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首页> 外文期刊>Journal of Human Evolution >Trabecular bone structural variation throughout the human lower limb
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Trabecular bone structural variation throughout the human lower limb

机译:整个人类下肢的小梁骨结构变化

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Trabecular bone is responsive to mechanical loading, and thus may be a useful tool for interpreting past behaviour from fossil morphology. However, the ability to meaningfully interpret variation in archaeological and hominin trabecular morphology depends on the extent to which trabecular bone properties are integrated throughout the postcranium or are locally variable in response to joint specific loading. We investigate both of these factors by comparing trabecular bone throughout the lower limb between a group of highly mobile foragers and two groups of sedentary agriculturalists. Trabecular bone structure is quantified in four volumes of interest placed within the proximal and distal joints of the femur and tibia. We determine how trabecular structures correspond to inferred behavioural differences between populations and whether the patterns are consistent throughout the limb. A significant correlation was found between inferred mobility level and trabecular bone structure in all volumes of interest along the lower limb. The greater terrestrial mobility of foragers is associated with higher bone volume fraction, and thicker and fewer trabeculae (lower connectivity density). In all populations, bone volume fraction decreases while anisotropy increases proximodistally throughout the lower limb. This observation mirrors reductions in cortical bone mass resulting from proximodistal limb tapering. The reduction in strength associated with reduced bone volume fraction may be compensated for by the increased anisotropy in the distal tibia. A similar pattern of trabecular structure is found throughout the lower limb in all populations, upon which a signal of terrestrial mobility appears to be superimposed. These results support the validity of using lower limb trabecular bone microstructure to reconstruct terrestrial mobility levels from the archaeological and fossil records. The results further indicate that care should be taken to appreciate variation resulting from differences in habitual activity when inferring behaviour from the trabecular structure of hominin fossils through comparisons with modern humans. (C) 2016 Elsevier Ltd. All rights reserved.
机译:小梁骨对机械负荷有反应,因此可能是从化石形态解释过去行为的有用工具。但是,有意义地解释考古学和人的骨小梁形态变化的能力取决于小梁骨特性在整个颅骨后的整合程度或响应关节特定载荷而局部变化的程度。我们通过比较一组高度活动的觅食者和两组久坐的农耕者之间整个下肢的小梁骨来研究这两个因素。在放置在股骨和胫骨近端和远端关节内的四个感兴趣的体积中,对小梁的骨结构进行量化。我们确定小梁结构如何与人群之间的推断行为差异相对应,以及整个肢体的模式是否一致。在下肢所有感兴趣的体积中,推断出的活动度与小梁骨结构之间存在显着相关性。觅食者的陆地活动性越高,骨体积分数越高,小梁越厚越小(连接密度越低)。在所有人群中,整个下肢的骨体积分数均减小,而各向异性则增大。该观察结果反映了由于近前肢逐渐变细而导致的皮质骨量减少。与减小的骨体积分数相关的强度降低可以通过胫骨远端的各向异性增加来补偿。在所有人群的整个下肢中都发现了类似的骨小梁结构,在其上似乎叠加了地面运动信号。这些结果支持使用下肢骨小梁的骨微结构从考古和化石记录重建地面活动性水平的有效性。结果进一步表明,当通过与现代人类的比较从人化石化石的小梁结构推断行为时,应注意欣赏由于习惯活动差异引起的变异。 (C)2016 Elsevier Ltd.保留所有权利。

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