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Performance Evaluation of the Vascular Model Based on the Nonlinear Viscoelastic Tensor-Mass Method

机译:基于非线性粘弹性张量法的血管模型的性能评价

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The virtual training system of vascular interventional surgery can improve the operation level of novice interventional surgeons and reduce the training cost. The deformation simulation of vascular tissue is the key part of the virtual training system for vascular interventional surgery. This paper presents a vascular tissue model based on nonlinear viscoelastic tensor-mass method (NVTMM), which can realize real-time visual feedback and haptic feedback. The hyperelastic model is used to simulate the nonlinear viscoelastic behavior of blood vessels. Meanwhile, the Euler's implicit integration scheme is used to make the simulation results more stable. In addition, a haptic force feedback device is introduced for the interaction between the vascular model and the virtual medical instrument, which improves the authenticity of the simulation. Finally, the real-time performance and accuracy of NVTMM, MSM and FEM are compared through experiments. The results show that NVTMM method has high real-time performance and can reflect the nonlinear viscoelastic behavior of blood vessels to a certain extent.
机译:血管介入手术的虚拟培训系统可以改善新手介入外科医生的运作水平,降低培训成本。血管组织的变形模拟是血管介入手术虚拟训练系统的关键部分。本文介绍了基于非线性粘弹性张量法(NVTMM)的血管组织模型,可以实现实时视觉反馈和触觉反馈。超弹性模型用于模拟血管的非线性粘弹性行为。同时,欧拉的隐式集成方案用于使仿真结果更加稳定。另外,引入触觉力反馈装置,用于血管模型与虚拟医疗器械之间的相互作用,这提高了模拟的真实性。最后,通过实验比较了NVTMM,MSM和FEM的实时性能和准确性。结果表明,NVTMM方法具有高实时性能,可以在一定程度上反映血管的非线性粘弹性行为。

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