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肌肉对训练和损伤的结构适应性:一篇叙述性综述概述肌束长度、羽状角和肌肉厚度的作用

Architectural adaptations of muscle to training and injury: a narrative review outlining the contributions by fascicle length, pennation angle and muscle thickness.

作者信息

Timmins Ryan G, Shield Anthony J, Williams Morgan D, Lorenzen Christian, Opar David A

机构信息

School of Exercise Science, Australian Catholic University, Melbourne, Victoria, Australia.

School of Exercise and Nutrition Sciences and Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Queensland, Australia.

出版信息

Br J Sports Med. 2016 Dec;50(23):1467-1472. doi: 10.1136/bjsports-2015-094881. Epub 2016 Jan 27.

Abstract

BACKGROUND

The architectural characteristics of muscle (fascicle length, pennation angle muscle thickness) respond to varying forms of stimuli (eg, training, immobilisation and injury). Architectural changes following injury are thought to occur in response to the restricted range of motion experienced during rehabilitation and the associated neuromuscular inhibition. However, it is unknown if these differences exist prior to injury, and had a role in injury occuring (prospectively), or if they occur in response to the incident itself (retrospectively). Considering that the structure of a muscle will influence how it functions, it is of interest to understand how these architectural variations may alter how a muscle acts with reference to the force-length and force-velocity relationships.

OBJECTIVES

Our narrative review provides an overview of muscle architectural adaptations to training and injury. Specifically, we (1) describe the methods used to measure muscle architecture; (2) detail the impact that architectural alterations following training interventions, immobilisation and injury have on force production and (3) present a hypothesis on how neuromuscular inhibition could cause maladaptations to muscle architecture following injury.

摘要

背景

肌肉的结构特征(肌束长度、羽状角、肌肉厚度)会对不同形式的刺激(如训练、固定和损伤)做出反应。损伤后的结构变化被认为是对康复期间受限的运动范围以及相关神经肌肉抑制的反应。然而,尚不清楚这些差异在损伤前是否存在,并在损伤发生(前瞻性)中起作用,或者它们是否是对损伤事件本身的反应(回顾性)。考虑到肌肉的结构会影响其功能,了解这些结构变化如何参照力-长度和力-速度关系改变肌肉的作用方式是很有意义的。

目的

我们的叙述性综述概述了肌肉结构对训练和损伤的适应性。具体而言,我们(1)描述用于测量肌肉结构的方法;(2)详细说明训练干预、固定和损伤后结构改变对力量产生的影响;(3)提出一个关于神经肌肉抑制如何导致损伤后肌肉结构适应不良的假说。

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