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模拟游戏对青少年棒球投手不同投球类型上肢投球力学和肌肉激活的影响。

Effects of a Simulated Game on Upper Extremity Pitching Mechanics and Muscle Activations Among Various Pitch Types in Youth Baseball Pitchers.

作者信息

Oliver Gretchen D, Plummer Hillary, Henning Lisa, Saper Michael, Glimer Gabrielle, Brambeck Allison, Andrews James R

机构信息

Auburn University Auburn, AL.

University of Southern California, Los Angeles, CA.

出版信息

J Pediatr Orthop. 2019 Sep;39(8):387-393. doi: 10.1097/BPO.0000000000000980.

Abstract

BACKGROUND

Throwing requires proper stability and orientation of the pelvis and scapula for efficient energy transfer during pitching. Fatigue of the pelvis and scapular musculature throughout the course of a game can impair pitching performance, and place excessive demands on the throwing arm leading to injury. The purpose of this study was to examine differences in pelvis, torso, and upper extremity pitching mechanics and muscle activations between the fastball, change-up, and curveball pitches in youth baseball pitchers following a simulated game.

METHODS

Fourteen youth baseball pitchers with no history of injury participated. Pitching mechanics were collected using an electromagnetic tracking system. Surface electromyography data were collected on the bilateral gluteus medius and maximus; and throwing arm side latissimus dorsi, lower trapezius, upper trapezius, and serratus anterior. Participants were instructed to throw maximum effort pitches during a simulated game that provided random game situations similar to those that occur in competition. Participants were limited to 85 pitches based on age-restricted pitch counts. Data from 3 fastballs, curveballs, and change-ups thrown in the first and last innings were selected for analysis.

RESULTS

Repeated measures multivariate analyses of variance revealed that neither pitch type nor the effect of a simulated game resulted in statistically significant changes in pitching mechanics (F(10,600)=0.55, P=0.85), or muscle activations (pelvic: F(4,195)=0.07, P=0.85; scapular: F(4,118)=0.09, P=0.52).

CONCLUSIONS

The principle findings of this study revealed that pitching to the age-restricted pitch count limit did not result in altered pitching mechanics or muscle activations, and no differences occurred between the 3 pitches. These results support previous research that indicate the curveball pitch is no more dangerous for youth than the other pitches commonly thrown. This is supported by the pitcher's ability to maintain a proper arm slot during all 3 pitches and indicates that they are obtaining the spin on the ball from their grip and not by altering upper extremity mechanics.

LEVEL OF EVIDENCE

Level 5.

摘要

背景

投球时需要骨盆和肩胛骨具备适当的稳定性与方位,以便在投球过程中高效地传递能量。在一场比赛过程中,骨盆和肩胛部肌肉组织的疲劳会损害投球表现,并对投掷手臂造成过度压力,进而导致受伤。本研究的目的是考察模拟比赛后青少年棒球投手在投快球、变速球和曲线球时,骨盆、躯干及上肢的投球力学和肌肉激活情况的差异。

方法

招募了14名无受伤史的青少年棒球投手。使用电磁跟踪系统收集投球力学数据。在双侧臀中肌和臀大肌;以及投掷手臂一侧的背阔肌、下斜方肌、上斜方肌和前锯肌上收集表面肌电图数据。参与者被要求在模拟比赛中尽全力投球,该模拟比赛提供了类似于比赛中出现的随机比赛情境。根据年龄限制的投球次数,参与者的投球次数限制为85次。选取首局和末局投出的3个快球、曲线球和变速球的数据进行分析。

结果

重复测量多变量方差分析显示,无论是投球类型还是模拟比赛的影响,均未导致投球力学(F(10,600)=0.55,P=0.85)或肌肉激活(骨盆:F(4,195)=0.07,P=0.85;肩胛:F(4,118)=0.09,P=0.52)出现具有统计学意义的变化。

结论

本研究的主要发现表明,按照年龄限制的投球次数上限投球不会导致投球力学或肌肉激活发生改变,且三种投球之间没有差异。这些结果支持了先前的研究,即对于青少年而言,曲线球并不比其他常用投球更危险。这得到了投手在所有三种投球过程中保持适当手臂位置的能力的支持,并表明他们是通过握球方式使球产生旋转,而非通过改变上肢力学来实现。

证据水平

5级。

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