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首页> 外文期刊>Work: A Journal of Prevention, Assessment and Rehabilitation >Energy cost during locomotion across snow: A comparison of four types of snowshoes with snowshoe design considerations
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Energy cost during locomotion across snow: A comparison of four types of snowshoes with snowshoe design considerations

机译:雪上运动过程中的能源成本:四种雪靴与雪靴设计注意事项的比较

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Snowshoes are a common method of locomotion across snow but no investigations has previously examined the energy cost of different snowshoe models or looked for desirable snowshoe design characteristics. To this end, four Marines were studied while walking at 4 km/h in four different types of snowshoes. They traversed a field with an average grade of 2.4%, downhill and once uphill with each snowshoe. Expired respiratory gases (for energy cost measures) and heart rates were collected continuously during the walk. The Pride Assault and US Army Standard models had a lower energy cost than the Montana Light model and tended to have a lower cost than the British Assault model. Correlations between snowshoe mass/surface area ratios and energy cost were 0.81 and 0.72 on the uphill and downhill portions of the course, respectively. Examination of the physical attributes of the snowshoes suggested several design characteristics may be favorable from an energy cost perspective: 1) a hinge-and-binding system that allows the snowshoe to be dragged across the snow, 2) an upturned front that pushes snow away and allows a more horizontal (less vertical) displacement of the snowshoe during locomotion, 3) a narrow profile that avoids leg abduction, and 4) a lower mass to surface area ratio. Further research will be necessary to determine the importance of these factors because of the limited number of subjects and the single snow condition examined here.
机译:雪鞋是在雪中移动的一种常见方法,但是以前没有任何研究检查过不同雪鞋模型的能源成本,也没有寻找理想的雪鞋设计特征。为此,研究了四名海军陆战队员,他们在四种不同类型的雪靴中以4 km / h的速度行走。他们走过一个平均坡度为2.4%的田地,下坡时每次雪鞋上坡一次。步行过程中不断收集呼出的呼吸气体(用于能源成本测量)和心率。傲慢突击和美国陆军标准模型的能源成本比蒙大拿轻型模型低,而且成本也比英军突击模型低。在该路线的上坡和下坡部分,雪鞋质量/表面积比与能源成本之间的相关性分别为0.81和0.72。对雪鞋的物理属性进行检查表明,从能源成本的角度来看,有几个设计特征可能是有利的:1)铰链和装订系统,使雪鞋可以在雪地上拖动; 2)上翘的前部将雪推开并允许雪鞋在运动过程中进行更大程度的水平移动(垂直移动较少); 3)避免腿外展的狭窄轮廓; 4)较低的质量与表面积之比。由于受试对象的数量有限,并且这里仅检查了一场雪况,因此有必要进行进一步的研究以确定这些因素的重要性。

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    Directorate of Epidemiology and Disease Surveillance, US Army Center for Health Promotion and Preventive Medicine, Aberdeen Proving Ground, MD 21010, USA;

    Individual Performance Branch, Human Research and Engineering Directorate, US Army Research Laboratory, Aberdeen Proving Ground, MD 21005, USA;

    Individual Performance Branch, Human Research and Engineering Directorate, US Army Research Laboratory, Aberdeen Proving Ground, MD 21005, USA;

    Individual Performance Branch, Human Research and Engineering Directorate, US Army Research Laboratory, Aberdeen Proving Ground, MD 21005, USA;

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