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Question 1
Correct
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A 56-year-old female patient who underwent tubal ligation presents to her general practitioner with complaints of abdominal pain, flank pain, visible blood in her urine, and involuntary urinary leakage. She has a history of lithotripsy for renal calculi one year ago. A CT scan of her abdomen and pelvis reveals an intra-abdominal fluid collection. What is the most probable diagnosis?
Your Answer: Ureter injury
Explanation:The patient’s symptoms and CT findings suggest that they may have suffered iatrogenic damage to their ureters, which are retroperitoneal organs. This can lead to fluid accumulation in the retroperitoneal space, causing haematuria, abdominal/flank pain, and incontinence. While calculi and lithotripsy can damage the ureter mucosal lining, they are unlikely to have caused fluid accumulation in the intra-abdominal cavity, especially since the lithotripsy was performed a year ago. Pelvic inflammatory disease and urinary tract infections can cause similar symptoms, but their CT findings would be different.
The retroperitoneal structures are those that are located behind the peritoneum, which is the membrane that lines the abdominal cavity. These structures include the duodenum (2nd, 3rd, and 4th parts), ascending and descending colon, kidneys, ureters, aorta, and inferior vena cava. They are situated in the back of the abdominal cavity, close to the spine. In contrast, intraperitoneal structures are those that are located within the peritoneal cavity, such as the stomach, duodenum (1st part), jejunum, ileum, transverse colon, and sigmoid colon. It is important to note that the retroperitoneal structures are not well demonstrated in the diagram as the posterior aspect has been removed, but they are still significant in terms of their location and function.
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This question is part of the following fields:
- Gastrointestinal System
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Question 2
Incorrect
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A 49-year-old woman comes to the Emergency Department complaining of colicky abdominal pain. She states that she has been having on-and-off pain in the upper right quadrant for the past few months, especially after consuming fatty foods.
Which cells are accountable for generating the hormone linked to this presentation?Your Answer: D cells
Correct Answer: I cells
Explanation:The correct answer is I cells, which are located in the upper small intestine. This patient’s symptoms are consistent with biliary colic, which occurs when the gallbladder contracts against an obstruction, typically a gallstone. Fatty foods stimulate the production of cholecystokinin (CCK) from the I cells in the duodenum, which promotes gallbladder contractility and the release of bile into the small intestine to aid in lipid emulsification.
B cells are not involved in promoting gallbladder contractility and are instead part of the adaptive immune response. D cells release somatostatin, which decreases insulin production, and are found in the stomach, small intestine, and pancreas. G cells are located in the stomach and secrete gastrin to promote acid secretion by the parietal cells of the stomach.
Overview of Gastrointestinal Hormones
Gastrointestinal hormones play a crucial role in the digestion and absorption of food. These hormones are secreted by various cells in the stomach and small intestine in response to different stimuli such as the presence of food, pH changes, and neural signals.
One of the major hormones involved in food digestion is gastrin, which is secreted by G cells in the antrum of the stomach. Gastrin increases acid secretion by gastric parietal cells, stimulates the secretion of pepsinogen and intrinsic factor, and increases gastric motility. Another hormone, cholecystokinin (CCK), is secreted by I cells in the upper small intestine in response to partially digested proteins and triglycerides. CCK increases the secretion of enzyme-rich fluid from the pancreas, contraction of the gallbladder, and relaxation of the sphincter of Oddi. It also decreases gastric emptying and induces satiety.
Secretin is another hormone secreted by S cells in the upper small intestine in response to acidic chyme and fatty acids. Secretin increases the secretion of bicarbonate-rich fluid from the pancreas and hepatic duct cells, decreases gastric acid secretion, and has a trophic effect on pancreatic acinar cells. Vasoactive intestinal peptide (VIP) is a neural hormone that stimulates secretion by the pancreas and intestines and inhibits acid secretion.
Finally, somatostatin is secreted by D cells in the pancreas and stomach in response to fat, bile salts, and glucose in the intestinal lumen. Somatostatin decreases acid and pepsin secretion, decreases gastrin secretion, decreases pancreatic enzyme secretion, and decreases insulin and glucagon secretion. It also inhibits the trophic effects of gastrin and stimulates gastric mucous production.
In summary, gastrointestinal hormones play a crucial role in regulating the digestive process and maintaining homeostasis in the gastrointestinal tract.
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This question is part of the following fields:
- Gastrointestinal System
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Question 3
Correct
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A 49-year-old woman presents to the emergency department with severe abdominal pain that started an hour ago. She reports feeling unwell recently, but this is the first time she has experienced this type of pain, which is mainly located in the right upper quadrant. During the examination, the physician notes hepatomegaly and ascites, and the patient's eyes have a slight yellow tint. An ultrasound scan reveals reduced blood flow in the hepatic veins, and there is no history of recent travel, drug use, or needlestick injury. The patient has not experienced recent weight loss, and her last menstrual period was two weeks ago. She is not taking any regular or over-the-counter medications. What condition could potentially be causing this patient's symptoms?
