Sydney School of Health Sciences, Faculty of Medicine and Health, The University of Sydney, Sydney, NSW, Australia.
Cleveland Guardians Baseball Company, Cleveland, Ohio.
Clin J Sport Med. 2023 Mar 1;33(2):e8-e13. doi: 10.1097/JSM.0000000000001095. Epub 2022 Nov 11.
Examine longitudinal changes in trunk, hip, and knee kinematics in maturing boys during an unanticipated cutting task.
Prospective cohort study.
Biomechanical laboratory.
Forty-two high-school male basketball, volleyball, and soccer athletes.
Trunk, hip, and knee range-of-motion (RoM), peak angles, and angles at initial contact during an unanticipated 45 degrees sidestep cutting task were estimated using laboratory-based three-dimensional optoelectronic motion capture. Maturation was classified using a modified Pubertal Maturational Observational Scale (PMOS) into prepubertal, midpubertal, or postpubertal stages.
Trunk total RoM in frontal, sagittal, and transverse planes; peak trunk flexion, right lateral flexion and right rotation angles; hip total RoM in frontal, sagittal, and transverse planes; hip flexion angle at initial contact; peak hip flexion and adduction angles; knee total RoM in frontal, sagittal, and transverse planes; knee flexion angle at initial contact; peak knee flexion and abduction angles.
As boys matured, there was a decrease in hip sagittal-plane RoM (49.02 degrees to 43.45 degrees, Benjamini-Hochberg adjusted P = 0.027), hip flexion at initial contact (29.33 degrees to 23.08 degrees, P = 0.018), and peak hip flexion (38.66 degrees to 32.71 degrees, P = 0.046), and an increase in trunk contralateral rotation (17.47 degrees to 25.05 degrees, P = 0.027).
Maturing male athletes adopted a more erect cutting strategy that is associated with greater knee joint loading. Knee kinematic changes that increase knee joint loading were not observed in this cohort.
在一项意外的侧滑切割任务中,研究成熟男孩躯干、臀部和膝关节运动学的纵向变化。
前瞻性队列研究。
生物力学实验室。
42 名高中男性篮球、排球和足球运动员。
使用基于实验室的三维光电运动捕捉技术估计躯干、臀部和膝关节的运动范围(ROM)、峰值角度以及在意外的 45 度侧滑切割任务中的初始接触角度。使用改良的青春期成熟观察量表(PMOS)将成熟度分类为青春期前、中期或后期。
额状面、矢状面和横断面上的躯干总 ROM;峰值躯干前屈、右侧侧屈和右侧旋转角度;额状面、矢状面和横断面上的髋关节总 ROM;髋关节初始接触时的髋关节屈曲角度;髋关节峰值屈曲和内收角度;额状面、矢状面和横断面上的膝关节总 ROM;膝关节初始接触时的膝关节屈曲角度;膝关节峰值屈曲和外展角度。
随着男孩的成熟,髋关节矢状面 ROM 减小(49.02 度至 43.45 度,Benjamini-Hochberg 调整后 P = 0.027),髋关节初始接触时的屈曲角度减小(29.33 度至 23.08 度,P = 0.018),峰值髋关节屈曲角度减小(38.66 度至 32.71 度,P = 0.046),躯干对侧旋转增加(17.47 度至 25.05 度,P = 0.027)。
成熟的男性运动员采用了更直立的切割策略,这与更大的膝关节负荷有关。在本队列中,没有观察到增加膝关节负荷的膝关节运动学变化。