
Meet our chief faculty, a European board certified cardiac electrophysiologist with 15+ years in atrial fibrillation and arrhythmia management, from Heartbeats Academy.
Intracardiac mapping records electrical potentials from inside the heart to localize arrhythmia foci and conduction pathways. Three-dimensional electroanatomical mapping guides targeted ablation by integrating catheter design and mapping modalities.
Explore the left atrial anatomy, including the phrenic nerves, esophagus, pulmonary veins, fossa ovalis for access, and the Koch triangle housing the AV and sinus nodes.
Trace the evolution of cardiac devices from the sinoatrial node’s natural pacemaker function to modern pacemakers, ICDs, and CRT, and explore current applications and future directions.
Learn how catheter ablation risks such as thromboembolism, perforation, conduction system injury, and esophageal or phrenic nerve injury are reduced by mapping, energy delivery, and saline irrigation, plus healing.
Explore cardiac EP conduction study concepts, including syncope evaluation, arrhythmia induction, pacing protocols, and AV conduction blocks to determine pacemaker needs.
Understanding of anatomy and physiology of heart is always the key to EP
Explore cellular cardiac electrophysiology by examining action potential phases, ionic channels, and the conduction system—from pacemaker cells to gap junctions—highlighting how cell-to-cell conduction shapes arrhythmias.
Master a systematic electrophysiology approach to differentiating supra ventricular tachycardia, using history, baseline findings, tachycardia initiation and termination maneuvers, and pacing responses.
Explore how antiarrhythmic drugs target abnormal impulse generation and conduction. Learn class 1-5 classifications with examples like sodium, calcium, and potassium channel blockers, beta blockers, digoxin, and magnesium sulfate.
Explore the basics of performing an ep study, including intracardiac mapping, baseline interval measurements, programmed stimulation, and ablation strategies for arrhythmias.
Use right ventricle entrainment to differentiate SVT mechanisms by analyzing response patterns (V response, fusion) and tachycardia cycle length thresholds around 110 ms.
Learn to interpret intracardiac tracings of SVT by distinguishing AV nodal reentry, accessory pathway, and atrial tachycardia using retrograde conduction, pacing responses, and activation sequences.
This lecture explains accessory pathways causing atrioventricular re-entry tachycardia, how to differentiate left and right pathways, and map and ablate them using ERP criteria and delta wave cues.
Explore a step-by-step avnrt ablation approach that blocks the fast pathway while the slow pathway conducts, inducing tachycardia with paced stimuli and mapping to guide safe ablation.
Discusses atrial flutter mechanisms, distinguishing typical (counterclockwise) and atypical (clockwise) circuits, and outlines mapping-guided ablation strategies using the coronary sinus and targeted line blocks.
Differentiate defibrillation from synchronized electrical cardioversion, and explore indications, safety, energy settings, impedance considerations, and special cases in arrhythmia management.
Examine the causes, mechanisms, and impact of atrial fibrillation to build foundational understanding for cardiac electrophysiology and rhythm management.
Master lifestyle modifications for managing atrial fibrillation to support rhythm control in daily life and clinical practice.
Explain sick sinus syndrome and AV conduction blocks, their symptoms like dizziness and syncope, and how conduction defects range from sinus pauses to high-grade blocks, guiding pacemaker decisions.
Explore brugada testing within the diploma in cardiac electrophysiology & rhythm management 1/2, providing practical insights for understanding this topic.
Explore pacemaker programming within cardiac electrophysiology and rhythm management, highlighting key concepts and their applications in patient rhythm care.
Explore the 2024 ESC atrial fibrillation guidelines and the structured AF care pathway, emphasizing comorbidity management, stroke prevention, rate and rhythm control, and shared, equitable, multidisciplinary care.
Catheter Ablation in Ventricular Tachycardia primarily discuss catheter ablation as a treatment for ventricular tachycardia (VT), differentiating its application in patients with and without structural heart disease.
?They explain mapping techniques like activation and pace mapping for idiopathic VT, often originating from areas like the right ventricular outflow tract.
?For VT in structural heart disease, the texts emphasize substrate mapping to identify scar tissue, which harbors reentrant circuits, and highlight the role of cardiac imaging for precise localization.
?Additionally, it also touches upon various other cardiac conditions and diagnostic procedures, including different types of arrhythmias, echocardiographic assessments of heart function and specific valve conditions, and other advanced imaging modalities like intravascular ultrasound.
Master Cardiac Electrophysiology & Complex Arrhythmia Management - the Complete Clinical Guide
Welcome to HeartbeatsZ Academy's comprehensive Cardiac Electrophysiology & Arrhythmia Management course, crafted by EHRA Certified Electrophysiology Specialists trained at top-50 global universities and Harvard Medical School. With 21,000+ students worldwide and a 4.3/5 average rating, we are committed to making complex cardiac science accessible, practical, and career-transforming.
What You'll Master:
• Advanced Electrophysiology Study (EP Study) techniques & interpretation
• Complex Arrhythmia Management: AFib, Ventricular Tachycardia (VT), AVNRT, WPW Syndrome, Accessory Pathways
• Ablation Procedures: indications, techniques, complications, outcomes
• ECG interpretation for EP diagnosis
• Clinical decision-making in rhythm management
• IBHRE CCDS & EHRA certification exam preparation
Why This Course Stands Out:
✓ 12+ hours of premium video content (highest quality compared to competitors)
✓ Expert-led by Harvard-trained electrophysiologists & ECES specialists
✓ Designed for nurses, technicians, students, cardiologists, and healthcare professionals
✓ Affordable pricing with university-level expertise - maximum value for learners
✓ International recognition: students eligible for London HeartbeatsZ Academy Diploma (after certification)
✓ Clear, jargon-free explanations demystifying complex concepts
✓ Practical clinical insights you'll use immediately
Ideal For:
• Cardiac nurses & technicians seeking IBHRE CCDS certification
• Cardiologists expanding into EP subspecialty
• Medical students preparing for advanced cardiology rotations
• Healthcare professionals advancing clinical expertise
• Anyone passionate about understanding cardiac electrophysiology
Enroll now and join thousands of healthcare professionals who have transformed their careers with HeartbeatsZ Academy. Your journey to EP mastery starts here.