Aortic dissection: Clinical sciences

Last updated: January 30, 2025

Aortic dissection: Clinical sciences

Clinical conditions

Abdominal pain

Approach to biliary colic: Clinical sciences
Approach to periumbilical and lower abdominal pain: Clinical sciences
Approach to pneumoperitoneum and peritonitis (perforated viscus): Clinical sciences
Approach to postoperative abdominal pain: Clinical sciences
Approach to upper abdominal pain: Clinical sciences
Abdominal aortic aneurysm: Clinical sciences
Acute coronary syndrome: Clinical sciences
Acute mesenteric ischemia: Clinical sciences
Acute pancreatitis: Clinical sciences
Adnexal torsion: Clinical sciences
Alcohol-induced hepatitis: Clinical sciences
Aortic dissection: Clinical sciences
Appendicitis: Clinical sciences
Approach to ascites: Clinical sciences
Approach to vasculitis: Clinical sciences
Celiac disease: Clinical sciences
Cholecystitis: Clinical sciences
Choledocholithiasis and cholangitis: Clinical sciences
Chronic mesenteric ischemia: Clinical sciences
Chronic pancreatitis: Clinical sciences
Colonic volvulus: Clinical sciences
Colorectal cancer: Clinical sciences
Community-acquired pneumonia: Clinical sciences
Diverticulitis: Clinical sciences
Ectopic pregnancy: Clinical sciences
Endometriosis: Clinical sciences
Gastric cancer: Clinical sciences
Gastritis: Clinical sciences
Gastroesophageal reflux disease: Clinical sciences
Hepatitis A and E: Clinical sciences
Hepatitis B: Clinical sciences
Hepatitis C: Clinical sciences
Hepatocellular carcinoma: Clinical sciences
Herpes zoster infection (shingles): Clinical sciences
Ileus: Clinical sciences
Infectious gastroenteritis: Clinical sciences
Inflammatory bowel disease (Crohn disease): Clinical sciences
Inflammatory bowel disease (ulcerative colitis): Clinical sciences
Inguinal hernias: Clinical sciences
Intra-abdominal abscess: Clinical sciences
Irritable bowel syndrome: Clinical sciences
Ischemic colitis: Clinical sciences
Large bowel obstruction: Clinical sciences
Lower urinary tract infection: Clinical sciences
Malaria: Clinical sciences
Nephrolithiasis: Clinical sciences
Pancreatic cancer: Clinical sciences
Paraesophageal and hiatal hernia: Clinical sciences
Peptic ulcer disease: Clinical sciences
Pulmonary embolism: Clinical sciences
Pyelonephritis: Clinical sciences
Sickle cell disease: Clinical sciences
Small bowel obstruction: Clinical sciences
Spontaneous bacterial peritonitis: Clinical sciences

Dyspnea

Approach to dyspnea: Clinical sciences
Approach to postoperative respiratory distress: Clinical sciences
Acute coronary syndrome: Clinical sciences
Acute respiratory distress syndrome: Clinical sciences
Airway obstruction: Clinical sciences
Anaphylaxis: Clinical sciences
Aortic stenosis: Clinical sciences
Approach to anemia (destruction and sequestration): Clinical sciences
Approach to anemia (underproduction): Clinical sciences
Approach to anxiety disorders: Clinical sciences
Approach to bradycardia: Clinical sciences
Approach to interstitial lung disease (diffuse parenchymal lung disease): Clinical sciences
Approach to metabolic acidosis: Clinical sciences
Approach to pneumoconiosis: Clinical sciences
Approach to respiratory alkalosis: Clinical sciences
Approach to tachycardia: Clinical sciences
Approach to vasculitis: Clinical sciences
Aspiration pneumonia and pneumonitis: Clinical sciences
Asthma: Clinical sciences
Atelectasis: Clinical sciences
Atrial fibrillation and atrial flutter: Clinical sciences
Atrioventricular block: Clinical sciences
Cardiac tamponade: Clinical sciences
Chronic obstructive pulmonary disease: Clinical sciences
Community-acquired pneumonia: Clinical sciences
Congestive heart failure: Clinical sciences
Coronary artery disease: Clinical sciences
Empyema: Clinical sciences
Hemothorax: Clinical sciences
Hospital-acquired and ventilator-associated pneumonia: Clinical sciences
Hypertrophic cardiomyopathy: Clinical sciences
Lung cancer: Clinical sciences
Mitral stenosis: Clinical sciences
Myocarditis: Clinical sciences
Obesity and metabolic syndrome: Clinical sciences
Opioid intoxication and overdose: Clinical sciences
Pericarditis: Clinical sciences
Pleural effusion: Clinical sciences
Pneumothorax: Clinical sciences
Pulmonary embolism: Clinical sciences
Pulmonary hypertension: Clinical sciences
Pulmonary transfusion reactions: Clinical sciences
Right heart failure: Clinical sciences
Supraventricular tachycardia: Clinical sciences
Systemic sclerosis (scleroderma): Clinical sciences
Tuberculosis (pulmonary): Clinical sciences
Valvular insufficiency (regurgitation): Clinical sciences
Ventricular tachycardia: Clinical sciences

