Department of Sport, Nutrition and Health Sciences, University of Milan, Via Colombo 71, 20133, Milan, Italy.
Eur J Appl Physiol. 2011 Mar;111(3):485-95. doi: 10.1007/s00421-010-1659-4. Epub 2010 Oct 1.
Acute passive stretching has been shown to alter muscle-tendon unit (MTU) stiffness and to reduce peak tetanic force (pF). MTU mechanical properties and electro-mechanical delay (EMD) are closely related. Thus, EMD changes would be expected after stretching. The aim of the study was to assess the stretching-induced changes in both contractile and viscoelastic contributors to EMD. The time course of these changes will be also evaluated. Tetanic stimulations were delivered on the medial gastrocnemius muscle of 16 active males, before and after (every 15 min, for 2 h) passive stretching administration. During contractions, electromyographic (EMG), mechanomyographic (MMG) and force signals were recorded. The delays between EMG and force (Δt EMG-F, which corresponds to EMD), EMG and MMG (Δt EMG-MMG) and MMG and force (Δt MMG-F) signals were calculated, together with pF and EMG conduction velocity (CV). After stretching (i) pF decreased by 31% (P < 0.05) and remained depressed for the entire recovery period, while EMG CV did not change; (ii) Δt EMG-F, Δt EMG-MMG and Δt MMG-F increased significantly from 45.4 ± 3.0 ms, 2.2 ± 0.3 ms and 42.4 ± 3.1 ms to 52.7 ± 3.4 ms, 2.4 ± 0.3 ms and 50.3 ± 3.5 ms, respectively; (iii) Δt EMG-F and Δt MMG-F remained lengthened for the entire recovery period, while Δt EMG-MMG recovered to its pre-stretching condition within 15 min. These findings suggest that after stretching, the reduction in pF was accompanied by an elongation of the overall EMD. However, stretching had effects of short duration at the contractile level, but more persisting effects on MTU viscoelastic characteristics.
急性被动拉伸已被证明可以改变肌肉-肌腱单元(MTU)的刚度,并降低峰值强直力(pF)。MTU 的机械性能和机电延迟(EMD)密切相关。因此,拉伸后 EMD 会发生变化。本研究的目的是评估拉伸对 EMD 的收缩和粘弹性贡献的变化。还将评估这些变化的时间过程。在 16 名活跃男性的内侧腓肠肌上,在被动拉伸前后(每 15 分钟一次,持续 2 小时)进行强直刺激。在收缩过程中,记录肌电图(EMG)、肌动图(MMG)和力信号。计算 EMG 和力(Δt EMG-F,对应于 EMD)、EMG 和 MMG(Δt EMG-MMG)和 MMG 和力(Δt MMG-F)信号之间的延迟,以及 pF 和 EMG 传导速度(CV)。拉伸后(i)pF 降低 31%(P<0.05),并在整个恢复期间持续降低,而 EMG CV 不变;(ii)Δt EMG-F、Δt EMG-MMG 和 Δt MMG-F 分别从 45.4±3.0 ms、2.2±0.3 ms 和 42.4±3.1 ms 显著增加到 52.7±3.4 ms、2.4±0.3 ms 和 50.3±3.5 ms;(iii)Δt EMG-F 和 Δt MMG-F 在整个恢复期间保持延长,而 Δt EMG-MMG 在 15 分钟内恢复到拉伸前的状态。这些发现表明,拉伸后,pF 的降低伴随着整个 EMD 的延长。然而,在收缩水平上,拉伸的作用持续时间较短,但对 MTU 粘弹性特性的影响更为持久。