HOT CRT-The Effective Combination of Conventional Cardiac Resynchronization and His Bundle Pacing
Peter-Stephan Wolff1, Anna Winnicka2, Adam Ciesielski2
1Department of Cardiology, Augusta Hospital Düsseldorf, Academic Teaching Hospital of the University, Faculty of Health, 40472 Düsseldorf, Germany.
Insights
His-Optimal-CRT (HOT-CRT) offers a solution for heart failure patients with atrial fibrillation and atypical QRS morphology, improving therapy efficacy and electromechanical sequence.
Area of Science:
- Cardiology
- Electrophysiology
- Medical Devices
Background:
- Cardiac Resynchronization Therapy (CRT) limitations include atrial fibrillation (AF) and atypical QRS morphology, reducing efficacy.
- Non-left bundle branch block (LBBB) patterns diminish CRT response in heart failure patients.
- Alternative pacing strategies are needed for patients unresponsive to conventional CRT.
Observation:
- Two patients with AF, heart failure, and wide QRS underwent His pacing combined with LV pacing (HOT-CRT).
- Patients were monitored for clinical, ECG, and echocardiographic improvements over three months.
- HOT-CRT systems were modified from standard CRT-D systems.
Findings:
- HOT-CRT successfully shortened QRS duration to approximately 120 ms.
- NYHA functional class improved, and ejection fraction (EF) increased by ~12%.
- Significant reduction in mitral regurgitation was observed.
Implications:
- HOT-CRT is a feasible alternative for heart failure patients with AF and non-LBBB morphology.
- This approach can partially restore physiological ventricular activation and improve electromechanical sequence.
- Consideration of alternative pacing sites like His-Optimal-CRT is crucial when conventional CRT fails.
Abstract:
Background and Objectives: Cardiac Resynchronization Therapy (CRT) has, besides its benefits, various limitations. For instance, atrial fibrillation (AF) has a huge impact on the therapy efficacy. It usually reduces the overall BiV pacing percentage and leads, inevitably, to lack of fusion beats. In many patients with heart failure that could benefit from resynchronization, the QRS morphology is often IVCD and atypical, or non-LBBB, which further diminishes the CRT response. In those cases, we established His pacing combined with LV pacing as a feasible option to reduce the impact of AF on the CRT response and regain partially physiological ventricular activation to improve the electromechanical sequence. Materials and Methods: We implanted two patients with AF, HF, EF < 35%, NYHA II-III and QRS > 150 ms with CRT-D systems modified to HOT-CRT and observed their clinical, ECG and echocardiographic improvements over a follow-up period of three months. Results: In both patients we observed improvements of the initial parameters. We were able to shorten the QRS duration to approx. 120 ms, improve NYHA functional class, increase the EF by approximately 12% and distinctly reduce mitral regurgitation. Conclusion: Since the conventional CRT reaches its limits within this specific patient group, we need to consider alternative pacing sites and the effective combination of them. Our results and respectively other studies that are also mentioned in the current guidelines, support the feasibility of HOT-CRT in the above mentioned patient group.
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