Fatigue

Approach to fatigue: Clinical sciences
Adrenal insufficiency: Clinical sciences
Anal cancer: Clinical sciences
Ankylosing spondylitis: Clinical sciences
Aortic stenosis: Clinical sciences
Approach to anemia (destruction and sequestration): Clinical sciences
Approach to anemia (underproduction): Clinical sciences
Approach to hypokalemia: Clinical sciences
Approach to hypothyroidism: Clinical sciences
Approach to interstitial lung disease (diffuse parenchymal lung disease): Clinical sciences
Approach to leukemia: Clinical sciences
Approach to lymphoma: Clinical sciences
Approach to vasculitis: Clinical sciences
Atrial fibrillation and atrial flutter: Clinical sciences
Atrioventricular block: Clinical sciences
Chronic kidney disease: Clinical sciences
Chronic obstructive pulmonary disease: Clinical sciences
Cirrhosis: Clinical sciences
Colorectal cancer: Clinical sciences
Congestive heart failure: Clinical sciences
Coronary artery disease: Clinical sciences
COVID-19: Clinical sciences
Cushing syndrome and Cushing disease: Clinical sciences
Diabetes mellitus (Type 1): Clinical sciences
Diabetes mellitus (Type 2): Clinical sciences
Esophageal cancer: Clinical sciences
Gastric cancer: Clinical sciences
Hepatitis A and E: Clinical sciences
Hepatitis B: Clinical sciences
Hepatitis C: Clinical sciences
Hepatocellular carcinoma: Clinical sciences
Human immunodeficiency virus (HIV) infection: Clinical sciences
Hypertrophic cardiomyopathy: Clinical sciences
Infectious endocarditis: Clinical sciences
Inflammatory breast cancer: Clinical sciences
Inflammatory myopathies: Clinical sciences
Invasive ductal carcinoma: Clinical sciences
Invasive lobular carcinoma: Clinical sciences
Lung cancer: Clinical sciences
Lyme disease: Clinical sciences
Mitral stenosis: Clinical sciences
Multiple endocrine neoplasia: Clinical sciences
Myocarditis: Clinical sciences
Pancreatic cancer: Clinical sciences
Peripheral arterial disease and ulcers: Clinical sciences
Rheumatoid arthritis: Clinical sciences
Right heart failure: Clinical sciences
Sleep apnea: Clinical sciences
Systemic lupus erythematosus: Clinical sciences
Temporal arteritis: Clinical sciences
Tuberculosis (extrapulmonary and latent): Clinical sciences
Tuberculosis (pulmonary): Clinical sciences

