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Modeling the Purkinje Conduction System with a Non Deterministic Rule Based Iterative Method

机译:用非确定性规则基于迭代方法建模PURKINJE传导系统

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A method to construct a Purkinje system automatically for a particular subject is presented. The system is grown using a rule-based algorithm controlled by stochastic and probabilistic decisions that determine the particular structure of the model. A set of user customizable parameters control the final structure, and allow obtaining realistic Purkinje structures. The construction of the whole structure takes less than 30 s in a 2.4 GHz PC. The Purkinje system is built on a ventricular surface mesh previously obtained by segmentation. Geometrically, the system is modeled as a set of lines organized in a tree-like structure, so it can be included in a cardiac electrophysiological solver as a set of cables using a 1D type resolution method. The Purkinje systems obtained closely resemble real photographs and histological diagrams as for example Tawara and Myorburg ones.
机译:提出了一种为特定主题自动构建PURKINJE系统的方法。系统使用由基于规则的算法进行生长,该算法控制的随机和概率决策,确定模型的特定结构。一组用户可自定义的参数控制最终结构,并允许获得逼真的PurkinJe结构。整个结构的结构在2.4 GHz PC中花费不到30秒。 PURKINJE系统基于先前通过分割获得的心室表面网。几何上,系统被建模为以树状结构组织的一组线,因此可以使用1D型分辨率方法作为一组电缆包括在心脏电生理求解器中。 Purikje系统非常类似于真实照片和组织学图,例如Tawara和Myorburg。

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