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Control of Movement: Motor unit activity force steadiness and perceived fatigability are correlated with mobility in older adults

机译:运动控制:老年人的运动能力与运动能力力量的稳定性以及可感知的易疲劳性相关

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摘要

The purpose of our study was to examine the associations between the performance of older adults on four tests of mobility and the physical capabilities of the lower leg muscles. The assessments included measures of muscle strength, muscle activation, and perceived fatigability. Muscle activation was quantified as the force fluctuations—a measure of force steadiness—and motor unit discharge characteristics of lower leg muscles during submaximal isometric contractions. Perceived fatigability was measured as the rating of perceived exertion achieved during a test of walking endurance. Twenty participants (73 ± 4 yr) completed one to four evaluation sessions that were separated by at least 3 wk. The protocol included a 400-m walk, a 10-m walk at maximal and preferred speeds, a chair-rise test, and the strength, force steadiness, and discharge characteristics of motor units detected by high-density electromyography of lower leg muscles. Multiple-regression analyses yielded statistically significant models that explained modest amounts of the variance in the four mobility tests. The variance explained by the regression models was 39% for 400-m walk time, 33% for maximal walk time, 42% for preferred walk time, and 27% for chair-rise time. The findings indicate that differences in mobility among healthy older adults were partially associated with the level of perceived fatigability (willingness of individuals to exert themselves) achieved during the test of walking endurance and the discharge characteristics of soleus, medial gastrocnemius, and tibialis anterior motor units during steady submaximal contractions with the plantar flexor and dorsiflexor muscles.>NEW & NOTEWORTHY Differences among healthy older adults in walking endurance, walking speed, and ability to rise from a chair can be partially explained by the performance capabilities of lower leg muscles. Assessments comprised the willingness to exert effort (perceived fatigability) and the discharge times of action potentials by motor units in calf muscles during submaximal isometric contractions. These findings indicate that the nervous system contributes significantly to differences in mobility among healthy older adults.
机译:我们研究的目的是检查老年人在四种运动测试中的表现与小腿肌肉的身体能力之间的关系。评估包括肌肉力量,肌肉激活和感觉到的易疲劳性的测量。在次等长收缩过程中,小腿肌肉的力量波动(一种衡量力量稳定性的指标)和小腿肌肉的运动单位放电特征被量化为肌肉激活。感知疲劳度是在步行耐力测试期间达到的感知劳累等级。二十名参与者(73±4年)完成了至少三周的一到四次评估会议。协议包括400米的步行,最大和首选速度的10米的步行,椅子上升测试,以及通过小腿肌肉的高密度肌电图检测的运动单位的强度,力的稳定性和放电特性。多元回归分析得出具有统计学意义的模型,该模型解释了四种迁移率测试中的适度方差。回归模型解释的方差为:400 m步行时间为39%,最大步行时间为33%,首选步行时间为42%,椅子上升时间为27%。研究结果表明,健康的老年人之间的活动能力差异部分与步行耐力测试以及比目鱼,腓肠肌和胫骨前运动单元的出院特征的可疲劳程度(个人发挥自己的意愿)有关。 > NEW&NOTEWORTHY (健康和老年人)在步行耐力,步行速度和从椅子上抬起的能力方面的差异,可以部分解释为小腿肌肉。评估包括在最大等距收缩过程中小腿肌肉的运动单位愿意付出努力(感觉到的易疲劳性)和动作电位的放电时间。这些发现表明,神经系统显着地促进了健康老年人之间的活动能力差异。

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