Department of Sport Science, University of Innsbruck, Innsbruck, Austria.
Department of Mechanical Engineering, Cleveland State University, Cleveland, Ohio, USA.
Br J Sports Med. 2018 Sep;52(17):1086-1090. doi: 10.1136/bjsports-2017-098964. Epub 2018 Jun 28.
Competitive skiers face a high risk of sustaining an ACL injury during jump landing in downhill skiing. There is a lack of knowledge on how landing height affects this risk.
To evaluate the effect of varied landing height on peak ACL force during jump landing and to compare the effect of the landing height with the effect of the landing position varied by the trunk lean of the skier.
A 25-degree-of-freedom sagittal plane musculoskeletal model of an alpine skier, accompanied by a dynamic optimisation framework, was used to simulate jump landing manoeuvres in downhill skiing. First, a reference simulation was computed tracking experimental data of competitive downhill skier performing a jump landing manoeuvre. Second, sensitivity studies were performed computing 441 landing manoeuvres with perturbed landing height and trunk lean of the skier, and the corresponding effects on peak ACL force were determined.
The sensitivity studies revealed that peak ACL force increased with jump height and backward lean of the skier as expected. However, peak ACL was about eight times more sensitive to the trunk lean of the skier compared with landing height. The decreased sensitivity of the landing height was based on the lower effects on the knee muscle forces and the shear component of the knee joint reaction force.
Preventive measures are suggested to focus primarily on avoiding trunk backward lean of the skier, and consequently on proper jump preparation and technique, and secondarily on strategies to reduce landing height during jumps.
竞技滑雪者在高山速降滑雪的跳跃着陆中面临 ACL 损伤的高风险。对于着陆高度如何影响这种风险,我们知之甚少。
评估不同着陆高度对跳跃着陆时 ACL 峰值力的影响,并比较着陆高度的影响与滑雪者躯干倾斜改变着陆位置的影响。
使用具有动态优化框架的 25 自由度矢状面骨骼肌肉模型来模拟高山滑雪的跳跃着陆动作。首先,计算了参考模拟,以跟踪进行跳跃着陆动作的竞技高山滑雪运动员的实验数据。其次,进行了敏感性研究,计算了 441 个具有干扰着陆高度和滑雪者躯干倾斜的着陆动作,确定了对 ACL 峰值力的相应影响。
敏感性研究表明,峰值 ACL 力随着跳跃高度和滑雪者的向后倾斜而增加,这是预期的。然而,与着陆高度相比,ACL 的峰值对滑雪者躯干的倾斜敏感约八倍。着陆高度的敏感性降低是基于膝关节肌肉力量和膝关节反作用力的剪切分量的较低影响。
建议预防措施主要集中在避免滑雪者的躯干向后倾斜,从而正确的跳跃准备和技术,其次是在跳跃中降低着陆高度的策略。