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步幅对过肩投掷动作的影响:线性动量响应

Effect of stride length on overarm throwing delivery: A linear momentum response.

作者信息

Ramsey Dan K, Crotin Ryan L, White Scott

机构信息

Department of Health Professions Education, D'Youville College, Buffalo, NY 14201, United States; Department of Exercise Science, School of Public Health and Health Professions, University at Buffalo, Buffalo, NY, United States.

Department of Exercise Science, School of Public Health and Health Professions, University at Buffalo, Buffalo, NY, United States.

出版信息

Hum Mov Sci. 2014 Dec;38:185-96. doi: 10.1016/j.humov.2014.08.012. Epub 2014 Nov 9.

Abstract

Changing stride length during overhand throwing delivery is thought to alter total body and throwing arm linear momentums, thereby altering the proportion of throwing arm momentum relative to the total body. Using a randomized cross-over design, nineteen pitchers (15 collegiate and 4 high school) were assigned to pitch two simulated 80-pitch games at ±25% of their desired stride length. An 8-camera motion capture system (240Hz) integrated with two force plates (960Hz) and radar gun tracked each throw. Segmental linear momentums in each plane of motion were summed yielding throwing arm and total body momentums, from which compensation ratio's (relative contribution between the two) were derived. Pairwise comparisons at hallmark events and phases identified significantly different linear momentum profiles, in particular, anteriorly directed total body, throwing arm, and momentum compensation ratios (P⩽.05) as a result of manipulating stride length. Pitchers with shorter strides generated lower forward (anterior) momentum before stride foot contact, whereas greater upward and lateral momentum (toward third base) were evident during the acceleration phase. The evidence suggests insufficient total body momentum in the intended throwing direction may potentially influence performance (velocity and accuracy) and perhaps precipitate throwing arm injuries.

摘要

在肩上投球过程中改变步幅被认为会改变全身和投掷手臂的线性动量,从而改变投掷手臂动量相对于全身的比例。采用随机交叉设计,19名投手(15名大学生和4名高中生)被安排在其期望步幅长度的±25%下投两场模拟的80球比赛。一个集成了两个测力台(960Hz)和测速枪的8摄像头动作捕捉系统(240Hz)追踪每一次投球。将每个运动平面中的节段线性动量相加,得出投掷手臂和全身的动量,由此得出补偿率(两者之间的相对贡献)。在标志性事件和阶段进行的两两比较确定了显著不同的线性动量分布,特别是由于步幅长度的改变,向前的全身、投掷手臂和动量补偿率(P⩽0.05)。步幅较短的投手在跨步脚接触前产生的向前(前向)动量较低,而在加速阶段向上和侧向(朝向三垒)的动量更大。有证据表明,在预期投掷方向上全身动量不足可能会影响表现(速度和准确性),并可能导致投掷手臂受伤。

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