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首页> 外文期刊>Journal of intelligent material systems and structures >Three-Dimensional Reconstruction of a Cerebral Stent using Micro-CT for Computational Simulation
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Three-Dimensional Reconstruction of a Cerebral Stent using Micro-CT for Computational Simulation

机译:使用Micro-CT进行脑支架的三维重建以进行计算仿真

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摘要

The surface geometry of an intracranial stent (ICS) for a cerebral aneurysm is reconstructed by using micro-CT to import computational fluid simulations. The reconstructed stent with STL format is composed of 170,948 triangles with 0.04 mm spatial resolutions. The boundary condition of the surface is clear without any reflection effects by X-ray introduced into the stainless steel stent. The computational simulations of blood flow with small implants, such as a stent or coil will be a designable way to control blood flow in/on a cerebral aneurysm and repair the disease. Micro-CT has a possibility of detecting the 3-D geometry of a small implant, such as ICS and may be useful to 3-D reconstruction and integration to computational simulation.
机译:通过使用微型CT导入计算流体模拟来重建用于脑动脉瘤的颅内支架(ICS)的表面几何形状。重建的STL格式支架由170,948个三角形(空间分辨率为0.04 mm)组成。表面的边界条件是清晰的,没有因引入不锈钢支架的X射线而产生任何反射效应。使用小型植入物(例如支架或线圈)进行血流的计算模拟将是一种控制脑动脉瘤内/上的血流并修复疾病的可设计方法。 Micro-CT具有检测小型植入物(例如ICS)的3-D几何形状的可能性,并且可能对3-D重建和计算仿真的集成有用。

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