Keeley David W, Oliver Gretchen D, Dougherty Christopher P, Torry Michael R
Department of Kinesiology and Dance, New Mexico State University, Las Cruces, NM.
J Appl Biomech. 2015 Jun;31(3):181-8. doi: 10.1123/jab.2011-0229. Epub 2015 Mar 3.
The purpose of this study was to better understand how lower body kinematics relate to peak glenohumeral compressive force and develop a regression model accounting for variability in peak glenohumeral compressive force. Data were collected for 34 pitchers. Average peak glenohumeral compressive force was 1.72% ± 33% body weight (1334.9 N ± 257.5). Correlation coefficients revealed 5 kinematic variables correlated to peak glenohumeral compressive force (P < .01, α = .025). Regression models indicated 78.5% of the variance in peak glenohumeral compressive force (R2 = .785, P < .01) was explained by stride length, lateral pelvis flexion at maximum external rotation, and axial pelvis rotation velocity at release. These results indicate peak glenohumeral compressive force increases with a combination of decreased stride length, increased pelvic tilt at maximum external rotation toward the throwing arm side, and increased pelvis axial rotation velocity at release. Thus, it may be possible to decrease peak glenohumeral compressive force by optimizing the movements of the lower body while pitching. Focus should be on both training and conditioning the lower extremity in an effort to increase stride length, increase pelvis tilt toward the glove hand side at maximum external rotation, and decrease pelvis axial rotation at release.
本研究的目的是更好地了解下肢运动学与肱盂关节峰值压缩力之间的关系,并建立一个回归模型来解释肱盂关节峰值压缩力的变异性。收集了34名投手的数据。肱盂关节平均峰值压缩力为体重的1.72%±33%(1334.9牛±257.5)。相关系数显示有5个运动学变量与肱盂关节峰值压缩力相关(P<.01,α=.025)。回归模型表明,步幅、最大外旋时骨盆侧屈以及投球时骨盆轴向旋转速度可解释肱盂关节峰值压缩力78.5%的方差(R2=.785,P<.01)。这些结果表明,肱盂关节峰值压缩力随着步幅减小、最大外旋时向投掷手臂侧骨盆倾斜增加以及投球时骨盆轴向旋转速度增加而增大。因此,在投球时通过优化下肢运动可能降低肱盂关节峰值压缩力。重点应放在训练和调节下肢,以增加步幅、在最大外旋时增加向手套手侧的骨盆倾斜,并减少投球时骨盆轴向旋转。