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A new method for quantifying the complexity of muscle attachment sites

机译:一种量化肌肉附着部位复杂性的新方法

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Muscle attachment site morphology may have valuable use for reconstructing activity patterns in individuals from historic populations or extinct species. The skeletal locations where muscles and tendons attach are morphologically very complex, and variations in this morphology may reflect stresses experienced by these attachment sites as a result of muscular contractions. However, existing methods for assessing attachment site complexity are qualitative and subjective. This article describes a new method for quantifying attachment site complexity in which attachment sites are scanned with a 3D laser scanner and the morphological complexities of their surfaces are quantified using fractal analysis. The method described here documents the complexity at specific transects along six limb attachment sites in adult female sheep (Ovis aries), and variations in complexity within attachment sites are explored. Overall trends indicate that most of the attachment sites examined here are more complex at their peripheries than at their centers, indicating that these sites experience more varied loads at the peripheries of the tendon attachments. Exceptions to this trend are noted and all functional implications are discussed. This method provides the first opportunity to explore variations in morphological complexity within attachment sites. Assuming a relationship between tensile strains and bony morphology exists, this method provides a new tool to explore the strain environments of muscle attachment sites.
机译:肌肉附着部位的形态可能对重建历史人群或已灭绝物种的个体的活动模式具有重要用途。肌肉和肌腱附着的骨骼位置在形态上非常复杂,这种形态的变化可能反映了这些附着部位由于肌肉收缩而承受的压力。但是,现有的评估附着点复杂性的方法是定性和主观的。本文介绍了一种量化附着点复杂度的新方法,其中使用3D激光扫描仪扫描附着点,并使用分形分析来量化其表面的形态复杂性。此处描述的方法记录了成年雌性绵羊(Ovis aries)沿六个肢体附着点在特定断面处的复杂性,并探讨了附着点内复杂性的变化。总体趋势表明,此处检查的大多数附着点在其周边比其中心更复杂,这表明这些部位在腱附着的周边承受的载荷更多。记录了这种趋势的例外情况,并讨论了所有功能含义。该方法为探索附着位点内形态复杂性的变化提供了第一个机会。假设存在拉伸应变与骨形态之间的关系,该方法为探索肌肉附着部位的应变环境提供了新的工具。

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