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首页> 外文期刊>American Journal of Sports Medicine >Pitching biomechanics as a pitcher approaches muscular fatigue during a simulated baseball game.
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Pitching biomechanics as a pitcher approaches muscular fatigue during a simulated baseball game.

机译:在模拟棒球比赛中,作为投手投球的生物力学接近肌肉疲劳。

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摘要

BACKGROUND: The effects of approaching muscular fatigue on pitching biomechanics are currently unknown. As a pitcher fatigues, pitching mechanics may change, leading to a decrease in performance and an increased risk of injury. HYPOTHESIS: As a pitcher approaches muscular fatigue, select pitching biomechanical variables will be significantly different than they were before muscular fatigue. STUDY DESIGN: Controlled laboratory study. METHODS: Ten collegiate baseball pitchers threw 15 pitches per inning for 7 to 9 innings off an indoor throwing mound during a simulated baseball game. A pitching session ended when each pitcher felt he could no longer continue owing to a subjective perception of muscular fatigue. A 6-camera 3D automatic digitizing system collected 200-Hz video data. Twenty kinematic and 11 kinetic variables were calculated throughout 4 phases of the pitch. A repeated-measure analysis of variance (P < .01) was used to compare biomechanical variables between innings. RESULTS: Compared with the initial 2 innings, as a pitcher approached muscular fatigue during the final 2 innings he was able to pitch, there was a significant decrease in ball velocity, and the trunk was significantly closer to a vertical position. There were no other significant differences in kinematics or kinetics variables. CONCLUSION: The relatively few differences observed imply that pitching biomechanics remained remarkably similar between collegiate starting pitchers who threw between 105 and 135 pitches for 7 to 9 innings and approached muscular fatigue. CLINICAL RELEVANCE: This study did not support the idea that there is an increase in shoulder and elbow forces and torques as muscular fatigue is approached. It is possible that if a pitcher remained in a fatigued state for a longer period of time, additional changes in pitching mechanics may occur and the risk of injury may increase.
机译:背景:目前尚不了解肌肉疲劳对俯仰生物力学的影响。由于投手疲劳,投球技巧可能会发生变化,从而导致性能下降和受伤风险增加。假设:随着投手接近肌肉疲劳,选择的投球生物力学变量将与肌肉疲劳之前明显不同。研究设计:受控实验室研究。方法:在模拟棒球比赛中,十个大学棒球投手每局投掷15个投球,从室内投掷土墩投掷7至9局。当每个投手由于对肌肉疲劳的主观感觉而无法继续运动时,投球结束。一个具有6个摄像头的3D自动数字化系统收集了200 Hz的视频数据。在俯仰的四个阶段中计算了二十个运动学变量和11个动力学变量。方差的重复测量分析(P <.01)用于比较各局之间的生物力学变量。结果:与最初的2局相比,由于投手在最后的2局中逐渐出现肌肉疲劳,所以他能够投球,球速显着下降,躯干明显接近垂直位置。运动学或动力学变量没有其他显着差异。结论:观察到的相对较少的差异表明,大学的初学者投手之间的投球生物力学仍然非常相似,他们在7到9局之间投掷105到135的投球并接近了肌肉疲劳。临床相关性:本研究不支持随着接近肌肉疲劳而肩和肘的力量和扭矩增加的想法。如果投手长时间处于疲劳状态,则可能会发生投球力学的其他变化,从而增加受伤的风险。

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