Fever

Approach to a fever: Clinical sciences
Approach to a fever in the returned traveler: Clinical sciences
Approach to a postoperative fever: Clinical sciences
Approach to encephalitis: Clinical sciences
Ankylosing spondylitis: Clinical sciences
Appendicitis: Clinical sciences
Approach to leukemia: Clinical sciences
Approach to lymphoma: Clinical sciences
Approach to vasculitis: Clinical sciences
Aspiration pneumonia and pneumonitis: Clinical sciences
Breast abscess: Clinical sciences
Catheter-associated urinary tract infection: Clinical sciences
Cellulitis and erysipelas: Clinical sciences
Central line-associated bloodstream infection: Clinical sciences
Cholecystitis: Clinical sciences
Choledocholithiasis and cholangitis: Clinical sciences
Clostridioides difficile infection: Clinical sciences
Community-acquired pneumonia: Clinical sciences
COVID-19: Clinical sciences
Diverticulitis: Clinical sciences
Empyema: Clinical sciences
Esophagitis: Clinical sciences
Febrile neutropenia: Clinical sciences
Folliculitis, furuncles, and carbuncles: Clinical sciences
Hepatitis A and E: Clinical sciences
Hepatitis B: Clinical sciences
Hepatitis C: Clinical sciences
Hospital-acquired and ventilator-associated pneumonia: Clinical sciences
Human immunodeficiency virus (HIV) infection: Clinical sciences
Infectious endocarditis: Clinical sciences
Infectious gastroenteritis: Clinical sciences
Inflammatory bowel disease (Crohn disease): Clinical sciences
Inflammatory bowel disease (ulcerative colitis): Clinical sciences
Influenza: Clinical sciences
Intra-abdominal abscess: Clinical sciences
Lower urinary tract infection: Clinical sciences
Lyme disease: Clinical sciences
Malaria: Clinical sciences
Mastitis: Clinical sciences
Multiple myeloma: Clinical sciences
Myocarditis: Clinical sciences
Necrotizing soft tissue infections: Clinical sciences
Nephrolithiasis: Clinical sciences
Osteomyelitis: Clinical sciences
Pancreatic cancer: Clinical sciences
Perianal abscess and fistula: Clinical sciences
Pheochromocytoma: Clinical sciences
Pressure-induced skin and soft tissue injury: Clinical sciences
Pulmonary transfusion reactions: Clinical sciences
Pyelonephritis: Clinical sciences
Rheumatoid arthritis: Clinical sciences
Sepsis: Clinical sciences
Septic arthritis: Clinical sciences
Skin abscess: Clinical sciences
Spinal infection and abscess: Clinical sciences
Spontaneous bacterial peritonitis: Clinical sciences
Stevens-Johnson syndrome and toxic epidermal necrolysis: Clinical sciences
Surgical site infection: Clinical sciences
Systemic lupus erythematosus: Clinical sciences
Temporal arteritis: Clinical sciences
Toxic shock syndrome: Clinical sciences
Tuberculosis (extrapulmonary and latent): Clinical sciences
Tuberculosis (pulmonary): Clinical sciences
Upper respiratory tract infections: Clinical sciences

Vomiting

Approach to vomiting (acute): Clinical sciences
Approach to vomiting (chronic): Clinical sciences
Acute mesenteric ischemia: Clinical sciences
Acute pancreatitis: Clinical sciences
Adnexal torsion: Clinical sciences
Adrenal insufficiency: Clinical sciences
Alcohol-induced hepatitis: Clinical sciences
Appendicitis: Clinical sciences
Approach to abdominal wall and groin masses: Clinical sciences
Approach to biliary colic: Clinical sciences
Approach to increased intracranial pressure: Clinical sciences
Approach to melena and hematemesis: Clinical sciences
Approach to metabolic acidosis: Clinical sciences
Approach to metabolic alkalosis: Clinical sciences
Approach to pneumoperitoneum and peritonitis (perforated viscus): Clinical sciences
Chronic kidney disease: Clinical sciences
Chronic mesenteric ischemia: Clinical sciences
Chronic pancreatitis: Clinical sciences
Diverticulitis: Clinical sciences
Ectopic pregnancy: Clinical sciences
Gastroesophageal reflux disease: Clinical sciences
Hepatitis A and E: Clinical sciences
Hepatitis B: Clinical sciences
Hepatitis C: Clinical sciences
Ileus: Clinical sciences
Infectious gastroenteritis: Clinical sciences
Inflammatory bowel disease (Crohn disease): Clinical sciences
Inflammatory bowel disease (ulcerative colitis): Clinical sciences
Irritable bowel syndrome: Clinical sciences
Large bowel obstruction: Clinical sciences
Lower urinary tract infection: Clinical sciences
Nephrolithiasis: Clinical sciences
Peptic ulcer disease: Clinical sciences
Pyelonephritis: Clinical sciences
Small bowel obstruction: Clinical sciences

Decision-Making Tree

Transcript

Watch video only

Aortic dissection occurs often due to long-standing untreated high blood pressure, when blood tears through the intimal layer of the aortic wall and bleeds into the muscular layer, creating an intraluminal flap and a double lumen, which means that there is a true and a false lumen of the aorta.

