Mastering in Fundamentals of the Cardiovascular SystemPublished 8/2026
MP4 |
Video: h264, 3840x2160 |
Audio: AAC, 44.1 KHz, 2 Ch
Language: English |
Duration: 9h 46m |
Size: 23.51 GB
Master Cardiovascular Physiology: Blood Pressure, Hypertension, Shock, Myocardial Ischemia & Infarction
What you'll learnExplain the physiological mechanisms that regulate blood pressure, including the baroreceptor reflex and renin-angiotensin-aldosterone system.
Identify the major risk factors, physiological mechanisms, and treatment approaches associated with hypertension.
Describe the causes, stages, compensatory mechanisms, and progression of shock from the non-progressive to irreversible stage.
Differentiate between myocardial ischemia, hypoxia, and infarction based on their underlying physiological mechanisms.
RequirementsThe course is suitable for students, healthcare learners, technicians, and working professionals who want to understand cardiovascular physiology, hypertension, shock, myocardial ischemia, and myocardial infarction.
Description"This course contains the use of artificial intelligence."
Welcome to this comprehensive course on
Cardiovascular Physiology, designed to help you understand the physiological mechanisms behind important cardiovascular conditions and their clinical consequences.
Throughout the course, we explore how the cardiovascular system regulates
blood pressure, how hypertension develops, and how physiological mechanisms such as the
baroreceptor reflex and
renin-angiotensin system contribute to blood-pressure control. You will also learn about major hypertension risk factors and the basic mechanisms of antihypertensive drug therapy.
The course then moves into the
physiology of shock, covering its major causes, including hypovolemic, cardiogenic, and distributive changes. You will understand the three stages of shock-
non-progressive, progressive, and irreversible-and how compensatory mechanisms initially attempt to maintain blood pressure before progressive tissue and cellular injury can occur.
A major part of the course focuses on
myocardial ischemia. You will learn how an imbalance between myocardial oxygen supply and demand develops and how factors such as coronary blood flow, vascular resistance, oxygen-carrying capacity, preload, afterload, heart rate, and contractility influence this balance.
The course also clearly distinguishes
ischemia, hypoxia, and infarction, followed by an examination of what happens to myocardial cells during ischemia. Topics include metabolic changes, reversible cell injury, reperfusion injury, pulmonary congestion, ion disturbances, ventricular arrhythmias, and the progression toward irreversible myocardial damage.
Finally, you will explore the
clinical presentations of myocardial ischemia, including stable, variant, and unstable angina, silent ischemia, and myocardial infarction. The course explains important
ECG changes, including ST depression, T-wave inversion, and ST elevation, as well as the role of
cardiac biomarkers such as Troponin I and creatinine kinase in myocardial infarction.
This course is suitable for
students, healthcare learners, technicians, working professionals, and beginners with basic knowledge of anatomy and physiology who want to develop a structured understanding of cardiovascular physiology.
By the end of the course, you will have a stronger understanding of how changes in
blood pressure, circulation, myocardial perfusion, cellular metabolism, and cardiac function are connected across these important cardiovascular conditions.
Who this course is forThe course is particularly valuable for learners who want to move beyond memorizing definitions and develop a clear understanding of the physiological mechanisms, clinical manifestations, progression, and diagnostic features presented in the course.
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