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Application of an object-oriented programming paradigm in three-dimensional computer modeling of mechanically active gastrointestinal tissues

机译:面向对象的编程范例在机械上活动的胃肠组织的三维计算机建模中的应用

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摘要

The aim of this study was to develop a novel three-dimensional (3-D) object oriented modeling approach incorporating knowledge of the anatomy, electrophysiology, and mechanics of externally stimulated excitable gastrointestinal (GI) tissues and emphasizing the "stimulus-response" principle of extracting the modeling parameters. The modeling method used clusters of class hierarchies representing GI tissues from three perspectives: 1) anatomical; 2) electrophysiological; and 3) mechanical. We elaborated on the first four phases of the object-oriented system development life-cycle: 1) analysis; 2) design; 3) implementation; and 4) testing. Generalized cylinders were used for the implementation of 3-D tissue objects modeling the cecum, the descending colon, and the colonic circular smooth muscle tissue. The model was tested using external neural electrical tissue excitation of the descending colon with virtual implanted electrodes and the stimulating current density distributions over the modeled surfaces were calculated. Finally, the tissue deformations invoked by electrical stimulation were estimated and represented by a mesh-surface visualization technique.
机译:这项研究的目的是开发一种新颖的面向对象的三维(3-D)建模方法,该方法结合了外部刺激性胃肠道(GI)组织的解剖学,电生理学和力学知识,并着重强调了“刺激响应”原理提取建模参数。该建模方法从三个方面使用了代表GI组织的类层次结构簇:1)解剖学; 2)电生理学; 3)机械的。我们详细介绍了面向对象系统开发生命周期的前四个阶段:1)分析; 2)设计; 3)实施;和4)测试。使用广义圆柱体来实现对盲肠,降结肠和结肠圆形平滑肌组织进行建模的3-D组织对象。使用带有虚拟植入电极的降结肠的外部神经电组织激励对模型进行了测试,并计算了建模表面上的刺激电流密度分布。最终,估计了由电刺激引起的组织变形,并通过网格表面可视化技术表示了变形。

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