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Influence of age on motor control accuracy during static ramp contractions

机译:年龄对静态坡道收缩期间电机控制精度的影响

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We investigated the influence of the ageing process on the performance of the motor control system accuracy during a challenging motor task throughout the analysis of force output oscillations. The force signal of the first dorsal interosseous during linearly varying static contraction, 0-100-0% of the maximal volitional abduction in 15s, was studied in 11 young and older adults. The relative error between the target and the actual force as well as several parameters of the force oscillations (corrections) were estimated. To understand the experimental results, we analyzed the force output generated by a set of computational simulations of a pool of motor units controlled by a proportional-integral-derivative system. Compared to young adults the older subjects presented larger errors and a lower number of corrections with longer duration and larger relative amplitude. The motor control system modelling varied the error update frequency (UF) of the controller (from 1 to 2.5Hz) as well as the range of contraction time (CT) of the recruited motor unit (30-90ms and 60-120ms reflecting young and old ranges, respectively). The simulation generated force profiles with parameters similar to experimental recordings in young (UF=1.5; CT 30-90ms) and older (UF=1; CT 60-120ms) adults. Interestingly, the results of the simulations suggested that the improvement in the error update frequency of the controller was not able to compensate for the contractile changes in the motor unit twitches. In conclusion, the peripheral contractile changes with age can influence motor unit control strategies and represent a crucial phenomenon in the generation of larger force oscillations in older adults.
机译:我们调查了老化过程对在挑战性的电机任务期间对电机控制系统精度的性能的影响,在整个力输出振荡的分析中。在11名年轻人和老年人中,研究了在线性不同的静态收缩期间,在线性不同的静态收缩期间,在线性不同的静态收缩期间,0-100-0%的最大意义绑架。估计目标和实际力之间的相对误差以及力振荡(校正)的若干参数。为了了解实验结果,我们分析了由一组由比例整体衍生系统控制的电机单元池的一组计算模拟产生的力输出。与年轻成年人相比,较旧的受试者呈现出更大的误差和较低的校正数,持续时间较长,相对幅度较大。电机控制系统建模在控制器(1至2.5Hz)的误差更新频率(UF)变化,以及招募电机单元的收缩时间(CT)范围(30-90ms和60-120ms反映的年轻人)老范围分别)。模拟产生的力谱,参数类似于年轻(UF = 1.5; CT 30-90ms)和较旧的实验记录(UF = 1; CT 60-120ms)成年人。有趣的是,模拟结果表明,控制器的误差更新频率的改进无法补偿电机单元抽搐中的收缩变化。总之,随着年龄的周围收缩变化可以影响机动单元控制策略,代表老年成年人较大力振荡中的一个至关重要的现象。

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