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Does Fatigue Alter Pitching Mechanics?

机译:疲劳会改变俯仰力学吗?

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Objectives: Background: Injuries of the adolescent shoulder and elbow are common in baseball pitchers. Fatigue has been demonstrated to be a risk factor for injury. Purpose: To determine if shoulder and elbow kinematics, pitching velocity, accuracy, and pain change during a simulated full baseball game in adolescent pitchers. Methods: Methods: Adolescent pitchers between the ages of 13-16 were recruited to throw a 90 pitch simulated game. Shoulder range of motion was assessed before and after the game. Velocity and accuracy were measured for every pitch and every 15th pitch was videotaped from two orthogonal views in high definition at 240 Hz. Quantitative and qualitative mechanics were measured from these videos. Perceived fatigue and pain were assessed after each inning using the visual analog scale. Data was statistically analyzed using a repeated-measures analysis of variance. Results: Results: Twenty-eight elite adolescent pitchers were included. These pitchers, on average, were 14.6±0.9 years old (mean ± standard deviation), had been pitching for 6.3±1.7 years, and threw 94±58 pitches per week. Our experimental model functioned as expected in that pitchers became progressively more fatigued and painful and pitched with a lower velocity as pitch number increased (p<0.001, 0.001, and <0.001 respectively). Knee flexion at ball release progressively increased with pitch number (p=0.008). Hip and shoulder separation significantly decreased as pitch number increased, from 90%±40% at pitch 15 to 40%±50% at pitch 90 (p0.271 in all cases, 91% power for elbow flexion at ball release). External rotation and total range of motion in the pitching shoulder significantly increased post-pitching (p=0.007 and 0.047 respectively). Conclusion: Conclusion: As pitchers progress through a simulated game they throw lower velocity pitches and become fatigued and painful. Core and leg musculature becomes fatigued before upper extremity kinematics change. Based upon these results, the authors hypothesize that core and leg strengthening may be valuable adjuncts to prevent upper extremity injury.
机译:目的:背景:棒球投手中常见青少年肩膀和肘部受伤。疲劳已被证明是造成伤害的危险因素。目的:确定在青少年投手的模拟完整棒球比赛中,肩膀和肘部的运动学,投球速度,准确性和疼痛是否改变。方法:方法:招募13到16岁之间的青少年投手,进行90步模拟游戏。比赛前后评估肩膀的运动范围。测量每个螺距的速度和精度,并从两个正交视图以240 Hz的高清晰度对每个第15螺距进行录像。从这些视频中测量了定量和定性力学。每局比赛后,使用视觉模拟量表评估感觉到的疲劳和疼痛。使用重复测量方差分析对数据进行统计分析。结果:结果:包括28个精英青少年投手。这些投手平均年龄为14.6±0.9岁(平均±标准偏差),投球时间为6.3±1.7年,每周投掷94±58次。我们的实验模型发挥了预期的作用,因为随着音调数的增加,投手逐渐变得更加疲劳和痛苦,并且以较低的速度俯仰(分别为p <0.001、0.001和<0.001)。球释放时的膝部屈曲随着俯仰数逐渐增加(p = 0.008)。髋关节和肩膀的分离随着俯仰数的增加而显着降低,从俯仰15时的90%±40%降至俯仰90时的40%±50%(在所有情况下均为p0.271,在释放球时肘部屈曲的力量为91%)。俯仰后的外旋和总的运动范围在俯仰后明显增加(分别为p = 0.007和0.047)。结论:结论:随着投手在模拟游戏中的前进,他们投掷较低速度的投球并变得疲劳和痛苦。在上肢运动学改变之前,核心和腿部肌肉会变得疲劳。基于这些结果,作者假设核心和腿部增强可能是预防上肢损伤的有价值的辅助手段。

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