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Intra-Auditory Integration Improves Motor Performance and Synergy in an Accurate Multi-Finger Pressing Task

机译:音频内集成可在精确的多指按压任务中改善电机性能和协同作用

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摘要

Humans detect changes in the air pressure and understand the surroundings through the auditory system. The sound humans perceive is composed of two distinct physical properties, frequency and intensity. However, our knowledge is limited how the brain perceives and combines these two properties simultaneously (i.e., intra-auditory integration), especially in relation to motor behaviors. Here, we investigated the effect of intra-auditory integration between the frequency and intensity components of auditory feedback on motor outputs in a constant finger-force production task. The hierarchical variability decomposition model previously developed was used to decompose motor performance into mathematically independent components each of which quantifies a distinct motor behavior such as consistency, repeatability, systematic error, within-trial synergy, or between-trial synergy. We hypothesized that feedback on two components of sound as a function of motor performance (frequency and intensity) would improve motor performance and multi-finger synergy compared to feedback on just one component (frequency or intensity). Subjects were instructed to match the reference force of 18 N with the sum of all finger forces (virtual finger or VF force) while listening to auditory feedback of their accuracy. Three experimental conditions were used: (i) condition F, where frequency changed; (ii) condition I, where intensity changed; (iii) condition FI, where both frequency and intensity changed. Motor performance was enhanced for the FI conditions as compared to either the F or I condition alone. The enhancement of motor performance was achieved mainly by the improved consistency and repeatability. However, the systematic error remained unchanged across conditions. Within- and between-trial synergies were also improved for the FI condition as compared to either the F or I condition alone. However, variability of individual finger forces for the FI condition was not significantly decreased as compared to I condition alone. This result indicates an improvement in motor performance is consistent with Bayesian estimation, and changes in multi-finger interaction mostly result in the enhanced motor performance. These findings provide evidence that the central nervous system can take advantage of the intra-auditory integration in a statistically optimal (Bayesian) fashion to enhance motor performance by improving multi-finger synergy.
机译:人类可以检测到气压的变化,并通过听觉系统了解周围环境。人类感知的声音由两个不同的物理属性组成,即频率和强度。但是,我们的知识有限,特别是与运动行为有关的大脑如何同时感知和组合这两个属性(即听觉内整合)。在这里,我们研究了恒定的手指力生产任务中听觉反馈的频率和强度分量之间听觉内部整合对运动输出的影响。先前开发的分层可变性分解模型用于将电机性能分解为数学上独立的组件,每个组件都量化了不同的电机行为,例如一致性,可重复性,系统错误,试验内协同或试验间协同。我们假设与仅对一种成分(频率或强度)的反馈相比,对声音的两个成分的反馈作为运动性能(频率和强度)的函数将改善运动性能和多指协同作用。指导受试者在听取有关其准确性的听觉反馈时,将18 N的参考力与所有手指力(虚拟手指或VF力)的总和相匹配。使用了三个实验条件:(i)条件F,其中频率发生了变化; (ii)条件I,强度改变了; (iii)条件FI,频率和强度均发生变化。与仅F或I条件相比,FI条件下的电机性能得到了增强。电机性能的提高主要是通过提高一致性和重复性来实现的。但是,系统误差在各种情况下均保持不变。与单独的F或I条件相比,FI条件的试验内和试验间协同作用也得到了改善。然而,与单独的I状态相比,针对FI状态的单个手指力的变化没有显着降低。该结果表明,运动性能的改善与贝叶斯估计一致,并且多指交互作用的变化主要导致运动性能的提高。这些发现提供了证据,表明中枢神经系统可以通过统计上的最佳(贝叶斯)方式利用听觉内整合来通过改善多指协同作用来增强运动能力。

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