. It is estimated that hyperaldosteronism is present in 5-10% of patients with hypertension, and hypertension in primary hyperaldosteronism is often resistant to drug treatment.
Diagnosis of hyperaldosteronism involves various investigations, including U&Es to assess electrolyte disturbances, aldosterone-to-renin plasma ratio (ARR) as the gold standard diagnostic test, ECG to detect arrhythmia, CT/MRI scans to locate adenoma, fludrocortisone suppression test or oral salt testing to confirm primary hyperaldosteronism, genetic testing to identify familial hyperaldosteronism, and adrenal venous sampling to determine lateralization prior to surgery.
Treatment of primary hyperaldosteronism typically involves surgical adrenalectomy for patients with unilateral primary aldosteronism. Diet modification with sodium restriction and potassium supplementation may also be recommended.
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This question is part of the following fields:
- Endocrinology
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Question 11
Incorrect
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A 2-month-old baby comes in with symptoms of vomiting, decreased weight, and an electrolyte imbalance. Upon consulting with the pediatricians, the baby is diagnosed with congenital adrenal hyperplasia (CAH). Which of the following is NOT a characteristic biochemical finding associated with this condition?
Your Answer: Hyponatraemia
Correct Answer: Hyperglycaemia
Explanation:Congenital adrenal hyperplasia (CAH) is a group of inherited disorders that are caused by autosomal recessive genes. The majority of affected patients, over 90%, have a deficiency of the enzyme 21-hydroxylase. This enzyme is encoded by the 21-hydroxylase gene, which is located on chromosome 6p21 within the HLA histocompatibility complex. The second most common cause of CAH is a deficiency of the enzyme 11-beta-hydroxylase. The condition is rare, with an incidence of approximately 1 in 500 births in the UK. It is more prevalent in the offspring of consanguineous marriages.
The deficiency of 21-hydroxylase leads to a deficiency of cortisol and/or aldosterone, as well as an excess of precursor steroids. As a result, there is an increased secretion of ACTH from the anterior pituitary, leading to adrenocortical hyperplasia.
The severity of CAH varies depending on the degree of 21-hydroxylase deficiency. Female infants often exhibit ambiguous genitalia, such as clitoral hypertrophy and labial fusion. Male infants may have an enlarged scrotum and/or scrotal pigmentation. Hirsutism, or excessive hair growth, occurs in 10% of cases.
Boys with CAH often experience a salt-losing adrenal crisis at around 1-3 weeks of age. This crisis is characterized by symptoms such as vomiting, weight loss, floppiness, and circulatory collapse.
The diagnosis of CAH can be made by detecting markedly elevated levels of the metabolic precursor 17-hydroxyprogesterone. Neonatal screening is possible, primarily through the identification of persistently elevated 17-hydroxyprogesterone levels.
In infants presenting with a salt-losing crisis, the following biochemical abnormalities are observed: hyponatremia (low sodium levels), hyperkalemia (high potassium levels), metabolic acidosis, and hypoglycemia.
Boys experiencing a salt-losing crisis will require fluid resuscitation, intravenous dextrose, and intravenous hydrocortisone.
Affected females will require corrective surgery for their external genitalia. However, they have an intact uterus and ovaries and are capable of having children.
The long-term management of both sexes involves lifelong replacement of hydrocortisone (to suppress ACTH levels).
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This question is part of the following fields:
- Endocrinology
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Question 12
Correct
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A 58 year old male comes to the emergency department complaining of palpitations, swollen legs, and excessive sweating. Thyroid function tests are requested and reveal low TSH and elevated free T4 levels. Which of the following medications is most likely responsible for these symptoms?
Your Answer: Amiodarone
Explanation:Amiodarone, a medication used to treat heart rhythm problems, can have effects on the thyroid gland. It can either cause hypothyroidism (low thyroid hormone levels) or hyperthyroidism (high thyroid hormone levels). Amiodarone is a highly fat-soluble drug that accumulates in various tissues, including the thyroid. Even after stopping the medication, its effects can still be seen due to its long elimination half-life of around 100 days.
The reason behind amiodarone impact on the thyroid is believed to be its high iodine content. In patients with sufficient iodine levels, amiodarone-induced hypothyroidism is more likely to occur. On the other hand, in populations with low iodine levels, amiodarone can lead to a condition called iodine-induced thyrotoxicosis, which is characterized by hyperthyroidism.
The mechanism of amiodarone-induced hypothyroidism involves the release of iodide from the drug, which blocks the uptake of further iodide by the thyroid gland and hampers the production of thyroid hormones. Additionally, amiodarone inhibits the conversion of the inactive thyroid hormone T4 to the active form T3.
Amiodarone-induced hyperthyroidism, on the other hand, is thought to occur in individuals with abnormal thyroid glands, such as those with nodular goiters, autonomous nodules, or latent Graves’ disease. In these cases, the excess iodine from amiodarone overwhelms the thyroid’s normal regulatory mechanisms, leading to hyperthyroidism.
Further Reading:
The thyroid gland is an endocrine organ located in the anterior neck. It consists of two lobes connected by an isthmus. The gland produces hormones called thyroxine (T4) and triiodothyronine (T3), which regulate energy use, protein synthesis, and the body’s sensitivity to other hormones. The production of T4 and T3 is stimulated by thyroid-stimulating hormone (TSH) secreted by the pituitary gland, which is in turn stimulated by thyrotropin-releasing hormone (TRH) from the hypothalamus.
Thyroid disorders can occur when there is an imbalance in the production or regulation of thyroid hormones. Hypothyroidism is characterized by a deficiency of thyroid hormones, while hyperthyroidism is characterized by an excess. The most common cause of hypothyroidism is autoimmune thyroiditis, also known as Hashimoto’s thyroiditis. It is more common in women and is often associated with goiter. Other causes include subacute thyroiditis, atrophic thyroiditis, and iodine deficiency. On the other hand, the most common cause of hyperthyroidism is Graves’ disease, which is also an autoimmune disorder. Other causes include toxic multinodular goiter and subacute thyroiditis.
