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by Niraj Sharma MD FACC FHRS: Cardiac Electrophysiology & Cardiology
Welcome to EP Edge Journal Watch, where cardiac electrophysiology meets evidence, precision, and perspective. Hosted by Dr. Niraj Sharma, this podcast distills high-impact cardiovascular and Cardiac Electrophysiology and arrhythmia research into clear, clinically meaningful insights. Each episode goes beyond headlines and abstracts to uncover what new studies actually mean for patient care, decision-making, and the future of electrophysiology. What EP Edge Journal Watch stands for: Evidence-based practice Precision electrophysiology, arrhythmias analysis A forward-thinking, edge-driven approach to how we interpret and apply data in real-world clinical settings. Whether you’re an electrophysiologist, cardiologist, researcher, trainee, or allied health professional, EP Edge Journal Watch brings you the signal not the noise. Expect sharp summaries, thoughtful commentary, and practical takeaways designed for the busy clinician who wants to stay ahead of the curve
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Should we add posterior wall isolation during pulsed field ablation for persistent atrial fibrillation? How durable are pulmonary vein isolation and additional atrial lines? Can a defibrillation lead placed in the left bundle branch area provide reliable early performance while simplifying device therapy?Join Dr. Sharma for EP Edge® Journal Watch Issue 39, October 2026. We examine four papers in depth: PIFPAF-PFA, pulmonary vein isolation durability across pulsed field systems, invasive remapping of atrial lesion sets with a dual-energy lattice-tip catheter, and the LEADR LBBAP defibrillation lead study. We then give brief takeaways from twenty additional articles spanning AF ablation safety, conduction system pacing and cardiac resynchronization therapy, anticoagulation, metabolic therapies, AF progression and burden, cardioversion, cardiac arrest, ventricular arrhythmias, congenital long QT syndrome, and lead extraction.Our aim is to connect clinically relevant findings with the methods and uncertainty behind them. We distinguish acute procedural success from chronic durability, electrical surrogates from patient outcomes, and randomized evidence from selected observational comparisons. We explain effect estimates, denominators, confidence intervals, and why a nonsignificant result does not establish equivalence. Accompanying editorials and the pacing viewpoint are integrated into the relevant discussions rather than counted as additional articles.The newsletter contains detailed analyses of all 24 articles. The episode concentrates its extended analysis on the four featured papers below; the other twenty receive concise spoken takeaways. Article numbers retain the revised newsletter numbering, and entries follow newsletter order within each coverage section.FOUR PAPERS COVERED IN DEPTH1. Pulmonary Vein Isolation Using Pulsed Field Ablation With vs Without Posterior Wall Isolation in Patients With Symptomatic Persistent Atrial Fibrillation: The PIFPAF-PFA Randomized Clinical TrialRoten L, Maurhofer J, Krisai P, et al. | JAMA | August 2026Roten and colleagues ask whether empirical posterior wall isolation adds benefit to PFA-based PVI at first ablation for symptomatic persistent AF. In 206 randomized patients with continuous implantable-monitor surveillance, one-year Kaplan-Meier atrial tachyarrhythmia recurrence estimates were 50.6% with posterior wall isolation versus 60.6% with PVI alone. The primary result did not establish superiority: rate ratio 0.75, 95% CI 0.51–1.09, P=.13.Mean arrhythmia burden was 6.9% versus 11.0%, and episodes lasting at least one day occurred in 10 versus 25 patients. These secondary signals require confirmation because multiple comparisons were not corrected, and most secondary endpoints were nonsignificant. Repeat intervention, drug use, and quality-of-life comparisons did not establish an advantage. We integrate Kistler and Chieng’s editorial on empirical anatomical ablation versus targeting demonstrated substrate, while avoiding cross-trial claims of superiority. Routine additional posterior wall isolation remains unproven in this setting; limited power also prevents a conclusion of equivalence.DOI: 10.1001/jama.2026.175982. Durability of pulmonary vein isolation: Does the pulsed field ablation system matter?Kakarla S, Iwakawa H, Ariyaratnam JP, et al. | Heart Rhythm | October 2026Kakarla and colleagues compare pentaspline and balloon-in-basket PFA in a retrospective two-center cohort of 132 index procedures. Clinical recurrence was 10.5% versus 19.6% (P=.12), and 34 propensity-matched clinical pairs had six versus seven recurrences. The notable durability signal came from only 17 selected patients returning for repeat ablation: reconnection affected 9/32 versus 1/35 veins, and all veins remained isolated in 3/8 versus 8/9 patients.We examine why these findings cannot establish platform superiority. Matching of the clinical cohort did not randomize or make the separate redo sample representative. Veins within patients are correlated, monitoring intensity differed, and posterior wall treatment was uneven. Acute isolation, selected invasive remapping, and clinical recurrence answer different questions. The study supports prospective comparison with systematic remapping and standardized surveillance, while emphasizing mapping of the actual recurrence mechanism at redo.DOI: 10.1016/j.hrthm.2026.05.0185. Durability of atrial linear lesion sets using a dual-energy lattice-tip catheter: Data from invasive remappingNies M, Benesch Vidal ML, My I, et al. | Heart Rhythm | October 2026Nies and colleagues investigate whether acute atrial block persists after ablation with
