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横向各向同性软组织中针插入时组织破裂的力学机制。

Mechanics of tissue rupture during needle insertion in transverse isotropic soft tissue.

机构信息

School of Mechanical Engineering, Tianjin University, No. 135, Yaguan Road, Jinnan District, Tianjin City, 300354, China.

出版信息

Med Biol Eng Comput. 2019 Jun;57(6):1353-1366. doi: 10.1007/s11517-019-01955-6. Epub 2019 Feb 21.

Abstract

During robot-assisted percutaneous puncture surgery, a bevel-tipped needle is inserted into a fiber-structured soft tissue, which has transverse isotropic mechanical properties. Tissue rupture may lead to needle bending and insertion error. Therefore, analysis of the mechanics of rupture events in transverse isotropic space is essential for the precise control of needle motion. We analyzed the needle stiffness force and the cutting force, both related to rupture events, which are caused by contact deformation and tissue cutting, respectively. A modified model based on a homogeneous elastic half-space contact force model was used to describe the variation in the stiffness force of the needle. An energy-based maximum stiffness force model was proposed to predict the surface rupture for a needle that is inserted at different orientations. A model for the cutting force was presented based on a solid mechanics theory of unidirectional fiber-reinforced composite material to analyze the effect of the needle tip pose on the cutting force. Experiments on porcine muscle confirmed that the stiffness force and the cutting force were clearly influenced by the insertion orientation angle. The developed models could predict the stiffness force and the cutting force during needle insertion into the transverse isotropic tissue. This method provides a foundation for predicting needle deflection in the transverse isotropic space. Graphical abstract Force modeling for needle insertion in transverse isotropic soft tissue.

摘要

在机器人辅助经皮穿刺手术中,将斜面针尖插入具有横向各向同性力学特性的纤维结构软组织中。组织破裂可能导致针尖弯曲和插入误差。因此,分析横向各向同性空间中破裂事件的力学特性对于精确控制针尖运动至关重要。我们分析了与破裂事件相关的针尖刚度力和切割力,它们分别由接触变形和组织切割引起。使用基于均匀弹性半空间接触力模型的改进模型来描述针尖刚度力的变化。提出了基于单向纤维增强复合材料的固体力学理论的基于能量的最大刚度力模型,以预测不同取向插入时针尖的表面破裂。根据单向纤维增强复合材料的固体力学理论,提出了一种用于分析针尖姿态对切割力影响的切割力模型。在猪肌肉上进行的实验证实,刚度力和切割力明显受到插入方位角的影响。所开发的模型可以预测针尖插入横向各向同性组织时的刚度力和切割力。该方法为预测横向各向同性空间中的针尖偏转提供了基础。

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