1 Department of Computer Science and Engineering, College of Engineering, Qatar University, Qatar.
2 Department of Computer Engineering, Faculty of Engineering and Natural Sciences, Üsküdar University, Türkiye.
World Journal of Biology Pharmacy and Health Sciences, 2025, 23(02), 045–047
Article DOI: 10.30574/wjbphs.2025.23.2.0727
Received on 24 June 2025; revised on 30 July 2025; accepted on 02 August 2025
Accurate modeling of the heart's electrical activation is essential for simulating Body Surface Potential Maps (BSPMs) and understanding abnormal conduction patterns. This study investigates the simulation of two pathological conduction conditions—Left Bundle Branch Block (LBBB) and Right Bundle Branch Block (RBBB)—using a previously developed human heart model based on Diffusion Tensor Imaging (DTI). Two conduction network models were tested: a manually constructed network and a diffusion volume (DV)-based automated network. Pathological activation was simulated by applying conduction delays to the corresponding bundle branches. The manual model successfully reproduced electrograms consistent with reference vertical ECG leads, while the automated model failed to replicate realistic bundle splitting due to limitations in the region-growing method. These findings underscore the importance of accurate anatomical modeling in simulating abnormal cardiac activation and suggest areas for future improvement in automated conduction modeling.
Cardiac conduction system; LBBB; RBBB; Electrocardiogram (ECG) modeling; Arrhythmia modeling
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Ihab ELAFF. Modeling of LBBB and RBBB Abnormal Activations of the Heart. World Journal of Biology Pharmacy and Health Sciences, 2025, 23(02), 045-047. Article DOI: https://doi.org/10.30574/wjbphs.2025.23.2.0727.