Oyama Sakiko, Yu Bing, Blackburn J Troy, Padua Darin A, Li Li, Myers Joseph B
Department of Kinesiology, Health, and Nutrition, University of Texas San Antonio, San Antonio, Texas, USA Department of Exercise and Sports Science, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, USA
Division of Physical Therapy, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, USA.
Am J Sports Med. 2014 Sep;42(9):2089-94. doi: 10.1177/0363546514536871. Epub 2014 Jun 18.
In a properly coordinated throwing motion, peak pelvic rotation velocity is reached before peak upper torso rotation velocity, so that angular momentum can be transferred effectively from the proximal (pelvis) to distal (upper torso) segment. However, the effects of trunk rotation sequence on pitching biomechanics and performance have not been investigated.
The aim of this study was to investigate the effects of trunk rotation sequence on ball speed and on upper extremity biomechanics that are linked to injuries in high school baseball pitchers. The hypothesis was that pitchers with improper trunk rotation sequence would demonstrate lower ball velocity and greater stress to the joint.
Descriptive laboratory study.
Three-dimensional pitching kinematics data were captured from 72 high school pitchers. Subjects were considered to have proper or improper trunk rotation sequences when the peak pelvic rotation velocity was reached either before or after the peak upper torso rotation velocity beyond the margin of error (±3.7% of the time from stride-foot contact to ball release). Maximal shoulder external rotation angle, elbow extension angle at ball release, peak shoulder proximal force, shoulder internal rotation moment, and elbow varus moment were compared between groups using independent t tests (α < 0.05).
Pitchers with improper trunk rotation sequences (n = 33) demonstrated greater maximal shoulder external rotation angle (mean difference, 7.2° ± 2.9°, P = .016) and greater shoulder proximal force (mean difference, 9.2% ± 3.9% body weight, P = .021) compared with those with proper trunk rotation sequences (n = 22). No other variables differed significantly different between groups.
High school baseball pitchers who demonstrated improper trunk rotation sequences demonstrated greater maximal shoulder external rotation angle and shoulder proximal force compared with pitchers with proper trunk rotation sequences.
Improper sequencing of the trunk and torso alter upper extremity joint loading in ways that may influence injury risk. As such, exercises that reinforce the use of a proper trunk rotation sequence during the pitching motion may reduce the stress placed on the structures around the shoulder joint and lead to the prevention of injuries.
在一个协调良好的投球动作中,骨盆旋转速度峰值在躯干上部旋转速度峰值之前达到,这样角动量就能有效地从近端(骨盆)传递到远端(躯干上部)节段。然而,躯干旋转顺序对投球生物力学和表现的影响尚未得到研究。
本研究的目的是调查躯干旋转顺序对高中棒球投手球速以及与损伤相关的上肢生物力学的影响。假设是躯干旋转顺序不当的投手会表现出较低的球速和更大的关节压力。
描述性实验室研究。
从72名高中投手中采集三维投球运动学数据。当骨盆旋转速度峰值在躯干上部旋转速度峰值之前或之后达到且超出误差范围(从跨步脚触地到球释放时间的±3.7%)时,受试者被认为具有正确或不正确的躯干旋转顺序。使用独立t检验(α < 0.05)比较两组之间的最大肩外旋角度、球释放时的肘伸展角度、最大肩近端力、肩内旋力矩和肘内翻力矩。
与躯干旋转顺序正确的投手(n = 22)相比,躯干旋转顺序不正确的投手(n = 33)表现出更大的最大肩外旋角度(平均差异,7.2°±2.9°,P = .016)和更大的肩近端力(平均差异,9.2%±体重),P = .021)。两组之间的其他变量没有显著差异。
与躯干旋转顺序正确的投手相比,躯干旋转顺序不正确的高中棒球投手表现出更大的最大肩外旋角度和肩近端力。
躯干和躯干的顺序不当会以可能影响损伤风险的方式改变上肢关节负荷。因此,在投球动作中加强使用正确的躯干旋转顺序的练习可能会减少施加在肩关节周围结构上的压力,并有助于预防损伤。