Suppr超能文献

滑雪鞋与膝关节——3:向后摔倒的风险

[Ski shoe versus knee joint--3: Risk for falling backward].

作者信息

Schaff P, Hauser W

机构信息

Institut für biomechanische Analysen im Sport und interdisziplinäre Studien (BASiS) TUV-PS, München.

出版信息

Sportverletz Sportschaden. 1990 Dec;4(4):151-62. doi: 10.1055/s-2007-993615.

Abstract

In contrast to the drop in the incidence of fractures of the lower leg that has been observed in recent years, the incidence of knee injuries has not decreased in skiing. There has even been a relative increase of severe knee lesions and isolated ACL ruptures, prompting us to conduct a comprehensive study of the causes of this phenomena. The goal of the study was to develop a new measuring device for alpine skiing research by combining motion analysis, pressure and force measurement, comprehensive examine the forward/backward movement in skiboots in the lab and by means of telemetry on the slope (Skiboot versus knee joint part 1/Sportverlerletzung. Sportschaden 3, 1989, pp. 149-161) and to come up with a proposal for a new safety concept to reduce the high number of knee injuries in alpine skiing in the future. The first study was devoted to the forward movement in skiboots (Skiboot versus knee joint part 2/Sportverletzung. Sportschaden 4, 1990, pp. 1-13). The results showed that a skiing style in backward lean position was adopted by skiers wearing boots with a stiff forward flexion and was supported by the fixed backward spoiler. In order to quantify the influence of the backward spoiler a special skiboot was constructed allowing the rear spoiler to give way at a variable, defined stiffness and register the angular displacement and horizontal force Fh. The results showed most clearly that even a medium rear spoiler resistance will sign, reduce the peak force values by a factor of 5.5. The acceleration at the knee joint level is significantly higher (factor 1.6, p less than 0.05) in case of a rigid spoiler. The lab tests could be confirmed on the slope (sign. reduction of max. force by factor 8). It also proved that normal skiing can be performed in such a boot without limitations. In consideration of our facts it is concluded that the principle of safety bindings must definitely apply in future in equal measure also to the ski boot. As a proposal for future safety ski boot, that allowed for the first time the rear part to give way after a certain amount of force (adjustable preload). The backward release bindings, which can often produce dangerous malfunctions if a strong force acts on them for a short period of time, could thus be complemented by a safety system in the boots. In all probability this would be a contributing factor to reducing the high incidence of knee injuries in skiing.

摘要

与近年来观察到的小腿骨折发生率下降相反,滑雪运动中膝盖受伤的发生率并未降低。严重膝盖损伤和孤立的前交叉韧带断裂甚至出现了相对增加的情况,这促使我们对这一现象的原因进行全面研究。该研究的目标是通过结合运动分析、压力和力测量,开发一种用于高山滑雪研究的新测量装置,在实验室中并通过在斜坡上的遥测全面检查滑雪靴中的前后运动(《滑雪靴与膝关节 第1部分/运动损伤。运动损伤杂志》3,1989年,第149 - 161页),并提出一项新的安全概念提案,以减少未来高山滑雪中大量的膝盖损伤。第一项研究致力于滑雪靴中的向前运动(《滑雪靴与膝关节 第2部分/运动损伤。运动损伤杂志》4, 1990年,第1 - 13页)。结果表明,穿着具有刚性前屈的靴子的滑雪者采用向后倾斜姿势的滑雪方式,并由固定的后扰流板提供支撑。为了量化后扰流板的影响,制造了一种特殊的滑雪靴,使后扰流板能够以可变的、定义好的刚度让步,并记录角位移和水平力Fh。结果最清楚地表明,即使是中等的后扰流板阻力也会显著将峰值力值降低5.5倍。在刚性扰流板的情况下,膝关节水平的加速度明显更高(1.6倍,p小于0.05)。实验室测试在斜坡上得到了证实(最大力显著降低8倍)。这也证明了在这样的靴子中可以不受限制地进行正常滑雪。考虑到我们的研究结果,可以得出结论,安全固定装置的原理在未来肯定也必须同样适用于滑雪靴。作为未来安全滑雪靴的一项提案,首次允许后部在一定量的力作用后让步(可调节预载)。如果在短时间内受到强力作用,后释放固定装置经常会产生危险故障,因此可以通过靴子中的安全系统对其进行补充。这很可能是降低滑雪中膝盖损伤高发生率的一个促成因素。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验