In this special EP Edge® Journal Watch Issue 38, recorded at HRX, with the Heart Rhythm Society Live 2026 in Atlanta, Dr. Niraj Sharma is joined by Dr. Michael Lloyd, Professor of Medicine at Emory University, for a focused discussion of three provocative studies with direct implications for contemporary cardiac electrophysiology.First, they examine the emerging role of large language models and artificial intelligence in ECG interpretation. How accurately can off-the-shelf, zero-shot LLMs interpret electrocardiograms, and are currently available general-purpose AI models ready to participate in clinical ECG analysis?The discussion then turns to ventricular tachycardia detected during everyday life by wearable devices. New data suggest that VT may be detected far more frequently in individuals using wearable monitoring than traditional estimates would suggest. Drs. Sharma and Lloyd discuss what these findings may mean for electrophysiologists increasingly confronted with rhythm data generated outside the clinic.Finally, the episode explores the continuing evolution of conduction system pacing, with new data comparing left bundle branch area pacing (LBBAP) and deep septal pacing (DSP). The conversation examines differences in clinical outcomes, the reported mortality signal associated with deep septal pacing, and an important practical problem for the field: inconsistent agreement about what actually constitutes successful LBBAP versus deep septal pacing.Recorded from HRX Live 2026, this episode goes beyond the abstracts to examine what the findings mean clinically, where the uncertainties remain, and how they may influence electrophysiology practice.Topics discussed include:Artificial intelligence and zero-shot LLMs for ECG interpretationAccuracy and limitations of AI-assisted electrocardiogram analysisWearable cardiac monitoring and real-world ventricular tachycardia detectionVentricular arrhythmias detected outside traditional clinical monitoringLeft bundle branch area pacing (LBBAP)Deep septal pacing (DSP)Conduction system pacing definitions and adjudicationMortality and clinical outcomes with physiologic pacing strategiesEmerging research and innovation from HRX Live 2026EP Edge® Journal Watch provides clinically focused analysis of important new research in cardiac electrophysiology, emphasizing not simply what a study found, but how the evidence should be interpreted and what it may mean for clinical practice.Hosted by Dr. Niraj SharmaSpecial HRX discussion with Dr. Michael Lloyd, MD, FACC, FHRS
In EP Edge® Journal Watch Issue 37, September 2026, Dr. Sharma reviews 13 important studies in cardiac electrophysiology, with a focus on what the data actually mean for clinical practice. This episode goes beyond abstracts and headline results to examine why each study was performed, the clinical question investigators were trying to answer, the methodology used, the statistics behind the major findings, important limitations, and what the results may mean for electrophysiologists going forward.This episode begins with a major theme in contemporary atrial fibrillation care: left atrial appendage occlusion and stroke prevention.First, we examine the mechanistic study “Left Atrial Appendage Thrombosis in Patients With Atrial Fibrillation” from Ji Zhou and colleagues. Histologic examination of surgically removed appendages from LAAOS III participants identified microscopic thrombi in the trabecular crypts, raising important questions about persistent local thrombogenicity despite anticoagulation and providing biological context for why mechanical left atrial appendage exclusion may provide additional protection in selected patients.We then turn to two important meta-analyses comparing left atrial appendage occlusion with medical therapy. The contemporary randomized evidence suggests that LAAO may substantially reduce nonprocedural bleeding, but the possibility of a modest increase in ischemic stroke remains unresolved. The discussion focuses on why LAAO should be viewed as a trade-off between procedural risk, long-term bleeding exposure, and stroke protection rather than simply as an equivalent replacement for direct oral anticoagulation.The episode then examines the ADVANCE LAA study, led by Dhanunjaya Lakkireddy, evaluating Amulet implantation in patients who failed Watchman anatomical screening. Despite more challenging left atrial appendage anatomy, Amulet implantation remained highly successful, reinforcing an important practical concept: failure of one device geometry does not necessarily mean failure of the LAAO strategy.Next, we review randomized evidence comparing direct oral anticoagulants versus dual antiplatelet therapy after left atrial appendage closure. The pooled data showed markedly lower device-related thrombus with DOAC-based therapy and, perhaps surprisingly, less major and minor bleeding than with DAPT. The clinical question is no longer simply whether anticoagulation can be stopped, but what antithrombotic strategy provides the safest bridge through the early device-healing period.The second major theme is pulsed field ablation