Anatomy clinical correlates: Hip, gluteal region and thigh

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Anatomy clinical correlates: Hip, gluteal region and thigh

End of Rotation™ exam review

Cardiovascular

Anatomy clinical correlates: Heart
Anatomy clinical correlates: Mediastinum
Aortic dissections and aneurysms: Pathology review
Coronary artery disease: Pathology review
Endocarditis: Pathology review
Heart blocks: Pathology review
Hypertension: Pathology review
Peripheral artery disease: Pathology review
Shock: Pathology review
Supraventricular arrhythmias: Pathology review
Valvular heart disease: Pathology review
Ventricular arrhythmias: Pathology review
Abdominal aortic aneurysm: Clinical sciences
Acute coronary syndrome: Clinical sciences
Acute limb ischemia: Clinical sciences
Aortic dissection: Clinical sciences
Aortic stenosis: Clinical sciences
Approach to bradycardia: Clinical sciences
Approach to chest pain: Clinical sciences
Approach to dyspnea: Clinical sciences
Approach to hypertension: Clinical sciences
Approach to shock (pediatrics): Clinical sciences
Approach to shock: Clinical sciences
Approach to syncope: Clinical sciences
Approach to tachycardia: Clinical sciences
Approach to trauma (pediatrics): Clinical sciences
Atrial fibrillation and atrial flutter: Clinical sciences
Atrioventricular block: Clinical sciences
Cardiac tamponade: Clinical sciences
Congestive heart failure: Clinical sciences
Coronary artery disease: Clinical sciences
Deep vein thrombosis: Clinical sciences
Hypovolemic shock: Clinical sciences
Infectious endocarditis: Clinical sciences
Mitral stenosis: Clinical sciences
ACE inhibitors, ARBs and direct renin inhibitors
Adrenergic antagonists: Alpha blockers
Adrenergic antagonists: Beta blockers
Adrenergic antagonists: Presynaptic
Calcium channel blockers
Cholinomimetics: Direct agonists
Cholinomimetics: Indirect agonists (anticholinesterases)
Class I antiarrhythmics: Sodium channel blockers
Class II antiarrhythmics: Beta blockers
Class III antiarrhythmics: Potassium channel blockers
Class IV antiarrhythmics: Calcium channel blockers and others
Lipid-lowering medications: Fibrates
Lipid-lowering medications: Statins
Miscellaneous lipid-lowering medications
Muscarinic antagonists
Positive inotropic medications
Sympatholytics: Alpha-2 agonists
Sympathomimetics: Direct agonists
Thiazide and thiazide-like diuretics

ENOT and ophthalmology

Anatomy clinical correlates: Skull, face and scalp
Anatomy clinical correlates: Temporal regions, oral cavity and nose
Anatomy clinical correlates: Eye
Anatomy clinical correlates: Ear
Anatomy clinical correlates: Vessels, nerves and lymphatics of the neck
Anatomy clinical correlates: Viscera of the neck
Anatomy clinical correlates: Olfactory (CN I) and optic (CN II) nerves
Anatomy clinical correlates: Oculomotor (CN III), trochlear (CN IV) and abducens (CN VI) nerves
Anatomy clinical correlates: Trigeminal nerve (CN V)
Anatomy clinical correlates: Facial (CN VII) and vestibulocochlear (CN VIII) nerves
Anatomy clinical correlates: Glossopharyngeal (CN IX), vagus (X), spinal accessory (CN XI) and hypoglossal (CN XII) nerves
Eye conditions: Inflammation, infections and trauma: Pathology review
Eye conditions: Refractive errors, lens disorders and glaucoma: Pathology review
Eye conditions: Retinal disorders: Pathology review
Nasal, oral and pharyngeal diseases: Pathology review
Vertigo: Pathology review
Allergic rhinitis: Clinical sciences
Approach to a red eye: Clinical sciences
Approach to acute vision loss: Clinical sciences
Approach to diplopia: Clinical sciences
Conjunctival disorders: Clinical sciences
Croup and epiglottitis: Clinical sciences
Eyelid disorders: Clinical sciences
Foreign body aspiration and ingestion (pediatrics): Clinical sciences
Glaucoma: Clinical sciences
Otitis media and externa (pediatrics): Clinical sciences
Periorbital and orbital cellulitis (pediatrics): Clinical sciences
Pharyngitis, peritonsillar abscess, and retropharyngeal abscess (pediatrics): Clinical sciences
Upper respiratory tract infections: Clinical sciences
Antihistamines for allergies

