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构建外周心脏传导系统的计算解剖模型。

Construction of a computational anatomical model of the peripheral cardiac conduction system.

机构信息

Group for Computational Imaging and Simulation Technologies in Biomedicine, Department of Computer Science, Universitat de Valencia, Valencia 46100, Spain.

出版信息

IEEE Trans Biomed Eng. 2011 Dec;58(12):3479-82. doi: 10.1109/TBME.2011.2166553. Epub 2011 Sep 1.

Abstract

A methodology is presented here for automatic construction of a ventricular model of the cardiac conduction system (CCS), which is currently a missing block in many multiscale cardiac electromechanic models. It includes the His bundle, left bundle branches, and the peripheral CCS. The algorithm is fundamentally an enhancement of a rule-based method known as the Lindenmayer systems (L-systems). The generative procedure has been divided into three consecutive independent stages, which subsequently build the CCS from proximal to distal sections. Each stage is governed by a set of user parameters together with anatomical and physiological constrains to direct the generation process and adhere to the structural observations derived from histology studies. Several parameters are defined using statistical distributions to introduce stochastic variability in the models. The CCS built with this approach can generate electrical activation sequences with physiological characteristics.

摘要

这里提出了一种用于自动构建心脏传导系统 (CCS) 心室模型的方法,这在许多多尺度心脏机电模型中目前仍是一个缺失的部分。它包括希氏束、左束支和周围 CCS。该算法从根本上说是一种基于规则的方法,即 Lindenmayer 系统 (L-systems) 的增强版。生成过程分为三个连续的独立阶段,这些阶段依次从近端到远端构建 CCS。每个阶段都由一组用户参数以及解剖学和生理学约束来控制,以指导生成过程并遵循从组织学研究中得出的结构观察结果。使用统计分布定义了几个参数,以便在模型中引入随机可变性。通过这种方法构建的 CCS 可以生成具有生理特征的电激活序列。

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