在Autodesk Maya环境中基于肌肉纤维宏观结构的心脏收缩功能模拟

Мария Титова, M. Titova, Татьяна Томчинская, T. Tomchinskaya
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引用次数: 0

摘要

提出了心脏收缩功能的动态仿真模型。收缩功能仿真是根据人体解剖学图集对肌纤维的结构进行建模,并利用肌纤维的几何形状参数作为控制收缩的参数。研究了心肌肌纤维结构和心脏供血结构的基本概念。提出了一种局部参数化心脏收缩功能的算法,通过特殊的控制功能模拟血流和传导干扰。该仿真模型的算法仅以心脏左心室为例进行说明,而嵌入到心脏心室复合体的完整三维模型中。仿真模型在Autodesk Maya工具环境中作为固态参数化模型实现,由嵌入式Python语言中的程序管理。将计算结果与OpenCMISS软件的计算结果进行了比较,结果更有利于OpenCMISS软件。它计划继续与执行最先进的心肌结构的概念激流- guasp与电兴奋和血液供应网络一起工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of Contractile Heart Function in the Autodesk Maya Environment Based on Muscle Fiber Macro-Structure
A dynamic simulation model of the contractile function of the heart is presented. The contractile function simulation is based on the modeling of the muscle fibers' structure according to the Atlas of human anatomy and the use of parameters of their geometric shape as parameters that control the contraction. The basic concepts of the architecture of muscle fibers of the myocardium and the structure of the blood supply to the heart are investigated. An algorithm is developed for local parameterization of the contractile function of the heart, which mimics blood flow and conduction disturbances via special control functions. The algorithm of the simulation model is shown in the example of only the left ventricle of the heart but is embedded in the full three-dimensional model of the ventricular complex of the heart. The simulation model is implemented as a solid-state parameterized model in the Autodesk Maya tool environment, managed by a program in the embedded Python language. The result is compared with the results of the OpenCMISS software in favor of the latter. It is planned to continue work with the implementation of the most advanced concept of the myocardial architecture of Torrent-Guasp together with the networks of electrical excitation and blood supply.
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