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Effect of Resistive Load on the Inspiratory Work and Power of Breathing during Exertion

机译:阻性负载上运动时呼吸吸气功和功率的影响

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摘要

The resistive work of breathing against an external load during inspiration (WRI) was measured at the mouth, during sub-maximal exercise in healthy participants. This measure (which excludes the elastic work component) allows the relationship between resistive work and power, ventilation and exercise modality to be explored. A total of 45 adult participants with healthy lung function took part in a series of exercise protocols, in which the relationship between WRI, power of breathing, PRI and minute ventilation, were assessed during rest, while treadmill walking or ergometer cycling, over a range of exercise intensities (up to 150 Watts) and ventilation rates (up to 48 L min−1) with applied constant resistive loads of 0.75 and 1.5 kPa.L.sec−1. Resting WRI was 0.12 JL−1 and PRI was 0.9 W. At each resistive load, independent of the breathing pattern or exercise mode, the WRI increased in a linear fashion at 20 mJ per litre of , while PRI increased exponentially. With increasing resistive load the work and power at any given increased exponentially. Calculation of the power to work ratio during loaded breathing suggests that loads above 1.5 kPa.L.sec−1 make the work of resistive breathing become inhibitive at even a moderate (>30 L sec−1). The relationship between work done and power generated while breathing against resistive loads is independent of the exercise mode (cycling or walking) and that ventilation is limited by the work required to breathe, rather than an inability to maintain or generate power.
机译:在健康参与者的次最大运动过程中,在口中测量了在吸气(WRI)期间抵抗外部负荷的呼吸阻力。该措施(不包括弹性功成分)允许探索电阻性功与力量,通气和锻炼方式之间的关系。共有45名健康肺功能的成年参与者参加了一系列运动方案,其中在休息,跑步机步行或测力计骑行期间评估了WRI,呼吸功率,PRI和分钟通气量之间的关系。施加恒定电阻负载0.75和1.5 kPa.L.sec -1 -1 ) >。静止时的WRI为0.12 JL -1 ,PRI为0.9W。在每个阻力负荷下,与呼吸模式或运动模式无关,WRI呈线性增加,每升20 mJ,而PRI呈指数增长。随着电阻负载的增加,任何给定的功和功率都呈指数增长。负荷呼吸过程中的功功比的计算表明,负荷超过1.5 kPa.L.sec -1 会使阻力呼吸的工作即使在中等(> 30 L sec - 1 )。抵抗阻力负荷时完成的工作与所产生的动力之间的关系与运动模式(骑自行车或步行)无关,并且通风受呼吸所需的工作限制,而不是无法维持或产生动力。

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  • 期刊名称 other
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  • 年(卷),期 -1(7),11
  • 年度 -1
  • 页码 e49681
  • 总页数 5
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