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No physiological or biomechanical sex-by-load interactions during treadmill-based load carriage

机译:在跑步机的载荷托架中没有生理或生物力学性行为逐个相互作用

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摘要

This study investigated whether physiological demand or gait mechanics differ between sexes during treadmill load carriage. Female (n = 15) and male (n = 15) military recruit-type participants with no load carriage experience completed three 10-minute walking trials at a self-selected speed with increasing relative body-borne loads (0%, 20%, and 40% body weight). A range of cardiorespiratory, perceptual and biomechanical variables were measured. Self-selected walking speed was similar between sexes (4.6-4.8 km.h(-1),p .05) and there were no significant sex-by-load interactions for any variables. AbsoluteO(2)andCO(2)were greater in males (difference 175-178 mL.min(-1),p .001), however, when relative to body mass,O(2)was similar between sexes (p .05). Across all loads, cadence was 7 +/- 2 steps.min(-1)faster (p = .004) and stance time was 0.06 +/- 0.02 s shorter (p = .013) in females. Increasing load resulted in greater physiological demand, cadence, % stance time, and step length (p .05). Practitioner summary:Literature comparing physiological and biomechanical variables between sexes during load carriage is scarce. Physiological and biomechanical sex differences were limited to relative measures associated with physical size (height and mass). Future research may pool male and female participants when conducting trials up to ten minutes in length.
机译:本研究调查了在跑步机负载托架中的性别之间的生理需求或步态力学是否有所不同。女性(n = 15)和男性(n = 15)军事招聘型参与者,没有负载托运经验,以自我选择的速度完成了三次10分钟的步行试验,随着相对的身体承载载荷(0%,20%,和40%的体重)。测量了一系列心肺,感知和生物力学变量。自选择的步行速度在性别之间相似(4.6-4.8 km.h(-1),p> .05),并且对任何变量没有显着的性爱相互作用。 Absoluteo(2)andco(2)在雄性中更大(差异175-178 ml.min(-1),p <.001),然而,当相对于体重时,o(2)在性别之间相似(p> .05)。在所有负载中,Cadence为7 +/- 2步。(-1)更快(P = .004)和姿势时间为0.06 +/- 0.02 s,女性中的较短(p = .013)。增加的负荷导致更大的生理需求,节奏,姿势时间和步长(P <.05)。从业者摘要:在负载托运期间比较性别之间的生理和生物力学变量的文献是稀缺的。生理和生物力学性别差异仅限于与物理尺寸(高度和质量)相关的相对措施。未来的研究可以在长达十分钟的时间内进行审判时汇集男性和女性参与者。

著录项

  • 来源
    《Ergonomics》 |2020年第9期|1175-1181|共7页
  • 作者单位

    La Trobe Univ Sch Allied Hlth Human Serv & Sport Sport & Exercise Sci Melbourne Vic Australia;

    La Trobe Univ Sch Allied Hlth Human Serv & Sport Sport & Exercise Sci Melbourne Vic Australia;

    Def Sci & Technol Grp Land Div Fishermans Bend Australia;

    Univ Newcastle Sch Life & Environm Sci Appl Sport Sci & Exercise Testing Lab Ourimbah Australia;

    La Trobe Univ Sch Allied Hlth Human Serv & Sport Sport & Exercise Sci Melbourne Vic Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    gait; physiological demand; kinematics; spatiotemporal; military ergonomics;

    机译:步态;生理需求;运动学;时尚;军事人体工程学;
  • 入库时间 2022-08-18 21:22:10

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