Anatomy clinical correlates: Inguinal region

Last updated: November 17, 2025

Anatomy clinical correlates: Inguinal region

for the love of anki

for the love of anki

Anatomy clinical correlates: Heart
Anatomy of the superior mediastinum
Anatomy clinical correlates: Mediastinum
Anatomy of the inferior mediastinum
Lymphatic system anatomy and physiology
Cardiovascular changes during postural change
Cardiovascular changes during hemorrhage
Hypertensive emergency
Conn syndrome
Abetalipoproteinemia
Hyperlipidemia
Lymphangioma
Anticoagulants: Warfarin
Anticoagulants: Heparin
Anticoagulants: Direct factor inhibitors
Total anomalous pulmonary venous return
Acyanotic congenital heart defects: Pathology review
Atherosclerosis and arteriosclerosis: Pathology review
Peripheral artery disease: Pathology review
Cardiomyopathies: Pathology review
Supraventricular arrhythmias: Pathology review
Heart blocks: Pathology review
Pericardial disease: Pathology review
Hypertension: Pathology review
Vasculitis: Pathology review
Dyslipidemias: Pathology review
Cyanotic congenital heart defects: Pathology review
Coronary artery disease: Pathology review
Valvular heart disease: Pathology review
Heart failure: Pathology review
Ventricular arrhythmias: Pathology review
Aortic dissections and aneurysms: Pathology review
Endocarditis: Pathology review
Shock: Pathology review
Cardiac and vascular tumors: Pathology review
Cholinergic receptors
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Adrenergic receptors
Cholinomimetics: Indirect agonists (anticholinesterases)
Muscarinic antagonists
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ACE inhibitors, ARBs and direct renin inhibitors
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Lipid-lowering medications: Fibrates
Miscellaneous lipid-lowering medications
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Pulseless electrical activity
Anatomy clinical correlates: Other abdominal organs
Anatomy of the perineum
Anatomy of the female urogenital triangle
Anatomy of the male urogenital triangle
Anatomy clinical correlates: Male pelvis and perineum
Anatomy clinical correlates: Female pelvis and perineum
Development of the renal system
Kidney histology
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Urea recycling
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Tubular reabsorption and secretion of weak acids and bases
Tubular reabsorption and secretion
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Loop of Henle
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Sodium homeostasis
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Phosphate, calcium and magnesium homeostasis
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Free water clearance
Vitamin D
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The role of the kidney in acid-base balance
Buffering and Henderson-Hasselbalch equation
Acid-base map and compensatory mechanisms
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Potter sequence
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Extrinsic hemolytic normocytic anemia: Pathology review
Macrocytic anemia: Pathology review
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Anatomy of the pharynx and esophagus
Anatomy of the oral cavity
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Anatomy of the tongue
Anatomy of the anterolateral abdominal wall
Anatomy of the abdominal viscera: Blood supply of the foregut, midgut and hindgut
Anatomy of the abdominal viscera: Esophagus and stomach
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Anatomy of the abdominal viscera: Large intestine
Anatomy of the abdominal viscera: Pancreas and spleen
Anatomy of the gastrointestinal organs of the pelvis and perineum
Anatomy of the abdominal viscera: Innervation of the abdominal viscera
Anatomy of the abdominal viscera: Liver, biliary ducts and gallbladder
Anatomy of the inguinal region
Anatomy of the muscles and nerves of the posterior abdominal wall
Anatomy of the peritoneum and peritoneal cavity
Anatomy of the vessels of the posterior abdominal wall
Anatomy clinical correlates: Anterior and posterior abdominal wall
Anatomy clinical correlates: Viscera of the gastrointestinal tract
Anatomy clinical correlates: Peritoneum and diaphragm
Anatomy clinical correlates: Inguinal region
Development of the digestive system and body cavities
Development of the gastrointestinal system
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Biliary atresia
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Wilson disease
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Non-alcoholic fatty liver disease
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Zollinger-Ellison syndrome
Congenital gastrointestinal disorders: Pathology review
Esophageal disorders: Pathology review
GERD, peptic ulcers, gastritis, and stomach cancer: Pathology review
Inflammatory bowel disease: Pathology review
Malabsorption syndromes: Pathology review
Diverticular disease: Pathology review
Appendicitis: Pathology review
Gastrointestinal bleeding: Pathology review
Colorectal polyps and cancer: Pathology review
Pancreatitis: Pathology review
Gallbladder disorders: Pathology review
Jaundice: Pathology review
Viral hepatitis: Pathology review
Cirrhosis: Pathology review
Laxatives and cathartics
Antidiarrheals
Acid reducing medications