safety and lesion durability.A major Circulation study led by Enrico Ferro compared neurological outcomes after pulsed field ablation and radiofrequency ablation. Although absolute stroke and TIA rates remained low, PFA was associated with a higher 30-day neurovascular event rate in this observational registry. Dr. Sharma discusses the difference between relative and absolute risk, why propensity adjustment cannot eliminate residual confounding, and why rapid adoption of PFA makes rigorous post-market safety surveillance essential.We then examine “Transmurality and Autonomic Effects of Pulsed Field Ablation on the Mitral Isthmus” by Apoor Patel and colleagues. Using direct vein of Marshall recordings, investigators demonstrated that apparent endocardial mitral isthmus block frequently concealed persistent epicardial conduction. PFA alone achieved complete block in fewer than half of patients, while vein of Marshall ethanol infusion substantially increased block rates. The study also demonstrated that PFA generally spared local parasympathetic innervation, whereas ethanol infusion produced denervation. The findings raise important questions about how we define lesion completeness in the PFA era.The episode then moves to atrial fibrillation detection and prediction.The PAVA score, developed by Baptiste Maille and colleagues, attempts to identify patients at lower likelihood of AF detection after cryptogenic stroke using premature atrial contractions, age, significant valvular disease, and left atrial enlargement. The score performed well in internal validation but less strongly in external validation, highlighting why prediction models should be judged by more than their best AUC.We also discuss the study “Wearable smartwatches for atrial fibrillation detection and burden estimation after ablation: comparison with continuous monitoring.” Using continuous implantable cardiac monitor data from CIRCA-DOSE, investigators simulated Apple Watch and Fitbit AF-detection algorithms. Smartwatch strategies detected substantially more recurrence than conventional short Holter monitoring, while wearable-estimated AF
What defines successful atrial fibrillation ablation: fewer recurrences, lower AF burden, better quality of life, or all three? In this ESC Congress 2026 special issue of EP Edge Journal Watch, Dr. Sharma examines evidence from Munich, Germany, August 28–31, 2026, alongside previously covered sham-controlled trials to explore what meaningful patient benefit should look like.PVI-SHAM-AF leads the discussion. Rolf Wachter and colleagues found lower sampled atrial fibrillation burden after catheter ablation, but no demonstrated superiority over sham on the primary Atrial Fibrillation Effect on Quality-of-Life (AFEQT) endpoint. We examine the primary result, the favorable sensitivity analysis, and why failure to demonstrate superiority does not establish equivalence.PFA-SHAM and SHAM-PVI provide the earlier evidence. These trials demonstrated additional patient-reported benefit with pulsed field ablation and cryoballoon pulmonary vein isolation, respectively. Their differing populations, endpoint priorities, and monitoring methods help frame the comparison, without implying that one ablation technology is superior to another.Our In Depth synthesis examines baseline symptom severity, possible ceiling effects, recruitment, cardioversion, antiarrhythmic management, beta blockers, and continuous versus intermittent rhythm monitoring. These are potential contributors to the discordant findings, not established explanations. Drawing on Andrea Natale’s review, the Marrouche–Glotzer editorial, and Dulai’s SHAM-PVI substudy, we distinguish rhythm recurrence from residual burden, symptoms, functional improvement, and treatment burden. What should count as clinical success, and which definitions still need prospective validation?FlexPulse follows with 12-month results for focal dual-energy radiofrequency and pulsed field ablation. We review 74.6% composite effectiveness, safety, redo-mapping findings, and the substantial effect of monitoring intensity on apparent success. Single-arm results and retrospective lesion-quality associations are not comparative proof.NEXAF examines structured exercise in AF care. A supervised-to-home exercise program reduced continuously monitored AF burden by 45% relative to usual care, but did not demonstrate superiority on the quality-of-life co-primary endpoint.IDEAL-AF evaluates individualized low-voltage substrate ablation in selected patients with persistent AF. We discuss improved rhythm outcomes beyond pulmonary vein isolation, patient selection, verified electrical endpoints, and the accompanying Kistler–Chieng editorial. The findings do not justify routine additional lesions in every patient.ENRICH-AF closes with edoxaban after intracranial hemorrhage. Fewer ischemic strokes were accompanied by more hemorrhagic strokes and major bleeding, without demonstrated superiority on the primary stroke or systemic embolism endpoint.NEXAF and ENRICH-AF are discussed as congress-results reports, not full results manuscripts. Designed for electrophysiologists, cardiologists, trainees, researchers, and cardiovascular care teams, this episode connects trial interpretation with patient counseling, medication review, and shared decision-making.Explore the complete newsletter, infographics, and references, and follow EP Edge Journal Watch for weekly electrophysiology analysis.