The symptoms and signs of thyroid disorders can vary depending on whether the thyroid gland is underactive or overactive. In hypothyroidism, common symptoms include weight gain, lethargy, cold intolerance, and dry skin. In hyperthyroidism, common symptoms include weight loss, restlessness, heat intolerance, and increased sweating. Both hypothyroidism and hyperthyroidism can also affect other systems in the body, such as the cardiovascular, gastrointestinal, and neurological systems.
Complications of thyroid disorders can include dyslipidemia, metabolic syndrome, coronary heart disease, heart failure, subfertility and infertility, impaired special senses, and myxedema coma in severe cases of hypothyroidism. In hyperthyroidism, complications can include Graves’ orbitopathy, compression of the esophagus or trachea by goiter, thyrotoxic periodic paralysis, arrhythmias, osteoporosis, mood disorders, and increased obstetric complications.
Myxedema coma is a rare and life-threatening complication of severe hypothyroidism. It can be triggered by factors such as infection or physiological insult and presents with lethargy, bradycardia, hypothermia, hypotension, hypoventilation, altered mental state, seizures and/or coma. hypotension, hypoventilation, altered mental state, seizures and/or coma.
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This question is part of the following fields:
- Endocrinology
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Question 13
Correct
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A 3-week-old girl presents with vomiting, poor weight gain, and decreased muscle tone. She is hypotensive and has a fast heart rate. During the examination, you notice that she has enlarged labia and increased pigmentation. Blood tests show high potassium, low sodium, and elevated levels of 17-hydroxyprogesterone. A venous blood gas reveals the presence of metabolic acidosis, and her blood glucose level is slightly low. Intravenous fluids have already been started.
What is the SINGLE most appropriate next step in management?Your Answer: IV hydrocortisone and IV dextrose
Explanation:Congenital adrenal hyperplasia (CAH) is a group of inherited disorders that are caused by autosomal recessive genes. The majority of affected patients, over 90%, have a deficiency of the enzyme 21-hydroxylase. This enzyme is encoded by the 21-hydroxylase gene, which is located on chromosome 6p21 within the HLA histocompatibility complex. The second most common cause of CAH is a deficiency of the enzyme 11-beta-hydroxylase. The condition is rare, with an incidence of approximately 1 in 500 births in the UK. It is more prevalent in the offspring of consanguineous marriages.
The deficiency of 21-hydroxylase leads to a deficiency of cortisol and/or aldosterone, as well as an excess of precursor steroids. As a result, there is an increased secretion of ACTH from the anterior pituitary, leading to adrenocortical hyperplasia.
The severity of CAH varies depending on the degree of 21-hydroxylase deficiency. Female infants often exhibit ambiguous genitalia, such as clitoral hypertrophy and labial fusion. Male infants may have an enlarged scrotum and/or scrotal pigmentation. Hirsutism, or excessive hair growth, occurs in 10% of cases.
Boys with CAH often experience a salt-losing adrenal crisis at around 1-3 weeks of age. This crisis is characterized by symptoms such as vomiting, weight loss, floppiness, and circulatory collapse.
The diagnosis of CAH can be made by detecting markedly elevated levels of the metabolic precursor 17-hydroxyprogesterone. Neonatal screening is possible, primarily through the identification of persistently elevated 17-hydroxyprogesterone levels.
In infants presenting with a salt-losing crisis, the following biochemical abnormalities are observed: hyponatremia (low sodium levels), hyperkalemia (high potassium levels), metabolic acidosis, and hypoglycemia.
Boys experiencing a salt-losing crisis will require fluid resuscitation, intravenous dextrose, and intravenous hydrocortisone.
Affected females will require corrective surgery for their external genitalia. However, they have an intact uterus and ovaries and are capable of having children.
The long-term management of both sexes involves lifelong replacement of hydrocortisone (to suppress ACTH levels).
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This question is part of the following fields:
- Endocrinology
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Question 14
Correct
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A 42 year old male presents to the emergency department with intermittent blurred vision over the past few days. The patient reports feeling constantly fatigued and has gained over a stone in weight over the last 6-8 weeks. The patient was diagnosed with temporal arteritis 3 months ago. On examination, there is truncal obesity, supraclavicular fat pads, abdominal striae, and pitting edema to both ankles. The triage nurse has recorded the following observations:
Blood pressure: 174/92 mmHg
Pulse rate: 80 bpm
Respiration rate: 12 bpm
Oxygen saturations: 98% on air
Temperature: 37.1ºC
What is the most likely underlying diagnosis?Your Answer: Cushing syndrome
Explanation:Hypertension, hyperglycemia, weight gain, truncal obesity, supraclavicular fat pads, and striae are characteristic symptoms of a Cushing syndrome.
Further Reading:
Cushing’s syndrome is a clinical syndrome caused by prolonged exposure to high levels of glucocorticoids. The severity of symptoms can vary depending on the level of steroid exposure. There are two main classifications of Cushing’s syndrome: ACTH-dependent disease and non-ACTH-dependent disease. ACTH-dependent disease is caused by excessive ACTH production from the pituitary gland or ACTH-secreting tumors, which stimulate excessive cortisol production. Non-ACTH-dependent disease is characterized by excess glucocorticoid production independent of ACTH stimulation.
The most common cause of Cushing’s syndrome is exogenous steroid use. Pituitary adenoma is the second most common cause and the most common endogenous cause. Cushing’s disease refers specifically to Cushing’s syndrome caused by an ACTH-producing pituitary tumor.
Clinical features of Cushing’s syndrome include truncal obesity, supraclavicular fat pads, buffalo hump, weight gain, moon facies, muscle wasting and weakness, diabetes or impaired glucose tolerance, gonadal dysfunction, hypertension, nephrolithiasis, skin changes (such as skin atrophy, striae, easy bruising, hirsutism, acne, and hyperpigmentation in ACTH-dependent causes), depression and emotional lability, osteopenia or osteoporosis, edema, irregular menstrual cycles or amenorrhea, polydipsia and polyuria, poor wound healing, and signs related to the underlying cause, such as headaches and visual problems.
