Deformation resistance in soft tissue cutting: a parametric study

T. Chanthasopeephan, J. Desai, A. Lau
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引用次数: 7

Abstract

Characterizing and modeling of soft tissue deformation during cutting is important for developing a reality based haptic interaction model for surgical training and simulation. In this study, soft tissue cutting experiments were performed (ex-vivo) while monitoring the cutting forces and blade displacement for various cutting speeds (ranging from 0.1cm/sec-2.54cm/sec) and cutting angles (for 0/spl deg/ and 45/spl deg/ cutting angle). The measured force-displacement curves in all cases exhibit a characteristic pattern: repeating units formed by a segment of linear loading (deformation of tissue) and immediately followed by a segment of sudden unloading (localized crack extension in the tissue). This paper addresses the characterization of the deformation resistance during the deformation segment. The variation of this deformation resistance with cutting parameters is also determined. The deformation resistance to the cutting blade was quantified via a quantity designed as the local effective modulus (LEM) of the tissue. For a given cutting speed, the deformation resistance decreases as the cutting angle is varied from 0/spl deg/ to 45/spl deg/. For each cutting angle, the deformation resistance decreases with cutting speed. The variation of deformation resistance versus cutting speed is linear at 0/spl deg/ cutting angle and is nonlinear at 45/spl deg/ cutting angle.
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软组织切割中的变形抗力:参数化研究
切割过程中软组织变形的表征和建模对于建立基于现实的外科训练和仿真触觉交互模型至关重要。在本研究中,我们进行了离体软组织切割实验,同时监测了不同切割速度(0.1cm/秒-2.54cm/秒)和不同切割角度(0/spl°/和45/spl°/切割角度)下的切割力和叶片位移。在所有情况下测量的力-位移曲线都表现出一种特征模式:由一段线性加载(组织变形)和紧接着的一段突然卸载(组织中局部裂纹扩展)形成的重复单元。本文讨论了变形段中变形阻力的表征。确定了该变形抗力随切削参数的变化规律。通过组织的局部有效模量(LEM)来量化切削叶片的变形抗力。在切削速度一定的情况下,当切削角度从0/spl°到45/spl°时,变形阻力减小。对于每个切割角度,变形阻力随切割速度的增加而减小。变形抗力随切削速度的变化在0/spl°/切削角处呈线性变化,在45/spl°/切削角处呈非线性变化。
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