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首页> 外文期刊>Acta biomaterialia >Micro-mechanical properties of the tendon-to-bone attachment
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Micro-mechanical properties of the tendon-to-bone attachment

机译:肌腱与骨附件的微机械性能

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摘要

The tendon-to-bone attachment (enthesis) is a complex hierarchical tissue that connects stiff bone to compliant tendon. The attachment site at the micrometer scale exhibits gradients in mineral content and collagen orientation, which likely act to minimize stress concentrations. The physiological micromechanics of the attachment thus define resultant performance, but difficulties in sample preparation and mechanical testing at this scale have restricted understanding of structure-mechanical function. Here, microscale beams from entheses of wild type mice and mice with mineral defects were prepared using cryo-focused ion beam milling and pulled to failure using a modified atomic force microscopy system. Micromechanical behavior of tendon-to-bone structures, including elastic modulus, strength, resilience, and toughness, were obtained. Results demonstrated considerably higher mechanical performance at the micrometer length scale compared to the millimeter tissue length scale, describing enthesis material properties without the influence of higher order structural effects such as defects. Micromechanical investigation revealed a decrease in strength in entheses with mineral defects. To further examine structure-mechanical function relationships, local deformation behavior along the tendon-to-bone attachment was determined using local image correlation. A high compliance zone near the mineralized gradient of the attachment was clearly identified and highlighted the lack of correlation between mineral distribution and strain on the low-mineral end of the attachment. This compliant region is proposed to act as an energy absorbing component, limiting catastrophic failure within the tendon-to-bone attachment through higher local deformation. This understanding of tendon-to-bone micromechanics demonstrates the critical role of micrometer scale features in the mechanics of the tissue.
机译:肌腱 - 骨附着(诱使)是一种复杂的分层组织,其连接刚性骨骼以柔顺肌腱。千分尺刻度的附件位点在矿物质含量和胶原料方向上具有梯度,这可能是最小化应力浓度的行为。因此,附件的生理学微机械定义了结果性能,但在该规模上的样品制备和机械测试的困难限制了对结构 - 机械功能的理解。这里,使用偏心的离子束铣削制备来自野生型小鼠和小鼠小鼠的微观光束,并使用经修饰的原子力显微镜系统拉动到破坏。获得肌腱与骨结构的微机械行为,包括弹性模量,强度,弹性和韧性。结果表明,与毫米的组织长度秤相比,微米长度尺度的机械性能相比显着,描述了诸如缺陷诸如缺陷的高阶结构效应的影响。微机械调查揭示了矿物质缺陷的含量下降。为了进一步检查结构 - 机械函数关系,使用局部图像相关确定沿着肌腱到骨附件的局部变形行为。清楚地识别出附近的矿化梯度附近的高综合区,并强调了矿物分布与附件低矿物端之间的菌株之间的相关性。该柔性地区被提出作为能量吸收部件,通过较高局部变形限制肌腱与骨附着内的灾难性故障。这种对肌腱到骨微机械的理解证明了微米尺度特征在组织的力学中的关键作用。

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