Diagnostic tests for Cushing’s syndrome include 24-hour urinary free cortisol, 1 mg overnight dexamethasone suppression test, and late-night salivary cortisol. Other investigations aim to assess metabolic disturbances and identify the underlying cause, such as plasma ACTH, full blood count (raised white cell count), electrolytes, and arterial blood gas analysis. Imaging, such as CT or MRI of the abdomen, chest, and/or pituitary, may be required to assess suspected adrenal tumors, ectopic ACTH-secreting tumors, and pituitary tumors. The choice of imaging is guided by the ACTH result, with undetectable ACTH and elevated serum cortisol levels indicating ACTH-independent Cushing’s syndrome and raised ACTH suggesting an ACTH-secreting tumor.
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This question is part of the following fields:
- Endocrinology
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Question 15
Incorrect
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You examine the blood test results of a patient in the resuscitation room who is experiencing an Addisonian crisis. What is the most probable SINGLE biochemical characteristic that will be observed?
Your Answer: Hypokalaemia
Correct Answer: Increased ACTH level
Explanation:Addison’s disease is characterized by several classical biochemical features. One of these features is an elevated level of ACTH, which is the body’s attempt to stimulate the adrenal glands. Additionally, individuals with Addison’s disease often experience hyponatremia, which is a decrease in the level of sodium in the blood. Another common feature is hyperkalemia, which refers to an excessive amount of potassium in the blood. Furthermore, individuals with Addison’s disease may also experience hypercalcemia, which is an elevated level of calcium in the blood. Hypoglycemia, which is low blood sugar, is another characteristic feature of this disease. Lastly, metabolic acidosis, which refers to an imbalance in the body’s acid-base levels, is also commonly observed in individuals with Addison’s disease.
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This question is part of the following fields:
- Endocrinology
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Question 16
Incorrect
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A 45-year-old patient presents with a history of feeling constantly thirsty and urinating large amounts. She also experiences extreme fatigue. The healthcare provider suspects diabetes mellitus and schedules an oral glucose tolerance test.
What is the current WHO threshold for diagnosing diabetes mellitus using an oral glucose tolerance test?Your Answer: 7.1 mmol/l
Correct Answer: 11.1 mmol/l
Explanation:According to the 2011 recommendations from the World Health Organization (WHO), the following criteria are used to diagnose diabetes mellitus:
– A random venous plasma glucose concentration that exceeds 11.1 mmol/l.
– A fasting plasma glucose concentration that is higher than 7.0 mmol/l.
– A two-hour plasma glucose concentration that exceeds 11.1 mmol/l, measured two hours after consuming 75g of anhydrous glucose during an oral glucose tolerance test (OGTT).
– An HbA1c level that is greater than 48 mmol/mol (equivalent to 6.5%).These guidelines provide specific thresholds for diagnosing diabetes mellitus based on various glucose measurements and HbA1c levels. It is important for healthcare professionals to consider these criteria when evaluating individuals for diabetes mellitus.
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This question is part of the following fields:
- Endocrinology
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Question 17
Incorrect
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A 68-year-old diabetic man presents with a gradual decrease in consciousness and confusion over the past week. He normally controls his diabetes with metformin 500 mg twice a day. He recently received treatment for a urinary tract infection from his GP, and his family reports that he has been excessively thirsty. He has vomited multiple times today. A urine dipstick test shows a trace of leukocytes and 2+ ketones. The results of his arterial blood gas analysis are as follows:
pH: 7.29
pO2: 11.1 kPa
pCO2: 4.6 kPa
HCO3-: 22 mmol/l
Na+: 154 mmol/l
K+: 3.2 mmol/l
Cl-: 100 mmol/l
Urea: 17.6 mmol/l
Glucose: 32 mmol/l
Which investigation would be most helpful in guiding his management?Your Answer: Serum cortisol
Correct Answer: Serum 3β-hydroxybutyrate
Explanation:In an elderly patient with a history of gradual decline accompanied by symptoms of hyperglycemia, excessive thirst, recent infection, and very high blood sugar levels, the most likely diagnosis is a hyperosmolar hyperglycemic state (HHS). This condition can be life-threatening, with a mortality rate of approximately 50%. Common symptoms include high blood sugar levels, dehydration, altered mental status, and electrolyte imbalances. About 50% of patients with HHS also experience hypernatremia, an elevated sodium level in the blood.
To calculate the serum osmolality, the following formula can be used: 2 (K+ + Na+) + urea + glucose. In this particular case, the calculation would be 2 (3.2 + 154) + 17.6 + 32 = 364 mmol/l. Patients with HHS typically have a serum osmolality greater than 350 mmol/l.
In order to manage HHS, it is important to address the underlying cause and gradually and safely achieve the following goals:
1. Normalize the osmolality
2. Replace fluid and electrolyte losses
3. Normalize blood glucose levelsGiven the presence of 1+ ketones in the patient’s urine, which is likely due to vomiting and a mild acidosis, it is recommended to discontinue the use of metformin due to the risk of metformin-associated lactic acidosis (MALA). Additionally, an intravenous infusion of insulin should be initiated in this case.
If significant ketonaemia is present (3β-hydroxybutyrate is more than 1 mmol/L), it indicates a relative deficiency of insulin, and insulin treatment should be started immediately. However, if significant ketonaemia is not present, insulin should not be initiated.
Patients with HHS are at a high risk of developing thromboembolism, and therefore, routine administration of low molecular weight heparin is recommended. In cases where the serum osmolality exceeds 350 mmol/l, full heparinization should be considered.
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This question is part of the following fields:
- Endocrinology
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Question 18
Incorrect
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A 42-year-old is brought into the emergency department after becoming drowsy following a 5 day illness. Upon checking the patient's records you note a history of Addison's disease. Which of the following features would you expect in a patient with Addison's disease?
Your Answer: Hypernatraemia
Correct Answer: Hypotension
Explanation:Addison’s disease is characterized by hypotension, which is caused by a deficiency of glucocorticoids (mainly cortisol) and mineralocorticoids (mainly aldosterone). This deficiency leads to low blood pressure. If left untreated, it can progress to hypovolemic shock (also known as Addisonian or adrenal crisis) and can be fatal. Metabolic disturbances associated with Addison’s disease include hyponatremia, hypoglycemia, hyperkalemia, hypercalcemia, and low serum cortisol levels.
