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首页> 外文期刊>Journal of athletic training >Passive Stiffness and Maximal and Explosive Strength Responses After an Acute Bout of Constant-Tension Stretching
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Passive Stiffness and Maximal and Explosive Strength Responses After an Acute Bout of Constant-Tension Stretching

机译:恒定张力拉伸急性发作后的被动刚度以及最大和爆炸强度响应

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Context Constant-tension (CT) stretching has been used to reduce hamstrings passive stiffness; however, the time course of hamstrings stiffness responses during a short bout of this type of stretching and the effects on maximal and explosive strength remain unclear. Objective To examine the time course of hamstrings passive-stiffness responses during a short, practical bout of manual straight-legged–raise (SLR) CT passive stretches and their effects on maximal and explosive strength in healthy young women. Design Descriptive laboratory study. Setting Research laboratory. Patients or Other Participants Eleven healthy women (age = 24 ± 4 years, height = 167 ± 4 cm, mass = 65 ± 8 kg) participated. Intervention(s) Participants underwent four 15-second SLR CT passive stretches of the hamstrings. Main Outcome Measurement(s) Hamstrings passive stiffness was calculated from the slopes of the initial (phase 1) and final (phase 2) portions of the angle-torque curves generated before and after the stretching intervention and at the beginning of each 15-second stretch. Hamstrings peak torque and rate of torque development were derived from maximal voluntary isometric contractions performed before and after the stretching intervention. Results The slope coefficients (collapsed across phase) for the third and fourth stretches and the poststretching assessment were lower than the prestretching assessment (P range = .004–.04), but they were not different from each other (P .99). In addition, no differences in peak torque (t10 = ?0.375, P = .72) or rate of torque development (t10 = ?0.423, P = .68) were observed between prestretching and poststretching. Conclusions A short bout of SLR CT passive stretching may effectively reduce hamstrings stiffness without negatively influencing maximal and explosive strength.
机译:背景技术恒定张力(CT)拉伸已被用于减少腿筋的被动僵硬。然而,这种伸展运动在短暂的回合过程中,绳肌僵硬反应的时程以及对最大和爆炸强度的影响仍不清楚。目的探讨在短时间,实用的手动直腿抬高(SLR)CT被动拉伸练习中,绳肌被动僵硬反应的时程及其对健康年轻女性最大和爆发力的影响。设计描述性实验室研究。设置研究实验室。患者或其他参与者11名健康女性(年龄= 24±4岁,身高= 167±4 cm,体重= 65±8 kg)。干预参与者经历了四个15秒的SLR CT被动拉伸绳肌。主要结果测量腿筋被动刚度是根据拉伸干预前后,每15秒开始时产生的角度-扭矩曲线的初始(阶段1)和最终(阶段2)部分的斜率计算得出的伸展。 stretching绳肌的峰值扭矩和扭矩发展速率来自于拉伸干预前后最大的等距收缩。结果第三,第四次拉伸和后拉伸评估的斜率系数(跨相塌陷)均低于前拉伸评估(P范围= .004–.04),但它们之间没有差异(P> .99) 。此外,在预拉伸和后拉伸之间未观察到峰值扭矩(t10 =≤0.375,P = 0.72)或扭矩产生速率(t10 =≤0.423,P = 0.68)的差异。结论短暂的SLR CT被动拉伸可以有效地减少绳肌的僵硬,而不会对最大和爆炸强度产生负面影响。

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