
Learn how electrocardiograms capture the heart’s electrical activity with electrodes and a galvanometer at 25 mm per second. Explore limb and chest leads, and the dipole-based deflection axis.
Measure heart rate on an EKG using 300/large-box and 1500/small-box methods, and assess rhythm to identify sinus rhythm, bradycardia, or tachycardia.
After completing this Video, you will be able to learn :
Correct lead placement for obtaining an electrocardiogram (ECG).
Normal ECG waves and intervals.
ECG Components, ECG Paper and speed
Systematic approach to ECG interpretation and principles of recording
ECG Leads and Electrical fields
Dutch physiologist Willem Einthoven published the first electrocardiogram (ECG) in 1902, shortly after creating the 600-pound “string galvanometer” that used electrodes placed on the surface of the skin to measure the electrical activity of the heart. Despite the many technological advances in cardiac monitoring during the past 100 years, the ECG remains the cornerstone technique for detecting and monitoring conditions such as myocardial ischemia or infarction, arrhythmias, pericarditis, and drug effects on the myocardium. Once you understand how an ECG works, you can begin to develop a systematic approach to interpreting the ECG.
Explore the cardiac axis, including normal, left, right, and extreme axis deviations, with numerical ranges and the Higgs diagram. Learn to determine axis from leads I and AVF.
Analyze P wave morphology and abnormalities, including right and left atrial enlargement, amplitude, duration, and notching, plus rhythm patterns like atrial fibrillation and multifocal atrial tachycardia.
Explore how right ventricular depolarization shapes the R wave across precordial leads, identify dominant R waves in V1, and review RVH-related ECG patterns.
Define the PR interval as atrial to AV nodal conduction, note a normal 120–200 ms, and explain first-degree, Mobitz I/II, and complete heart blocks with pacing options.
Measure the QT interval from the start of the Q wave to the end of the T wave, apply correction, and recognize conditions that prolong or shorten it.
Explains polymorphic ventricular tachycardia and torsades de pointes arising from myocardial ischemia or prolonged qt, with congenital causes, drug- and electrolyte-induced, and management including magnesium sulfate and overdrive pacing.
Introduce cardiac arrhythmias, their types (premature atrial/ventricular, supraventricular and bradyarrhythmias) and mechanisms (automaticity, triggered activity, re-entry), with conduction system basics and common examples like atrial fibrillation and multifocal atrial tachycardia.
Explore atrial fibrillation, its holiday heart associations, etiologies, mechanisms, classification, symptoms, and comprehensive management—from rate and rhythm control to anticoagulation and ablation options.
Summarizes ventricular arrhythmias from premature contractions to mono- and polymorphic tachycardia, their ECG patterns and origins, and acute management including lignocaine, amiodarone, beta blockers, and ICDs.
Explain AVNRT and AVRT with re-entry mechanisms, slow and fast pathways, and accessory pathways such as WPW. Cover clinical features and acute management with vagal maneuvers and adenosine.
ECG Made ridiculously simple
During this course, we will bring you through the journey to understand the basic of electrocardiogram (ECG), and the heart function in order to recognize arrhythmias and diagnose common medical conditions from the ECG.
Don’t waste your energy on complicated textbooks and papers full of theory. Don’t spend your valuable time and money on expensive on-site courses. Instead, learn the most important clinical skills in ECG where you want and when you want through Master ECG Program by Med School Simplified.
The course will provide the students a thorough understanding of the components of the ECG waveform, recognition and interpretation of cardiac rhythms, and diagnosing all the abnormal conditions using ECG patterns.
Analyze Don't Memorize with step-by-step, self-paced ECG course.
The course is designed to be taken at your convenience as a home-study/self-study course, you can stop and start on your schedule, and an online bookmark can bring you back to where you left off.
The best platform for the simplest and detailed way to learn ECG interpretation.
Case-based teaching in ECG creates a hands-on, engaging learning experience to improve your diagnostic skills. Only learn what’s clinically relevant and safely ignore the rest.
ECG interpretation is no more nightmare, and our renowned faculty is here to teach you their tips and tricks to master the ECG.
Through our dedicated ECG program, you’ll soon be able to make better clinical decisions much faster. Your patients and colleagues will love and respect you for it!
15 plus hours of video lectures
Course is targeted for Medical students preparing for USMLE, FMGE, NEET PG, Third and Fourth year MBBS and also for general physicians, Juniors doctors and allied health professionals, paramedics, ECG Technicians and Anybody working in the medical field and wants to learn ECG interpretation.
Why do I need to join?
This course shares simple and fun ways in learning medical terms and conditions in relation to basic ECG. It will benefit medical students, interns, paramedics, general practitioners, primary care doctors and all interested in learning ECG.
Who can join?
Anyone who are interested in learning electrocardiogram (ECG) and relate it with our own body function and medical condition. We try to deliver the content in simple and easy-to-understand way.