Zorko Martin, Nemec Bojan, Matjačić Zlatko, Olenšek Andrej, Tomazin Katja, Supej Matej
Clinical Institute of Occupational, Traffic and Sports Medicine, University Medical Centre Ljubljana, Ljubljana, Slovenia.
Department for Automatics, Biocybernetics and Robotics, Jožef Štefan Institute, Ljubljana, Slovenia.
Front Sports Act Living. 2020 Feb 18;2:7. doi: 10.3389/fspor.2020.00007. eCollection 2020.
Alpine skis with wider waist widths have recently become more popular. With such skis, the contact point of the ground reaction force during ski turns is displaced more medially from beneath the sole of the outer ski, which may present an increased risk of injury. The aim of this study was to investigate knee joint kinetics, kinematics, and lower limb muscle activation as a function of changes of the ski waist width in a laboratory setting. A custom skiing simulator was constructed to enable simulation of different ski waist widths in a quasi-static ski turn position. An optical system was used for capturing knee joint kinematics of the outer leg, whereas a force plate was used to determine the ground reaction force vector. The combination of both systems enabled values for external torques acting on the knee joint to be calculated, whereas electromyographic measurements enabled an analysis of knee flexor muscle activation. With respect to the outer ski, the knee joint external torques were independent of ski waist width, whereas knee joint external rotation and biceps femoris activation increased significantly with the increase of the ski waist width. Skier muscle and kinematics adaptation most probably took place to diminish the external knee joint torque changes when the waist width of the ski was increased. The laboratory results suggest that using skis with large waist widths on hard, frozen surfaces may change the load of knee joint surfaces. However, future research is needed to clarify if this may result in the increased risk of knee injury.
腰部更宽的高山滑雪板近来越来越受欢迎。使用这种滑雪板时,滑雪转弯过程中地面反作用力的接触点会从外侧滑雪板鞋底下方更向内侧偏移,这可能会增加受伤风险。本研究的目的是在实验室环境中,研究膝关节动力学、运动学以及下肢肌肉激活情况与滑雪板腰部宽度变化之间的关系。构建了一个定制的滑雪模拟器,以便在准静态滑雪转弯姿势下模拟不同的滑雪板腰部宽度。使用光学系统捕捉外侧腿部的膝关节运动学数据,同时使用测力板确定地面反作用力矢量。这两个系统的结合使得能够计算作用在膝关节上的外部扭矩值,而肌电图测量则能够分析膝关节屈肌的激活情况。对于外侧滑雪板而言,膝关节外部扭矩与滑雪板腰部宽度无关,而膝关节的外部旋转以及股二头肌的激活程度则随着滑雪板腰部宽度的增加而显著增加。当滑雪板腰部宽度增加时,滑雪者的肌肉和运动学适应性很可能发生了变化,以减少膝关节外部扭矩的变化。实验室结果表明,在坚硬、结冰的表面使用腰部较宽的滑雪板可能会改变膝关节表面的负荷。然而,还需要进一步的研究来阐明这是否会导致膝关节受伤风险增加。