In this special edition of EP Edge® Journal Watch, Dr. Sharma reviews the major breaking cardiovascular and electrophysiology science presented at the European Society of Cardiology Congress 2026 in Munich.The episode begins with two important electrophysiology trials that challenge familiar clinical thresholds.First is SINGLE-AF, led by Daehoon Kim and colleagues and published in the New England Journal of Medicine in August 2026. The trial provides the first randomized evidence evaluating direct oral anticoagulation versus no anticoagulation in patients with atrial fibrillation at intermediate stroke risk. Dr. Sharma explains why this population has remained a clinical gray zone, how the trial was designed, what the 69% relative reduction in the primary net clinical endpoint actually means, why the absolute event rate remains important, and whether these findings should change anticoagulation decisions in everyday AF practice.Next is CMR GUIDE, led by Joseph B. Selvanayagam and colleagues and published in JAMA in August 2026. This provocative randomized trial tested whether myocardial scar identified by late gadolinium enhancement cardiac MRI could help identify patients with LVEF 36% to 50% who may benefit from a primary-prevention ICD. Although the primary endpoint was neutral, the reduction in sudden cardiac death and the striking signal among patients younger than 70 years raise a much larger question for electrophysiologists: Is LVEF alone still an adequate way to determine sudden cardiac death risk and ICD candidacy?The episode then moves into a rapid review of additional major developments from ESC 2026.The 2026 ESC Heart Failure Guidelines, led by Lars Køber, Marianna Adamo and colleagues and published in the European Heart Journal, eliminate the traditional HFmrEF category, redefine HFrEF as LVEF below 50%, introduce a Stage A through D heart failure framework, and reorganize therapy into foundational, additional, and guideline-directed interventional treatment. Dr. Sharma discusses why this major change in heart failure classification does not automatically change ICD or CRT indications, but may influence how future device therapy is studied.The Fifth Universal Definition of Myocardial Infarction, led by Nicholas Mills, L. Kristin Newby, Sarah Zaman and colleagues, introduces a simpler pathophysiologic classification of primary MI, secondary MI, and procedure-related MI. Of particular relevance to electrophysiology, the new framework may help clarify how elevated troponin should be interpreted in patients with rapid atrial fibrillation and other tachyarrhythmias, separating true ischemic myocardial infarction from acute myocardial injury.Also discussed is the major Nature Reviews Cardiology review led by Thomas Münzel and colleagues examining nicotine and cardiovascular disease. The review places combustible cigarettes, heated tobacco products, e-cigarettes, and oral nicotine products along a continuum of cardiovascular harm and emphasizes that reduced exposure to combustion does not make nicotine-containing products cardiovascularly neutral.Finally, Dr. Sharma examines an innovative study presented by Viana Copeland and colleagues using artificial intelligence to analyze nearly 100,000 mammograms for cardiovascular signals associated with hypertension, ischemic heart disease, and stroke. The concept raises the intriguing possibility that imaging obtained for one clinical purpose may ultimately provide useful information about entirely different disease phenotypes.Throughout the episode, the emphasis is not simply on reporting trial results. Dr. Sharma explains why each study was needed, how it was designed, what the statistics actually mean, what the limitations are, and how the findings may influence clinical electrophysiology practice.Topics include: ESC Congress 2026 Munich SINGLE-AF trial atrial fibrillation and anticoagulation CHA₂DS₂-VA and intermediate stroke risk DOAC therapy CMR GUIDE trial cardiac MRI and late gadolinium enhancement myocardial scar and sudden cardiac death primary-prevention ICD therapy LVEF greater than 35% 2026 ESC Heart Failure Guidelines HFrEF and HFpEF Fifth Universal Definition of Myocardial Infarction Type 2 MI and tachyarrhythmias nicotine and cardiovascular disease vaping and cardiovascular risk artificial intelligence in cardiovascular imaging AI mammography and cardiovascular screening cardiac electrophysiology sudden cardiac death risk