Further Reading:
Addison’s disease, also known as primary adrenal insufficiency or hypoadrenalism, is a rare disorder caused by the destruction of the adrenal cortex. This leads to reduced production of glucocorticoids, mineralocorticoids, and adrenal androgens. The deficiency of cortisol results in increased production of adrenocorticotropic hormone (ACTH) due to reduced negative feedback to the pituitary gland. This condition can cause metabolic disturbances such as hyperkalemia, hyponatremia, hypercalcemia, and hypoglycemia.
The symptoms of Addison’s disease can vary but commonly include fatigue, weight loss, muscle weakness, and low blood pressure. It is more common in women and typically affects individuals between the ages of 30-50. The most common cause of primary hypoadrenalism in developed countries is autoimmune destruction of the adrenal glands. Other causes include tuberculosis, adrenal metastases, meningococcal septicaemia, HIV, and genetic disorders.
The diagnosis of Addison’s disease is often suspected based on low cortisol levels and electrolyte abnormalities. The adrenocorticotropic hormone stimulation test is commonly used for confirmation. Other investigations may include adrenal autoantibodies, imaging scans, and genetic screening.
Addisonian crisis is a potentially life-threatening condition that occurs when there is an acute deficiency of cortisol and aldosterone. It can be the first presentation of undiagnosed Addison’s disease. Precipitating factors of an Addisonian crisis include infection, dehydration, surgery, trauma, physiological stress, pregnancy, hypoglycemia, and acute withdrawal of long-term steroids. Symptoms of an Addisonian crisis include malaise, fatigue, nausea or vomiting, abdominal pain, fever, muscle pains, dehydration, confusion, and loss of consciousness.
There is no fixed consensus on diagnostic criteria for an Addisonian crisis, as symptoms are non-specific. Investigations may include blood tests, blood gas analysis, and septic screens if infection is suspected. Management involves administering hydrocortisone and fluids. Hydrocortisone is given parenterally, and the dosage varies depending on the age of the patient. Fluid resuscitation with saline is necessary to correct any electrolyte disturbances and maintain blood pressure. The underlying cause of the crisis should also be identified and treated. Close monitoring of sodium levels is important to prevent complications such as osmotic demyelination syndrome.
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This question is part of the following fields:
- Endocrinology
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Question 19
Correct
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A 40-year-old male patient presents with a history of dizziness and fainting episodes. He has also been suffering from a mild flu-like illness for the past few days. He had a syncopal episode in the department and was moved into the resuscitation area. His observations are as follows: Temperature 38.4°C, HR 112, BP 78/44, oxygen saturation 98% on high-flow oxygen, GCS 14/15, BM 1.5.
His initial blood results are shown below:
Na+: 118 mmol/l
K+: 6.1 mmol/l
Urea: 11.6 mmol/l
Creatinine: 132 mmol/l
Which of the following investigations is most appropriate to confirm the underlying diagnosis?Your Answer: Synacthen test
Explanation:This patient has presented with an Addisonian crisis, which is a rare but potentially catastrophic condition if not diagnosed promptly. It is more commonly seen in women than men and typically occurs between the ages of 30 and 50.
Addison’s disease is caused by insufficient production of steroid hormones by the adrenal glands, affecting the production of glucocorticoids, mineralocorticoids, and sex steroids. The main causes of Addison’s disease include autoimmune adrenalitis (accounting for 80% of cases), bilateral adrenalectomy, Waterhouse-Friderichsen syndrome (hemorrhage into the adrenal glands), and tuberculosis.
The most common trigger for an Addisonian crisis in patients with Addison’s disease is the intentional or accidental withdrawal of steroid therapy. Other factors that can precipitate a crisis include infection, trauma, myocardial infarction, cerebral infarction, asthma, hypothermia, and alcohol abuse.
Clinical features of Addison’s disease include weakness, lethargy, hypotension (especially orthostatic hypotension), nausea, vomiting, weight loss, reduced axillary and pubic hair, depression, and hyperpigmentation (particularly in palmar creases, buccal mucosa, and exposed areas). In an Addisonian crisis, the main symptoms are usually hypoglycemia and shock, characterized by tachycardia, peripheral vasoconstriction, hypotension, altered consciousness, and even coma.
Biochemical markers of Addison’s disease typically include increased ACTH levels (as a compensatory response to stimulate the adrenal glands), elevated serum renin levels, hyponatremia, hyperkalemia, hypercalcemia, hypoglycemia, and metabolic acidosis. Confirmatory investigations may involve the Synacthen test, plasma ACTH level measurement, plasma renin level measurement, and testing for adrenocortical antibodies.
Management of Addison’s disease should be overseen by an Endocrinologist. Treatment usually involves the administration of hydrocortisone, fludrocortisone, and dehydroepiandrosterone. Some patients may also require thyroxine if there is concurrent hypothalamic-pituitary disease. Treatment is lifelong, and patients should carry a steroid card and MedicAlert bracelet to alert healthcare professionals about their condition and the potential for an Addisonian crisis.
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This question is part of the following fields:
- Endocrinology
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Question 20
Correct
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A patient presents with a history of feeling constantly thirsty and urinating large amounts. She also experiences extreme fatigue. A diagnosis of diabetes mellitus is suspected, and a fasting blood glucose sample is scheduled.
What is the current WHO threshold for diagnosing diabetes mellitus using a fasting blood sample in this case?Your Answer: 7 mmol/l
Explanation:According to the 2011 recommendations from the World Health Organization (WHO), the following criteria are used to diagnose diabetes mellitus:
– A random venous plasma glucose concentration that exceeds 11.1 mmol/l.
– A fasting plasma glucose concentration that is higher than 7.0 mmol/l.
– A two-hour plasma glucose concentration that exceeds 11.1 mmol/l, measured two hours after consuming 75g of anhydrous glucose during an oral glucose tolerance test (OGTT).
– An HbA1c level that is greater than 48 mmol/mol (equivalent to 6.5%).These guidelines provide specific thresholds for diagnosing diabetes mellitus based on various glucose measurements and HbA1c levels. It is important for healthcare professionals to consider these criteria when evaluating individuals for diabetes mellitus.
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This question is part of the following fields:
- Endocrinology
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Question 21
Incorrect
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You evaluate a patient who has developed Nelson's syndrome after undergoing a bilateral adrenalectomy 15 years ago.
