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Experimental and numerical analysis of damage fracture mechanics of brain parenchyma

机译:脑干损伤骨折力学的实验性和数值分析

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In this paper, a damage and fracture model of brain parenchyma is proposed for a haptic brain surgery simulation. It is assumed that microscopic damage begins by von Mises yield criterion, and the microscopic damage grows rate in proportion to volume strain. Tensile tests with two different strain rate were conducted using porcine brain parenchyma (tensile velocities: 0.1 (mm/s) and 1.0 (mm/s), mean length of specimens: 15 (mm)). Mechanical properties and proposed damage model parameters were identified by solving optimization problem with fitted curves of experimental data at 0.1 (mm/s). The proposed model and identified parameters were verified by comparing the simulation result and experimental data with tensile velocity of 1.0 (mm/s). A conventional damage model, simplified Lemaitre model, was implemented for comparison. Tensile simulations were performed with two models, proposed model and simplified Lemaitre model, with tensile velocity of 0.1 (mm/s). The simulation results were compared with the experimental result. It is confirmed that the proposed model well reproduce damage and fracture mechanics of brain parenchyma, while the simplified Lemaitre model could not well reproduce the ductility.
机译:本文提出了脑膜脑膜脑膜脑手术模拟的损伤和骨折模型。假设显微损伤从von误率屈服标准开始,并且微观损伤的速率与体积应变成比例地增长。使用猪脑实质进行两种不同应变率的拉伸试验(拉伸速度:0.1(mm / s)和1.0(mm / s),平均标本的平均长度:15(mm))。通过在0.1(mm / s)的实验数据的拟合曲线求解优化问题,确定了机械性能和提出的损伤模型参数。通过将模拟结果和实验数据与拉速为1.0(mm / s)的仿真结果和实验数据来验证所提出的模型和识别的参数。实现了传统的损伤模型,简化的LEMAitre模型进行了比较。用两种模型,提出的模型和简化的LEMAITRE模型进行拉伸模拟,拉伸速度为0.1(mm / s)。将模拟结果与实验结果进行了比较。据证实,拟议的模型良好的脑干骨骼损伤和骨折力学,而简化的lemaitre模型不能很好地再现延展性。

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