Qi Lin, Wang Xiaona, Meng Max Q
Department of Electronic Engineering, the Chinese University of Hong Kong, Hong Kong.
Int J Numer Method Biomed Eng. 2014 Sep;30(9):845-56. doi: 10.1002/cnm.2631. Epub 2014 Feb 18.
Three-dimensional finite element modeling and analysis are made to simulate the dynamic process of bone drilling during the orthopedic surgery. This study is proposed to evaluate the performance of various surgical tools and the possible pre-operative biohazard. In the simulation, the strain-stress curve of the bone is divided into linear elastic region and nonlinear plastic region according to the strain range. Rigid-plasticity and elasto-plasticity are used as bone material. The performances of twist drill bit and hollow drill bit are evaluated. The results of finite element analysis give different patterns of stress distribution on the two types of bone models and drill bits. The FE simulations show dynamic drilling process that the drill bit penetrates through the bone model. In vitro drilling experiment on porcine femur is conducted to measure the drilling force for the validation of the FEM.
进行三维有限元建模与分析,以模拟骨科手术中骨钻孔的动态过程。本研究旨在评估各种手术工具的性能以及可能的术前生物危害。在模拟中,根据应变范围将骨的应力-应变曲线分为线弹性区域和非线性塑性区域。采用刚塑性和弹塑性作为骨材料。评估了麻花钻头和空心钻头的性能。有限元分析结果给出了两种类型的骨模型和钻头上不同的应力分布模式。有限元模拟显示了钻头穿透骨模型的动态钻孔过程。对猪股骨进行体外钻孔实验,测量钻孔力以验证有限元模型。