躯干运动控制对落地过程中膝关节生物力学指标的影响
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国家自然科学基金面上项目( 81472143)


The Effect of Trunk Motion Control on Biomechanical Parameters of Knee During Landing
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    摘要:

    目的 明确躯干运动控制对单腿落地过程中膝关节生物力学的影响。方法 招募20名健康男性篮球运动员,采用 Vicon 运动捕捉系统、Kistler 三维测力台、Noraxon表面肌电测试系统测量在躯干控制条件下单腿落地过程中膝关节运动学、动力学和表面肌电的参数。结果 深吸气落地和带杆落地与自然落地比较在触地时刻膝关节屈曲角、峰值屈曲角、峰值屈曲力矩有统计学差异,触地时刻膝关节屈曲角、峰值屈曲角显著增大,峰值屈曲力矩显著减小;深吸气落地和带杆落地膝关节峰值外翻角、峰值外翻力矩及膝关节腘绳肌、股四头肌肌肌电活动量差异无统计学意义。结论 深吸气或带杆落地降低了篮球运动员落地运动中前交叉韧带(anterior cruciate ligament,ACL)损伤的风险,研究结果 为篮球运动员落地运动中ACL损伤预防提供理论基础。

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    Objective To determine the effect of trunk motion control on knee biomechanics during single-leg landing. Methods Twenty male healthy basketball players were recruited. The kinematics, kinetics parameters and surface electromyogram (EMG) of knee joints under trunk motion control during single-leg landing were studied by using Vicon motion Analysis system, Kistler force platform and Noraxon surface EMG system. Results Compared with natural landing, there were significant differences in flexion angle at initial contact moment, peak flexion angle and peak flexion moment during deeply inspiratory landing and landing with a stick, and a significantly larger flexion angle at initial contact moment, a larger peak flexion angle and smaller peak flexion moment were also found. Compared with natural landing, there was no statistical difference in peak valgus angle and peak valgus moment, as well as EMG activity of hamstrings, quadriceps muscles of the knee during deeply inspiratory landing and landing with a stick. Conclusions Deeply inspiratory landing or landing with a stick reduce the risk of anterior cruciate ligament (ACL) injury, and the results provide the theoretical basis for prevention of ACL injuries in basketball players during landing.

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马彬,谢地,陈卉芳,张甜甜,贾毓栋,谷鹏松,孙景毅,王海妹,刘海斌,李晓铭.躯干运动控制对落地过程中膝关节生物力学指标的影响[J].医用生物力学,2021,36(6):963-969

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  • 收稿日期:2021-01-08
  • 最后修改日期:2021-02-27
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  • 在线发布日期: 2021-12-23
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