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首页> 外文期刊>Progress in Biophysics and Molecular Biology: An International Review Journal >Rabbit-specific ventricular model of cardiac electrophysiological function including specialized conduction system
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Rabbit-specific ventricular model of cardiac electrophysiological function including specialized conduction system

机译:兔心脏电生理功能的特殊心室模型,包括专门的传导系统

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The function of the ventricular specialized conduction system in the heart is to ensure the coordinated electrical activation of the ventricles. It is therefore critical to the overall function of the heart, and has also been implicated as an important player in various diseases, including lethal ventricular arrhythmias such as ventricular fibrillation and drug-induced torsades de pointes. However, current ventricular models of electrophysiology usually ignore, or include highly simplified representations of the specialized conduction system. Here, we describe the development of an image-based, species-consistent, anatomically-detailed model of rabbit ventricular electrophysiology that incorporates a detailed description of the free-running part of the specialized conduction system. Techniques used for the construction of the geometrical model of the specialized conduction system from a magnetic resonance dataset and integration of the system model into a ventricular anatomical model, developed from the same dataset, are described. Computer simulations of rabbit ventricular electrophysiology are conducted using the novel anatomical model and rabbit-specific membrane kinetics to investigate the importance of the components and properties of the conduction system in determining ventricular function under physiological conditions. Simulation results are compared to panoramic optical mapping experiments for model validation and results interpretation. Full access is provided to the anatomical models developed in this study
机译:心脏中的心室专用传导系统的功能是确保心室的协调电激活。因此,它对心脏的整体功能至关重要,并且还被认为是各种疾病的重要参与者,包括致命性室性心律失常,例如室颤和药物诱发的尖端扭转型室速。然而,当前的电生理心室模型通常忽略或包括专门传导系统的高度简化的表示。在这里,我们描述了基于图像的,物种一致的,解剖学上详细的兔心室电生理模型的开发,该模型结合了专门传导系统的自由运行部分的详细描述。描述了用于从磁共振数据集构建专用传导系统的几何模型以及将系统模型集成到由同一数据集开发的心室解剖模型中的技术。使用新型解剖模型和兔特异性膜动力学对兔心室电生理进行计算机模拟,以研究在生理条件下确定心室功能的传导系统的组成和性质的重要性。将模拟结果与全景光学映射实验进行比较,以进行模型验证和结果解释。可以完全访问本研究中开发的解剖模型

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