Gastrointestinal and nutritional

Anatomy clinical correlates: Anterior and posterior abdominal wall
Anatomy clinical correlates: Inguinal region
Anatomy clinical correlates: Peritoneum and diaphragm
Anatomy clinical correlates: Viscera of the gastrointestinal tract
Anatomy clinical correlates: Other abdominal organs
Appendicitis: Pathology review
Cirrhosis: Pathology review
Diverticular disease: Pathology review
Esophageal disorders: Pathology review
Gallbladder disorders: Pathology review
Gastrointestinal bleeding: Pathology review
GERD, peptic ulcers, gastritis, and stomach cancer: Pathology review
Inflammatory bowel disease: Pathology review
Jaundice: Pathology review
Malabsorption syndromes: Pathology review
Pancreatitis: Pathology review
Viral hepatitis: Pathology review
Adenovirus
Cytomegalovirus
Norovirus
Rotavirus
Bacillus cereus (Food poisoning)
Campylobacter jejuni
Clostridium difficile (Pseudomembranous colitis)
Clostridium perfringens
Escherichia coli
Salmonella (non-typhoidal)
Shigella
Staphylococcus aureus
Vibrio cholerae (Cholera)
Yersinia enterocolitica
Cryptosporidium
Entamoeba histolytica (Amebiasis)
Giardia lamblia
Acute mesenteric ischemia: Clinical sciences
Gastroesophageal reflux disease (pediatrics): Clinical sciences
Diverticulitis: Clinical sciences
Approach to medication exposure (pediatrics): Clinical sciences
Gastroesophageal varices: Clinical sciences
Dehydration (pediatrics): Clinical sciences
Approach to melena and hematemesis (pediatrics): Clinical sciences
Acute pancreatitis: Clinical sciences
Approach to melena and hematemesis: Clinical sciences
Hemorrhoids: Clinical sciences
Esophagitis: Clinical sciences
Approach to periumbilical and lower abdominal pain: Clinical sciences
Alcohol-induced hepatitis: Clinical sciences
Femoral hernias: Clinical sciences
Hepatitis A and E: Clinical sciences
Approach to pneumoperitoneum and peritonitis (perforated viscus): Clinical sciences
Anal fissure: Clinical sciences
Hepatitis B: Clinical sciences
Gastritis: Clinical sciences
Approach to postoperative abdominal pain: Clinical sciences
Gastroesophageal reflux disease: Clinical sciences
Hepatitis C: Clinical sciences
Appendicitis: Clinical sciences
Approach to abdominal wall and groin masses: Clinical sciences
Approach to the acute abdomen (pediatrics): Clinical sciences
Infectious gastroenteritis (acute) (pediatrics): Clinical sciences
Approach to upper abdominal pain: Clinical sciences
Approach to acute abdominal pain (pediatrics): Clinical sciences
Infectious gastroenteritis (subacute) (pediatrics): Clinical sciences
Approach to ascites: Clinical sciences
Infectious gastroenteritis: Clinical sciences
Approach to vomiting (acute): Clinical sciences
Approach to biliary colic: Clinical sciences
Inflammatory bowel disease (Crohn disease): Clinical sciences
Approach to vomiting (chronic): Clinical sciences
Approach to vomiting (pediatrics): Clinical sciences
Inflammatory bowel disease (ulcerative colitis): Clinical sciences
Approach to constipation (pediatrics): Clinical sciences
Cholecystitis: Clinical sciences
Inguinal hernias: Clinical sciences
Approach to constipation: Clinical sciences
Choledocholithiasis and cholangitis: Clinical sciences
Ischemic colitis: Clinical sciences
Approach to chronic abdominal pain (pediatrics): Clinical sciences
Chronic mesenteric ischemia: Clinical sciences
Large bowel obstruction: Clinical sciences
Approach to diarrhea (chronic): Clinical sciences
Cirrhosis: Clinical sciences
Mallory-Weiss syndrome: Clinical sciences
Approach to diarrhea (pediatrics): Clinical sciences
Peptic ulcer disease: Clinical sciences
Clostridioides difficile infection: Clinical sciences
Approach to hematochezia (pediatrics): Clinical sciences
Approach to hematochezia: Clinical sciences
Colonic volvulus: Clinical sciences
Peptic ulcers, gastritis, and duodenitis (pediatrics): Clinical sciences
Perianal abscess and fistula: Clinical sciences
Approach to household substance exposure (pediatrics): Clinical sciences
Small bowel obstruction: Clinical sciences
Approach to jaundice (conjugated hyperbilirubinemia): Clinical sciences
Spontaneous bacterial peritonitis: Clinical sciences
Approach to jaundice (newborn and infant): Clinical sciences
Approach to jaundice (unconjugated hyperbilirubinemia): Clinical sciences
Umbilical hernias: Clinical sciences
Ventral and incisional hernias: Clinical sciences
Acid reducing medications
Antidiarrheals
Laxatives and cathartics

