An Analytical Model for Predicting the Deflection of Hollow Surgical Needle in Soft Tissue

Samer Al-Safadi, P. Hutapea
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引用次数: 1

Abstract

Considerable research efforts have been devoted for studying the interaction between surgical needles and soft tissues which can be used to evaluate the deflection of a bevel-tip needle inside a tissue. The development of an analytical model to predict the steering behavior of the needle during needle-tissue interactions could improve the performance of many percutaneous needle-based procedures. In this study, Euler-Bernoulli beam elastic foundation theory was utilized to model the needle as a cantilever beam moving along its longitudinal axis and undergoing various external loads. The external loads are the result of the interaction between the tissue and the needle during insertion, they can be modeled as a concentrated tissue cutting force acting at the needle bevel, and needle-tissue interaction forces acting along the needle length and tangent to the needle shaft. The accuracy of the analytical predictions offered by the model are verified by comparing them to the experimental data. Due to the assumption of the elastic tissue material, the difference between the analytical model and the experimental results was between 15% to 33%. Current work is ongoing to consider tissue viscoelastic properties to improve the analytical prediction.
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一种预测手术空心针在软组织内偏转的分析模型
为了评估斜尖针在组织内的挠度,对手术针与软组织之间的相互作用进行了大量的研究。一个分析模型的发展,以预测在针与组织相互作用过程中针的转向行为,可以改善许多经皮针为基础的程序的性能。本研究采用欧拉-伯努利梁弹性基础理论,将针作为沿其纵轴运动并承受各种外载荷的悬臂梁进行建模。外部载荷是针与组织相互作用的结果,它们可以被建模为作用于针斜角的集中组织切割力,以及沿针长和针轴切线方向作用的针与组织相互作用力。通过与实验数据的比较,验证了模型分析预测的准确性。由于假设了弹性组织材料,分析模型与实验结果的差异在15% ~ 33%之间。目前正在进行的工作是考虑组织的粘弹性特性,以提高分析预测。
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