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Age-related changes in cortical bone toughness: initiation vs. propagation

机译:与皮质骨韧性的年龄相关变化:启动与传播

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A number of fracture mechanics studies have characterized bone's resistance to fracture in terms of critical stress intensity factor and critical strain energy release rate measured at the onset of a fracture crack. These studies, although useful, provide a limited insight into fracture behavior of bone as, unlike classical brittle materials, bone is a microcracking solid that derives its resistance to fracture during the process of crack propagation from microfracture mechanisms occurring behind the advancing crack front. The objective of this study was to investigate the efficacy of a propagation approach in identifying age-related changes in bone toughness. Initiation and propagation tests conducted on human cortical bone compact specimens demonstrated different magnitudes of age-related toughness loss in initiation and propagation. Compared to initiation, propagation toughness of cortical bone declined twice as rapidly and reached a near zero value at the 10th decade. These results clearly illustrate that age-related decrease in bone's fracture resistance may be more drastic than currently perceived and that the propagation-based measure may be more sensitive to age-related changes in bone.
机译:在临界应力强度因子和临界应变能释放速率下,许多骨折力学研究表征了骨骼对骨折的抗性抗性,并且在裂缝裂纹的开始时测量。这些研究虽然有用,但对骨骼的断裂行为提供有限的洞察力,与古典脆性材料不同,骨是一种微裂纹固体,其在裂纹传播过程中产生对裂纹传播过程中的抗性的抗性,从而在推进裂缝前面发生的微折衷机制过程中。本研究的目的是探讨繁殖方法在识别骨骼韧性的年龄相关变化方面的疗效。对人皮质骨密度标本进行的启动和繁殖试验表现出在引发和繁殖中的不同年龄相关韧性损失的不同幅度。与开始相比,皮质骨的繁殖韧性随着速度下降两倍,在第10个十年内达到近零值。这些结果清楚地说明,在骨的抗断裂性,年龄相关的降低可能是更剧烈的比目前感知并且基于传播度量可以是在骨年龄有关的变化更为敏感。

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