-
Question 1
Correct
-
A 35-year-old woman with a past medical history of recurrent episodes of profuse sweating, rapid heartbeat, and sudden high blood pressure is found to have a phaeochromocytoma. What is the most suitable initial treatment for this patient?
Your Answer: Alpha-blocker
Explanation:A phaeochromocytoma is a rare functional tumor that develops from chromaffin cells in the adrenal medulla. Extra-adrenal paragangliomas, also known as extra-adrenal pheochromocytomas, are similar tumors that originate in the ganglia of the sympathetic nervous system but are less common. These tumors secrete catecholamines and cause a range of symptoms and signs related to hyperactivity of the sympathetic nervous system.
The most common initial symptom is high blood pressure, which can be either sustained or sporadic. Symptoms tend to come and go, occurring multiple times a day or very infrequently. As the disease progresses, the symptoms usually become more severe and frequent.
Surgical removal is the preferred and definitive treatment option. If the tumor is completely removed without any spread to other parts of the body, it often leads to a cure for hypertension.
Before surgery, it is crucial to manage the condition medically to reduce the risk of hypertensive crises during the operation. This is typically done by using a combination of non-competitive alpha-blockers (such as phenoxybenzamine) and beta-blockers. Alpha-blockade should be started first, at least 7-10 days before the surgery, to allow for expansion of blood volume. Once this is achieved, beta-blockade can be initiated to help control rapid heart rate and certain irregular heart rhythms. Starting beta-blockade too early can trigger a hypertensive crisis.
Genetic counseling should also be provided, and any associated conditions should be identified and managed appropriately.
-
This question is part of the following fields:
- Endocrinology
-
-
Question 2
Correct
-
A 10-year-old girl comes in with excessive thirst, frequent urination, and increased thirst. She has been feeling very fatigued lately and has experienced significant weight loss. Blood tests show normal levels of urea and electrolytes, but her bicarbonate level is 18 mmol/l (reference range 22-26 mmol/l). A urine dipstick test reveals 2+ protein and 3+ ketones.
What is the SINGLE most probable diagnosis?Your Answer: Type 1 diabetes mellitus
Explanation:This child is displaying a typical pattern of symptoms for type I diabetes mellitus. He has recently experienced increased urination, excessive thirst, weight loss, and fatigue. Blood tests have revealed metabolic acidosis, and the presence of ketones in his urine indicates the development of diabetic ketoacidosis.
-
This question is part of the following fields:
- Endocrinology
-
-
Question 3
Incorrect
-
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: Sheehan’s syndrome
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.
-
This question is part of the following fields:
- Endocrinology
-
-
Question 4
Correct
-
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.
-
This question is part of the following fields:
- Endocrinology
-
-
Question 5
Correct
-
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.
-
This question is part of the following fields:
- Endocrinology
-
-
Question 6
Incorrect
-
A 35 year old male is brought to the emergency department by his wife with a 24 hour history of vomiting and increasing fatigue over the past 1-2 hours. Initial tests confirm a diagnosis of diabetic ketoacidosis and the patient is started on intravenous fluids and an insulin infusion. You are reminded by your attending physician to monitor the bicarbonate level and adjust the insulin infusion rate if it is not improving as anticipated. What is the minimum desired change in bicarbonate that should be aimed for?
Your Answer: Venous bicarbonate rising by at least 0.5 mmol/L/hr
Correct Answer: Venous bicarbonate rising by at least 3 mmol/L/hr
Explanation:When patients with diabetic ketoacidosis (DKA) are treated with insulin infusion, it is expected that their plasma bicarbonate levels will increase by at least 3 mmol/L per hour. Insulin therapy is aimed at correcting both hyperglycemia and ketoacidosis. However, if capillary ketones are not decreasing by at least 0.5 mmol/L per hour, venous bicarbonate is not rising by at least 3 mmol/L per hour, or plasma glucose is not decreasing by at least 3 mmol/L per hour, the insulin infusion rate should be reevaluated.
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.
-
This question is part of the following fields:
- Endocrinology
-
-
Question 7
Correct
-
You assess a patient who has been brought into the resuscitation room in an obtunded state. The patient is wearing a MedicAlert bracelet, indicating a diagnosis of Addison's disease.
Which ONE statement accurately describes this condition?Your Answer: ACTH levels are usually elevated
Explanation:Addison’s disease occurs when the adrenal glands do not produce enough steroid hormones. This includes glucocorticoids, mineralocorticoids, and sex steroids. The most common cause is autoimmune adrenalitis, which accounts for about 70-80% of cases. It is more prevalent in women and typically occurs between the ages of 30 and 50.
The clinical symptoms of Addison’s disease include weakness, lethargy, low blood pressure (especially when standing up), nausea, vomiting, weight loss, reduced hair in the armpits and pubic area, depression, and hyperpigmentation (darkening of the skin in certain areas like the palms, mouth, and exposed skin).
Biochemically, Addison’s disease is characterized by increased levels of ACTH (a hormone that tries to stimulate the adrenal glands), low sodium levels, high potassium levels, high calcium levels, low blood sugar, and metabolic acidosis.
People with Addison’s disease have a higher risk of developing type 1 diabetes, Hashimoto’s thyroiditis, Grave’s disease, premature ovarian failure, pernicious anemia, vitiligo, and alopecia.
Management of Addison’s disease should be overseen by an Endocrinologist. Treatment typically involves taking hydrocortisone, fludrocortisone, and dehydroepiandrosterone. Some patients may also need thyroxine if there is hypothalamic-pituitary disease present. Treatment is lifelong, and patients should carry a steroid card and a MedicAlert bracelet in case of an Addisonian crisis.
-
This question is part of the following fields:
- Endocrinology
-
-
Question 8
Correct
-
A 40 year old man presents to the emergency department after experiencing difficulty swallowing a food bolus. However, the patient successfully swallows the bolus while being evaluated by the triage nurse. During the examination, you observe an enlarged thyroid gland. What is the most appropriate test for evaluating thyroid function?
Your Answer: TSH
Explanation:The best single test to evaluate thyroid function is TSH. Goitres can be associated with either hypothyroidism or hyperthyroidism, although hypothyroidism is more common. According to NICE guidelines, when there is suspicion of hypothyroidism, it is recommended to first check the TSH level. If the TSH level is above the normal range, then the free thyroxine (FT4) should be checked on the same sample. Similarly, in cases of suspected hyperthyroidism, it is advised to first check the TSH level. If the TSH level is below the normal range, then the free thyroxine (FT4) and free triiodothyronine (FT3) should be checked on the same sample.
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.
-
This question is part of the following fields:
- Endocrinology
-
-
Question 9
Correct
-
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: 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.
-
This question is part of the following fields:
- Endocrinology
-
-
Question 10
Correct
-
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.
-
This question is part of the following fields:
- Endocrinology
-
00
Correct
00
Incorrect
00
:
00
:
00
Session Time
00
:
00
Average Question Time (
Secs)