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Is there a conflict between minimizing effort and energy expenditure with increasing velocities of muscle contraction in humans?

机译:在最大限度地减少精力和精力消耗与增加人类肌肉收缩速度之间是否存在冲突?

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摘要

class="enumerated" style="list-style-type:decimal">The present study examined the possibility that minimizing effort conflicts with minimizing energy expenditure at different velocities of muscle contraction during cycling.Six normal subjects underwent incremental exercise on an electrically stabilized cycle ergometer. Power output increased by 45 W every 3 min to exhaustion at pedalling frequencies of 40, 60, 80 and 100 r.p.m. on separate days. Energy expenditure (oxygen uptake), leg effort and dyspnoea (Borg 0-10 scale) were measured in parallel at the end of each minute.All six subjects completed 10 min of exercise achieving 180 W for all four pedalling frequencies. Two-way analysis of variance indicated that oxygen uptake (P < 0.0001), leg effort (P < 0.0001) and dyspnoea (P < 0.0001) increased with duration of exercise and power output; oxygen uptake (P < 0.0001) and leg effort (P < 0.05) were significantly different between pedalling frequencies; the interactions were not significant. Oxygen uptake was minimal at 60 r.p.m., and increased at both higher and lower pedalling frequencies. Both leg effort and dyspnoea were minimal at 80 r.p.m.; leg effort intensified at higher and lower pedalling frequencies; and dyspnoea was most intense at 100 r.p.m.There was a conflict between minimization of energy expenditure and leg effort at power outputs less than 180 W. Minimizing effort occurred at the expense of an increase in energy expenditure.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 本研究探讨了在骑自行车过程中,在不同的肌肉收缩速度下,将精力最小化与能量消耗最小化相冲突的可能性。 六名正常受试者在电稳定的自行车测功机上进行了增量运动。功率输出每3分钟增加45 W,以40、60、80和100 r.p.m的踏板频率耗尽。在不同的日子。每分钟结束时平行测量能量消耗(氧气吸收),下肢力量和呼吸困难(Borg 0-10评分)。 所有六名受试者完成了10分钟的运动,全部四人均达到180 W踏板频率。双向方差分析表明,随着运动时间和功率输出,摄氧量(P <0.0001),下肢力量(P <0.0001)和呼吸困难(P <0.0001)增加。脚踏频率之间的摄氧量(P <0.0001)和腿部力量(P <0.05)显着不同;相互作用不显着。氧气的吸收在60 r.p.m.时是最小的,并且在较高和较低的踩踏频率下都增加。在80 r.p.m.时,腿部力量和呼吸困难均最小。在较高和较低的踩踏频率下,腿部力量会增强;并且呼吸困难在100 rpm时最严重。 在功率输出小于180 W时,最小化能量消耗和腿部力量之间存在冲突。最小化努力是以增加能量消耗为代价的。 li>

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