Which ONE statement is NOT TRUE regarding this diagnosis?Your Answer: Trans-sphenoidal surgery is the treatment of choice
Correct Answer: ACTH levels will be low
Explanation:Nelson’s syndrome is a rare condition that occurs many years after a bilateral adrenalectomy for Cushing’s syndrome. It is believed to develop due to the loss of the normal negative feedback control that suppresses high cortisol levels. As a result, the hypothalamus starts producing CRH again, which stimulates the growth of a pituitary adenoma that produces adrenocorticotropic hormone (ACTH).
Only 15-20% of patients who undergo bilateral adrenalectomy will develop this condition, and it is now rarely seen as the procedure is no longer commonly performed.
The symptoms and signs of Nelson’s syndrome are related to the growth of the pituitary adenoma and the increased production of ACTH and melanocyte-stimulating hormone (MSH) from the adenoma. These may include headaches, visual field defects (up to 50% of cases), increased skin pigmentation, and the possibility of hypopituitarism.
ACTH levels will be significantly elevated (usually >500 ng/L). Thyroxine, TSH, gonadotrophin, and sex hormone levels may be low. Prolactin levels may be high, but not as high as with a prolactin-producing tumor. MRI or CT scanning can be helpful in identifying the presence of an expanding pituitary mass.
The treatment of choice for Nelson’s syndrome is trans-sphenoidal surgery.
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This question is part of the following fields:
- Endocrinology
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Question 22
Incorrect
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A 35-year-old is brought into the resuscitation bay by ambulance after being found unconscious at home. You observe that the patient has a medical history of hyperthyroidism and suspect thyroid storm after conducting a thorough assessment. Which of the following should NOT be administered immediately?
Your Answer: Hydrocortisone
Correct Answer: Lugol’s iodine
Explanation:When treating thyroid storm, it is important to administer certain drugs immediately. These include a beta blocker like propranolol or a calcium channel blocker if a beta blocker cannot be used. Corticosteroids like hydrocortisone or dexamethasone are also given. Additionally, antithyroid drugs like propylthiouracil are administered. However, it is crucial to wait at least one hour after giving the antithyroid drugs before administering iodine solution such as Lugol’s iodine. This is because iodine can worsen thyrotoxicosis by stimulating thyroid hormone synthesis. Propylthiouracil, on the other hand, inhibits the normal interactions of iodine and peroxidase with thyroglobulin, which is why it is given first and allowed time to take effect.
Further Reading:
The thyroid gland is an endocrine organ located in the anterior neck. It consists of two lobes connected by an isthmus. The gland produces hormones called thyroxine (T4) and triiodothyronine (T3), which regulate energy use, protein synthesis, and the body’s sensitivity to other hormones. The production of T4 and T3 is stimulated by thyroid-stimulating hormone (TSH) secreted by the pituitary gland, which is in turn stimulated by thyrotropin-releasing hormone (TRH) from the hypothalamus.
Thyroid disorders can occur when there is an imbalance in the production or regulation of thyroid hormones. Hypothyroidism is characterized by a deficiency of thyroid hormones, while hyperthyroidism is characterized by an excess. The most common cause of hypothyroidism is autoimmune thyroiditis, also known as Hashimoto’s thyroiditis. It is more common in women and is often associated with goiter. Other causes include subacute thyroiditis, atrophic thyroiditis, and iodine deficiency. On the other hand, the most common cause of hyperthyroidism is Graves’ disease, which is also an autoimmune disorder. Other causes include toxic multinodular goiter and subacute thyroiditis.
The symptoms and signs of thyroid disorders can vary depending on whether the thyroid gland is underactive or overactive. In hypothyroidism, common symptoms include weight gain, lethargy, cold intolerance, and dry skin. In hyperthyroidism, common symptoms include weight loss, restlessness, heat intolerance, and increased sweating. Both hypothyroidism and hyperthyroidism can also affect other systems in the body, such as the cardiovascular, gastrointestinal, and neurological systems.
Complications of thyroid disorders can include dyslipidemia, metabolic syndrome, coronary heart disease, heart failure, subfertility and infertility, impaired special senses, and myxedema coma in severe cases of hypothyroidism. In hyperthyroidism, complications can include Graves’ orbitopathy, compression of the esophagus or trachea by goiter, thyrotoxic periodic paralysis, arrhythmias, osteoporosis, mood disorders, and increased obstetric complications.
Myxedema coma is a rare and life-threatening complication of severe hypothyroidism. It can be triggered by factors such as infection or physiological insult and presents with lethargy, bradycardia, hypothermia, hypotension, hypoventilation, altered mental state, seizures and/or coma.
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This question is part of the following fields:
- Endocrinology
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Question 23
Incorrect
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You are summoned to the resuscitation bay to aid in the care of a 45-year-old male who has suffered a head injury. A fellow healthcare provider informs you that the patient is exhibiting Cushing's triad of symptoms. What is the most accurate description of Cushing's triad?
Your Answer: Headache, papilloedema and vomiting
Correct Answer: Widened pulse pressure, bradycardia and bradypnoea
Explanation:Cushing’s triad is a combination of widened pulse pressure, bradycardia, and reduced respirations. It is a physiological response of the nervous system to acute increases in intracranial pressure (ICP). This response, known as the Cushing reflex, can cause the symptoms of Cushing’s triad. These symptoms include an increase in systolic blood pressure and a decrease in diastolic blood pressure, a slower heart rate, and irregular or reduced breathing. Additionally, raised ICP can also lead to other symptoms such as headache, papilloedema, and vomiting.
Further Reading:
Intracranial pressure (ICP) refers to the pressure within the craniospinal compartment, which includes neural tissue, blood, and cerebrospinal fluid (CSF). Normal ICP for a supine adult is 5-15 mmHg. The body maintains ICP within a narrow range through shifts in CSF production and absorption. If ICP rises, it can lead to decreased cerebral perfusion pressure, resulting in cerebral hypoperfusion, ischemia, and potentially brain herniation.
