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首页> 外文期刊>Orthopaedic Journal of Sports Medicine >Variability in Baseball Throwing Metrics During A Structured Long-toss Program: Does One Size Fit All?
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Variability in Baseball Throwing Metrics During A Structured Long-toss Program: Does One Size Fit All?

机译:结构化长距离投掷程序中棒球投掷指标的可变性:一种尺寸适合所有人吗?

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Objectives: The variability of throwing metrics, particularly elbow torque and ball velocity, during structured long-toss programs is yet to be fully elucidated. The primary aims of this study were to assess various throwing metrics through a structured long-toss program using wearable technology and to quantify the intra and inter thrower variability of these metrics at each stage of throwing. Methods: This was a descriptive laboratory study in which 60 high school and collegiate pitchers participated in a predetermined, structured, progressive long-toss program. All players wore a motusBASEBALL sleeve (Motus Global, Inc.; Rockville Centre, NY), which measured arm slot, arm velocity, shoulder rotation, and elbow varus torque. Radar guns were used to measure ball velocity. These metrics were compared within and between all pitchers at each of the following throwing distances: 90 ft, 120 ft, 150 ft, 180 ft, and maximum effort mound pitching. Intra- and inter- thrower reliabilities were calculated for each throwing metric at every stage of the program. Excellent intra-thrower reliability was defined by an Intra-class coefficient (ICC) &0.750. Acceptable inter-thrower reliability was defined by a Coefficient of Variation (CV) &5%. Results: Ball velocity significantly changed at each progressive throwing distance, but this did not consistently correlate with an increase in elbow torque. Pitching from the mound did not place more torque on the elbow than throwing from 120 ft and beyond. Intra-thrower reliability was excellent throughout the progressive long-toss program for each throwing metric. Ninety-one percent of throwers had acceptable inter-thrower reliability for ball velocity, whereas only 79% of throwers had acceptable inter-thrower reliability for elbow torque. Conclusion: Based on trends in elbow torque, it may be practical to incorporate pitching from the mound earlier in the program (once a player is comfortable throwing from 120 ft). Ball velocity and elbow torque do not necessarily correlate with one another, so a degree of caution should be exercised when using radar guns to estimate elbow torque. Given the variability in elbow torque between throwers, some athletes would likely benefit from an individualized throwing program.
机译:目标:在结构化长距离抛掷程序中,投掷指标的可变性,特别是肘部扭矩和球速,尚待充分阐明。这项研究的主要目的是通过可穿戴技术通过结构化的长抛程序评估各种投掷指标,并量化这些指标在投掷各个阶段的内部和外部投掷差异。方法:这是一项描述性实验室研究,其中60个高中和大学的投手参加了预定的,结构化的,渐进式长距离训练计划。所有球员都穿着一个motusBASEBALL套筒(Motus Global,Inc .;纽约州洛克维尔中心),该套筒可测量臂槽,臂速度,肩部旋转和肘内翻扭矩。雷达枪用于测量球的速度。在所有以下投掷距离下的所有投手内部和之间比较这些度量标准:90英尺,120英尺,150英尺,180英尺和最大力土墩投球。在程序的每个阶段,针对每个投掷指标计算投掷者内部和投掷者之间的可靠性。等级内系数(ICC)≥0.750定义了出色的投掷者内可靠性。可接受的投掷者间可靠性由变异系数(CV)小于5%定义。结果:球速度在每个渐进式投掷距离上均发生显着变化,但这与肘部扭矩的增加并不一致。从丘上投球并没有比从120英尺及更高的地方投掷更多的扭矩施加在肘上。在整个长距离投掷程序中,对于每个投掷指标,投掷器内的可靠性都非常出色。百分之九十一的投掷者对于球速具有可接受的投掷器间可靠性,而只有79%的投掷者对于肘部扭矩具有可接受的投掷器间可靠性。结论:根据肘部扭矩的趋势,在程序的较早阶段结合土墩的投掷可能是切实可行的(一旦球员从120英尺的高度投掷就很舒服了)。球速和弯头扭矩不一定相互关联,因此在使用雷达炮估算弯头扭矩时应格外小心。考虑到投掷器之间肘部扭矩的变化性,一些运动员可能会受益于个性化的投掷程序。

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