Dai Boyi, Cook Ross F, Meyer Elizabeth A, Sciascia Yvonne, Hinshaw Taylour J, Wang Chaoyi, Zhu Qin
a Division of Kinesiology and Health , University of Wyoming , Laramie , WY , USA.
b Department of Sports Medicine , First Hospital of Jilin University , Changchun , China.
Sports Biomech. 2018 Jun;17(2):192-205. doi: 10.1080/14763141.2016.1265579. Epub 2017 Feb 28.
Anterior cruciate ligament (ACL) injuries commonly occur during jump-landing tasks when individuals' attention is simultaneously allocated to other objects and tasks. The purpose of the current study was to investigate the effect of allocation of attention imposed by a secondary cognitive task on landing mechanics and jump performance. Thirty-eight recreational athletes performed a jump-landing task in three conditions: no counting, counting backward by 1 s from a randomly given number, and counting backward by 7 s from a randomly given number. Three-dimensional kinematics and ground reaction forces were collected and analysed. Participants demonstrated decreased knee flexion angles at initial contact (p = 0.001) for the counting by 1 s condition compared with the no counting condition. Participants also showed increased peak posterior and vertical ground reaction forces during the first 100 ms of landing (p ≤ 0.023) and decreased jump height (p < 0.001) for the counting by 1 s and counting by 7 s conditions compared with the no counting condition. Imposition of a simultaneous cognitive challenge resulted in landing mechanics associated with increased ACL loading and decreased jump performance. ACL injury risk screening protocols and injury prevention programmes may incorporate cognitive tasks into jump-landing tasks to better simulate sports environments.
前交叉韧带(ACL)损伤通常发生在个体注意力同时分配到其他物体和任务的跳跃着陆任务中。本研究的目的是调查由次要认知任务施加的注意力分配对着陆力学和跳跃表现的影响。38名休闲运动员在三种条件下进行了跳跃着陆任务:不计数、从随机给定的数字开始每秒倒数1次、从随机给定的数字开始每秒倒数7次。收集并分析了三维运动学和地面反作用力。与不计数条件相比,参与者在每秒倒数1次的条件下初始接触时膝关节屈曲角度减小(p = 0.001)。与不计数条件相比,参与者在着陆的前100毫秒内还表现出后向和垂直地面反作用力峰值增加(p≤0.023),并且在每秒倒数1次和每秒倒数7次的条件下跳跃高度降低(p < 0.001)。同时施加认知挑战会导致与ACL负荷增加和跳跃表现降低相关的着陆力学。ACL损伤风险筛查方案和损伤预防计划可将认知任务纳入跳跃着陆任务,以更好地模拟运动环境。