首页> 外文期刊>American Journal of Physical Anthropology >Bone Microarchitecture at Muscle Attachment Sites: The Relationship Between Macroscopic Scores of Entheses and Their Cortical and Trabecular Microstructural Design
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Bone Microarchitecture at Muscle Attachment Sites: The Relationship Between Macroscopic Scores of Entheses and Their Cortical and Trabecular Microstructural Design

机译:肌肉附着部位的骨骼微体系结构:宏观宏观得分与其皮层和小梁微结构设计之间的关系

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The studies of entheses in bioarchaeology attempted to reconstruct the habitual physical activities of past populations. However, the studies of microarchitecture of the underlying bone are still lacking despite well-known potential of bone internal microarchitecture to reflect mechanical loading. It is unknown whether different morphological expressions of entheseal changes (ECs) correlate with the microstructural characteristics of the underlining bone. This study analyzed bone microstructural characteristics at the entheses. Our focus was on examining the possible successive nature of the three-stage scale of entheseal macroscopic changes by comparing EC scores with the microarchitectural features at the attachment sites. The study was based on the hypothesis that mechanical loading influences the microarchitecture of the bone at the attachment site. The bone samples were taken from 24 adult male skeletons from medieval cemeteries in Serbia, with different macroscopic expression score of EC. We evaluated the macroscopic and microscopic appearance of four entheses of the lower limbs (origin of the soleus muscle and the insertions of the adductor magnus, gluteus maximus, and iliopsoas muscles). The specimens were scanned using microcomputed tomography (Scanco mu CT 40). Our data showed a lack of consistent correlation between stages of the macroscopic scoring systems with microarchitecture at the entheses, only cortical thickness was significantly different between EC stages. Analyzing relationship between trabecular and cortical bone microstructure we found correlations between cortical and trabecular variables only in Stage C. Results of our study suggest that macroscopic EC might not represent distinct successive phases in bone adaptation to mechanical loading. Am J Phys Anthropol 157:81-93, 2015. (c) 2014 Wiley Periodicals, Inc.
机译:生物考古学的研究试图重建过去人群的习惯性体育活动。然而,尽管众所周知骨内部微结构反映机械负荷的潜力,但仍缺乏对底层骨微结构的研究。包膜变化(ECs)的不同形态表达是否与下颌骨的微结构特征相关尚不清楚。这项研究分析了骨质的骨微结构特征。我们的重点是通过比较EC得分与附着位点的微体系结构特征,检查三阶段尺度的宏观变化的可能性。这项研究基于以下假设:机械负载会影响附着部位的骨骼微结构。骨骼样品取自塞尔维亚中世纪公墓的24个成年男性骨骼,具有不同的EC宏观表达得分。我们评估了下肢的四个关节(比目鱼肌的起源以及内收肌,大臀肌和肌的插入)的宏观和微观外观。使用微型计算机断层扫描(Scanco mu CT 40)扫描样品。我们的数据显示,在宏评分系统的各个阶段之间,缺乏微体系结构之间缺乏一致的相关性,只有皮质厚度在EC阶段之间存在显着差异。分析骨小梁和皮质骨微结构之间的关系,我们发现骨皮质和骨小梁变量之间仅存在相关性。我们的研究结果表明,宏观EC可能无法代表骨骼对机械负荷的连续适应阶段。 2015年Am J Phys Anthropol 157:81-93。(c)2014 Wiley Periodicals,Inc.

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