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STRIDE LEG GROUND REACTION FORCES PREDICT THROWING VELOCITY IN ADULT RECREATIONAL BASEBALL PITCHERS

机译:步长桩地面反应可预测成人娱乐型棒球投手的投掷速度

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McNally, MP, Borstad, JD, Onate, JA, and Chaudhari, AMW. Stride leg ground reaction forces predict throwing velocity in adult recreational baseball pitchers. J Strength Cond Res 29(10): 2708-2715, 2015Ground reaction forces produced during baseball pitching have a significant impact in the development of ball velocity. However, the measurement of only one leg and small sample sizes in these studies curb the understanding of ground reaction forces as they relate to pitching. This study aimed to further clarify the role ground reaction forces play in developing pitching velocity. Eighteen former competitive baseball players with previous high school or collegiate pitching experience threw 15 fastballs from a pitcher's mound instrumented to measure ground reaction forces under both the drive and stride legs. Peak ground reaction forces were recorded during each phase of the pitching cycle, between peak knee height and ball release, in the medial/lateral, anterior/posterior, and vertical directions, and the peak resultant ground reaction force. Stride leg ground reaction forces during the arm-cocking and arm-acceleration phases were strongly correlated with ball velocity (r(2) = 0.45-0.61), whereas drive leg ground reaction forces showed no significant correlations. Stepwise linear regression analysis found that peak stride leg ground reaction force during the arm-cocking phase was the best predictor of ball velocity (r(2) = 0.61) among drive and stride leg ground reaction forces. This study demonstrates the importance of ground reaction force development in pitching, with stride leg forces being strongly predictive of ball velocity. Further research is needed to further clarify the role of ground reaction forces in pitching and to develop training programs designed to improve upper extremity mechanics and pitching performance through effective force development.
机译:国会议员麦克纳利(McNally),法学博士(Borstad),法学博士(JD),贾纳特(Onate)和阿姆特(AMW)乔达里(Chaudhari)。大步腿地面反作用力可预测成人休闲棒球投手的投掷速度。 J Strength Cond Res 29(10):2708-2715,2015年,棒球投球期间产生的地面反作用力对球速的发展有重大影响。但是,在这些研究中,仅测量一条腿和较小的样本量就无法理解地面反作用力与俯仰相关的知识。这项研究旨在进一步阐明地面反作用力在发展俯仰速度中的作用。十八位具有先前高中或大学投球经验的前竞争棒球运动员从投手的土墩投掷了15个快球,用于测量驱动腿和步幅下的地面反作用力。在俯仰周期的每个阶段中,在内侧/外侧,前/后和垂直方向上,在膝盖的最高高度和球的释放之间,记录地面反作用力的峰值,以及地面合成反作用力的峰值。手臂上旋和手臂加速阶段的大步腿地面反作用力与球速密切相关(r(2)= 0.45-0.61),而驱动腿地面反作用力没有显着相关性。逐步线性回归分析发现,在手臂蹬踏阶段,最大步幅腿地面反作用力是最佳球速(r(2)= 0.61)在驱动力和步幅地面反作用力中。这项研究证明了地面反作用力的发展在投球中的重要性,而迈步腿力可以很好地预测球的速度。需要进一步研究以进一步阐明地面反作用力在俯仰中的作用,并制定旨在通过有效力发展来改善上肢力学和俯仰性能的训练计划。

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