与基于模型的工具使用后果估计相关的小脑激活。

IF 4.7 2区 心理学 Q1 BEHAVIORAL SCIENCES
Sayako Ueda, Hiroyuki Sakai, Kenichi Ueno, Kang Cheng, Takatsune Kumada
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引用次数: 2

摘要

背景:灵巧的工具使用被认为是基于模型的控制的基础,依赖于获得的工具内部模型。特别是,在关于工具使用后果的可用感官反馈受到限制的情况下,情况就是如此。在本研究中,我们进行了一项功能磁共振成像研究,以确定小脑参与基于模型的工具使用后果估计,使用跟踪任务具有不同水平的视觉反馈。方法:20名健康的右撇子成人参与本研究。在fMRI扫描过程中,这些参与者用右手操纵杆控制光标,追踪屏幕上移动的目标。在每个试验中,光标位置的视觉反馈水平随机从三个任务条件中选择,即精确、模糊和无条件。结果:对所有任务条件的联合分析发现,右小脑广泛激活,覆盖前叶(小叶V)和下后叶(小叶VIII)。此外,三种任务条件之间的对比显示,与精确条件相比,No条件下左上后叶(小腿I)的激活更为显著。此外,一项事后心理生理相互作用分析揭示了参与自我身体感知的右脑和右额顶区域之间的功能耦合的条件调节,而不是左脑和右额顶区域。结论:我们的数据显示,在没有光标位置的视觉反馈的情况下,左小腿是唯一一个更活跃的区域。这表明左小腿I区域在基于获得的工具内部模型的基于模型的工具使用后果估计中起作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cerebellar activation associated with model-based estimation of tool-use consequences.

Cerebellar activation associated with model-based estimation of tool-use consequences.

Cerebellar activation associated with model-based estimation of tool-use consequences.

Cerebellar activation associated with model-based estimation of tool-use consequences.

Background: Dexterous tool use is considered to be underpinned by model-based control relying on acquired internal models of tools. In particular, this is the case in situations where available sensory feedback regarding the consequences of tool use is restricted. In the present study, we conducted an fMRI study to identify cerebellar involvement in model-based estimation of tool-use consequences using tracking tasks with different levels of visual feedback.

Methods: Twenty healthy right-handed adults participated in this study. These participants tracked a moving target on a screen with a cursor controlled by a joystick using their right hand during fMRI scanning. For each trial, the level of visual feedback for cursor position was randomly selected from three task conditions, namely, Precise, Obscure, and No conditions.

Results: A conjunction analysis across all task conditions found extensive activation of the right cerebellum, covering the anterior lobe (lobule V) and inferior posterior lobe (lobule VIII). Also, contrasts among the three task conditions revealed additional significant activation of the left superior posterior lobe (Crus I) in the No compared to the Precise condition. Furthermore, a post hoc psychophysiological interaction analysis revealed conditional modulation of functional coupling between the right, but not the left, cerebellar region and right frontoparietal regions that are involved in self-body perception.

Conclusions: Our data show that the left Crus I is the only region that was more active in a condition where no visual feedback for cursor position was available. This suggests that the left Crus I region plays a role in model-based estimation of tool-use consequences based on an acquired internal model of tools.

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来源期刊
Behavioral and Brain Functions
Behavioral and Brain Functions 医学-行为科学
CiteScore
5.90
自引率
0.00%
发文量
11
审稿时长
6-12 weeks
期刊介绍: A well-established journal in the field of behavioral and cognitive neuroscience, Behavioral and Brain Functions welcomes manuscripts which provide insight into the neurobiological mechanisms underlying behavior and brain function, or dysfunction. The journal gives priority to manuscripts that combine both neurobiology and behavior in a non-clinical manner.
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