ECG axis

Last updated: March 11, 2023

ECG axis

Watch later

Watch later

Hypokalemia: Clinical
Movement of water between body compartments
The role of the kidney in acid-base balance
Blood histology
Blood components
Respiratory acidosis
Metabolic acidosis
Respiratory alkalosis
Metabolic alkalosis
Metabolic and respiratory alkalosis: Clinical
Metabolic and respiratory acidosis: Clinical
Bronchodilators: Beta 2-agonists and muscarinic antagonists
Chronic obstructive pulmonary disease (COPD): Clinical
Chronic obstructive pulmonary disease (COPD): Nursing process (ADPIE)
Adrenergic antagonists: Alpha blockers
Sympatholytics: Alpha-2 agonists
Alpha-2 adrenergic agonists: Nursing pharmacology
Adrenergic receptors
Adrenergic antagonists: Beta blockers
Diabetes mellitus: Clinical
Diabetes mellitus (DM): Nursing process (ADPIE)
Diabetes mellitus
Diabetes mellitus: Pathology review
Stroke: Nursing process (ADPIE)
Stroke: Clinical
Ischemic stroke
Intracerebral hemorrhage
Peptic ulcers and stomach cancer: Clinical
GERD, peptic ulcers, gastritis, and stomach cancer: Pathology review
Sickle cell disease (NORD)
Sickle cell disease: Nursing process (ADPIE)
Sickle cell disease: Clinical
Blood groups and transfusions
Erythropoietin
Blood products: Nursing pharmacology
Oxygen binding capacity and oxygen content
Blood products and transfusion: Clinical
Hemophilia
Hemophilia: Nursing process (ADPIE)
Leukemia: Nursing process (ADPIE)
Chronic leukemia
Leukemias: Pathology review
Acute leukemia
Leukemia: Clinical
Lymphomas: Pathology review
Lymphoma: Clinical
Non-Hodgkin lymphoma
Hodgkin lymphoma
Lymphatic system anatomy and physiology
Anatomy of the abdominal viscera: Liver, biliary ducts and gallbladder
Liver anatomy and physiology
Cirrhosis
Cirrhosis: Pathology review
Cirrhosis: Clinical
Cirrhosis: Nursing process (ADPIE)
Hepatitis C virus
Hepatitis A and Hepatitis E virus
Liver cancer: Nursing
Cholestatic liver disease
Non-alcoholic fatty liver disease
HIV (AIDS)
HIV and AIDS: Pathology review
Antiretrovirals for HIV/AIDS - Protease inhibitors: Nursing pharmacology
Antiretrovirals for HIV/AIDS - NRTIs and NNRTIs: Nursing pharmacology
Antiretrovirals for HIV/AIDS - Integrase strand transfer inhibitors: Nursing pharmacology
Anatomy of the abdominal viscera: Pancreas and spleen
Pancreatitis: Nursing process (ADPIE)
Glaucoma: Nursing process (ADPIE)
Glaucoma
Eye conditions: Refractive errors, lens disorders and glaucoma: Pathology review
Acute respiratory distress syndrome (ARDS): Nursing
Anatomy of the coronary circulation
Coronary artery disease: Pathology review
Coronary artery disease: Clinical
ECG basics
ECG normal sinus rhythm
ECG rate and rhythm
ECG axis
ECG intervals
ECG QRS transition
ECG cardiac infarction and ischemia
Cardiac cycle
Arterial disease
Delirium
Dementia and delirium: Clinical
Vascular dementia
Frontotemporal dementia
Dementia with Lewy bodies
Dementia: Pathology review
Tumor lysis syndrome (TLS): Nursing Process (ADPIE)
Cholelithiasis: Nursing
Coronary artery disease (CAD) and angina pectoris: Nursing process (ADPIE)
Breast cancer: Nursing process (ADPIE)
Ovarian cancer: Nursing
Cervical cancer: Nursing
Hormones and hormone modulators for cancer: Nursing pharmacology
Endometriosis: Nursing
Heart failure
Left-sided heart failure: Nursing process (ADPIE)
Heart failure: Pathology review
Pneumonia: Pathology review
Pneumonia
Bacterial pneumonia: Nursing process (ADPIE)
Respiratory stimulants: Nursing pharmacology
Corticosteroids - Inhaled: Nursing pharmacology
Pneumothorax and hemothorax: Nursing
Chest trauma: Clinical
Pleural effusion: Nursing
Tuberculosis (TB): Nursing
Parkinson disease: Nursing process (ADPIE)
Huntington disease
Multiple sclerosis (MS): Nursing
Multiple sclerosis
Guillain-Barré syndrome: Nursing
Guillain-Barre syndrome
Myasthenia gravis: Nursing
Acute kidney injury (AKI): Nursing process (ADPIE)
Acute kidney injury: Clinical
Chronic kidney disease (CKD): Nursing
Chronic kidney disease
Chronic kidney disease: Clinical
Polycystic kidney disease (PKD): Nursing
Renin-angiotensin-aldosterone system
Osteoarthritis: Nursing
Osteoarthritis
Rheumatoid arthritis (RA): Nursing process (ADPIE)
Rheumatoid arthritis: Clinical
Rheumatoid arthritis
Rheumatoid arthritis and osteoarthritis: Pathology review
Systemic lupus erythematosus
Systemic lupus erythematosus (SLE): Pathology review
Systemic lupus erythematosus (SLE): Clinical
Systemic lupus erythematosus (SLE): Nursing
Mycobacterium tuberculosis (Tuberculosis)
Peripheral venous disease (PVD): Nursing process (ADPIE)
Peripheral arterial disease (PAD): Nursing process (ADPIE)
Buerger disease: Nursing
Raynaud phenomenon: Nursing
Aortic dissections and aneurysms: Pathology review
Aortic aneurysms and dissections: Clinical
Aortic dissection
Aortic aneurysm: Nursing process (ADPIE)
Venous thromboembolism (VTE): Nursing process (ADPIE)
Benign prostatic hyperplasia (BPH): Nursing process (ADPIE)
Benign prostatic hyperplasia
Prostate cancer: Nursing
Prostate cancer
Testicular cancer: Nursing
Testicular cancer
Diabetic ketoacidosis (DKA): Nursing process (ADPIE)
Endocrine system anatomy and physiology
Vitamin B12 deficiency
Thalassemia: Nursing
Anemia - Iron-deficiency: Nursing
Anemia - Macrocytic: Nursing
Anemia - Aplastic: Nursing
Thyroid hormones
Medications for thyroid disorders: Nursing pharmacology
Hyperthyroidism: Nursing process (ADPIE)
Hypothyroidism: Nursing process (ADPIE)
Hypoparathyroidism: Nursing
Hyperparathyroidism: Nursing
Anxiety disorders: Nursing process (ADPIE)
Spinal cord injury (SCI): Nursing
Cluster A personality disorders
Smoke inhalation injury: Nursing process (ADPIE)
Shock - Anaphylactic: Nursing
Shock - Obstructive: Nursing
Shock - Neurogenic: Nursing
Shock - Hypovolemic: Nursing
Shock - Cardiogenic: Nursing
Shock - Septic: Nursing
Pulmonary edema: Nursing
Burn injury: Nursing

