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风车式垒球投球动作中肱二头肌的活动:损伤影响及与上手投球的比较

Biceps activity during windmill softball pitching: injury implications and comparison with overhand throwing.

作者信息

Rojas Idubijes L, Provencher Matthew T, Bhatia Sanjeev, Foucher Kharma C, Bach Bernard R, Romeo Anthony A, Wimmer Markus A, Verma Nikhil N

机构信息

Department of Orthopedic Surgery, Rush University Medical Center, Chicago, IL 60612, USA.

出版信息

Am J Sports Med. 2009 Mar;37(3):558-65. doi: 10.1177/0363546508328105. Epub 2009 Jan 27.

Abstract

BACKGROUND

Windmill pitching produces high forces and torques at the shoulder and elbow, making the biceps labrum complex susceptible to overuse injury. Little is known about the muscle firing patterns during a windmill pitch.

HYPOTHESIS

Biceps muscle activity is greater during a windmill pitch than during an overhand throw.

STUDY DESIGN

Descriptive laboratory study.

METHODS

Seven female windmill pitchers underwent motion analysis and surface electromyography evaluation of their biceps muscles during windmill and overhand throwing. Marker motion analysis, muscle activity, and ball release were captured simultaneously. Surface electromyography trials were collected and related to the athletes' phases of pitching and throwing, identified based on predefined softball and baseball pitching mechanics.

RESULTS

Throws were of similar velocity (24 m/s, 53 mph, P = .71), but peak biceps brachii muscle activation during the windmill pitch was significantly greater than during the overhand throw when normalized (38% vs 19% manual muscle test, P = .02). The highest muscle activity occurred at the 9-o'clock phase of the windmill pitch, during which the biceps brachii undergoes eccentric contraction. In the overhand throw, the highest level of biceps activity occurred during arm cocking.

CONCLUSION

In female athletes, biceps brachii activity during the windmill pitch is higher than during an overhand throw and is most active during the 9-o'clock and follow-through phases of the pitch.

CLINICAL RELEVANCE

Repetitive eccentric biceps contractions may help explain the high incidence of anterior shoulder pain clinically observed in elite windmill pitchers. Injury prevention and treatment mechanisms should focus on the phases with the highest muscle activity.

摘要

背景

风车式投球动作会在肩部和肘部产生高负荷力和扭矩,使得肱二头肌盂唇复合体容易受到过度使用损伤。关于风车式投球过程中的肌肉激活模式,目前所知甚少。

假设

风车式投球过程中肱二头肌的活动量大于过头投掷时。

研究设计

描述性实验室研究。

方法

七名女子风车式投手在进行风车式投球和过头投掷时,接受了运动分析和肱二头肌表面肌电图评估。同时记录标记运动分析、肌肉活动和球的释放情况。收集表面肌电图试验数据,并将其与运动员基于预定的垒球和棒球投球力学确定的投球和投掷阶段相关联。

结果

两种投掷方式的速度相似(24米/秒,53英里/小时,P = 0.71),但经标准化后,风车式投球过程中肱二头肌的峰值肌肉激活明显大于过头投掷时(手动肌力测试分别为38%和19%,P = 0.02)。肌肉活动最高值出现在风车式投球的9点钟阶段,此时肱二头肌进行离心收缩。在过头投掷中,肱二头肌活动的最高水平出现在手臂后摆阶段。

结论

在女性运动员中,风车式投球过程中肱二头肌的活动高于过头投掷,且在投球的9点钟阶段和随挥阶段最为活跃。

临床意义

重复性的肱二头肌离心收缩可能有助于解释在精英风车式投手中临床上观察到的前肩痛高发病率。损伤预防和治疗机制应关注肌肉活动最高的阶段。

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