Your Answer: Protein C deficiency
Explanation:Budd-Chiari syndrome, which is characterized by abdominal pain, ascites, hepatomegaly, and jaundice, can be caused by hypercoagulable states such as protein C and S deficiencies. In this case, the patient’s protein C deficiency increased their risk of developing a thrombus in the hepatic veins, leading to Budd-Chiari syndrome. Other risk factors for thrombus formation include pregnancy and hepatocellular carcinoma. The use of oral contraceptives would also increase the risk of thrombus formation, while warfarin treatment would decrease it. Atrial fibrillation, on the other hand, would predispose a patient to systemic embolism, which can cause ischaemic symptoms in various arterial circulations.
Understanding Budd-Chiari Syndrome
Budd-Chiari syndrome, also known as hepatic vein thrombosis, is a condition that is often associated with an underlying hematological disease or another procoagulant condition. The causes of this syndrome include polycythemia rubra vera, thrombophilia, pregnancy, and the use of combined oral contraceptive pills. The symptoms of Budd-Chiari syndrome typically include sudden onset and severe abdominal pain, ascites leading to abdominal distension, and tender hepatomegaly.
To diagnose Budd-Chiari syndrome, an ultrasound with Doppler flow studies is usually the initial radiological investigation. This test is highly sensitive and can help identify the presence of the condition. It is important to diagnose and treat Budd-Chiari syndrome promptly to prevent complications such as liver failure and portal hypertension.
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This question is part of the following fields:
- Gastrointestinal System
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Question 4
Incorrect
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You opt to obtain an arterial blood gas from the radial artery. Where should the needle be inserted to obtain the sample?
Your Answer: Mid point of the inguinal ligament
Correct Answer: Mid inguinal point
Explanation:The femoral artery can be located using the mid inguinal point, which is positioned halfway between the anterior superior iliac spine and the symphysis pubis.
Understanding the Anatomy of the Femoral Triangle
The femoral triangle is an important anatomical region located in the upper thigh. It is bounded by the inguinal ligament superiorly, the sartorius muscle laterally, and the adductor longus muscle medially. The floor of the femoral triangle is made up of the iliacus, psoas major, adductor longus, and pectineus muscles, while the roof is formed by the fascia lata and superficial fascia. The superficial inguinal lymph nodes and the long saphenous vein are also found in this region.
The femoral triangle contains several important structures, including the femoral vein, femoral artery, femoral nerve, deep and superficial inguinal lymph nodes, lateral cutaneous nerve, great saphenous vein, and femoral branch of the genitofemoral nerve. The femoral artery can be palpated at the mid inguinal point, making it an important landmark for medical professionals.
Understanding the anatomy of the femoral triangle is important for medical professionals, as it is a common site for procedures such as venipuncture, arterial puncture, and nerve blocks. It is also important for identifying and treating conditions that affect the structures within this region, such as femoral hernias and lymphadenopathy.
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This question is part of the following fields:
- Gastrointestinal System
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Question 5
Incorrect
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Parasympathetic fibers innervating the parotid gland originate from where?
Your Answer: Submandibular ganglion
Correct Answer: Otic ganglion
Explanation:The inferior salivatory nucleus is responsible for regulating the secretion of saliva from the parotid gland through postsynaptic parasympathetic fibers. These fibers exit the brain via the glossopharyngeal nerve’s tympanic branch and pass through the tympanic plexus in the middle ear before forming the lesser petrosal nerve. The otic ganglion is where the fibers synapse before continuing on as part of the mandibular nerve’s auriculotemporal branch to reach the parotid gland.
The parotid gland is located in front of and below the ear, overlying the mandibular ramus. Its salivary duct crosses the masseter muscle, pierces the buccinator muscle, and drains adjacent to the second upper molar tooth. The gland is traversed by several structures, including the facial nerve, external carotid artery, retromandibular vein, and auriculotemporal nerve. The gland is related to the masseter muscle, medial pterygoid muscle, superficial temporal and maxillary artery, facial nerve, stylomandibular ligament, posterior belly of the digastric muscle, sternocleidomastoid muscle, stylohyoid muscle, internal carotid artery, mastoid process, and styloid process. The gland is supplied by branches of the external carotid artery and drained by the retromandibular vein. Its lymphatic drainage is to the deep cervical nodes. The gland is innervated by the parasympathetic-secretomotor, sympathetic-superior cervical ganglion, and sensory-greater auricular nerve. Parasympathetic stimulation produces a water-rich, serous saliva, while sympathetic stimulation leads to the production of a low volume, enzyme-rich saliva.
