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熟练运动中视觉与体感反馈的可靠性:小脑的作用

Reliability of Visual and Somatosensory Feedback in Skilled Movement: The Role of the Cerebellum.

作者信息

Mizelle J C, Oparah Alexis, Wheaton Lewis A

机构信息

Department of Kinesiology, East Carolina University, Greenville, NC, 27858, USA.

Cognitive Motor Control Laboratory, School of Applied Physiology, Georgia Institute of Technology, 555 14th St., Atlanta, GA, 30332-0356, USA.

出版信息

Brain Topogr. 2016 Jan;29(1):27-41. doi: 10.1007/s10548-015-0446-2. Epub 2015 Aug 26.

Abstract

The integration of vision and somatosensation is required to allow for accurate motor behavior. While both sensory systems contribute to an understanding of the state of the body through continuous updating and estimation, how the brain processes unreliable sensory information remains to be fully understood in the context of complex action. Using functional brain imaging, we sought to understand the role of the cerebellum in weighting visual and somatosensory feedback by selectively reducing the reliability of each sense individually during a tool use task. We broadly hypothesized upregulated activation of the sensorimotor and cerebellar areas during movement with reduced visual reliability, and upregulated activation of occipital brain areas during movement with reduced somatosensory reliability. As specifically compared to reduced somatosensory reliability, we expected greater activations of ipsilateral sensorimotor cerebellum for intact visual and somatosensory reliability. Further, we expected that ipsilateral posterior cognitive cerebellum would be affected with reduced visual reliability. We observed that reduced visual reliability results in a trend towards the relative consolidation of sensorimotor activation and an expansion of cerebellar activation. In contrast, reduced somatosensory reliability was characterized by the absence of cerebellar activations and a trend towards the increase of right frontal, left parietofrontal activation, and temporo-occipital areas. Our findings highlight the role of the cerebellum for specific aspects of skillful motor performance. This has relevance to understanding basic aspects of brain functions underlying sensorimotor integration, and provides a greater understanding of cerebellar function in tool use motor control.

摘要

为了实现准确的运动行为,视觉和躯体感觉的整合是必需的。虽然这两种感觉系统都通过持续更新和估计来帮助理解身体状态,但在复杂动作的背景下,大脑如何处理不可靠的感觉信息仍有待充分了解。我们利用功能性脑成像技术,试图通过在工具使用任务中分别选择性降低每种感觉的可靠性,来了解小脑在权衡视觉和躯体感觉反馈中的作用。我们大致假设,在视觉可靠性降低的运动过程中,感觉运动和小脑区域的激活会上调;在躯体感觉可靠性降低的运动过程中,枕叶脑区的激活会上调。与躯体感觉可靠性降低的情况相比,我们预期在视觉和躯体感觉可靠性完好时,同侧感觉运动小脑会有更大的激活。此外,我们预期同侧后认知小脑会受到视觉可靠性降低的影响。我们观察到,视觉可靠性降低会导致感觉运动激活相对巩固以及小脑激活范围扩大的趋势。相比之下,躯体感觉可靠性降低的特征是小脑无激活,以及右侧额叶、左侧顶额叶激活和颞枕叶区域有增加的趋势。我们的研究结果突出了小脑在熟练运动表现特定方面的作用。这对于理解感觉运动整合背后脑功能的基本方面具有重要意义,并有助于更深入地了解小脑在工具使用运动控制中的功能。

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