Introduction: This study evaluates various formulae used to correct the QT interval in patients with wide QRS complexes to calculate corrected QT (QTc) following Cardiac Resynchronisation Therapy (CRT).
Methods: We included patients with severe heart failure and left bundle branch block, presenting with a QRS duration of at least 120 milliseconds, who underwent successful CRT implantation. Patients were excluded if they had non-lateral left ventricular lead placement, metabolic disorders, atrial fibrillation, atrial tachycardia, or high-degree atrioventricular block prior to implantation. QT intervals were measured pre- and post-implantation and corrected for QRS duration and heart rate using the Boggosian, Wand, Rautaharju, Yankelson, Tang & Rabkin, Bazett, Framingham, Hodges and Fredericia formulae.
Results: A total of 51 patients met the study criteria. After CRT, the QRS duration significantly decreased from 189.68 ± 18.06 milliseconds to 165.25 ± 18.78 milliseconds. However, the QT interval corrected using Bazett's formula showed no significant change (522.30 ± 33.37 milliseconds versus 524.06 ± 36.52 milliseconds). Among the various correction methods, the combination of the Bogossian formula (for QRS duration) followed by the Hodges formula (for heart rate), or the Rautaharju formula followed by the Fredericia formula, produced comparable QT intervals. Similarly, correcting heart rate with the Fredericia formula followed by QRS correction with the Rautaharju formula yielded consistent results.
Conclusion: Our findings indicate that different formulae for correcting QT intervals for heart rate and QRS duration may yield varying results. Notably, the use of the Bogossian formula followed by the Hodges formula, or the combination of the Rautaharju and Fredericia formulae, produces relatively consistent QT intervals before and after CRT. Further research is needed to validate these findings.
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http://dx.doi.org/10.1016/j.jelectrocard.2025.153881 | DOI Listing |
J Electrocardiol
January 2025
Victorian Heart Institute, Monash University, Clayton, VIC, Australia; Victorian Heart Hospital, Clayton, VIC, Australia. Electronic address:
Introduction: This study evaluates various formulae used to correct the QT interval in patients with wide QRS complexes to calculate corrected QT (QTc) following Cardiac Resynchronisation Therapy (CRT).
Methods: We included patients with severe heart failure and left bundle branch block, presenting with a QRS duration of at least 120 milliseconds, who underwent successful CRT implantation. Patients were excluded if they had non-lateral left ventricular lead placement, metabolic disorders, atrial fibrillation, atrial tachycardia, or high-degree atrioventricular block prior to implantation.
Diagnostics (Basel)
January 2025
Department of Cardiology, Faculty of Medicine, Gazi University, 06560 Ankara, Turkey.
The impact of Celiac Disease (CD) is not only limited to the intestinal system, but extraintestinal manifestations may also be seen. In this context, cardiac manifestations have recently been the focus of attention. This study aimed to evaluate myocardial repolarization properties in CD patients by assessing the frontal QRS-T Angle (fQRS-T) on electrocardiography (ECG).
View Article and Find Full Text PDFJ Cardiovasc Electrophysiol
January 2025
Department of Cardiac Electrophysiology and Pacing, Arrhythmia Heart Failure Academy, The Madras Medical Mission, Chennai, Tamil Nadu, India.
Introduction: Permanent implantation of a DF-4 implantable cardiac defibrillator (ICD) lead in the left bundle branch area (LBBA-ICD) is the next paradigm in amalgamating cardiac resynchronization therapy (CRT) and defibrillation. We systematically investigated feasibility/success rate, procedural caveats, and complications associated with a permanent DF-4 LBBA ICD implant and pertinent data at short-term follow-up.
Methods: We prospectively attempted implantation of 7 Fr Durata (Abbott, Chicago, IL, USA) single coil DF-4 ICD lead at the LBBA using a fixed-curve non-deflectable CPS locator delivery sheath.
Sports (Basel)
January 2025
Exercise and Sport Sciences Department, Metropolitan State University of Denver, Denver, CO 80204, USA.
Background: High-intensity endurance training induces specific cardiac adaptations, often observed through electrocardiographic (ECG) changes. This study investigated the prevalence of ECG abnormalities in national-level Australian triathletes compared to sedentary controls.
Methods: A cross-sectional observational study was conducted involving 22 triathletes and 7 sedentary controls.
Am J Transl Res
December 2024
Department of Cardiology, The Second Affiliated Hospital of Nanchang University Nanchang 330006, Jiangxi, China.
Objective: To evaluate systematically the feasibility and effectiveness of His Bundle Pacing (HBP) for cardiac resynchronization therapy.
Methods: A comprehensive search was conducted in PubMed, EMbase, WOS, Cochrane Library, Medline, and SinoMed for studies published between December 2003 and December 2023. Primary clinical outcomes included implantation success, QRS wave duration, pacing threshold, left ventricular ejection fraction (LVEF), left ventricular end-diastolic diameter (LVEDD), New York Heart Association (NYHA) cardiac function class, and complications.
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