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This question is part of the following fields:
- Gastrointestinal System
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Question 6
Correct
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A 36-year-old female patient presents with persistent dyspepsia of 6 months duration. She failed multiple trials of conservative treatment by her GP, therefore, she was referred for the gastroenterologist for further review.
Investigations were done and her urea breath test was negative for Helicobacter pylori. Gastroscopy revealed multiple gastroduodenal ulcers. What type of cells are affected by the high levels of fasting gastrin detected?Your Answer: Gastric parietal cells
Explanation:The secretion of gastrin hormone from G cells in the antrum of the stomach is responsible for increasing the secretion of H+ by gastric parietal cells. Additionally, chief cells secrete pepsin, which is a proteolytic enzyme, while D cells in the pancreas and stomach secrete somatostatin hormone. Gastrin hormone is released in response to distension of the stomach and vagal stimulation.
Overview of Gastrointestinal Hormones
Gastrointestinal hormones play a crucial role in the digestion and absorption of food. These hormones are secreted by various cells in the stomach and small intestine in response to different stimuli such as the presence of food, pH changes, and neural signals.
One of the major hormones involved in food digestion is gastrin, which is secreted by G cells in the antrum of the stomach. Gastrin increases acid secretion by gastric parietal cells, stimulates the secretion of pepsinogen and intrinsic factor, and increases gastric motility. Another hormone, cholecystokinin (CCK), is secreted by I cells in the upper small intestine in response to partially digested proteins and triglycerides. CCK increases the secretion of enzyme-rich fluid from the pancreas, contraction of the gallbladder, and relaxation of the sphincter of Oddi. It also decreases gastric emptying and induces satiety.
Secretin is another hormone secreted by S cells in the upper small intestine in response to acidic chyme and fatty acids. Secretin increases the secretion of bicarbonate-rich fluid from the pancreas and hepatic duct cells, decreases gastric acid secretion, and has a trophic effect on pancreatic acinar cells. Vasoactive intestinal peptide (VIP) is a neural hormone that stimulates secretion by the pancreas and intestines and inhibits acid secretion.
Finally, somatostatin is secreted by D cells in the pancreas and stomach in response to fat, bile salts, and glucose in the intestinal lumen. Somatostatin decreases acid and pepsin secretion, decreases gastrin secretion, decreases pancreatic enzyme secretion, and decreases insulin and glucagon secretion. It also inhibits the trophic effects of gastrin and stimulates gastric mucous production.
In summary, gastrointestinal hormones play a crucial role in regulating the digestive process and maintaining homeostasis in the gastrointestinal tract.
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This question is part of the following fields:
- Gastrointestinal System
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Question 7
Correct
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A passionate surgical resident attempts his first independent splenectomy. The procedure proves to be more challenging than expected and the resident places a tube drain in the splenic bed at the conclusion of the surgery. Within the next 24 hours, around 500ml of clear fluid drains into the tube. What is the most probable result of biochemical testing on the fluid?
Elevated creatinine
28%
Elevated triglycerides
10%
Elevated glucagon
9%
Elevated amylase
25%
None of the above
29%
During a splenectomy, the tail of the pancreas may be harmed, causing the pancreatic duct to drain into the splenic bed, resulting in an increase in amylase levels. Glucagon is not produced in the pancreatic duct.Your Answer: Elevated amylase
Explanation:If the tail of the pancreas is damaged during splenectomy, the pancreatic duct may end up draining into the splenic bed. This can result in an increase in amylase levels, but there will be no secretion of glucagon into the pancreatic duct.
Understanding the Anatomy of the Spleen
The spleen is a vital organ in the human body, serving as the largest lymphoid organ. It is located below the 9th-12th ribs and has a clenched fist shape. The spleen is an intraperitoneal organ, and its peritoneal attachments condense at the hilum, where the vessels enter the spleen. The blood supply of the spleen is from the splenic artery, which is derived from the coeliac axis, and the splenic vein, which is joined by the IMV and unites with the SMV.
The spleen is derived from mesenchymal tissue during embryology. It weighs between 75-150g and has several relations with other organs. The diaphragm is superior to the spleen, while the gastric impression is anterior, the kidney is posterior, and the colon is inferior. The hilum of the spleen is formed by the tail of the pancreas and splenic vessels. The spleen also forms the apex of the lesser sac, which contains short gastric vessels.
In conclusion, understanding the anatomy of the spleen is crucial in comprehending its functions and the role it plays in the human body. The spleen’s location, weight, and relations with other organs are essential in diagnosing and treating spleen-related conditions.