The cranium, which houses the brain, is a closed rigid box in adults and cannot expand. It is made up of 8 bones and contains three main components: brain tissue, cerebral blood, and CSF. Brain tissue accounts for about 80% of the intracranial volume, while CSF and blood each account for about 10%. The Monro-Kellie doctrine states that the sum of intracranial volumes is constant, so an increase in one component must be offset by a decrease in the others.
There are various causes of raised ICP, including hematomas, neoplasms, brain abscesses, edema, CSF circulation disorders, venous sinus obstruction, and accelerated hypertension. Symptoms of raised ICP include headache, vomiting, pupillary changes, reduced cognition and consciousness, neurological signs, abnormal fundoscopy, cranial nerve palsy, hemiparesis, bradycardia, high blood pressure, irregular breathing, focal neurological deficits, seizures, stupor, coma, and death.
Measuring ICP typically requires invasive procedures, such as inserting a sensor through the skull. Management of raised ICP involves a multi-faceted approach, including antipyretics to maintain normothermia, seizure control, positioning the patient with a 30º head up tilt, maintaining normal blood pressure, providing analgesia, using drugs to lower ICP (such as mannitol or saline), and inducing hypocapnoeic vasoconstriction through hyperventilation. If these measures are ineffective, second-line therapies like barbiturate coma, optimised hyperventilation, controlled hypothermia, or decompressive craniectomy may be considered.
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This question is part of the following fields:
- Endocrinology
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Question 24
Correct
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A 70 year old type 2 diabetic visits the emergency department with a foot injury. You suspect neuropathy and conduct sensory testing. Which of the following senses is usually the first to be lost in diabetic neuropathy?
Your Answer: Vibration
Explanation:The initial noticeable abnormality in sensory testing for diabetic neuropathy is often the loss of vibration sense. Reduced sensation, particularly in vibration sense, is typically the first symptom to be observed in diabetic neuropathy.
Further Reading:
Diabetic foot is a complication that can occur in individuals with diabetes due to long-standing high blood sugar levels. This leads to a process called glycation or glycosylation, where glucose binds to proteins and lipids in the body. Abnormal protein glycation can cause cellular dysfunction and various complications.
One of the main problems in diabetic foot is peripheral vascular disease and peripheral neuropathy. These conditions can result in significant foot issues, as trauma to the feet may go unnoticed and untreated. Vascular disease also impairs wound healing and increases the risk of developing ulcers.
Clinical features of diabetic foot include reduced sensation, especially to vibration, non-dermatomal sensory loss, foot deformities such as pes cavus and claw toes, and weak or absent foot pulses. It is important for diabetic patients to have their feet assessed regularly, at least annually, to identify any potential problems. Additional foot assessments should also be conducted during hospital admissions.
During a diabetic foot assessment, the healthcare provider should remove shoes, socks, and any bandages or dressings to examine both feet. They should assess for neuropathy using a 10 g monofilament to test foot sensation and check for limb ischemia by examining pulses and performing ankle brachial pressure index (ABPI) measurements. Any abnormal tissue, such as ulcers, calluses, infections, inflammation, deformities, or gangrene, should be documented. The risk of Charcot arthropathy should also be assessed.
The severity of foot ulcers in diabetic patients can be documented using standardized systems such as SINBAD or the University of Texas classification. The presence and severity of diabetic foot infection can be determined based on criteria such as local swelling, induration, erythema, tenderness, pain, warmth, and purulent discharge.
Management of foot ulcers involves offloading, control of foot infection, control of ischemia, wound debridement, and appropriate wound dressings. Antibiotics may be necessary depending on the severity of the infection. Diabetic patients with foot ulcers should undergo initial investigations including blood tests, wound swabs, and imaging to assess for possible osteomyelitis.
Charcot foot is a serious complication of diabetic peripheral neuropathy that results in progressive destructive arthropathy and foot deformity. Signs of Charcot foot include redness, swelling, warm skin, pain, and deformity. The hallmark deformity is midfoot collapse, known as the rocker-bottom foot.
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This question is part of the following fields:
- Endocrinology
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Question 25
Incorrect
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A 35-year-old patient arrives at the emergency department complaining of overall muscle weakness and fatigue. Upon reviewing the patient's medical history, you discover a previous diagnosis of primary hyperaldosteronism. Which of the following statements about primary hyperaldosteronism is correct?
Your Answer: Renal artery stenosis is the most common underlying cause
Correct Answer: Hypertension is usually resistant to drug treatment
Explanation:Primary hyperaldosteronism is a condition where hypertension is often difficult to control with antihypertensive medication. The most common electrolyte disturbance seen in this condition is hypokalaemia. To diagnose primary hyperaldosteronism, the preferred test is the plasma aldosterone-to-renin ratio (ARR), followed by imaging to identify the underlying cause. It is important to note that renal artery stenosis is a common cause of secondary hyperaldosteronism.
Further Reading:
Hyperaldosteronism is a condition characterized by excessive production of aldosterone by the adrenal glands. It can be classified into primary and secondary hyperaldosteronism. Primary hyperaldosteronism, also known as Conn’s syndrome, is typically caused by adrenal hyperplasia or adrenal tumors. Secondary hyperaldosteronism, on the other hand, is a result of high renin levels in response to reduced blood flow across the juxtaglomerular apparatus.
Aldosterone is the main mineralocorticoid steroid hormone produced by the adrenal cortex. It acts on the distal renal tubule and collecting duct of the nephron, promoting the reabsorption of sodium ions and water while secreting potassium ions.
The causes of hyperaldosteronism vary depending on whether it is primary or secondary. Primary hyperaldosteronism can be caused by adrenal adenoma, adrenal hyperplasia, adrenal carcinoma, or familial hyperaldosteronism. Secondary hyperaldosteronism can be caused by renal artery stenosis, reninoma, renal tubular acidosis, nutcracker syndrome, ectopic tumors, massive ascites, left ventricular failure, or cor pulmonale.
Clinical features of hyperaldosteronism include hypertension, hypokalemia, metabolic alkalosis, hypernatremia, polyuria, polydipsia, headaches, lethargy, muscle weakness and spasms, and numbness. It is estimated that hyperaldosteronism is present in 5-10% of patients with hypertension, and hypertension in primary hyperaldosteronism is often resistant to drug treatment.
