
In the coming 4 videos, we will discuss the different components of the conductive system of the heart focusing on different pathologies affecting it.
In this video, you will know our course intended learning objectives, target audience, course curriculum and the biography of dr. Ahmed Gaber; the course instructor
In this video, we will discuss the concept of Cardiac imaging, what is ECG and the different clinical conditions that can be diagnosed using ECG.
Explore the heart's conduction system and how TAVI procedures risk damaging the AV node, the 200 ms physiological delay, and how pacemaker syndrome arises from complete heart block.
Trace the heart's electrical conduction from the bundle of His through the right and left bundle branches to the Purkinje or McKinsey fibers, coordinating ventricular contraction.
Unpack the heart's conduction from the sinoatrial node firing 60–100 per minute to sympathetic and parasympathetic control, the 200 ms av delay, and Purkinje fiber pathways.
In the coming 3 videos, we will discuss the coronary circulation which is the blood supply of the heart. the different coronary vessels and which walls of the ventricles are supplied by them. from these concepts, you will be able to diagnose from ECG which coronary vessel is occluded.
Explore coronary circulation by mapping the five myocardial walls: septal, anterior, lateral, posterior, and inferior, and how each is supplied by arteries, with ischemia pinpointed to the culprit vessel.
Examine the coronary arteries, including the right and left coronary arteries, their origins from the ascending aorta and right coronary sinus, and their major branches.
In the coming 2 videos, we will discuss the concept of imaging the heart, the correlation between photography and ECG and how ECG 12 leads are produced. The 3 main components of ECG; waves, segments and intervals.
Explore how an electrocardiogram recording uses twelve leads by combining limb and chest electrodes, including chest leads V1-V6 and the augmented and bipolar limb leads.
In this video, we will discuss the difference between unipolar and bipolar leads, components of ECG paper.
In this video, we will discuss the standard structure of normal ECG. anatomic segmentation of the ECG paper.
In this video, we will discuss the different waves, segments and intervals of the ECG lead and its representation of the cardiac cycle.
In this video, we will discuss our innovative 12 codes stepwise strategy in dealing with and interpreting ECG.
In this video, we will discuss the first 2 codes which are the connection to answer the question of does ECG electrodes are properly connected or not? and calibration to identify and standard calibration of ECG
In this video, we will discuss the different artifacts which can be present in ECG and form obstacles in ECG interpretation.
In this video, we will discuss how you can measure heart rate in the regular and irregular rhythms and identify normal heart rate, tachycardia and bradycardia.
In this video, we will discuss what is normal sinus rhythm and the differential diagnosis of different dysrrythmias.
In this video, we will discuss the different forms of atrial and ventricular extrasystoles.
In this video, we will discuss the different tachyarrhythmias at atrial level and how to differentiate between them.
In this video, we will discuss the different tachyarrhythmias at ventricular level and how to differentiate between them.
In this video, we will discuss the different bradyarrhythmias at atrial level and how to differentiate between them.
In this video, we will discuss the different bradyarrhythmias at ventricular level and how to differentiate between them.
Identify normal P wave morphology and distinguish abnormalities by amplitude and duration; recognize right atrial enlargement and left atrial enlargement and their causes, such as pulmonary hypertension and mitral stenosis.
Explain PR interval reflects atrial contraction and AV delay; normal 120–200 ms; short PR in WPW; prolonged PR in first-degree AV block; PR segment elevation denotes atrial infarction.
Discover how the QRS complex indicates ventricular depolarization, with normal duration under 120 ms and amplitude under three large squares, and learn R, S, and Q wave patterns across leads.
Identify pathological Q waves indicating myocardial infarction and distinguish bundle branch blocks by QRS morphology and duration, noting complete versus incomplete blocks.
Learn how to identify left and right ventricular hypertrophy on ECG, using QRS voltage criteria in leads V1–V6, recognize ST-T strain, and review differential diagnoses such as hypertension and COPD.
Explain the ST segment elevation and depression and their role in myocardial infarction and ischemia, including reciprocal depression and differential diagnoses.
Learn how the QT interval is measured and corrected with QTc = QT / sqrt(RR), and the normal ranges, prolongation above 450 ms or shortening below 350 ms, informs interpretation.
Identify the U wave in ECG and differentiate it from a B wave; include it in QT interval calculations and note its small amplitude and electrolyte disturbances and drugs.
Welcome to ECG Mastery!
Dive into the fascinating world of Electrocardiography and unlock the secrets of the heart!
About Us
ECG Mastery is a premier online learning platform dedicated to providing comprehensive, top-notch courses in ECG interpretation. Our mission is to empower healthcare professionals and enthusiasts with the knowledge and skills needed to accurately interpret ECGs and ultimately, improve patient outcomes.
Why Choose ECG Mastery?
Expert-Led Instruction: Our courses are meticulously designed and led by seasoned healthcare professionals with years of experience in the field of Electrocardiography.
Comprehensive Curriculum: From basic to advanced levels, our curriculum covers all aspects of ECG interpretation. We ensure that you gain a deep understanding of the subject matter.
Interactive Learning Experience: We believe in learning by doing. Our course includes interactive modules, real-life case studies, and hands-on exercises to reinforce your learning.
Flexible Learning Schedule: Our course is available 24/7, allowing you to learn at your own pace and convenience.
Certification: Upon completion of the course, you will receive a certificate that is recognized in the healthcare industry.
Our Course Offerings
We offer a range of courses to cater to different learning needs:
Basic ECG Course: Ideal for beginners, this course covers the fundamentals of ECG interpretation including understanding the ECG waveform, recognizing common arrhythmias, and more.
Intermediate ECG Course: This course delves deeper into complex topics such as bundle branch blocks, chamber enlargements, and myocardial infarctions.
Advanced ECG Course: Designed for healthcare professionals, this course covers advanced topics like complex arrhythmias, pacemakers, and pre-excitation syndromes.
Join us today and embark on your journey to ECG excellence!
Who this course is for:
Cardiologist
Medical student
Doctor
Physicians
Physician Assistant
Paramedics
Nurse