Acutely, blood will flow into the false lumen because there’s less resistance, which can lead to obstruction of the true lumen, resulting in malperfusion of end-organs, such as the brain, bowel, or kidneys. In addition, as blood accumulates in the false lumen with no way out, it may clot leading to the formation of thrombi.

Lastly, as blood keeps flowing into the false lumen, the shear stress on the aortic wall can cause the tear to expand, or in the worst cases even lead to aortic rupture, causing mortality from cardiac tamponade or internal hemorrhage.

According to the Stanford classification, aortic dissection is either classified as Type A, which always involves the ascending aorta with or without involving the descending aorta; and Type B, which only involves the descending aorta.

Let’s first look at an unstable case. When approaching a patient who presents with signs and symptoms suggestive of an acute aortic dissection, your first step is to do an ABCDE assessment in order to determine if the patient is unstable or stable. If the patient is unstable, you need to stabilize their airway, breathing, and circulation first. This means that you should secure their airway, obtain IV access, and begin fluid resuscitation while continuously monitoring their vital signs, especially their blood pressure and heart rate.

Next, take a focused history and physical exam. Patients with unstable aortic dissections typically report an acute and severe “tearing” or “ripping” chest pain, and since the aorta is mostly a retroperitoneal organ, the pain can radiate to the back. In fact, the location of the pain depends on which area of the aorta is affected, and sometimes the pain can evolve and migrate as the dissection expands.

If the ascending aorta is involved, your patient will typically report acute onset of severe chest pain and upper back pain. If the descending aorta is involved, the pain can radiate to the upper, mid, and lower back. Lastly, in addition to pain, patients may also report diaphoresis or syncope. On physical exam, you’ll typically note tachycardia and hypotension.

Additional findings may depend on the areas impacted by the dissection. For example, if the dissection is more proximal, it may reach and involve the aortic valve, so you could hear a murmur from aortic regurgitation, and you may also see signs of cardiac tamponade, like jugular venous distension.

Other findings may depend on the area of the body that’s not getting adequate blood supply. For example, if the aortic arch or spinal arteries are involved, your patient may develop neurologic defects like limb paresthesia or paraplegia. There may also be asymmetric pulses or blood pressure measurements between extremities, which can cause acute limb ischemia. Lastly, if the renal arteries are involved, your patient may develop anuria.

Your next step in an unstable patient is to obtain a transesophageal echocardiogram, or TEE for short, to help confirm diagnosis, since these patients may not be stable enough for other types of imaging like a CT angiogram, or CTA for short. TEE might show a double lumen, with the true lumen and a false lumen in the dissected portion, and an intraluminal flap between them. The TEE may also show a thrombus in the false lumen. Finally, the most severe cases may even reveal an aortic rupture, and if the ascending aorta is involved, you may see cardiac tamponade. These TEE findings indicate an aortic dissection, and because this patient is unstable, they’ll typically need emergent surgical repair regardless of the Stanford classification.

Here’s a clinical pearl! Patients with type A aortic dissections are almost always hemodynamically unstable, while patients with type B dissections can become unstable, but are most often stable at presentation.

Sources

  1. "The Society of Thoracic Surgeons/American Association for Thoracic Surgery Clinical Practice Guidelines on the Management of Type B Aortic Dissection" Ann Thorac Surg (2022)
  2. "2022 ACC/AHA Guideline for the Diagnosis and Management of Aortic Disease: A Report of the American Heart Association/American College of Cardiology Joint Committee on Clinical Practice Guidelines" J Am Coll Cardiol. (2022)
  3. "2022 Aortic Disease Guideline-at-a-Glance" J Am Coll Cardiol. (2022)
  4. "2021 The American Association for Thoracic Surgery expert consensus document: Surgical treatment of acute type A aortic dissection" J Thorac Cardiovasc Surg (2021)
  5. "The role of imaging in aortic dissection and related syndromes" JACC Cardiovasc Imaging (2014)
  6. "Acute aortic dissection: pathogenesis, risk factors and diagnosis" Swiss Med Wkly (2017)