Diagnosis of hyperaldosteronism involves various investigations, including U&Es to assess electrolyte disturbances, aldosterone-to-renin plasma ratio (ARR) as the gold standard diagnostic test, ECG to detect arrhythmia, CT/MRI scans to locate adenoma, fludrocortisone suppression test or oral salt testing to confirm primary hyperaldosteronism, genetic testing to identify familial hyperaldosteronism, and adrenal venous sampling to determine lateralization prior to surgery.
Treatment of primary hyperaldosteronism typically involves surgical adrenalectomy for patients with unilateral primary aldosteronism. Diet modification with sodium restriction and potassium supplementation may also be recommended.
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This question is part of the following fields:
- Endocrinology
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Question 26
Incorrect
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A 65 year old male is brought to the emergency department after experiencing a sudden decline in health over the past 72 hours. The patient appears slightly confused and restless. Here are the observations:
Blood pressure: 178/94 mmHg
Pulse: 122 bpm
Respiration rate: 24 bpm
Temperature: 39.5ºC
An ECG is conducted, revealing rapid atrial fibrillation. During the examination, the patient exhibits crackling sounds in the lower parts of the lungs, pitting edema in both legs below the knee, and a mild yellowish tint in the sclera. The patient's GP office is contacted to obtain further information about their medical history. The patient is prescribed carbimazole and bisoprolol, but they have not renewed their prescription on time. What is the most probable diagnosis?Your Answer: Cholinergic toxidrome
Correct Answer: Thyroid storm
Explanation:The patient is showing signs of confusion and restlessness. Upon examination, it is found that the patient has high blood pressure, a rapid pulse rate, increased respiration rate, and a high temperature. An ECG reveals rapid atrial fibrillation. Additionally, the patient exhibits crackling sounds in the lower parts of the lungs, pitting edema in both legs below the knee, and a mild yellowish tint in the sclera. The patient’s medical history is obtained from their GP office, which reveals that they have not renewed their prescription for carbimazole and bisoprolol on time. Based on these findings, the most probable diagnosis is a thyroid storm.
Further Reading:
The thyroid gland is an endocrine organ located in the anterior neck. It consists of two lobes connected by an isthmus. The gland produces hormones called thyroxine (T4) and triiodothyronine (T3), which regulate energy use, protein synthesis, and the body’s sensitivity to other hormones. The production of T4 and T3 is stimulated by thyroid-stimulating hormone (TSH) secreted by the pituitary gland, which is in turn stimulated by thyrotropin-releasing hormone (TRH) from the hypothalamus.
Thyroid disorders can occur when there is an imbalance in the production or regulation of thyroid hormones. Hypothyroidism is characterized by a deficiency of thyroid hormones, while hyperthyroidism is characterized by an excess. The most common cause of hypothyroidism is autoimmune thyroiditis, also known as Hashimoto’s thyroiditis. It is more common in women and is often associated with goiter. Other causes include subacute thyroiditis, atrophic thyroiditis, and iodine deficiency. On the other hand, the most common cause of hyperthyroidism is Graves’ disease, which is also an autoimmune disorder. Other causes include toxic multinodular goiter and subacute thyroiditis.
The symptoms and signs of thyroid disorders can vary depending on whether the thyroid gland is underactive or overactive. In hypothyroidism, common symptoms include weight gain, lethargy, cold intolerance, and dry skin. In hyperthyroidism, common symptoms include weight loss, restlessness, heat intolerance, and increased sweating. Both hypothyroidism and hyperthyroidism can also affect other systems in the body, such as the cardiovascular, gastrointestinal, and neurological systems.
Complications of thyroid disorders can include dyslipidemia, metabolic syndrome, coronary heart disease, heart failure, subfertility and infertility, impaired special senses, and myxedema coma in severe cases of hypothyroidism. In hyperthyroidism, complications can include Graves’ orbitopathy, compression of the esophagus or trachea by goiter, thyrotoxic periodic paralysis, arrhythmias, osteoporosis, mood disorders, and increased obstetric complications.
Myxedema coma is a rare and life-threatening complication of severe hypothyroidism. It can be triggered by factors such as infection or physiological insult and presents with lethargy, bradycardia, hypothermia, hypotension, hypoventilation, altered mental state, seizures and/or coma.
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This question is part of the following fields:
- Endocrinology
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Question 27
Correct
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A 65-year-old diabetic man presents with a gradual decrease in consciousness and confusion over the past week. His diabetes is typically controlled with metformin 500 mg twice daily. He recently received treatment for a urinary tract infection from his primary care physician, and his family reports that he has been experiencing excessive thirst. He has vomited multiple times today. A urine dipstick test shows a small amount of white blood cells and 1+ ketones. The results of his arterial blood gas analysis are as follows:
pH: 7.29
pO2: 11.1 kPa
pCO2: 4.6 kPa
HCO3-: 22 mmol/l
Na+: 154 mmol/l
K+: 3.2 mmol/l
Cl-: 100 mmol/l
Urea: 17.6 mmol/l
Glucose: 32 mmol/l
Which SINGLE statement is true regarding this case?Your Answer: Anticoagulation should be given
Explanation:In an elderly patient with a history of gradual decline accompanied by high blood sugar levels, excessive thirst, and recent infection, the most likely diagnosis is hyperosmolar hyperglycemic state (HHS). This condition can be life-threatening, with a mortality rate of approximately 50%. Common symptoms include dehydration, elevated blood sugar levels, altered mental status, and electrolyte imbalances. About half of the patients with HHS also experience hypernatremia.
To calculate the serum osmolality, the formula is 2(K+ + Na+) + urea + glucose. In this case, the serum osmolality is 364 mmol/l, indicating a high level. It is important to discontinue the use of metformin in this patient due to the risk of metformin-associated lactic acidosis (MALA). Additionally, an intravenous infusion of insulin should be initiated.
The treatment goals for HHS are to address the underlying cause and gradually and safely:
– Normalize the osmolality
– Replace fluid and electrolyte losses
– Normalize blood glucose levelsIf significant ketonaemia is present (3β-hydroxybutyrate is more than 1 mmol/L), it indicates a relative lack of insulin, and insulin should be administered immediately. However, if significant ketonaemia is not present, insulin should not be started.
