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Exploring the Metabolic and Perceptual Correlates of Self-Selected Walking Speed under Constrained and Un-Constrained Conditions

机译:探索约束和非约束条件下自选行走速度的代谢和知觉相关性

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摘要

Mechanisms underpinning self-selected walking speed (SSWS) are poorly understood. The present study investigated the extent to which SSWS is related to metabolism, energy cost, and/or perceptual parameters during both normal and artificially constrained walking. Fourteen participants with no pathology affecting gait were tested under standard conditions. Subjects walked on a motorized treadmill at speeds derived from their SSWS as a continuous protocol. RPE scores (CR10) and expired air to calculate energy cost (J.kg-1.m-1) and carbohydrate (CHO) oxidation rate (J.kg-1.min-1) were collected during minutes 3-4 at each speed. Eight individuals were re-tested under the same conditions within one week with a hip and knee-brace to immobilize their right leg. Deflection in RPE scores (CR10) and CHO oxidation rate (J.kg-1.min-1) were not related to SSWS (five and three people had deflections in the defined range of SSWS in constrained and unconstrained conditions, respectively) (p > 0.05). Constrained walking elicited a higher energy cost (J.kg-1.m-1) and slower SSWS (p < 0.05) versus normal walking. RPE (CR10) was not significantly different between walking conditions or at SSWS (p > 0.05). SSWS did not occur at a minimum energy cost (J.kg-1.m-1) in either condition, however, the size of the minimum energy cost to SSWS disparity was the same (Froude {Fr} = 0.09) in both conditions (p = 0.36). Perceptions of exertion can modify walking patterns and therefore SSWS and metabolism/ energy cost are not directly related. Strategies which minimize perceived exertion may enable faster walking in people with altered gait as our findings indicate they should self-optimize to the same extent under different conditions.Key points class="unordered" style="list-style-type:disc">Minimum energy cost (J.kg-1·min-1) was closely associated with, but did not occur at, SSWS.Perceptual RPE (CR10) and CHO utilisation rate markers did not find a determinant for SSWS.People should self-optimise walking to the same extent under different conditions.
机译:对自选行走速度(SSWS)的支撑机制了解甚少。本研究调查了在正常和人为约束的步行过程中,SSWS与代谢,能量消耗和/或知觉参数相关的程度。在标准条件下测试了十四名没有病理影响步态的参与者。受试者在电动跑步机上以源自其SSWS的速度连续行驶。 RPE评分(CR10)和呼出空气以计算能量成本(J.kg -1 .m -1 )和碳水化合物(CHO)氧化率(J.kg -1 .min -1 )。八个人在相同的条件下在一周内用髋关节和膝盖支架固定右腿进行了重新测试。 RPE分数(CR10)和CHO氧化率(J.kg -1 .min -1 )的挠度与SSWS无关(5人和3个人在分别在受约束和不受约束的条件下确定SSWS的范围)(p> 0.05)。与正常步行相比,约束步行会导致较高的能量消耗(J.kg -1 .m -1 )和SSWS较慢(p <0.05)。在步行条件下或在SSWS下,RPE(CR10)均无显着差异(p> 0.05)。在两种情况下,SSWS都没有以最小能量成本(J.kg -1 .m -1 )发生,但是最小能量成本的大小取决于SSWS的差异在两个条件下(p = 0.36)相同(Froude {Fr} = 0.09)。劳累的感觉可以改变步行方式,因此SSWS和新陈代谢/能量消耗不直接相关。最小化感知劳累的策略可能使步态改变的人更快地行走,因为我们的发现表明他们应该在不同条件下进行相同程度的自我优化。要点 class =“ unordered” style =“ list-style-type:disc “> <!-list-behavior =无序前缀-word = mark-type = disc max-label-size = 0-> 最低能耗(J.kg -1 · min -1 )与SSWS密切相关,但并未发生。 知觉RPE(CR10)和CHO利用率标记物找不到SSWS的决定因素。< / li> 人们应该在不同条件下以相同程度自我优化步行。

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