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运动对肌腱结构的即时和短期影响:生化、生物力学和影像学反应。

Immediate and short-term effects of exercise on tendon structure: biochemical, biomechanical and imaging responses.

机构信息

Centre for Sports and Exercise Medicine, Barts and the London School of Medicine and Dentistry,Mile End Hospital, London, UK.

出版信息

Br Med Bull. 2012 Sep;103(1):169-202. doi: 10.1093/bmb/ldr052. Epub 2012 Jan 25.

Abstract

Introduction Tendons are metabolically active structures, and their biochemical, biomechanical and structural properties adapt to chronic exercise. However, abnormal adaptations may lead to the development of tendinopathy and pain. Acute and subacute adaptations might contribute to tendon pathology. Sources of data A systematic search of peer-reviewed articles was performed using a wide range of electronic databases. A total of 61 publications were selected. Areas of agreement Exercise induces acute responses in collagen turnover, blood flow, glucose, lactate and other inflammatory products (e.g. prostaglandins and interleukins). Mechanical properties are influenced by activity duration and intensity. Acute bouts of exercise affect tendon structure, with some of the changes resembling those reported in pathological tendons. Areas of controversy Given the variation in study designs, measured parameters and outcomes, it remains debatable how acute exercise influences overall tendon properties. There is discrepancy regarding which investigation modality and settings provide optimal assessment of each parameter. Growing points There is a need for greater homogeneity between study designs, including subject consortium and age, exercise protocols and time frames for parameter assessing. Areas timely for developing research Innovative methods, measuring each parameter simultaneously, would allow a greater understanding of how and when changes occur. This methodology is key to revealing pathological processes and pathways that alter tendon properties according to various activities. Optimal tendon properties differ between activities: more compliant tendons are beneficial for slow stretch shortening cycle (SSC) activities such as countermovement jumps, whereas stiffer tendons are considered beneficial for fast SSC movements such as sprinting.

摘要

简介

肌腱是代谢活跃的结构,其生化、生物力学和结构特性可适应慢性运动。然而,异常适应可能导致腱病和疼痛的发生。急性和亚急性适应可能导致肌腱病变。

数据来源

使用广泛的电子数据库对同行评议的文章进行了系统搜索。共选择了 61 篇出版物。

达成共识

运动可引起胶原代谢、血流、葡萄糖、乳酸和其他炎症产物(如前列腺素和白细胞介素)的急性反应。机械性能受活动持续时间和强度的影响。急性运动可影响肌腱结构,其中一些变化类似于病理性肌腱中报告的变化。

争议领域

鉴于研究设计、测量参数和结果的差异,急性运动如何影响整体肌腱特性仍存在争议。关于哪种检查方式和设置最能优化每个参数的评估,存在争议。

研究热点

需要在研究设计方面具有更大的一致性,包括研究对象的一致性和年龄、运动方案以及参数评估的时间框架。

创新研究的时机

创新的方法,同时测量每个参数,将有助于更好地理解变化发生的方式和时间。这种方法是揭示根据各种活动改变肌腱特性的病理过程和途径的关键。不同的活动需要不同的最佳肌腱特性:对于诸如反向跳跃等缓慢的伸展收缩循环(SSC)活动,更具弹性的肌腱是有益的,而对于诸如冲刺等快速 SSC 运动,则认为更硬的肌腱是有益的。

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