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Analysis of Dynamic Tissue Deformation during Needle Insertion into Soft Tissue

机译:针插入软组织的动态组织变形分析

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Tissue deformation is one of the most significant factors, which effects the needle placement inside the soft tissue. Based on the analysis, a tissue deformation model is presented to quantify the volume of tissue deformation. The geometry of tissue deformation is analyzed, and the cone is used to approximate the shape of tissue deformation. The methods for measuring the depth and radius of tissue deformation are introduced to calculate the volume of tissue deformation. The dynamic needle-tissue interactions are investigated, and the potential, kinetic, dissipated, viscous and strain energies are analyzed based on the energy conservation law. The needle insertion experimental setup, consisting of a linear actuator, a force sensor, a needle, a tissue container and a light, is constructed to obtain the test data. The experiments are performed on the artificial tissue specimens, and the energy-based fitting model for the tissue deformation is presented to estimate the volume of deformation. The results show that the model could predict the volume of tissue deformation and determine the zone of tissue deformation.
机译:组织变形是最重要的因素之一,它影响了软组织内的针头放置。基于分析,提出了一种组织变形模型来量化组织变形的体积。分析组织变形的几何形状,并且锥体用于近似组织变形的形状。引入测量组织变形深度和半径的方法,以计算组织变形的体积。研究了动态针组织相互作用,基于节能法分析了电位,动力学,耗散,粘性和应变能量。构造由线性致动器,力传感器,针,组织容器和光组成的针插入实验设置以获得测试数据。实验在人工组织标本上进行,并且提出了用于组织变形的基于能量的拟合模型以估计变形的体积。结果表明,该模型可以预测组织变形的体积,并确定组织变形区域。

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