Neurology

Anatomy clinical correlates: Cerebral hemispheres
Anatomy clinical correlates: Cerebellum and brainstem
Anatomy clinical correlates: Anterior blood supply to the brain
Anatomy clinical correlates: Posterior blood supply to the brain
Anatomy clinical correlates: Olfactory (CN I) and optic (CN II) nerves
Anatomy clinical correlates: Oculomotor (CN III), trochlear (CN IV) and abducens (CN VI) nerves
Anatomy clinical correlates: Trigeminal nerve (CN V)
Anatomy clinical correlates: Facial (CN VII) and vestibulocochlear (CN VIII) nerves
Anatomy clinical correlates: Glossopharyngeal (CN IX), vagus (X), spinal accessory (CN XI) and hypoglossal (CN XII) nerves
Anatomy clinical correlates: Spinal cord pathways
Anatomy clinical correlates: Vertebral canal
Amnesia, dissociative disorders and delirium: Pathology review
Central nervous system infections: Pathology review
Cerebral vascular disease: Pathology review
Dementia: Pathology review
Demyelinating disorders: Pathology review
Headaches: Pathology review
Neuromuscular junction disorders: Pathology review
Seizures: Pathology review
Traumatic brain injury: Pathology review
Vertigo: Pathology review
Acute stroke (ischemic or hemorrhagic) or TIA: Clinical sciences
Approach to a first unprovoked seizure (pediatrics): Clinical sciences
Approach to altered mental status (pediatrics): Clinical sciences
Approach to altered mental status: Clinical sciences
Approach to blunt cerebrovascular injury: Clinical sciences
Approach to convulsive status epilepticus: Clinical sciences
Approach to differentiating lesions (motor neuron): Clinical sciences
Approach to differentiating lesions (nerve root, plexus, and peripheral nerve): Clinical sciences
Approach to dizziness and vertigo: Clinical sciences
Approach to encephalitis: Clinical sciences
Approach to encephalopathy (acute and subacute): Clinical sciences
Approach to epilepsy: Clinical sciences
Approach to facial palsy: Clinical sciences
Approach to headache or facial pain: Clinical sciences
Approach to household substance exposure (pediatrics): Clinical sciences
Approach to increased intracranial pressure: Clinical sciences
Approach to syncope: Clinical sciences
Approach to trauma (pediatrics): Clinical sciences
Approach to traumatic brain injury (pediatrics): Clinical sciences
Approach to traumatic brain injury: Clinical sciences
Approach to unsteadiness, gait disturbance, or falls: Clinical sciences
Approach to weakness (focal and generalized): Clinical sciences
Guillain-Barré syndrome: Clinical sciences
Meningitis and brain abscess: Clinical sciences
Meningitis (pediatrics): Clinical sciences
Multiple sclerosis: Clinical sciences
Primary headaches (tension, migraine, and cluster): Clinical sciences
Subarachnoid hemorrhage: Clinical sciences
Anticonvulsants and anxiolytics: Barbiturates
Anticonvulsants and anxiolytics: Benzodiazepines
Antiplatelet medications
General anesthetics
Local anesthetics
Migraine medications
Neuromuscular blockers
Nonbenzodiazepine anticonvulsants
Osmotic diuretics
Thrombolytics

