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马第三掌骨的骨单位拔出:体外疲劳的影响

Osteon pullout in the equine third metacarpal bone: effects of ex vivo fatigue.

作者信息

Hiller L P, Stover S M, Gibson V A, Gibeling J C, Prater C S, Hazelwood S J, Yeh O C, Martin R B

机构信息

Orthopaedic Research Laboratories, School of Medicine, University of California at Davis, 95616, USA.

出版信息

J Orthop Res. 2003 May;21(3):481-8. doi: 10.1016/S0736-0266(02)00232-2.

Abstract

An important concept in bone mechanics is that osteons influence mechanical properties in several ways, including contributing to toughness and fatigue strength by debonding from the interstitial matrix so as to "bridge" developing cracks. Observations of "pulled out" osteons on fracture surfaces are thought to be indicative of such behavior. We tested the hypothesis that osteon pullout varies with mode of loading (fatigue vs. monotonic), cortical region, elastic modulus, and fatigue life. Mid-diaphseal beams from the dorsal, medial, and lateral regions of the equine third metacarpal bone were fractured in four point bending by monotonic loading to failure under deflection control, with or without 10(5) cycles of previous fatigue loading producing 5000 microstrain (15-20% of the expected failure strain) on the first cycle; or sinusoidal fatigue loading to failure, under load or deflection control, with the initial cycle producing 10,000 microstrain (30-40% of the expected failure strain). Using scanning electron microscopy, percent fracture surface area exhibiting osteon pullout (%OP.Ar) was measured. Monotonically loaded specimens and the compression side of fatigue fracture surfaces exhibited no osteon pullout. In load-controlled fatigue, pullout was present on the tension side of fracture surfaces, was regionally dependent (occurring to a greater amount dorsally), and was correlated negatively with elastic modulus and positively with fatigue life. Regional variation in %OP.Ar was also significant for the pooled (load and deflection controlled) fatigue specimens. %OP.Ar was nearly significantly greater in deflection controlled fatigue specimens than in load-controlled specimens (p=0.059). The data suggest that tensile fatigue loading of cortical bone eventually introduces damage that results in osteonal debonding and pullout, which is also associated with increased fatigue life via mechanisms that are not yet clear.

摘要

骨力学中的一个重要概念是,骨单位通过多种方式影响力学性能,包括通过与间质基质脱粘以“桥接”正在形成的裂纹,从而有助于提高韧性和疲劳强度。骨折表面上“拔出”的骨单位的观察结果被认为是这种行为的指示。我们测试了以下假设:骨单位拔出随加载模式(疲劳与单调)、皮质区域、弹性模量和疲劳寿命而变化。马第三掌骨背侧、内侧和外侧区域的中骨干梁在四点弯曲中通过单调加载至破坏,在挠度控制下进行,有或没有先前10⁵次疲劳加载循环,在第一个循环中产生5000微应变(预期破坏应变的15 - 20%);或在载荷或挠度控制下进行正弦疲劳加载至破坏,初始循环产生10000微应变(预期破坏应变的30 - 40%)。使用扫描电子显微镜,测量了显示骨单位拔出的骨折表面积百分比(%OP.Ar)。单调加载的标本和疲劳骨折表面的压缩侧未显示骨单位拔出。在载荷控制的疲劳中,骨折表面的拉伸侧存在拔出,具有区域依赖性(在背侧出现的量更大),并且与弹性模量呈负相关,与疲劳寿命呈正相关。对于汇总的(载荷和挠度控制)疲劳标本,%OP.Ar的区域差异也很显著。挠度控制的疲劳标本中的%OP.Ar几乎显著高于载荷控制的标本(p = 0.059)。数据表明,皮质骨的拉伸疲劳加载最终会引入损伤,导致骨单位脱粘和拔出,这也通过尚不清楚的机制与疲劳寿命的增加相关。

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