Transcript

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The inguinal region, located near the groin, is found in the lower part of the anterior abdominal wall, and it contains several important structures that enter and leave the abdomen. Understanding the anatomy of the inguinal region is important for understanding common clinical conditions such as hernias, and many others!

Speaking of which, hernias occur when an organ or tissue protrudes through the wall of the muscle or tissue that normally contains it. The majority of hernias occur in the abdominal cavity or the inguinal region, through which subcutaneous fat, abdominal omental fat, or even abdominal viscera can protrude. In order for a hernia to happen, there is typically a weak point along the abdominal wall, such as a weak linea alba, previous surgical interventions that weaken the abdominal wall muscles, or pregnancy.

First, let’s look at anterior abdominal wall hernias. They can be divided into 4 categories: epigastric, umbilical or periumbilical, spigelian and incisional hernias. Epigastric hernias are caused by a weakened linea alba and are basically defects in the abdominal midline between the umbilicus and the xiphoid process. Then, there are umbilical or paraumbilical hernias, which are hernias through the umbilical ring or around the umbilicus. These are often found in children, because the umbilical ring is weak at birth, but can also be acquired in adults and frequently affect pregnant or obese individuals.

Spigelian hernias are found along the semilunar lines which are skin folds from the inferior costal margin of the 9th costal cartilage to the pubic tubercles and overly the tendinous insertions of the rectus abdominis muscle, as abdominal tissue can protrude through these areas of tendinous insertions. Finally, an incisional hernia can develop at the site of a prior surgical incision as the muscle and fascia is typically weakened, for example over the surgical site for an appendectomy.

Hernias can be classified as reducible, which means that they can be easily pushed back in the abdomen with position changes or manual pressure; or irreducible, which can’t be pushed back. Irreducible hernias can become either incarcerated or strangulated.

Incarcerated hernias are when the hernia contents are trapped and cannot be reduced, leading to swelling and edema of the herniated contents. With severe swelling, obstruction of blood flow to the herniated contents can occur, and this leads to ischemia and necrosis resulting in strangulation. Incarceration and strangulation can affect any protruding structure with a blood supply, such as the omentum and bowel.

Risk factors for developing a hernia include genetic defects, increased intra abdominal pressure, aging, obesity and pregnancy. Symptoms and signs of a hernia may include pain, discomfort, and a lump or a bulge in the affected area which may be exacerbated by increasing intra abdominal pressure such as coughing or laughing. Strangulated hernias can present with severe pain, nausea, vomiting, as well as tenderness and overlying erythematous skin changes.

Now, a similar concept to abdominal hernias is rectus abdominis diastasis, or divarication of the recti. This is when there’s a separation between the rectus muscles due to conditions that weaken and stretch the linea alba. This condition can also be congenital or acquired, and risk factors include obesity, pregnancy, connective tissue disorders or prior abdominal surgery. This particular type of hernia is not what we call a true hernia, because technically, the midline fascial layer of the abdominal wall is intact. This means that strangulation doesn’t occur.

Individuals affected by rectus abdominis diastasis present with a midline abdominal ridge that becomes more obvious when increasing the abdominal pressure and can disappear when the abdominal muscles are relaxed. Diagnosis is based on physical examination, and an abdominal ultrasound can be done to completely rule out a hernia.

Time for a quick quiz. What are the four main types of anterior abdominal wall hernias?

Now, let’s look at femoral and inguinal hernias. Femoral hernias occur when the hernia sac slips through the femoral ring into the femoral canal, below the inguinal ligament, medial to the femoral vein and lateral to the pubic tubercle and lacunar ligament. One important risk factor for femoral hernias is advanced age, as the femoral ring can widen with age.

