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骨形态对人股骨和胫骨骨折韧性的影响。

The influence of bone morphology on fracture toughness of the human femur and tibia.

作者信息

Yeni Y N, Brown C U, Wang Z, Norman T L

机构信息

Department of Mechanical and Aerospace Engineering, West Virginia University, Morgantown 26506-9196, USA.

出版信息

Bone. 1997 Nov;21(5):453-9. doi: 10.1016/s8756-3282(97)00173-7.

Abstract

The influence of porosity, osteon density, osteonal area, osteonal lamellar area, osteon size, and haversian canal size on the tension and shear fracture toughness, that is, the mode I and mode II strain energy release rate (GIc and GIIc), respectively, were investigated for the human femur and the tibia. The results suggest that porosity and osteon density were the best explanatory morphological parameters for GIc and GIIc. Both GIc and GIIc significantly decrease with increasing porosity. They also increase with increasing osteon density, the increase being significant for the femur only. Morphological parameters, altogether, can explain 49%-68% of the variation in fracture toughness. We concluded that, although there must be other factors such as biochemical components and microdamage, osteon morphology has an important influence on fracture resistance of the cortical bone.

摘要

针对人类股骨和胫骨,研究了孔隙率、骨单位密度、骨单位面积、骨单位板层面积、骨单位大小和哈弗斯管大小对拉伸和剪切断裂韧性(即分别为I型和II型应变能释放率,GIc和GIIc)的影响。结果表明,孔隙率和骨单位密度是GIc和GIIc的最佳解释形态学参数。GIc和GIIc均随孔隙率增加而显著降低。它们也随骨单位密度增加而增加,仅股骨的增加具有显著性。总体而言,形态学参数可解释断裂韧性变化的49%-68%。我们得出结论,尽管肯定存在其他因素,如生化成分和微损伤,但骨单位形态对皮质骨的抗骨折能力具有重要影响。

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