Coronary circulation

Last updated: November 01, 2022

Coronary circulation

ER Nursing Week 2

ER Nursing Week 2

Heart failure: Clinical
Cardiac work
Frank-Starling relationship
Atrial fibrillation
Regulation of pulmonary blood flow
Respiratory alkalosis
Respiratory system anatomy and physiology
Respiratory acidosis
Metabolic and respiratory alkalosis: Clinical
Acute respiratory distress syndrome: Clinical
Respiratory distress syndrome: Pathology review
Upper respiratory tract infection
Acute respiratory distress syndrome
Metabolic and respiratory acidosis: Clinical
Ventilation
Lung cancer
Standards of care for COVID-19 patients
Cardiovascular system anatomy and physiology
Introduction to the cardiovascular system
Control of blood flow circulation
Coronary circulation
Aortic valve disease
Resistance to blood flow
Heart failure
Heart failure: Pathology review
Normal heart sounds
Heart blocks: Pathology review
Abnormal heart sounds
Valvular heart disease: Clinical
Cardiac conduction system
Anatomy of the heart
Valvular heart disease: Pathology review
Rheumatic heart disease
Anatomy clinical correlates: Heart
Left-sided heart failure: Nursing process (ADPIE)
Post-COVID syndrome: Heart, lungs and clotting
Pericardial disease: Pathology review
Tuberculosis: Pathology review
Myocarditis
Dilated cardiomyopathy
Coronary artery disease: Pathology review
Myocardial infarction
ECG cardiac infarction and ischemia
Knowledge Shot: Is Santa Claus at risk of a heart attack
Coronary artery disease: Clinical
Pericarditis and pericardial effusion
Ischemia
Excitability and refractory periods
Antiplatelet medications
Non-corticosteroid immunosuppressants and immunotherapies
Aortic dissection
Aortic aneurysms and dissections: Clinical
Coronary steal syndrome
Venous thromboembolism: Clinical
Pericardial disease: Clinical
Carbon dioxide transport in blood
Zones of pulmonary blood flow
Hypertension: Clinical
Tricuspid valve disease
Sympatholytics: Alpha-2 agonists
Calcium channel blockers
Hypoplastic left heart syndrome
Positive inotropic medications
Familial hypercholesterolemia
Hyperlipidemia
Hypoxia
Laryngitis
Bacterial epiglottitis
Wolff-Parkinson-White syndrome
Atrioventricular nodal reentrant tachycardia (AVNRT)
Marfan syndrome
Brugada syndrome
Action potentials in pacemaker cells
Cardiomyopathies: Clinical
Long QT syndrome and Torsade de pointes
Atrioventricular block
Infective endocarditis: Clinical
Bundle branch block
Peripheral artery disease
Arterial disease
Peripheral vascular disease: Clinical
Cardiac tamponade
Cardiac contractility
ECG cardiac hypertrophy and enlargement
Aortic dissections and aneurysms: Pathology review
Deep vein thrombosis and pulmonary embolism: Pathology review
Pulmonary embolism
Stable angina
Angina pectoris
Prinzmetal angina
Ludwig angina
Unstable angina
Aneurysms
Pleural effusion
Obstructive lung diseases: Pathology review
Pneumonia: Clinical
Emphysema
Imaging features of COVID-19 (LifeBridge Health)

Transcript

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Introduction

With coronary circulation, coronary comes from the Latin word “coronarius,” meaning "crown." This is because the coronary blood vessels surrounding the heart resembles a little crown! And circulation refers to “the flow of blood.” So, coronary circulation is the movement of blood throughout the vessels that supply the myocardium also known as the heart muscle.

Now, the heart is a pump, primarily made up of cardiac muscle cells known as cardiomyocytes. And like any other cell, they require a steady supply of oxygen, nutrients, and a way to eliminate wastes. And although the heart is continually pumping blood throughout its chambers, the myocardium is too thick for the diffusion of blood to happen effectively. So, instead, the coronary circulation provides an efficient way for the exchange of substances to occur.

Coronary Circulation

Okay, the coronary circulation system is mainly made up of arteries and veins. To begin, the arterial supply of the heart starts with the branching out of the left and right coronary arteries from the base of the aorta. It’s like a superhighway that carries oxygenated blood from the heart to the rest of the body.

Left Coronary Artery

Now, the left coronary artery heads along the left coronary sulcus, a groove on the outer surface of the heart that marks the point of division between the ventricles and the atria. Not too far along the sulcus, the left coronary artery divides into two major branches. The first is the left anterior descending artery or LAD. It travels down the anterior interventricular sulcus, and it supplies the anterior 2/3 of the interventricular septum, the anterolateral papillary muscle, and the anterior surface of the left ventricle. The second branch is the left circumflex artery or LCX. It goes along the coronary sulcus, around the left side of the heart and supplies the left atrium and the posterior walls of the left ventricle.

Right Coronary Artery

Alternatively, the right coronary artery heads in the opposite direction, following the coronary sulcus, and along the way it supplies the SA node It later divides into two branches. The first is the right marginal artery, which stretches along the margins of the bottom right side of the heart, supplying the right ventricle. The second branch is the posterior descending artery or PDA, sometimes called the posterior interventricular artery. It goes down the posterior interventricular sulcus towards the heart’s apex while supplying the posterior 1/3 of the interventricular septum the posterior 2/3 of the ventricular walls, and the posteromedial papillary muscle. At the apex, the posterior descending artery merges with its anterior counterpart, through interconnected arterial branches called anastomoses. Together, they supply the right atrium and nearly all of the right ventricle.