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首页> 外文期刊>Journal of orthopaedic research >Role of trabecular microarchitecture in the formation, accumulation, and morphology of microdamage in human cancellous bone.
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Role of trabecular microarchitecture in the formation, accumulation, and morphology of microdamage in human cancellous bone.

机译:小梁微体系结构在人松质骨微损伤的形成,累积和形态中的作用。

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Alterations in microdamage morphology and accumulation are typically attributed to impaired remodeling, but may also result from changes in microdamage initiation and propagation. Such alterations are relevant for cancellous bone with high metabolic activity and numerous bone quality changes. This study investigates the role of trabecular microarchitecture on morphology and accumulation of microdamage in human cancellous bone. Trabecular bone cores from donors of varying ages and bone volume fraction (BV/TV) were separated into high and low BV/TV groups. Samples were subjected to no load or uniaxial compression to 0.6% (pre-yield) or 1.1% (post-yield) strain. Microdamage was stained with lead uranyl acetate and specimens were imaged via microcomputed tomography to quantify microdamage and determine its morphology in three-dimensions (3D). Donors with high BV/TV had greater post-yield strain and were tougher than low BV/TV donors. High BV/TV bone had less microdamage than low BV/TV bone under post- but not pre-yield loading. Microdamage under both loading conditions showed significant correlations with microarchitecture and BV/TV, but the key predictor was structure model index (SMI). As SMI increased (more trabecular rods), microdamage morphology became crack-like. Thus, low BV/TV and increased SMI have strong influences on microdamage accumulation in bone through altered initiation.
机译:微损伤形态和积累的变化通常归因于重塑受损,但也可能是微损伤引发和传播变化的结果。这种改变与具有高代谢活性和众多骨质变化的松质骨有关。本研究探讨了小梁微体系结构对人松质骨形态和微损伤累积的作用。将来自不同年龄和骨体积分数(BV / TV)的供体的小梁骨核分为高和低BV / TV组。对样品进行无载荷或单轴压缩至0.6%(屈服前)或1.1%(屈服后)应变。用乙酸铀酰铅对微损伤进行染色,并通过微计算机断层扫描对标本进行成像,以量化微损伤并确定其三维形态(3D)。 BV / TV高的捐助者比低BV / TV的捐助者具有更大的屈服后应变,并且更坚强。高BV / TV骨骼在屈服后而不是屈服前负荷下的微损伤比低BV / TV骨骼少。两种加载条件下的微损伤都与微体系结构和BV / TV有显着相关性,但关键的预测指标是结构模型指数(SMI)。随着SMI的增加(更多的小梁杆),微损伤形态变得像裂纹。因此,低BV / TV和SMI升高会通过改变引发对骨中的微损伤积累产生强烈影响。

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