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Muscle Architecture of Gastrocnemius Medialis and Rate of Force Development during Different Stretching Protocols

机译:腓肠肌肌肉建筑学和不同拉伸协议期间的肌肉肌肉

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AIM: Rate of force development (RFD) of the leg extensor muscles is important for jumping performance. Static stretching has been shown to reduce explosive force generation, but little is known regarding changes in muscle architectural characteristics due to stretching and jumping performance alterations. Τhe aim of this study was to determine the effects of two different static stretching protocols (20 or 60 s) on gastrocnemius medialis (GM) muscle architectural characteristics and RFD during jumping in a population with long-term flexibility training background. MATERIAL & METHOD: Twelve female professional ballet dancers (age, 25.3 ± 2.2 years) performed 5 days of testing using a single leg stretching and jumping design. RFD during one-leg countermovement jump and jump height were measured on the first visit. On the other four visits, dancers stretched their hamstrings, quadriceps and plantar flexors for 20 or 60 s per muscle group, in a counterbalanced order. Immediately after stretching, RFD and jump height were measured. Fascicle length (FL), pennation angle (PA), and muscle thickness (MT) at the medial and the distal part of GM were assessed at rest and during static stretching for each protocol, using ultrasonography. RESULTS: There was a main effect of time for FL, PA, and MT (p & 0.01) with no difference between stretching protocols, at the medial and distal parts of GM, in FL (p = 0.373 and p = 0.651, respectively), PA (p = 0.724 and p = 0.477, respectively) and MT (p = 0.314 and p = 0.444, respectively). Greater FL elongation was observed at the medial compared to the distal part of GM (p = 0.013) during the long stretching protocol. RFD significantly decreased after the long stretching protocol (p = 0.019), while it remained unchanged in the short stretching protocol (p = 0.061). Significant correlations were found between resting FL at the medial part of GM and RFD (r = −0.645, p = 0.05) and between fascicle elongation at the medial part of GM and CMJ height (r = 0.717, p = 0.01). CONCLUSIONS: The long static stretching protocol induced non-uniform adaptations along GM length and decreased RFD, suggesting that prolonged stretching durations should be avoided immediately before activities requiring rapid force production.
机译:目的:腿部伸肌肌的力量开发率(RFD)对于跳跃性能很重要。已经显示静态拉伸以减少爆炸力产生,但对于由于拉伸和跳跃性能改变而言,关于肌肉建筑特性的变化很少。 &Tau;他的目的是在长期灵活性训练背景跳跃期间,确定两种不同静态拉伸方案(20或60s)对胃肠杆菌(20或60s)对腓肠肌肌肉建筑特征和RFD的影响。材料&amp;方法:十二名女专业芭蕾舞舞者(年龄,25.3&PLUSMN; 2.2年)使用单腿拉伸和跳跃设计进行5天的测试。在第一次访问中测量了一腿对策期间的RFD跳跃和跳跃高度。在另外四次访问中,舞者以平衡的顺序以每肌肉组延伸20或60秒的腿筋,Quadriceps和Purtorar屈曲。拉伸后立即测量RFD和跳跃高度。使用超声检查,在静止和静态拉伸期间评估内侧的束缚角度(F1),叉缘角(PA)和肌厚度(MT),并在静态拉伸期间。结果:氟,Pa和Mt(P <0.01)的主要效果是拉伸方案,GM的内侧和远端部分之间没有差异,在FL(P = 0.373和P = 0.651) ),PA(P = 0.724和P = 0.477分别)和MT(P = 0.314和P = 0.444)。与长拉伸方案相比,与GM的远端部(P = 0.013)相比,在内侧观察到更大的伸长率。长拉伸方案后RFD显着降低(P = 0.019),而在短伸展协议中保持不变(P = 0.061)。在GM和RFD的内侧部分(r =&minus; 0.645,p = 0.05)之间的静息之间发现了显着的相关性,并且在GM和CMJ高度的内侧部分(r = 0.717,p = 0.01)之间的束性伸长。结论:长静态拉伸方案沿GM长度诱导不均匀的改编,降低RFD,建议在需要快速生产的活动之前立即避免长时间的拉伸持续时间。

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