Patients with HHS are at a high risk of thromboembolism, and it is recommended to routinely administer low molecular weight heparin. In cases where the serum osmolality exceeds 350 mmol/l, full heparinization should be considered.
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This question is part of the following fields:
- Endocrinology
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Question 28
Incorrect
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A 35-year-old man visits the emergency department 2 days after experiencing a head injury. The patient is worried about his excessive urination and fatigue since the injury. You suspect that he may have diabetes insipidus (DI). What is a characteristic symptom of diabetes insipidus?
Your Answer: Urine osmolality > 300 mOsm/kg
Correct Answer: Serum osmolality > 300 mOsm/kg
Explanation:Diabetes insipidus is characterized by low urine osmolality and high serum osmolality. This occurs because the kidneys are unable to properly reabsorb water and sodium, resulting in diluted urine with low osmolality. On the other hand, the loss of water and sodium leads to dehydration and concentration of the serum, causing a rise in serum osmolality. Hypernatremia is a common finding in patients with diabetes insipidus. In cases of nephrogenic diabetes insipidus, hypokalemia and hypercalcemia may also be observed. Glucose levels are typically normal, unless the patient also has diabetes mellitus.
Further Reading:
Diabetes insipidus (DI) is a condition characterized by either a decrease in the secretion of antidiuretic hormone (cranial DI) or insensitivity to antidiuretic hormone (nephrogenic DI). Antidiuretic hormone, also known as arginine vasopressin, is produced in the hypothalamus and released from the posterior pituitary. The typical biochemical disturbances seen in DI include elevated plasma osmolality, low urine osmolality, polyuria, and hypernatraemia.
Cranial DI can be caused by various factors such as head injury, CNS infections, pituitary tumors, and pituitary surgery. Nephrogenic DI, on the other hand, can be genetic or result from electrolyte disturbances or the use of certain drugs. Symptoms of DI include polyuria, polydipsia, nocturia, signs of dehydration, and in children, irritability, failure to thrive, and fatigue.
To diagnose DI, a 24-hour urine collection is done to confirm polyuria, and U&Es will typically show hypernatraemia. High plasma osmolality with low urine osmolality is also observed. Imaging studies such as MRI of the pituitary, hypothalamus, and surrounding tissues may be done, as well as a fluid deprivation test to evaluate the response to desmopressin.
Management of cranial DI involves supplementation with desmopressin, a synthetic form of arginine vasopressin. However, hyponatraemia is a common side effect that needs to be monitored. In nephrogenic DI, desmopressin supplementation is usually not effective, and management focuses on ensuring adequate fluid intake to offset water loss and monitoring electrolyte levels. Causative drugs need to be stopped, and there is a risk of developing complications such as hydroureteronephrosis and an overdistended bladder.
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This question is part of the following fields:
- Endocrinology
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Question 29
Incorrect
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You are managing a patient in the resuscitation bay with suspected myxoedema coma. A member of the nursing team hands you the patient's ECG. What ECG findings would you anticipate in a patient with myxoedema coma?
Your Answer: Tachycardia
Correct Answer: Prolonged QT interval
Explanation:Patients with myxoedema coma often exhibit several common ECG abnormalities. These include bradycardia, a prolonged QT interval, and T wave flattening or inversion. Additionally, severe hypothyroidism (myxoedema) is associated with other ECG findings such as low QRS voltage, conduction blocks, and T wave inversions without ST deviation.
Further Reading:
The thyroid gland is an endocrine organ located in the anterior neck. It consists of two lobes connected by an isthmus. The gland produces hormones called thyroxine (T4) and triiodothyronine (T3), which regulate energy use, protein synthesis, and the body’s sensitivity to other hormones. The production of T4 and T3 is stimulated by thyroid-stimulating hormone (TSH) secreted by the pituitary gland, which is in turn stimulated by thyrotropin-releasing hormone (TRH) from the hypothalamus.
Thyroid disorders can occur when there is an imbalance in the production or regulation of thyroid hormones. Hypothyroidism is characterized by a deficiency of thyroid hormones, while hyperthyroidism is characterized by an excess. The most common cause of hypothyroidism is autoimmune thyroiditis, also known as Hashimoto’s thyroiditis. It is more common in women and is often associated with goiter. Other causes include subacute thyroiditis, atrophic thyroiditis, and iodine deficiency. On the other hand, the most common cause of hyperthyroidism is Graves’ disease, which is also an autoimmune disorder. Other causes include toxic multinodular goiter and subacute thyroiditis.
The symptoms and signs of thyroid disorders can vary depending on whether the thyroid gland is underactive or overactive. In hypothyroidism, common symptoms include weight gain, lethargy, cold intolerance, and dry skin. In hyperthyroidism, common symptoms include weight loss, restlessness, heat intolerance, and increased sweating. Both hypothyroidism and hyperthyroidism can also affect other systems in the body, such as the cardiovascular, gastrointestinal, and neurological systems.
Complications of thyroid disorders can include dyslipidemia, metabolic syndrome, coronary heart disease, heart failure, subfertility and infertility, impaired special senses, and myxedema coma in severe cases of hypothyroidism. In hyperthyroidism, complications can include Graves’ orbitopathy, compression of the esophagus or trachea by goiter, thyrotoxic periodic paralysis, arrhythmias, osteoporosis, mood disorders, and increased obstetric complications.
Myxedema coma is a rare and life-threatening complication of severe hypothyroidism. It can be triggered by factors such as infection or physiological insult and presents with lethargy, bradycardia, hypothermia, hypotension, hypoventilation, altered mental state, seizures and/or coma.
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This question is part of the following fields:
- Endocrinology
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Question 30
Incorrect
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One of your consultants is finishing their shift and hands over the management of a 6 year old patient with severe diabetic ketoacidosis (DKA). Which of the following criteria is used to categorize DKA as severe?
Your Answer: Bicarbonate < 15 mmol/L
Correct Answer:
Explanation:When a person’s systolic blood pressure is less than 90 mmHg, it indicates low blood pressure. A pulse rate above 100 or below 60 beats per minute is considered abnormal. An anion gap above 16 is indicative of an imbalance in the body’s electrolytes.
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:
- Endocrinology
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