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一种用于量化感觉运动增强对运动输出影响的计算内部模型。

A Computational Internal Model to Quantify the Effect of Sensorimotor Augmentation on Motor Output.

作者信息

Dollahon Devon, Ryu Seok Chang, Park Hangue

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:3751-3754. doi: 10.1109/EMBC44109.2020.9176109.

Abstract

The aging process, as well as neurological disorders, causes a decline in sensorimotor functions, which can often bring degraded motor output. As a means of compensation for such sensorimotor deficiencies, sensorimotor augmentation has been actively investigated. Consequently, exoskeleton devices or functional electrical stimulation could augment the muscle activity, while textured surfaces or electrical nerve stimulations could augment the sensory feedback. However, it is not easy to precisely anticipate the effects of specific augmentation because sensory feedback and motor output interact with each other as a closed-loop operation via the central and peripheral nervous systems. A computational internal model can play a crucial role in anticipating such an effect of augmentation therapy on the motor outcome. Still, no existing internal sensorimotor loop model has been represented in a complete computational form facilitating the anticipation. This paper presents such a computational internal model, including numerical values representing the effect of sensorimotor augmentation. With the existing experimental results, the model performance was evaluated indirectly. The change of sensory gain affects motor output inversely, while the change of motor gain did not change or minimally affects the motor output.Clinical Relevance- The presented computational internal model will provide a simple and easy tool for clinicians to design therapeutic intervention using sensorimotor augmentation.

摘要

衰老过程以及神经疾病会导致感觉运动功能下降,这通常会使运动输出退化。作为对这种感觉运动缺陷的一种补偿方式,感觉运动增强技术已得到积极研究。因此,外骨骼装置或功能性电刺激可以增强肌肉活动,而纹理表面或电神经刺激可以增强感觉反馈。然而,由于感觉反馈和运动输出通过中枢神经系统和外周神经系统以闭环操作的方式相互作用,所以很难精确预测特定增强技术的效果。计算内部模型在预测增强治疗对运动结果的这种影响方面可以发挥关键作用。尽管如此,现有的内部感觉运动环路模型尚未以完整的计算形式呈现,不利于进行预测。本文提出了这样一个计算内部模型,包括表示感觉运动增强效果的数值。利用现有的实验结果,对模型性能进行了间接评估。感觉增益的变化对运动输出有反向影响,而运动增益的变化对运动输出没有改变或影响极小。临床意义——所提出的计算内部模型将为临床医生设计使用感觉运动增强技术的治疗干预提供一个简单易用的工具。

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