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This question is part of the following fields:
- Gastrointestinal System
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Question 8
Correct
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A 58-year-old man with a history of multiple emergency department admissions for alcohol-related injuries and admissions under the general medical team for alcohol withdrawal is admitted after a twelve-day drinking binge. He presents with confusion, icterus, and hepatomegaly, with stigmata of chronic liver disease. Upon admission, his blood work shows thrombocytopenia, transaminitis with hyperbilirubinemia, and a severe coagulopathy. The diagnosis is severe acute alcoholic hepatitis. In liver disease-associated coagulopathy, which clotting factor is typically increased?
Your Answer: Factor VIII
Explanation:Coagulopathy in Liver Disease: Paradoxical Supra-normal Factor VIII and Increased Thrombosis Risk
In liver failure, the levels of all clotting factors decrease except for factor VIII, which paradoxically increases. This is because factor VIII is synthesized in endothelial cells throughout the body, unlike other clotting factors that are synthesized only in hepatic endothelial cells. Additionally, good hepatic function is required for the rapid clearance of activated factor VIII from the bloodstream, leading to further increases in circulating factor VIII. Despite conventional coagulation studies suggesting an increased risk of bleeding, patients with chronic liver disease are paradoxically at an increased risk of thrombosis formation. This is due to several factors, including reduced synthesis of natural anticoagulants such as protein C, protein S, and antithrombin, which are all decreased in chronic liver disease.
Reference:
Tripodi et al. An imbalance of pro- vs anticoagulation factors in plasma from patients with cirrhosis. Gastroenterology. 2009 Dec;137(6):2105-11. -
This question is part of the following fields:
- Gastrointestinal System
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Question 9
Correct
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A 68-year-old man presents with an abdominal aortic aneurysm that causes displacement of the left renal vein. At this level, which branch of the aorta is most likely to be affected?
Your Answer: Superior mesenteric artery
Explanation:The left renal vein is situated posterior to the SMA at its point of origin from the aorta. In cases of juxtarenal AAA, separation of the left renal vein may be necessary, but if the SMA is directly affected, a combination of surgical bypass and endovascular occlusion may be required.
Branches of the Abdominal Aorta
The abdominal aorta is a major blood vessel that supplies oxygenated blood to the abdominal organs and lower extremities. It gives rise to several branches that supply blood to various organs and tissues. These branches can be classified into two types: parietal and visceral.
The parietal branches supply blood to the walls of the abdominal cavity, while the visceral branches supply blood to the abdominal organs. The branches of the abdominal aorta include the inferior phrenic, coeliac, superior mesenteric, middle suprarenal, renal, gonadal, lumbar, inferior mesenteric, median sacral, and common iliac arteries.
The inferior phrenic artery arises from the upper border of the abdominal aorta and supplies blood to the diaphragm. The coeliac artery supplies blood to the liver, stomach, spleen, and pancreas. The superior mesenteric artery supplies blood to the small intestine, cecum, and ascending colon. The middle suprarenal artery supplies blood to the adrenal gland. The renal arteries supply blood to the kidneys. The gonadal arteries supply blood to the testes or ovaries. The lumbar arteries supply blood to the muscles and skin of the back. The inferior mesenteric artery supplies blood to the descending colon, sigmoid colon, and rectum. The median sacral artery supplies blood to the sacrum and coccyx. The common iliac arteries are the terminal branches of the abdominal aorta and supply blood to the pelvis and lower extremities.
Understanding the branches of the abdominal aorta is important for diagnosing and treating various medical conditions that affect the abdominal organs and lower extremities.
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This question is part of the following fields:
- Gastrointestinal System
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Question 10
Correct
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During an abdominal aortic aneurysm repair, a 78-year-old man has two clamps placed on his aorta, with the inferior clamp positioned at the point of aortic bifurcation. Which vertebral body will be located posterior to the clamp at this level?
Your Answer: L4
Explanation:The point at which the aorta divides into two branches is known as the bifurcation, which is a crucial anatomical landmark that is frequently assessed. This bifurcation typically occurs at the level of the fourth lumbar vertebrae (L4).
The abdominal aorta is a major blood vessel that originates from the 12th thoracic vertebrae and terminates at the fourth lumbar vertebrae. It is located in the abdomen and is surrounded by various organs and structures. The posterior relations of the abdominal aorta include the vertebral bodies of the first to fourth lumbar vertebrae. The anterior relations include the lesser omentum, liver, left renal vein, inferior mesenteric vein, third part of the duodenum, pancreas, parietal peritoneum, and peritoneal cavity. The right lateral relations include the right crus of the diaphragm, cisterna chyli, azygos vein, and inferior vena cava (which becomes posterior distally). The left lateral relations include the fourth part of the duodenum, duodenal-jejunal flexure, and left sympathetic trunk. Overall, the abdominal aorta is an important blood vessel that supplies oxygenated blood to various organs in the abdomen.
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This question is part of the following fields:
- Gastrointestinal System
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