Winters Eric, Doty Steven, Lott Melanie, Baker James
Physical Education, Denison University, Granville, United States.
Physics, Denison University, Granville, United States.
Sports Med Int Open. 2022 Jul 29;6(1):E47-E52. doi: 10.1055/a-1854-1007. eCollection 2022 Jan.
The kinetic sequencing involved in the overhead throw anticipates an orchestration of body movement in which the more proximal segments of the body initiate movement prior to the more distal segment. This investigation explored neuromuscular and kinematic characteristics associated with one aspect of this kinetic sequencing, pelvic-to-thoracic rotation. Neuromuscular activation was recorded using surface electromyography and kinematic data was acquired using 3D videography. Specific objectives included 1) to describe the maximum angulation between the pelvic and thoracic body segments (X ), 2) to test the hypothesis that glove-side external oblique peak neuromuscular activation (GEOPA) occurs before X , 3) to test the hypothesis that throwing-side external oblique peak neuromuscular activation (TEOPA) occurs following X . Results show the mean X to be 45.96 degrees (±10.83). The time of mean GEOPA (2.3653 sec±0.9094) occurred following the time of mean X (2.2793 sec,±0.9026, p<0.01), thus refuting the first hypothesis. The time of mean TEOPA (2.3658 sec,±0.8978) occurred following the time of mean X (2.2793 sec,±0.9026, p<0.01), thus confirming the second hypothesis. Results suggest that youth baseball participants may not adequately utilize the core of the body to fully benefit from the optimal kinetic sequencing postulated within the literature.
过头投掷动作中的动力学顺序预期身体动作的协调配合,即身体近端节段先于远端节段启动动作。本研究探讨了与这种动力学顺序的一个方面——骨盆到胸廓旋转相关的神经肌肉和运动学特征。使用表面肌电图记录神经肌肉激活情况,使用三维摄像获取运动学数据。具体目标包括:1)描述骨盆和胸廓身体节段之间的最大角度(X);2)检验手套侧腹外斜肌峰值神经肌肉激活(GEOPA)在X之前出现的假设;3)检验投掷侧腹外斜肌峰值神经肌肉激活(TEOPA)在X之后出现的假设。结果显示平均X为45.96度(±10.83)。平均GEOPA时间(2.3653秒±0.9094)在平均X时间(2.2793秒,±0.9026,p<0.01)之后出现,从而反驳了第一个假设。平均TEOPA时间(2.3658秒,±0.8978)在平均X时间(2.2793秒,±0.9026,p<0.01)之后出现,从而证实了第二个假设。结果表明,青少年棒球参与者可能没有充分利用身体核心部位,无法从文献中假定的最佳动力学顺序中充分受益。