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后激活增强和向心收缩性能:对扭矩发展速度、神经肌肉效率和拉伸性能的影响。

Post Activation Potentiation and Concentric Contraction Performance: Effects on Rate of Torque Development, Neuromuscular Efficiency, and Tensile Properties.

机构信息

Laboratory of Biomechanics and Motor Control (BMC), The Swedish School of Sport and Health Sciences, GIH, Stockholm, Sweden.

Research Center in Sports Sciences, Health Sciences and Human Development (CIDESD), University of Trás-os-Montes and Alto Douro, Vila Real, Portugal; and.

出版信息

J Strength Cond Res. 2020 Jun;34(6):1600-1608. doi: 10.1519/JSC.0000000000002427.

Abstract

Gago, P, Zoellner, A, Cezar, J, and Ekblom, MM. Post activation potentiation and concentric contraction performance: effects on rate of torque development, neuromuscular efficiency and tensile properties. J Strength Cond Res 34(6): 1600-1608, 2020-This study investigated how a 6-second maximal voluntary isometric contraction (MVIC) conditioning affected plantar flexor twitch rate of torque development (RTDTW), as well as peak torque (PTCC) and rate of torque development (RTDCC) of maximal voluntary concentric contractions (MVCC) performed at 60°·s. RTDCC and normalized triceps surae electromyography signals (EMGTS) were measured during different phases of contraction. In addition, muscle tendon unit passive stiffness index (SI) calculated from the torque-angle relation was measured after each MVCC. Enhancements were found in the RTDTW immediately (by 59.7%) and up to 480 seconds (by 6.0%) after MVIC (p < 0.05). RTDCC during the 100-200 ms, 50-200 ms, and 0-200 ms phases and PTCC were enhanced (by 5.7-9.5%) from 90 to 300 seconds after conditioning (p < 0.05). Neuromuscular efficiency increased (decreased EMGTS/RTDCC) in the 50-200 ms and 0-200 ms phases by 8.8-12.4%, from 90 to 480 seconds after MVIC (p < 0.05). No significant changes were found in the SI or in RTDCC during the 50-100 ms phase, suggesting that the enhancements reported reflect mainly contractile rather than neural or tensile mechanisms. PAP effects on PTCC and RTDCC were significant and more durable at a lower velocity than previously reported. Enhancement in RTDCC and neuromuscular efficiency were found to be more prominent in later phases (>100 ms) of the MVCC. This suggests that enhanced contractile properties, attained through MVIC, benefit concentric contraction performance.

摘要

高加、佐勒纳、塞萨尔和埃克布洛姆。激活后增强和向心收缩性能:对扭矩发展率、神经肌肉效率和拉伸性能的影响。J 力量与调节研究 34(6):1600-1608,2020-本研究调查了 6 秒最大自主等长收缩(MVIC)条件作用如何影响足底屈肌抽搐扭矩发展率(RTDTW),以及在 60°·s 时进行的最大自主向心收缩(MVCC)的峰值扭矩(PTCC)和扭矩发展率(RTDCC)。在收缩的不同阶段测量 RTDCC 和归一化比目鱼肌肌电图信号(EMGTS)。此外,在每次 MVCC 后,从扭矩-角度关系计算肌肉肌腱单元被动刚度指数(SI)。MVIC 后即刻(增加 59.7%)和 480 秒(增加 6.0%)发现 RTDTW 增强(p<0.05)。100-200ms、50-200ms 和 0-200ms 阶段的 RTDCC 和 PTCC 在条件作用后 90-300 秒时增强(增加 5.7-9.5%)(p<0.05)。神经肌肉效率在 50-200ms 和 0-200ms 阶段增加(EMGTS/RTDCC 减少)8.8-12.4%,MVIC 后 90-480 秒(p<0.05)。在 50-100ms 阶段,SI 或 RTDCC 没有发生显著变化,这表明报告的增强主要反映了收缩性,而不是神经或拉伸性机制。PAP 对 PTCC 和 RTDCC 的影响在较低速度下比以前报道的更显著且更持久。在 MVCC 的后期阶段(>100ms)发现 RTDCC 和神经肌肉效率的增强更为明显。这表明通过 MVIC 获得的增强的收缩性能有益于向心收缩性能。

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