Modeling of flexible needle for haptic insertion simulation

Xuejian He, Yonghua Chen, L. Tang
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引用次数: 4

Abstract

Needle buckling is commonly observed in the surgical procedure of flexible needle insertion. Unexpected buckling can seriously affect the insertion performances, and it should be avoided because it causes unstable and undesirable motion of the needle, thereby damages surrounding vital tissue structures. Although needle insertion simulation methods using haptic interfaces have been reported, yet no extensive study of needle buckle modeling and its haptic simulation can be found. Therefore, in this paper modeling methods of needle buckling in air, buckling in homogeneous tissue, and buckling in multi-layered tissues are proposed. An energy-based method is used to model the feedback force in the insertion procedure through a haptic interface. An experimental simulation system based on a haptic interface is developed.
柔性针的触觉插入仿真建模
针屈曲是外科手术中常见的软针插入现象。意外屈曲会严重影响针的插入性能,应避免,因为它会导致针的不稳定和不良运动,从而损害周围的重要组织结构。虽然已有基于触觉接口的针插入仿真方法的报道,但对针扣建模及其触觉仿真的研究尚不广泛。为此,本文提出了针在空气中的屈曲、在均匀组织中的屈曲和在多层组织中的屈曲的建模方法。基于能量的方法通过触觉界面对插入过程中的反馈力进行建模。开发了一种基于触觉界面的实验仿真系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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