Obstetrics and gynecology

Anatomy clinical correlates: Breast
Anatomy clinical correlates: Female pelvis and perineum
Amenorrhea: Pathology review
Benign breast conditions: Pathology review
Complications during pregnancy: Pathology review
Ovarian cysts and tumors: Pathology review
Sexually transmitted infections: Vaginitis and cervicitis: Pathology review
Sexually transmitted infections: Warts and ulcers: Pathology review
Uterine disorders: Pathology review
Vaginal and vulvar disorders: Pathology review
Adenomyosis: Clinical sciences
Adnexal torsion: Clinical sciences
Approach to abnormal uterine bleeding in reproductive-aged patients: Clinical sciences
Approach to acute pelvic pain (GYN): Clinical sciences
Approach to adnexal masses: Clinical sciences
Approach to breast pain (mastalgia): Clinical sciences
Approach to chronic pelvic pain (GYN): Clinical sciences
Approach to first trimester bleeding: Clinical sciences
Approach to postmenopausal bleeding: Clinical sciences
Approach to primary amenorrhea: Clinical sciences
Approach to secondary amenorrhea: Clinical sciences
Approach to third trimester bleeding: Clinical sciences
Approach to vaginal discharge: Clinical sciences
Bacterial vaginosis: Clinical sciences
Breast abscess: Clinical sciences
Chlamydia trachomatis infection: Clinical sciences
Early pregnancy loss: Clinical sciences
Ectopic pregnancy: Clinical sciences
Endometriosis: Clinical sciences
Mastitis: Clinical sciences
Neisseria gonorrhoeae infection: Clinical sciences
Pelvic inflammatory disease: Clinical sciences
Placenta previa and vasa previa: Clinical sciences
Placental abruption: Clinical sciences
Prelabor rupture of membranes: Clinical sciences
Preterm labor: Clinical sciences
Primary dysmenorrhea: Clinical sciences
Vaginal trichomoniasis: Clinical sciences
Vulvovaginal candidiasis: Clinical sciences
Aromatase inhibitors
Estrogens and antiestrogens
Progestins and antiprogestins
Uterine stimulants and relaxants

Psychiatry (behavioral medicine)

Amnesia, dissociative disorders and delirium: Pathology review
Anxiety disorders, phobias and stress-related disorders: Pathology Review
Dementia: Pathology review
Drug misuse, intoxication and withdrawal: Alcohol: Pathology review
Drug misuse, intoxication and withdrawal: Hallucinogens: Pathology review
Drug misuse, intoxication and withdrawal: Other depressants: Pathology review
Drug misuse, intoxication and withdrawal: Stimulants: Pathology review
Malingering, factitious disorders and somatoform disorders: Pathology review
Mood disorders: Pathology review
Psychiatric emergencies: Pathology review
Trauma- and stress-related disorders: Pathology review
Alcohol use disorder: Clinical sciences
Alcohol withdrawal: Clinical sciences
Approach to anxiety disorders: Clinical sciences
Approach to mood disorders: Clinical sciences
Approach to schizophrenia spectrum and other psychotic disorders: Clinical sciences
Delirium: Clinical sciences
Generalized anxiety disorder, agoraphobia, and panic disorder: Clinical sciences
Intimate partner violence and sexual assault: Clinical sciences
Non-accidental trauma and neglect (pediatrics): Clinical sciences
Opioid intoxication and overdose: Clinical sciences
Opioid use disorder: Clinical sciences
Opioid withdrawal syndrome: Clinical sciences
Perinatal depression and anxiety: Clinical sciences
Substance use disorder: Clinical sciences
Anticonvulsants and anxiolytics: Barbiturates
Anticonvulsants and anxiolytics: Benzodiazepines
Atypical antidepressants
Atypical antipsychotics
Lithium
Monoamine oxidase inhibitors
Nonbenzodiazepine anticonvulsants
Opioid agonists, mixed agonist-antagonists and partial agonists
Opioid antagonists
Psychomotor stimulants
Selective serotonin reuptake inhibitors
Serotonin and norepinephrine reuptake inhibitors
Tricyclic antidepressants
Typical antipsychotics

