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Validation of Viscoelastic and Nonlinear Liver Model for Needle Insertion from in Vivo Experiments

机译:体内实验中针插入的粘弹性和非线性肝模型的验证

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This paper shows the viscoelastic and nonlinear liver model for organ model based needle insertion, in which the deformation of an organ is estimated and predicted, and the needle trajectory is decided with organ deformation taken into consideration. An organ model including detailed material characteristics is important in order to achieve the proposed method. Firstly, the material properties of the liver are modeled from the measured data and its viscoelastic characteristics are represented by differential equations, including the term of the fractional derivative. Nonlinearity in terms of the stiffness was measured, and modeled using the quadratic function of strain. Next, a solution of an FE (Finite element) model using such material properties is shown. We use the sampling time scaling property as the solution for the viscoelastic system, while the solution for a nonlinear system using the Euler method and the Modified Newton-Raphson method is also shown. Finally, the deformation of liver model is calculated and pig liver of in vivo situation is obtained from medical ultrasound equipment. Comparing the relationship between needle displacement and force on real liver and liver model, we validate the proposed model.
机译:本文示出了粘弹性和非线性模型肝脏器官的基于模型的针插入,其中器官的变形估计和预测的,并且针轨迹决定与考虑到器官变形。包括详细的材料特性的器官模型是为了实现所提出的方法非常重要。首先,肝脏的材料特性是从所述测量数据建模和它的粘弹性特性是由微分方程,包括分数分值的项表示。非线性在刚度方面进行测定,并使用菌株的二次函数来建模。接着,使用这样的材料性质的FE(有限元)模型中的溶液被示出。我们使用采样时间缩放特性作为所述粘弹性体系中的溶液,同时还示出用于使用欧拉法和修正的Newton-Raphson方法的非线性系统的解决方案。最后,肝脏模型的变形被计算并且从医疗超声设备获得的体内情况猪肝。比较真实肝和肝模型针位移和力之间的关系,我们验证了模型。

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