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首页> 外文期刊>Journal of Biomechanics >Returning to overuse activity following a supraspinatus and infraspinatus tear leads to joint damage in a rat model
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Returning to overuse activity following a supraspinatus and infraspinatus tear leads to joint damage in a rat model

机译:上睑上睑下裂和鼻下裂后恢复过度活动导致大鼠模型关节损伤

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摘要

Large rotator cuff tears (supraspinatus and infraspinatus) are common in patients who perform overhead activities (laborers, athletes). In addition, following large cuff tears, these patients commonly attempt to return to pre-injury activity levels. However, there is a limited understanding of the damaging effects on the uninjured joint tissues when doing so. Therefore, the objective of this study was to investigate the effect of returning to overuse activity following a supraspinatus and infraspinatus tear on shoulder function and the structural and biological properties of the intact tendons and glenoid cartilage. Forty rats underwent 4 weeks of overuse followed by detachment of the supraspinatus and infraspinatus tendons and were then randomized into two groups: return to overuse or cage activity. Ambulatory measurements were performed over time and structural and biological properties of the adjacent tendons and cartilage were evaluated. Results demonstrated that animals returning to overuse activity did not have altered shoulder function but despite this, did have altered cartilage and tendon properties. These mechanical changes corresponded to altered transcriptional regulation of chondrogenic genes within cartilage and tendon. This study helps define the mechanical and biological mechanisms leading to joint damage and provides a framework for treating active cuff tear patients.
机译:在进行头顶活动的患者(劳动者,运动员)中,常见的是大的肩袖撕裂(上棘和下斜肌)。另外,在大的袖口撕裂之后,这些患者通常试图恢复到损伤前的活动水平。但是,在这样做时,对未受伤的关节组织的破坏作用的了解有限。因此,本研究的目的是研究上睑上睑下裂和脊柱下裂后恢复过度使用活动对肩部功能以及完整肌腱和关节盂软骨的结构和生物学特性的影响。 40只大鼠进行了4周的过度使用,然后解除了棘上肌和棘下肌腱的分离,然后随机分为两组:恢复过度使用或保持笼活动。随时间进行动态测量,并评估相邻肌腱和软骨的结构和生物学特性。结果表明,恢复过度使用活动的动物并没有改变肩部功能,但是尽管如此,它们的软骨和肌腱特性却发生了改变。这些机械变化对应于软骨和腱内软骨生成基因的转录调控改变。这项研究有助于确定导致关节损伤的机械和生物学机制,并为治疗活动性袖口撕裂患者提供框架。

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