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成年鹿、麋鹿、绵羊和马跟骨皮质骨活体微损伤与显著的区域性材料和应变异质性之间的关系。

Relationships between in vivo microdamage and the remarkable regional material and strain heterogeneity of cortical bone of adult deer, elk, sheep and horse calcanei.

机构信息

Department of Orthopaedic Surgery, University of Utah and the Utah Bone and Joint Center, Salt Lake City, UT, USA.

出版信息

J Anat. 2011 Dec;219(6):722-33. doi: 10.1111/j.1469-7580.2011.01428.x. Epub 2011 Sep 26.

Abstract

Natural loading of the calcanei of deer, elk, sheep and horses produces marked regional differences in prevalent/predominant strain modes: compression in the dorsal cortex, shear in medial-lateral cortices, and tension/shear in the plantar cortex. This consistent non-uniform strain distribution is useful for investigating mechanisms that mediate the development of the remarkable regional material variations of these bones (e.g. collagen orientation, mineralization, remodeling rates and secondary osteon morphotypes, size and population density). Regional differences in strain-mode-specific microdamage prevalence and/or morphology might evoke and sustain the remodeling that produces this material heterogeneity in accordance with local strain characteristics. Adult calcanei from 11 animals of each species (deer, elk, sheep and horses) were transversely sectioned and examined using light and confocal microscopy. With light microscopy, 20 linear microcracks were identified (deer: 10; elk: six; horse: four; sheep: none), and with confocal microscopy substantially more microdamage with typically non-linear morphology was identified (deer: 45; elk: 24; horse: 15; sheep: none). No clear regional patterns of strain-mode-specific microdamage were found in the three species with microdamage. In these species, the highest overall concentrations occurred in the plantar cortex. This might reflect increased susceptibility of microdamage in habitual tension/shear. Absence of detectable microdamage in sheep calcanei may represent the (presumably) relatively greater physical activity of deer, elk and horses. Absence of differences in microdamage prevalence/morphology between dorsal, medial and lateral cortices of these bones, and the general absence of spatial patterns of strain-mode-specific microdamage, might reflect the prior emergence of non-uniform osteon-mediated adaptations that reduce deleterious concentrations of microdamage by the adult stage of bone development.

摘要

鹿、麋鹿、绵羊和马的跟骨自然受力会导致其主要应变模式出现明显的区域性差异:背侧皮质受压,内外侧皮质受剪,足底皮质受张/剪。这种一致的非均匀应变分布有助于研究介导这些骨骼显著区域材料变化的机制(例如胶原取向、矿化、重塑率和次级骨单位形态类型、大小和种群密度)。应变模式特异性微损伤的流行率和/或形态的区域性差异可能会引发并维持重塑,从而根据局部应变特征产生这种材料异质性。从每个物种(鹿、麋鹿、绵羊和马)的 11 只动物的跟骨中横切并使用光镜和共聚焦显微镜进行检查。用光镜识别出 20 条线性微裂纹(鹿:10 条;麋鹿:6 条;马:4 条;绵羊:无),而共聚焦显微镜则识别出更多具有典型非线性形态的微损伤(鹿:45 条;麋鹿:24 条;马:15 条;绵羊:无)。在有微损伤的三种动物中,没有发现与应变模式特异性微损伤明显相关的区域模式。在这些物种中,最高的总体浓度出现在足底皮质。这可能反映了微损伤在习惯性张/剪中的更高易感性。绵羊跟骨中未检测到可检测的微损伤可能代表了(推测)鹿、麋鹿和马相对较高的身体活动量。这些骨骼的背侧、内侧和外侧皮质之间的微损伤流行率/形态差异不存在差异,且应变模式特异性微损伤的空间分布模式普遍不存在,这可能反映了非均匀骨单位介导的适应性的早期出现,这种适应性通过骨骼发育的成年阶段减少了微损伤的有害浓度。

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