首页> 外文期刊>IJIDeM: International Journal on Interactive Design and Manufacturing >Ellipsoid bounding region-based ChainMail algorithm for soft tissue deformation in surgical simulation
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Ellipsoid bounding region-based ChainMail algorithm for soft tissue deformation in surgical simulation

机译:基于椭将基于偏光的偏移基于外科仿真软组织变形的链条算法

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摘要

Real-time modelling of force interaction with soft tissues is of great importance for interactive surgical simulation. This paper presents a new ChainMail algorithm for real-time modelling of soft tissue deformation under force interaction. Unlike traditional ChainMails using a box-shaped bounding region, the proposed method defines an ellipsoid-shaped bounding region according to the concept of principal strains in continuum mechanics to control the movement of chain elements. Based on this ellipsoid-shaped bounding region, new position adjustment rules are developed and further integrated with temporal-domain model dynamics for dynamic simulation of soft tissue deformation. Haptic interaction with soft tissues is achieved via force input, soft tissue deformation, and force feedback. Experimental results demonstrate that the proposed ChainMail can simulate soft tissue mechanical behaviours, accommodate isotropic and homogeneous, anisotropic and heterogeneous materials, and handle large deformation. The proposed ChainMail also requires only small computational time, capable of achieving real-time computational performance.
机译:与软组织的力相互作用的实时建模对于交互式外科模拟具有重要意义。本文介绍了一种新的Chainmail算法,用于在力相互作用下的软组织变形实时建模。与使用盒形边界区域的传统链条不同,所提出的方法根据连续式力学中主菌株的概念来限定椭圆形边界区域,以控制链元素的运动。基于该椭圆形边界区域,开发了新的位置调整规则,并进一步与时间域模型动态相结合,用于动态模拟软组织变形。通过力输入,软组织变形和力反馈实现与软组织的触觉相互作用。实验结果表明,所提出的链牛可以模拟软组织机械行为,适应各向同性和均匀,各向异性和异质材料,并处理大变形。该拟议的链条仅需要小的计算时间,能够实现实时计算性能。

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