Transcript

Watch video only

An electrocardiogram - an ECG - or the Dutch and German version of the word - EKG, is a tool used to visualize the electricity that flows through the heart And the way it looks depends on the set of electrodes you’re using. This particular set of electrodes is called lead II, for example, with one electrode on the right arm and the other on the left leg, so essentially when the wave’s moving toward the left leg electrode, you get a positive deflection, like this big positive deflection corresponding to the wave moving down into the left and right ventricles. To read an ECG there are a few key elements to keep in mind, one of them includes figuring out the axis.

The axis of an ECG is the average direction of electrical movement through the heart during a depolarization. More specifically, axis usually refers to the mean QRS vector, which is the size and direction of the depolarization wave as it moves through the ventricles. Normally, the QRS axis aims downward and to the left in relation to the body.

So, if we simplify this heart a bit, normally, the sinoatrial (or SA) node sends an electrical signal that propagates out through the walls of the heart and contracts both upper chambers, then that signal moves to the atrioventricular or AV node, where the signal is delayed for a split second, and then goes down into the ventricles or lower chambers where it moves down the bundle of His into the left and right bundle branches and into each ventricle’s Purkinje fibers, causing the ventricles to contract as well. So, in a healthy heart, the upper chambers contract first, then shortly after, the lower chambers contract.

On an ECG, the atrial depolarization and contraction is seen as a p-wave, the ventricular depolarization and contraction is seen as a QRS complex, and the ventricular repolarization, and therefore its relaxation, is seen as a T-wave. A general principle to keep in mind is that a depolarization is caused by the movement of positive charge, so if that movement of positive charge is going toward the positive electrode, then it’s captured as a positive deflection on an ECG.

With that in mind, let’s take a closer look at the mean, or average, QRS vector. After the depolarization wave arrives at the AV node, it travels down the interventricular septum and starts depolarizing the ventricles. The Purkinje fibers sit just below the endocardium, which is the innermost layer of the heart. After the endocardium is the myocardium, the cardiac muscle cells, and then finally there’s the epicardium, which is the outer layer. So the Purkinje fibers initiate depolarization vectors that travel directly outward, starting in the endocardium, going through the myocardium, and ending in the epicardium. And because they transmit a depolarization wave so quickly, they all fire off pretty much in unison. Also, the more muscle tissue in the myocardial layer that a vector travels through, the larger the size of the vector. So like with hypertrophic cardiomyopathy, where the heart muscle gets thicker, you end up with bigger vectors. Although, if the heart muscle has been damaged, from something like a heart attack, then you get smaller vectors because the heart cells can’t depolarize anymore. Another thing that can affect vectors is the position of the diaphragm, which is usually sort of sitting right up against the heart. In obese people, the diaphragm gets pushed upwards, which rotates the heart further to the left, and in thin individuals, the diaphragm lowers, which rotates the heart a bit the other way. When everything is taken into consideration, and all of the individual vectors are added up, there is one overall representative vector arrow, which starts from the AV node, and points in one direction through the ventricles. Now, remember that vectors can be broken down into two perpendicular vector components, so if you look at the component that points at the positive lead electrode, that’s what gets recorded on the ECG, and therefore when you plot these vectors over the course of ventricular depolarization, you end up with the QRS complex.

Key Takeaways

The ECG axis is the direction of the overall electrical activity of the heart. ECG can be used to help identify problems with the heart's rhythm (cardiac arrhythmia) or with the conduction of electricity through the heart. The axis is measured in degrees, from 0 (horizontal) to +90 (vertical) and -90 (inverted). A normal ECG axis should be anywhere from +30 to -60. An abnormal ECG axis may indicate problems with the heart's electrical activity, such as right or left ventricular hypertrophy, or arrhythmias.

Sources

  1. "Medical Physiology" Elsevier (2016)
  2. "Physiology" Elsevier (2017)
  3. "Human Anatomy & Physiology" Pearson (2017)
  4. "Principles of Anatomy and Physiology" Wiley (2014)
  5. "Cardiac depolarization and repolarization in Wolff-Parkinson-White syndrome" American Heart Journal (1994)
  6. "Recommendations for the Standardization and Interpretation of the Electrocardiogram" Circulation (2007)