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Thermal analysis of orthogonal cutting of cortical bone using finite element simulations

机译:使用有限元模拟对骨皮质进行正交切削的热分析

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摘要

Bone cutting is widely used in orthopaedic, dental and neuro surgeries and is a technically demanding surgical procedure. One of the major concerns in current research is thermal damage of the bone tissue caused by highspeed power tools, which occurs when temperature rises above a certain threshold value for the tissue known as bone necrosis. Hence, optimisation of cutting parameters is necessary to avoid thermal necrosis and improve current orthopaedic surgical procedures. In this study a thermo-mechanical finite element model of bone cutting is presented that idealises cortical bone as an equivalent homogeneous isotropic material. The maximum temperature in the bone was found in the region where the thin bone layer (chip) was separated from the bone sample that was adjacent to the tool rake (i.e., front face of the tool). Temperature values were calculated with the model and compared for cutting conditions with and without a coolant (irrigation). The influence of bone's thermal properties on the depth of thermal necrosis is discussed. The simulated cutting temperatures were compared with experimental results obtained in bone drilling tests. Simulations of the cutting processes identified critical variables and cutting parameters affecting thermo-mechanics of bone cutting.
机译:骨切割广泛用于骨科,牙科和神经外科,是一项对技术要求很高的外科手术。当前研究的主要问题之一是由高速电动工具引起的骨组织热损伤,当温度升高到组织的某个阈值以上(称为骨坏死)时,就会发生热损伤。因此,必须优化切削参数以避免热坏死并改善当前的整形外科手术程序。在这项研究中,提出了一种热力学的骨切割有限元模型,该模型将皮质骨理想化为等效的均质各向同性材料。在薄骨层(碎屑)与邻近工具耙(即工具的前表面)的骨样品分离的区域中发现了骨骼中的最高温度。用模型计算温度值,并比较有无冷却剂(灌溉)的切削条件。讨论了骨骼的热特性对热坏死深度的影响。将模拟的切割温度与在骨钻孔测试中获得的实验结果进行了比较。切割过程的仿真确定了影响骨切割热力学的关键变量和切割参数。

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