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The energy cost of ski mountaineering: effects of speed and ankle loading

机译:滑雪登山的能源成本:速度和脚踝负荷的影响

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The purpose of this study is to determine the energy cost (EC) of ski mountaineering and its variation with speed and ankle loading. Seven male skiers volunteered to participate in this study. Field tests (500 m, grathent 21%) were executed on packed snow at an altitude of about 1 600 m. Measurements were carried out breath by breath by a portable gas analyzer. Energy cost of uphill skiing was calculated from the steady state (ProQuest-CSA LLC: ... denotes formula omitted.). In the speed protocol each subject was asked to repeat the same route at three different speed levels. In the weight protocol, subjects were instructed to maintain the preferred speed for three trials on the same track while wearing different weight bands on their ankle. At the self-selected speed of 1.07±0.05 m s^sup -1^ and without extra load beside the normal equipment, the mean value of EC on packed snow is 10.6±0.4 J kg^sup -1^m^sup -1^. A percentage variation of the speed (% speed) produces a corresponding percentage variation of the energy cost %EC = 0.32 * %speed. The %EC as a function of the percentage of added load, %weight, with respect to the total weight of the subject, including ski, bindings, and boots is given by %EC = 1.71 * %weight. Data obtained in the present study constitute the first quantitative description of EC for ski mountaineering and result higher than for walking or snowshoeing. Effects due to ankle loading appear negligible for recreational skiers, while they should be taken into account in agonistic competition.
机译:这项研究的目的是确定滑雪登山的能量成本(EC)及其随速度和脚踝负荷的变化。七个男性滑雪者自愿参加了这项研究。在大约1600 m的高空积雪上进行了现场测试(500 m,粗细21%)。用便携式气体分析仪进行呼吸测量。根据稳定状态计算上坡滑雪的能源成本(ProQuest-CSA LLC:...表示公式被省略。)。在速度协议中,要求每个受试者以三个不同的速度水平重复相同的路线。在举重方案中,受试者被要求在相同的赛道上保持三项试验的首选速度,同时在脚踝上佩戴不同的重带。在自选速度为1.07±0.05 ms ^ sup -1 ^且没有正常设备的情况下,没有额外的负荷,在积雪上EC的平均值为10.6±0.4 J kg ^ sup -1 ^ m ^ sup -1 ^ 。速度的百分比变化(%速度)会产生相应的能源成本百分比变化%EC = 0.32 *%speed。相对于受试者总重量(包括滑雪板,固定物和靴子)的重量,%EC作为附加负荷百分比(%重量)的函数由%EC = 1.71 *%weight给出。在本研究中获得的数据构成了滑雪登山EC的第一个定量描述,其结果要高于步行或雪鞋行走。对于休闲滑雪者,由于脚踝负重造成的影响似乎可以忽略不计,而在激烈的比赛中则应将其考虑在内。

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    P Tosi A Leonardi F Schena;

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    P. TOSI1,2, A. LEONARDI1, F. SCHENA1*,31 Ce.Bi.S.M., Centre of Bioengineeringand Sport Science, Rovereto, Italy2 Department of Physics, University of Trento, Povo, Italy3 Faculty of Motor Sciences, University of Verona, Verona, ItalyAcknowledgements. - The authors wish to thank the "Corpo Nazionale Soccorso Alpino e Speleologico CNSAS Servizio Provinciale Trentino" for support in the activities of this study.Received on July 22, 2007.Accepted for publication on December 10, 2008.Corresponding author: F. Schena, CEBISM, via Del Ben 5b, 38068 Rovereto, Italy. E-mail: federico.schena@unitn.it;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
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  • 入库时间 2022-08-17 23:19:14

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