In this EP Edge and Heart Rhythm Society collaborative podcast, Dr. Niraj Sharma and Dr. Mike Lloyd examine new evidence challenging several long-standing assumptions in cardiac electrophysiology: when to choose catheter ablation over antiarrhythmic drug therapy for atrial fibrillation, whether left bundle branch area pacing should replace conventional right ventricular pacing in patients who require substantial ventricular pacing, and how broadly the lessons of CAST should continue to restrict flecainide and other Class Ic antiarrhythmic drugs.The atrial fibrillation discussion brings together two complementary 2026 Heart Rhythm meta-analyses. Demy L. Idema and colleagues evaluated antiarrhythmic drugs versus catheter ablation for rhythm control across randomized controlled trials, focusing on AF recurrence, hospitalization, mortality, and treatment-related complications. Marwan Shawki and colleagues examined the safety of catheter ablation versus antiarrhythmic drugs across 24 randomized trials involving 6,665 participants. Together, the studies raise an important contemporary question: as ablation becomes more effective and procedural safety improves, does antiarrhythmic drug therapy still deserve an automatic position ahead of ablation in the AF treatment pathway?The discussion then turns to physiologic pacing and the PACE-HF trial by Jenish P. Shroff and colleagues, published in the European Heart Journal. In this prospective randomized trial, left bundle branch area pacing was compared with conventional right ventricular pacing in patients with preserved or mildly reduced left ventricular ejection fraction who were expected to require substantial ventricular pacing. The trial provides randomized evidence on ventricular function, pacing burden, heart failure hospitalization, and the potential consequences of chronic nonphysiologic right ventricular activation.Finally, the podcast revisits flecainide more than three decades after the Cardiac Arrhythmia Suppression Trial (CAST). The discussion incorporates the systematic review by Li and colleagues in Heart Rhythm examining how CAST reshaped flecainide research and clinical use, together with the nationwide cohort study by T.-C. Huang and colleagues in Heart Rhythm evaluating Class Ic antiarrhythmic therapy after PCI in patients with new-onset atrial fibrillation. The central question is not whether CAST was correct in the post-myocardial-infarction population it studied, but whether its findings have been extrapolated too broadly to contemporary patients with stable or revascularized coronary disease, preserved ventricular function, and atrial rather than ventricular arrhythmias.Across atrial fibrillation ablation, conduction-system pacing, and Class Ic antiarrhythmic therapy, the episode asks a common question: when new evidence challenges an established electrophysiology default, when is the evidence strong enough to change everyday practice?Studies DiscussedIdema DL, et al. Antiarrhythmic drugs vs catheter ablation as rhythm control for atrial fibrillation: A systematic review and meta-analysis of randomized controlled trials. Heart Rhythm. 2026;23:1465-1475.Shawki M, et al. Safety of catheter ablation compared with antiarrhythmic drugs for atrial fibrillation: A systematic review and meta-analysis of randomized trials. Heart Rhythm. 2026;23:1453-1464.Shroff JP, et al. Left bundle branch area pacing vs right ventricular pacing in preserved or mildly reduced ejection fraction: the PACE-HF trial. European Heart Journal. 2026;47:3298-3300.Li et al. Flecainide use before and after the Cardiac Arrhythmia Suppression Trial: A systematic review. Heart Rhythm. 2026.Huang TC, et al. Class Ic antiarrhythmic therapy after PCI in new-onset atrial fibrillation: Safety and clinical outcomes from a nationwide cohort. Heart Rhythm. 2026;23:e1372-e1382.