Pulmonology

Anatomy clinical correlates: Pleura and lungs
Anatomy clinical correlates: Thoracic wall
Deep vein thrombosis and pulmonary embolism: Pathology review
Lung cancer and mesothelioma: Pathology review
Obstructive lung diseases: Pathology review
Pleural effusion, pneumothorax, hemothorax and atelectasis: Pathology review
Pneumonia: Pathology review
Respiratory distress syndrome: Pathology review
Tuberculosis: Pathology review
Acute respiratory distress syndrome: Clinical sciences
Airway obstruction: Clinical sciences
Approach to a cough (acute): Clinical sciences
Approach to a cough (pediatrics): Clinical sciences
Approach to a cough (subacute and chronic): Clinical sciences
Approach to chest pain: Clinical sciences
Approach to dyspnea: Clinical sciences
Approach to household substance exposure (pediatrics): Clinical sciences
Approach to trauma (pediatrics): Clinical sciences
Aspiration pneumonia and pneumonitis: Clinical sciences
Asthma: Clinical sciences
Bronchiolitis: Clinical sciences
Community-acquired pneumonia: Clinical sciences
Croup and epiglottitis: Clinical sciences
Foreign body aspiration and ingestion (pediatrics): Clinical sciences
Hospital-acquired and ventilator-associated pneumonia: Clinical sciences
Influenza: Clinical sciences
Lung cancer: Clinical sciences
Pleural effusion: Clinical sciences
Pneumothorax: Clinical sciences
Pulmonary embolism: Clinical sciences
Respiratory failure (pediatrics): Clinical sciences
Tuberculosis (extrapulmonary and latent): Clinical sciences
Tuberculosis (pulmonary): Clinical sciences
Upper respiratory tract infections: Clinical sciences
Bronchodilators: Beta 2-agonists and muscarinic antagonists
Bronchodilators: Leukotriene antagonists and methylxanthines
Pulmonary corticosteroids and mast cell inhibitors

Urology and renal

Anatomy clinical correlates: Female pelvis and perineum
Anatomy clinical correlates: Male pelvis and perineum
Anatomy clinical correlates: Other abdominal organs
Acid-base disturbances: Pathology review
Electrolyte disturbances: Pathology review
Kidney stones: Pathology review
Nephritic syndromes: Pathology review
Nephrotic syndromes: Pathology review
Penile conditions: Pathology review
Prostate disorders and cancer: Pathology review
Renal and urinary tract masses: Pathology review
Renal failure: Pathology review
Testicular and scrotal conditions: Pathology review
Urinary incontinence: Pathology review
Urinary tract infections: Pathology review
Approach to acid-base disorders: Clinical sciences
Approach to dysuria: Clinical sciences
Approach to acute kidney injury: Clinical sciences
Approach to hematuria (pediatrics): Clinical sciences
Approach to hypercalcemia: Clinical sciences
Approach to hyperkalemia: Clinical sciences
Approach to hypernatremia (pediatrics): Clinical sciences
Approach to hypernatremia: Clinical sciences
Approach to hypocalcemia (pediatrics): Clinical sciences
Approach to hypocalcemia: Clinical sciences
Approach to hypokalemia: Clinical sciences
Approach to hyponatremia (pediatrics): Clinical sciences
Approach to hyponatremia: Clinical sciences
Approach to metabolic acidosis: Clinical sciences
Approach to metabolic alkalosis: Clinical sciences
Approach to periumbilical and lower abdominal pain: Clinical sciences
Approach to respiratory acidosis: Clinical sciences
Approach to respiratory alkalosis: Clinical sciences
Approach to trauma (pediatrics): Clinical sciences
Approach to urinary incontinence (GYN): Clinical sciences
Femoral hernias: Clinical sciences
Inguinal hernias: Clinical sciences
Intrinsic acute kidney injury (glomerular causes): Clinical sciences
Intrinsic acute kidney injury (non-glomerular causes): Clinical sciences
Lower urinary tract infection: Clinical sciences
Neisseria gonorrhoeae infection: Clinical sciences
Nephritic syndromes (pediatrics): Clinical sciences
Nephrolithiasis: Clinical sciences
Postrenal acute kidney injury: Clinical sciences
Prerenal acute kidney injury: Clinical sciences
Pyelonephritis: Clinical sciences
Testicular torsion (pediatrics): Clinical sciences
Urinary retention: Clinical sciences
ACE inhibitors, ARBs and direct renin inhibitors
Adrenergic antagonists: Alpha blockers
Androgens and antiandrogens
Carbonic anhydrase inhibitors
Loop diuretics
Osmotic diuretics
PDE5 inhibitors
Potassium sparing diuretics
Thiazide and thiazide-like diuretics

Assessments

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Questions

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A 36-year-old woman is brought to the emergency department to be evaluated for right knee pain and swelling. The patient participated in a soccer match when she jumped and landed on her right foot with her right knee partially flexed. She subsequently heard a “pop” and developed swelling around her knee. Past medical history is significant for recent urinary tract infections treated with ciprofloxacin. She does not use tobacco, alcohol, or other recreational drugs. Vitals are within normal limits. Physical examination shows a large effusion over the right knee. The patient is unable to bear weight or extend the knee. X-ray of the knee shows a large effusion with a low-lying patella. Which of the following additional findings will likely be seen on physical examination?