Femoral hernias also tend to be more common in biologically female individuals compared to biological males; but don't get confused, as inguinal hernias are a more common type of hernia in both biological males and biological females. Now, as the space in the femoral canal is limited, femoral hernias can often become irreducible and incarcerated, and subsequently can cause bowel obstruction if there is bowel located in the hernia sac. In time, this type of hernia can become strangulated and cause bowel ischemia and necrosis.

On the other hand, there are two types of inguinal hernias; direct and indirect inguinal hernias, both occurring above the inguinal ligament when compared with femoral hernias.

Direct inguinal hernias occur when there is weakness of the transversalis fascia. In this case, the hernia sac pushes through the weak portion of the transversalis fascia, above the inguinal ligament. Here, it protrudes into an area called Hesselbach triangle, which is bounded laterally by the inferior epigastric vessels, medially by the lateral wall of the rectus abdominis, and inferiorly by the inguinal ligament. You should note, direct hernias do not pass through the deep inguinal ring and may only protrude through the superficial ring, therefore they have no direct route into the scrotum.

Indirect hernias occur when the hernia sac emerges lateral to the inferior epigastric arteries which is in contrast to direct inguinal hernias, and protrude through the deep inguinal ring into the inguinal canal, with the potential to extend distally into the scrotum. Indirect hernias are typically caused by a failure of the processus vaginalis to close in biologic males or the deep inguinal ring to close in biologic females. Remember that the processus vaginalis is an embryonic structure that precedes the descent of the testes through the inguinal canal. Normally, after the testes have descended to the scrotum, this structure closes up, but in some cases, it can remain open and allow for communication between the abdomen and the scrotum.

Inguinal hernias are the most common type of hernia in both biologically male and female individuals, and they occur much more frequently in males. Direct inguinal hernias are more common in older individuals, where indirect ones are more common in infants. Compared to femoral hernias, indirect inguinal hernias are less likely to become strangulated, with direct inguinal hernias the least likely to become strangulated.

Signs and symptoms of both femoral and inguinal hernias are a palpable bulge often exacerbated by increased intraabdominal pressure, pain, and discomfort. If an indirect hernia extends into the scrotum, then it can present as a larger palpable mass in the inguinal canal, and scrotal sac. If a hernia becomes incarcerated and strangulated, for example during a femoral hernia, this can lead to overlying erythematous skin changes, as well as nausea, vomiting, clinical obstruction, and extreme pain.

Okay, now let’s take a more practical approach on how to distinguish these different types of hernias based on clinical exam and anatomical landmarks. On clinical examination, femoral hernias are typically palpated lateral and inferior to the pubic tubercle. Both direct and indirect inguinal hernias occur above the inguinal ligament. Direct inguinal hernias push through the Hesselbalch triangle medial to the inferior epigastric artery, and may protrude into the superficial inguinal ring; so clinically, they can be palpated superficial or medial to the pubic tubercle.

Finally, indirect inguinal hernias protrude lateral to the inferior epigastric artery into the deep inguinal canal located at the midpoint of the inguinal ligament, and may extend through the inguinal canal and into the scrotum. Therefore, they may be clinically palpated with deep palpation using the tip of the finger, anywhere along the inguinal canal, medial to the pubic tubercle where they exit the superficial ring, or along the spermatic cord and into the scrotum. However keep in mind, you still may be unable to identify which type of hernia is occurring based on the clinical exam alone.

Okay, hernias can be resolved surgically with a procedure called herniorrhaphy - but sometimes complications arise. During hernia surgery, sometimes an artery called the aberrant, or accessory obturator artery, can be injured. Typically, the obturator artery branches from the internal iliac artery. However in up to 20% of people, there can be an additional branch coming from either the inferior epigastric artery or external iliac artery that either replaces the obturator artery or joins it, and this is called an aberrant or accessory obturator artery. This artery runs in close proximity to the femoral ring and courses along the superior pubic rami; so during hernia repair it can become injured or stapled.

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