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Integrated Approach for the Study of Anatomical Variability in the Cardiac Purkinje System: From High Resolution MRI to Electrophysiology Simulation

机译:Cardiac Purkinje系统中的解剖学变异性研究的综合方法:从高分辨率MRI到电生理模拟

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The ordered electrical stimulation of the ventricles is achieved by a specialized network of fibres known as the Purkinje system. The gross anatomy and basic functional role of the Purkinje system is well understood. However, very little is known about the detailed anatomy of the Purkinje system, its inter-individual variability and the implications of the variability in ventricular function, in part due to limitations in experimental techniques. In this study, we aim to provide new insight into the interindividual variability of the free running Purkinje system anatomy and its impact on ventricular electrophysiological function. As a first step towards achieving this aim, high resolution magnetic resonance imaging (MRI) datasets of rat and the rabbit ventricles are obtained and analysed using a novel semi-automatic image processing algorithm for segmentation of the free-running Purkinje system. Segmented geometry from the MRI datasets is used to construct a computational model of the Purkinje system, which is incorporated in to an anatomically-based ventricular geometry to simulate ventricular electrophysiological activity.
机译:心室的有序电刺激是通过称为Purkinje系统的专业纤维网络实现的。 Purkinje系统的总解剖和基本功能作用得到了很好的理解。然而,关于Purkinje系统的详细解剖,其个体间可变性和心室功能变异性的影响很少,部分原因是由于实验技术的限制。在这项研究中,我们的目标是对自由运行的Purkinje系统解剖学及其对心室电生理功能的影响提供新的洞察。作为实现该目的的第一步,使用新型半自动图像处理算法获得并分析大鼠大鼠和兔心室的高分辨率磁共振成像(MRI)数据集,用于分割自由运行的PurkinJE系统。来自MRI数据集的分段几何形状用于构建PurkinJe系统的计算模型,其被纳入解剖学的心室几何形状以模拟心室电生理活性。

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