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Simulation-based Virtual Prototyping of Customized Catheterization Devices

机译:定制导尿管装置的基于仿真的虚拟样机

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摘要

Human vascular systems have considerable anatomic variations. In diseased situation, significant pathological changes will be developed with the systems. However, vascular catheterization devices commercially available are essentially designed on normal or average anatomy. Their inadequacies in representing major deviations in human vascular anatomy may present problems during diagnostic or therapeutic interventions. A virtual reality (VR) based simulation method is described in this paper for prototyping of customized patient-specific catheterization devices. Techniques are developed to model patient-specific vascular network, to design catheterization devices, and to simulate physical-based interactions between blood vessels and the devices. Emphasis is made on the integration of normal and variant vascular models, the integration of modeling, visualization and interaction, and the integration of real-time simulation and virtual prototyping.
机译:人体血管系统具有相当大的解剖学变化。在患病情况下,系统将发生重大病理变化。然而,可商购的血管导管插入装置基本上是按正常或平均解剖学设计的。它们在代表人体血管解剖学上的主要偏差方面的不足之处可能会在诊断或治疗干预过程中出现问题。本文介绍了一种基于虚拟现实(VR)的仿真方法,用于定制个性化患者专用导管插入设备的原型。开发了用于对患者特定的血管网络建模,设计导管插入设备以及模拟血管和设备之间基于物理的相互作用的技术。重点是正常和变异血管模型的集成,建模,可视化和交互的集成以及实时仿真和虚拟原型的集成。

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