Transcript

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At osmosis, we are not too sure where the phrase ‘break a leg’ comes from, but we are pretty sure it is not meant to be taken literally. In this video, we are going to discuss the anatomy behind the clinical conditions affecting the hip, gluteal region, and thigh, and we hope you won't even break a sweat learning these conditions, let alone a leg!

Let’s start with femoral neck fractures, often simply called hip fractures. They can be classified as intracapsular or extracapsular fractures based on their anatomic location. Intracapsular fractures occur in the region of the femoral head and neck within the joint capsule of the hip, while extracapsular fractures occur outside the fibrous joint capsule, anywhere in the intertrochanteric or subtrochanteric area of the femur.

Hip fractures are typically caused by mechanical falls or a trauma such as a car crash. And while they can affect anyone, they’re more likely to occur in the eldery, because of associated conditions such as osteoporosis, or Vitamin D and calcium deficiency. The classic presentation of a hip fracture is an individual who presents after a fall, and has an acutely shortened, externally rotated leg on physical examination compared to the contralateral side. This is due to the attachment points and pull of the iliopsoas and gluteus muscles. Other clinical features of a hip fracture include hip or back pain; joint deformity; and inability to bear weight.

Intracapsular fractures are at risk of avascular necrosis and displacement of the femoral head, whereas extracapsular fractures are less likely to undergo avascular necrosis. See, with an intracapsular hip fracture, the retinacular arteries, branching mainly from the medial circumflex femoral arteries are disrupted, resulting in potential avascular necrosis to the femoral head as the artery within the ligament to the head of the femur isn’t able to ensure adequate blood supply on its own. Conversely, with extracapsular femoral neck fractures, these arteries are not disrupted and maintain their function.

Confirming the diagnosis of a hip fracture usually relies on anterior-posterior and lateral hip x-rays, but if x-rays are inconclusive in the context of strong clinical suspicion, a CT scan can be done. On imaging, intracapsular fractures can be identified by a loss of Shenton’s line, a line drawn from the inferior border of the superior pubic rami along the inferomedial border of the neck of the femur. Other features of an intracapsular fracture include a prominent lesser trochanter due to external rotation of the femur compared to the contralateral side, and shortening or angulation of the femoral neck.

Extracapsular fractures, on the other hand, are typically intertrochanteric fractures extending between the greater and lesser trochanter, or subtrochanteric fractures found distal to the trochanters in the subtrochanteric region.

Management of intracapsular and extracapsular hip fractures is typically surgical and the choice depends on the surgeon. It can be done using open reduction and internal fixation, or ORIF for short, which is a type of open surgery where the fractured bone is put back together using screws, plates, intramedullary rods, or a combination of these. Arthroplasty can also be done, and that’s when the femoral and acetabular components of the hip joint are either totally or partially replaced.

Finally, a rare complication of hip fractures is sciatic nerve damage. See, the sciatic nerve runs close to the posterior aspect of the hip joint, and fracture at this site can injure the sciatic nerve and result in paraesthesia of the sciatic nerve dermatomal distribution, as well as weakness in knee flexion, ankle dorsiflexion, and ankle plantar flexion. Other complications of hip fracture include chronic pain, nonunion, future arthritic changes of the associated hip joint, and dislocation.

Speaking of which, let's talk about hip dislocation, which occurs when the femoral head is forced out of the acetabular socket, either anteriorly or posteriorly. Hip dislocations are typically caused by a traumatic injury such as a head-on motor vehicle collision. Posterior dislocations are the most common, amounting to 90% of dislocations. An example of this is a dashboard injury due to a high velocity car accident, where the hip is forced into flexion, adduction, and internal rotation due to the dashboard of the car as it pushes back on the flexed hips during a head on collision.

On the other hand, hyper-abduction with extension will produce anterior dislocation, especially in motorcycle crashes, where the legs are hyper abducted while riding. Individuals with hip replacements are at an increased risk of hip dislocations as well with a higher chance of posterior dislocation.

