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首页> 外文期刊>Journal of biomechanical engineering. >Multiscale Poroviscoelastic Compressive Properties of Mouse Supraspinatus Tendons Are Altered in Young and Aged Mice
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Multiscale Poroviscoelastic Compressive Properties of Mouse Supraspinatus Tendons Are Altered in Young and Aged Mice

机译:MultiScale Poroviscoelastic抗压低的小鼠Supraspinatus诱拐的性能在年轻和老年小鼠中改变

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Rotator cuff disorders are one of the most common causes of shoulder pain and disability in the aging population but, unfortunately, the etiology is still unknown. One factor thought to contribute to the progression of disease is the external compression of the rotator cuff tendons, which can be significantly increased by age-related changes such as muscle weakness and poor posture. The objective of this study was to investigate the baseline compressive response of tendon and determine how this response is altered during maturation and aging. We did this by characterizing the compressive mechanical, viscoelastic, and poroelastic properties of young, mature, and aged mouse supraspinatus tendons using macroscale indentation testing and nanoscale high-frequency AFM-based rheology testing. Using these multiscale techniques, we found that aged tendons were stiffer than their mature counterparts and that both young and aged tendons exhibited increased hydraulic permeability and energy dissipation. We hypothesize that regional and age-related variations in collagen morphology and organization are likely responsible for changes in the multiscale compressive response as these structural parameters may affect fluid flow. Importantly, these results suggest a role for age-related changes in the progression of tendon degeneration, and we hypothesize that decreased ability to resist compressive loading via fluid pressurization may result in damage to the extracellular matrix (ECM) and ultimately tendon degeneration. These studies provide insight into the regional multiscale compressive response of tendons and indicate that altered compressive properties in aging tendons may be a major contributor to overall tendon degeneration.
机译:转子袖口疾病是老龄化人口中肩痛和残疾的最常见原因之一,但不幸的是,病因仍然是未知的。一个因素被认为有助于疾病进展是转子箍筋的外部压缩,这可以通过与肌肉虚弱和姿势差的年龄相关的变化显着增加。本研究的目的是研究肌腱的基线压缩响应,并确定在成熟和衰老过程中如何改变该响应。我们通过使用Macroscale缩进测试和基于纳米级高频AFM的流变学检测来表征杨,成熟和老年小鼠Supraspinatus肌腱的压缩机械,粘弹性和孔隙弹性性能来完成这一点。使用这些多尺度技术,我们发现老化的肌腱比其成熟的对应物更硬,而年轻人和老化的肌腱均表现出增加的液压渗透性和能量耗散。我们假设胶原蛋白形态和组织的区域和年龄相关变化可能对多尺度压缩响应的变化负责,因为这些结构参数可能影响流体流动。重要的是,这些结果表明肌腱变性进展中的年龄相关变化的作用,我们假设通过流体加压抵抗压缩载荷的能力降低可能导致细胞外基质(ECM)损伤并最终肌腱变性。这些研究提供了对肌腱的区域多尺度压缩响应的洞察力,并表明老化肌腱中的压缩性能改变可能是整个肌腱变性的主要贡献者。

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