What can nine carefully selected studies teach us about the changing practice of cardiac electrophysiology?In EP Edge® Journal Watch Issue 34, August 2026, Dr. Sharma provides a clinically focused review of emerging evidence across atrial fibrillation, pulsed field ablation, implantable cardiac devices, sudden death prevention, resuscitation, occupational radiation safety, and postural orthostatic tachycardia syndrome.This episode examines whether transvenous and subcutaneous ICD shocks produce different patterns of myocardial injury; the incidence and clinical meaning of migraine following pulsed field ablation; whether routine mechanical CPR improves meaningful survival after out-of-hospital cardiac arrest; and why hemolysis and renal effects may differ among PFA platforms and workflows.Dr. Sharma also explores the FINE-HEART analysis of finerenone and sudden death, the LOSE-AF randomized trial of weight loss in older patients with persistent atrial fibrillation, occupational radiation exposure during pregnancy, the prognostic significance of skin thickness over cardiac implantable electronic devices, and a randomized crossover comparison of ivabradine and propranolol for POTS.Rather than simply reciting percentages and P values, the discussion explains why each study was undertaken, how it was designed, what its principal statistical findings mean, where uncertainty remains, and how the results might—or might not—affect clinical practice. Each analysis concludes with the EP Edge take: a practical interpretation for physicians, trainees, nurses, allied professionals, and others caring for patients with heart-rhythm disorders.The episode also previews the early September 2026 arrival of EPEdge.org and the EP Edge app. Built around Knowledge · Access · Humanity, the new platform will bring together EP Edge Analytics, EP Edge Academy, CME and MOC opportunities, EP Edge Rx, practical clinical resources, and the complete EP Edge newsletter archive.And don’t miss next week’s must-listen collaborative issue with the Heart Rhythm Society.READ AND SUBSCRIBEEP Edge Journal Watch on LinkedIn:https://lnkd.in/e-Wa4diCEP Edge Newsletter on LinkedIn:https://lnkd.in/ep3NdZUzEP Edge on Substack:https://epedge.substack.comEPEdge.org—launching in early September 2026:https://epedge.org
How long should anticoagulation continue after an apparently successful atrial fibrillation ablation? Should prophylactic pulmonary vein isolation be added during typical atrial flutter ablation in patients with heart failure? What do emerging data reveal about neurologic events, hemolysis, and renal safety with pulsed-field ablation?In EP Edge® Journal Watch Issue 33, August 2026, Dr. Sharma provides a clinically focused and thought-provoking review of nine important cardiac electrophysiology studies published in Heart Rhythm and JACC: Clinical Electrophysiology.This episode examines: The proposed 8.1-month timing for oral anticoagulant discontinuation after successful AF ablation Prophylactic pulmonary vein isolation in patients with typical atrial flutter and heart failure Lesion delivery, irrigation rates, and neurovascular events with pulsed-field ablation PFA-associated hemolysis, acute kidney injury, and platform-specific renal safety Transvenous lead extraction outcomes in patients with prior sternotomy First-in-human vibration-based lead extraction The line-of-block pacing maneuver for distinguishing AV nodal from accessory pathway conduction The SCAAF-ERS electrocardiographic score for sudden cardiac arrest risk in atrial fibrillation A gain-of-function KCNJ8 variant linked with inherited and acquired J-wave syndromes Rather than simply listing study results, Dr. Sharma explains why each investigation was needed, what clinical uncertainty it attempted to resolve, how the methodology affects interpretation, and what the principal statistics mean in practical terms. Each paper concludes with the EP Edge Take, including the potential implications for current practice, the limitations that should temper interpretation, and the questions that future research must answer.The episode also includes updates on the EP Edge® app, the new epedge.org website, and the upcoming EP Edge® Journal Watch collaboration with the Heart Rhythm Society.Full references, study graphics, and the complete written analysis are available through the EP Edge® Journal Watch newsletter on LinkedIn and on Substack at epedge.substack.com.Questions, suggestions, or concerns can be sent to epedge.cast@gmail.com.
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Welcome to EP Edge Journal Watch, where cardiac electrophysiology meets evidence, precision, and perspective. Hosted by Dr. Niraj Sharma, this podcast distills high-impact cardiovascular and Cardiac Electrophysiology and arrhythmia research into clear, clinically meaningful insights. Each episode goes beyond headlines and abstracts to uncover what new studies actually mean for patient care, decision-making, and the future of electrophysiology. What EP Edge Journal Watch stands for: Evidence-based practice Precision electrophysiology, arrhythmias analysis A forward-thinking, edge-driven approach to how we interpret and apply data in real-world clinical settings. Whether you’re an electrophysiologist, cardiologist, researcher, trainee, or allied health professional, EP Edge Journal Watch brings you the signal not the noise. Expect sharp summaries, thoughtful commentary, and practical takeaways designed for the busy clinician who wants to stay ahead of the curve
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