Individuals suffering a hip dislocation may also hear an audible "pop" or "clunk" as the femur comes out of its socket, in addition to pain and inability to bear weight. On examination of a posterior dislocation, there can be shortening and internal rotation of the affected limb, whereas an anterior dislocation presents with shortening and external rotation. Diagnosis is confirmed by x-ray. Hip dislocations, especially posteriorly, can also damage the sciatic nerve, and other complications include labral tears, which is when the ring of fibrocartilage surrounding the hip joint gets torn, and associated hip fracture.

Hip Hip Hurray! Let’s take a quick break and remember the most common complications of hip fractures.

Now, another issue in the hip area can be trochanteric bursitis or greater trochanteric pain syndrome, which is when the small bursa that covers the greater trochanter becomes inflamed.

Trochanteric bursitis is usually the result of repetitive actions such as climbing stairs, because repetitive movements cause the tendons from the gluteus medius and minimus to compress the trochanteric bursa against the greater trochanter resulting in inflammation.

Diagnosis is based on clinical symptoms such as chronic pain in the lateral thigh, and point tenderness over the greater trochanter. Pain can also be elicited by manually resisting abduction of the thigh while the person is lying on the unaffected side.

Now, let’s switch gears and talk about the femoral artery pulse. You can locate the femoral artery as it enters the femoral triangle by palpating distal to the inguinal ligament at the mid inguinal point, which is halfway between the pubic symphysis and anterior superior iliac spine. It’s a good idea to remember this because feeling the femoral pulse can give us a good idea of blood flow to the limb in case of peripheral artery disease, and also because it’s a significant place for catheterization during therapeutic and diagnostic procedures. For example, the femoral artery can be used for cardiac catheterization for both diagnostic angiography and for therapies like stent placement.

Speaking of cardiac catheterization, one complication to be aware of is retroperitoneal hemorrhage. This can occur if the posterior wall of the common femoral artery is punctured, allowing blood to track into the retroperitoneal space. Additionally, before crossing distal to the inguinal ligament, the common femoral artery is a continuation of the external iliac artery. If arterial puncture is done above the inguinal ligament, there is a higher risk of retroperitoneal hemorrhage as this area is directly inferior to the peritoneum.

Retroperitoneal hemorrhage is a potentially deadly condition because external compression can’t be applied on the retroperitoneal space, so without surgery, the affected individuals can bleed to death. Clinical signs to recognise include hemodynamic instability such as hypotension and pallor, pain on the affected flank, and a significant drop in hemoglobin.

The femoral artery is also prone to injury due to its anatomical location close to the femur, as proximal femur fractures or hip surgery can result in femoral artery injury. Additionally, due to its superficial position within the femoral triangle the artery can also be easily lacerated during traumatic events.

Now, let’s move on to varicose veins, which can develop because of venous insufficiency. With venous insufficiency, blood begins to pool in the veins of the leg rather than return to the heart, and in time, the veins become varicose or dilated. This can cause complications such as painful thrombosis, edema, as well as cosmetic issues.

One test that helps diagnose and characterize venous insufficiency is the Trendelenburg test, or the tourniquet test. When performing this, the individual lies on their back, and the affected leg is then raised above their head where the veins of the leg are massaged, or ‘milked’ down towards the groin. After the veins of the leg have been drained manually, with the leg still elevated, a tourniquet is placed around the thigh at the saphenous opening and the individual is asked to stand up as the examiner is observing the limb for any sign of the varicose veins reappearing.

If the varicose veins do not reappear when the tourniquet is at the saphenous opening, this indicates the incompetence resulting in the venous insufficiency is at the saphenofemoral valve, and the tourniquet is acting as a valve. If the varicose veins pop up again, this indicates the problem is distal to the level of the tourniquet as the veins are filling again, therefore the incompetent valve is lower down.

One common condition associated with varicose veins is saphena varix, which is a dilation of the saphenous vein at its junction with the femoral vein in the groin. Clinically, individuals can present with a groin swelling the size of a golf ball, which enlarges with increased intraabdominal pressure, like when coughing. However, bear in mind that a femoral hernia also becomes apparent when asking a patient to cough, so a saphena varix is commonly mistaken for an inguinal hernia. Characteristic features for a saphena varix include a bluish tinge, and typically disappears when lying down.