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运动性肥大和废用性萎缩对肌肉收缩特性的影响:肌机械图分析

The effect of exercise hypertrophy and disuse atrophy on muscle contractile properties: a mechanomyographic analysis.

作者信息

Than Christian, Tosovic Danijel, Seidl Laura, Mark Brown J

机构信息

Department of Anatomy and Developmental Biology, School of Biomedical Sciences, The University of Queensland, St. Lucia, 4072, Australia.

出版信息

Eur J Appl Physiol. 2016 Dec;116(11-12):2155-2165. doi: 10.1007/s00421-016-3469-9. Epub 2016 Sep 10.

Abstract

PURPOSE

To determine whether mechanomyographic (MMG) determined contractile properties of the biceps brachii change during exercise-induced hypertrophy and subsequent disuse atrophy.

METHODS

Healthy subjects (mean ± SD, 23.7 ± 2.6 years, BMI 21.8 ± 2.4, n = 19) performed unilateral biceps curls (9 sets × 12 repetitions, 5 sessions per week) for 8 weeks (hypertrophic phase) before ceasing exercise (atrophic phase) for the following 8 weeks (non-dominant limb; treatment, dominant limb; control). MMG measures of muscle contractile properties (contraction time; T , maximum displacement; D , contraction velocity; V ), electromyographic (EMG) measures of muscle fatigue (median power frequency; MPF), strength measures (maximum voluntary contraction; MVC) and measures of muscle thickness (ultrasound) were obtained.

RESULTS

Two-way repeated measures ANOVA showed significant differences (P < 0.05) between treatment and control limbs. During the hypertrophic phase treatment MVC initially declined (weeks 1-3), due to fatigue (decline in MPF), followed by improvement against control during weeks 6-8. Between weeks 5 and 8 treatment, muscle thickness was greater than control, reflecting gross hypertrophy. MMG variables Dmax (weeks 2, 7) and Vc (weeks 7, 8) declined. During the atrophic phase, MVC (weeks 9-12) and muscle thickness (weeks 9, 10) initially remained high before declining to control levels, reflecting gross atrophy. MMG variables D (weeks 9, 14) and V (weeks 9, 14, 15) also declined during the atrophic phase. No change in T was found throughout the hypertrophic or atrophic phases.

CONCLUSIONS

MMG detects changes in contractile properties during stages of exercise-induced hypertrophy and disuse atrophy suggesting its applicability as a clinical tool in musculoskeletal rehabilitation.

摘要

目的

确定在运动诱导的肌肉肥大及随后的废用性萎缩过程中,通过肌机械图(MMG)测定的肱二头肌收缩特性是否发生变化。

方法

健康受试者(平均±标准差,23.7±2.6岁,体重指数21.8±2.4,n = 19)进行单侧肱二头肌弯举(9组×12次重复,每周5次),持续8周(肥大期),之后停止运动8周(萎缩期)(非优势肢体;实验组,优势肢体;对照组)。获取肌肉收缩特性的MMG测量值(收缩时间;T,最大位移;D,收缩速度;V)、肌肉疲劳的肌电图(EMG)测量值(中位功率频率;MPF)、力量测量值(最大自主收缩;MVC)以及肌肉厚度测量值(超声)。

结果

双向重复测量方差分析显示,实验组和对照组肢体之间存在显著差异(P < 0.05)。在肥大期,实验组的MVC最初下降(第1 - 3周),这是由于疲劳(MPF下降),随后在第6 - 8周相对于对照组有所改善。在第5至8周的实验组中,肌肉厚度大于对照组,反映出明显的肥大。MMG变量Dmax(第2、7周)和Vc(第7、8周)下降。在萎缩期,MVC(第9 - 12周)和肌肉厚度(第9、10周)最初保持较高水平,然后下降至对照组水平,反映出明显的萎缩。MMG变量D (第9、14周)和V (第9、14、15周)在萎缩期也下降。在整个肥大期或萎缩期,未发现T 有变化。

结论

MMG可检测运动诱导的肥大和废用性萎缩阶段收缩特性的变化,表明其可作为肌肉骨骼康复中的一种临床工具。

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