在有或没有视觉信息的情况下,涉及抓取和伸展动作的皮质区域:一项神经影像学研究的ALE荟萃分析

Samantha Sartin , Mariagrazia Ranzini , Cristina Scarpazza , Simona Monaco
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引用次数: 1

摘要

感知中的腹侧流和行动中的背侧流的功能专门化是Goodale和Milner在1992年提出的主要模型的基石。该模型基于神经心理学证据,近三十年来一直是一个争论的问题,在此期间,双视觉流假说受到了广泛关注,包括支持和批评。功能性磁共振成像(fMRI)的出现使人们能够研究与感知和动作有关的大脑区域,并为这两种流的功能专门化提供了有用的数据。关于这一主题的研究已经相当丰富,但到目前为止,还没有一项荟萃分析探讨这两种流在行动中的参与在空间上的趋同。本荟萃分析(N=53项fMRI和PET研究)旨在揭示与动作(即抓握和伸手运动)相关的特定神经激活,以及视觉信息在多大程度上影响运动控制过程中这两种流的参与。基于过去二十年进行的神经影像学研究,我们的研究结果为一致和空间收敛的动作神经相关性提供了一个全面的视角。特别是,与无视觉条件相比,枕颞区在视觉中表现出更高的激活可能性,但伸手和抓握动作之间没有差异。无论视觉可用性如何,额顶叶区域始终参与伸手和抓握动作。我们根据公认的双视觉流模型讨论了我们的结果,并将这些发现与最近使用先进的fMRI方法(如多体素模式分析)获得的发现联系起来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Cortical areas involved in grasping and reaching actions with and without visual information: An ALE meta-analysis of neuroimaging studies

The functional specialization of the ventral stream in Perception and the dorsal stream in Action is the cornerstone of the leading model proposed by Goodale and Milner in 1992. This model is based on neuropsychological evidence and has been a matter of debate for almost three decades, during which the dual-visual stream hypothesis has received much attention, including support and criticism. The advent of functional magnetic resonance imaging (fMRI) has allowed investigating the brain areas involved in Perception and Action, and provided useful data on the functional specialization of the two streams. Research on this topic has been quite prolific, yet no meta-analysis so far has explored the spatial convergence in the involvement of the two streams in Action. The present meta-analysis (N = 53 fMRI and PET studies) was designed to reveal the specific neural activations associated with Action (i.e., grasping and reaching movements), and the extent to which visual information affects the involvement of the two streams during motor control. Our results provide a comprehensive view of the consistent and spatially convergent neural correlates of Action based on neuroimaging studies conducted over the past two decades. In particular, occipital-temporal areas showed higher activation likelihood in the Vision compared to the No vision condition, but no difference between reach and grasp actions. Frontal-parietal areas were consistently involved in both reach and grasp actions regardless of visual availability. We discuss our results in light of the well-established dual-visual stream model and frame these findings in the context of recent discoveries obtained with advanced fMRI methods, such as multivoxel pattern analysis.

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