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小脑在视觉运动适应任务中作为正向而非逆向模型:一项基于经颅直流电刺激和建模的研究。

Cerebellum as a forward but not inverse model in visuomotor adaptation task: a tDCS-based and modeling study.

作者信息

Yavari Fatemeh, Mahdavi Shirin, Towhidkhah Farzad, Ahmadi-Pajouh Mohammad-Ali, Ekhtiari Hamed, Darainy Mohammad

机构信息

Biomedical Engineering Department, Amirkabir University of Technology, Tehran, Iran.

Neurocognitive Laboratory, Iranian National Center for Addiction Studies (INCAS), Tehran University of Medical Sciences, Tehran, Iran.

出版信息

Exp Brain Res. 2016 Apr;234(4):997-1012. doi: 10.1007/s00221-015-4523-2. Epub 2015 Dec 26.

Abstract

Despite several pieces of evidence, which suggest that the human brain employs internal models for motor control and learning, the location of these models in the brain is not yet clear. In this study, we used transcranial direct current stimulation (tDCS) to manipulate right cerebellar function, while subjects adapt to a visuomotor task. We investigated the effect of this manipulation on the internal forward and inverse models by measuring two kinds of behavior: generalization of training in one direction to neighboring directions (as a proxy for inverse models) and localization of the hand position after movement without visual feedback (as a proxy for forward model). The experimental results showed no effect of cerebellar tDCS on generalization, but significant effect on localization. These observations support the idea that the cerebellum is a possible brain region for internal forward, but not inverse model formation. We also used a realistic human head model to calculate current density distribution in the brain. The result of this model confirmed the passage of current through the cerebellum. Moreover, to further explain some observed experimental results, we modeled the visuomotor adaptation process with the help of a biologically inspired method known as population coding. The effect of tDCS was also incorporated in the model. The results of this modeling study closely match our experimental data and provide further evidence in line with the idea that tDCS manipulates FM's function in the cerebellum.

摘要

尽管有多项证据表明人类大脑利用内部模型进行运动控制和学习,但这些模型在大脑中的位置尚不清楚。在本研究中,我们使用经颅直流电刺激(tDCS)来操纵右侧小脑功能,同时让受试者适应视觉运动任务。我们通过测量两种行为来研究这种操纵对内部正向和逆向模型的影响:将一个方向上的训练泛化到相邻方向(作为逆向模型的代理)以及在没有视觉反馈的情况下运动后手位置的定位(作为正向模型的代理)。实验结果表明,小脑tDCS对泛化没有影响,但对定位有显著影响。这些观察结果支持了小脑可能是内部正向模型形成的脑区,但不是逆向模型形成的脑区这一观点。我们还使用逼真的人体头部模型来计算大脑中的电流密度分布。该模型的结果证实了电流通过小脑。此外,为了进一步解释一些观察到的实验结果,我们借助一种称为群体编码的受生物启发的方法对视觉运动适应过程进行建模。tDCS的影响也被纳入模型中。这项建模研究的结果与我们的实验数据密切匹配,并为tDCS操纵小脑中正向模型(FM)的功能这一观点提供了进一步的证据。

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