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状态空间间歇反馈对双平衡任务的稳定控制。

State-space intermittent feedback stabilization of a dual balancing task.

机构信息

Department of Robotics, Brain and Cognitive Sciences, Istituto Italiano di Tecnologia, Via Enrico Melen 83, 16152, Genoa, Italy.

Department of Informatics, Bioengineering, Robotics, and System Engineering, University of Genoa, Via all'Opera Pia 13, 16145, Genoa, Italy.

出版信息

Sci Rep. 2020 May 21;10(1):8470. doi: 10.1038/s41598-020-64911-7.

Abstract

Balancing the body in upright standing and balancing a stick on the fingertip are two examples of unstable tasks that, in spite of strong motor and sensory differences, appear to share a similar motor control paradigm, namely a state-space intermittent feedback stabilization mechanism. In this study subjects were required to perform the two tasks simultaneously, with the purpose of highlighting both the coordination between the two skills and the underlying interaction between the corresponding controllers. The experimental results reveal, in particular, that upright standing (the less critical task) is modified in an adaptive way, in order to facilitate the more critical task (stick balancing), but keeping the overall spatio-temporal signature well known in regular upright standing. We were then faced with the following question: to which extent the physical/biomechanical interaction between the two independent intermittent controllers is capable to explain the dual task coordination patterns, without the need to introduce an additional, supervisory layer/module? By comparing the experimental data with the output of a simulation study we support the former hypothesis, suggesting that it is made possible by the intrinsic robustness of both state-space intermittent feedback stabilization mechanisms.

摘要

在直立站立和用指尖平衡棍子这两种不稳定任务中,尽管运动和感觉存在很大差异,但它们似乎都采用了类似的运动控制范例,即状态空间间歇反馈稳定机制。在这项研究中,要求受试者同时执行这两项任务,目的是突出这两种技能之间的协调性以及相应控制器之间的相互作用。实验结果特别表明,直立站立(较不重要的任务)会以自适应的方式进行修改,以便于更关键的任务(棍子平衡),但保持在常规直立站立中熟知的整体时空特征。然后,我们面临以下问题:两个独立的间歇控制器之间的物理/生物力学相互作用在多大程度上能够解释双重任务协调模式,而无需引入额外的监督层/模块?通过将实验数据与模拟研究的结果进行比较,我们支持了前一种假设,表明这是由于两种状态空间间歇反馈稳定机制的固有鲁棒性成为可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a626/7242428/4a8fcf083021/41598_2020_64911_Fig1_HTML.jpg

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