Melvin J W
Biomedical Science Department, General Motors Corporation, Warren, MI 48090.
J Biomech Eng. 1993 Nov;115(4B):549-54. doi: 10.1115/1.2895538.
This paper reviews the progress that has been made in applying the principles of fracture mechanics to the topic of fracture of long bones. Prediction of loading conditions which result in the propagation of fractures in bones has been of interest to the field of trauma biomechanics and orthopedics for over one hundred years. Independent verifications, by various investigators, of bone fracture mechanics parameters are reviewed and investigations of the effects of bone density and specimen thickness on the critical fracture mechanics parameters and of other factors such as critical crack length and plastic zone size in bovine femoral bone, and the effects of crack velocity on fracture mechanics parameters in bovine tibial bone are discussed. It took over ten years for the techniques of bone fracture mechanics to be applied to human compact bone, due primarily to geometric constraints from the smaller size of human bones. That work will be reviewed along with other continuing work to define the orientation dependence of the fracture mechanics parameters in bone and to refine the experimental techniques needed to overcome the geometric constraints of specimen size. A discussion is included of work still needed to determine fracture mechanics parameters for transverse and longitudinal crack propagation in human bone and to establish the effects of age on those parameters. Finally, a discussion will be given of how this knowledge needs to be extended to allow prediction of whole bone fracture from external loading to aid in the design of protective systems.
本文回顾了在将断裂力学原理应用于长骨骨折这一课题方面所取得的进展。在创伤生物力学和骨科领域,预测导致骨骼骨折扩展的载荷条件已有一百多年的历史了。本文综述了不同研究者对骨折力学参数的独立验证,并讨论了骨密度和样本厚度对关键骨折力学参数的影响,以及诸如牛股骨的临界裂纹长度和塑性区尺寸等其他因素的影响,还讨论了裂纹速度对牛胫骨骨折力学参数的影响。由于人体骨骼尺寸较小带来的几何约束,骨折力学技术应用于人体密质骨花费了十多年时间。该项工作将与其他持续开展的工作一同进行回顾,这些工作旨在确定骨骼中骨折力学参数的方向依赖性,并完善克服样本尺寸几何约束所需的实验技术。文中还讨论了仍需开展的工作,即确定人体骨骼横向和纵向裂纹扩展的骨折力学参数,以及确定年龄对这些参数的影响。最后,将讨论如何扩展这一知识,以便根据外部载荷预测全骨骨折,从而辅助防护系统的设计。