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视觉中的贝塔振荡:背侧视觉通路的一种(前意识)神经机制?

Beta oscillations in vision: a (preconscious) neural mechanism for the dorsal visual stream?

作者信息

Di Dona Giuseppe, Ronconi Luca

机构信息

Division of Neuroscience, IRCCS San Raffaele Scientific Institute, Milan, Italy.

School of Psychology, Vita-Salute San Raffaele University, Milan, Italy.

出版信息

Front Psychol. 2023 Dec 13;14:1296483. doi: 10.3389/fpsyg.2023.1296483. eCollection 2023.

Abstract

Neural oscillations in alpha (8-12 Hz) and beta (13-30 Hz) frequency bands are thought to reflect feedback/reentrant loops and large-scale cortical interactions. In the last decades a main effort has been made in linking perception with alpha-band oscillations, with converging evidence showing that alpha oscillations have a key role in the temporal and featural binding of visual input, configuring the alpha rhythm a key determinant of conscious visual experience. Less attention has been historically dedicated to link beta oscillations and visual processing. Nonetheless, increasing studies report that task conditions that require to segregate/integrate stimuli in space, to disentangle local/global shapes, to spatially reorganize visual inputs, and to achieve motion perception or form-motion integration, rely on the activity of beta oscillations, with a main hub in parietal areas. In the present review, we summarize the evidence linking oscillations within the beta band and visual perception. We propose that beta oscillations represent a neural code that supports the functionality of the magnocellular-dorsal (M-D) visual pathway, serving as a fast primary neural code to exert top-down influences on the slower parvocellular-ventral visual pathway activity. Such M-D-related beta activity is proposed to act mainly pre-consciously, providing the spatial coordinates of vision and guiding the conscious extraction of objects identity that are achieved with slower alpha rhythms in ventral areas. Finally, within this new theoretical framework, we discuss the potential role of M-D-related beta oscillations in visuo-spatial attention, oculo-motor behavior and reading (dis)abilities.

摘要

阿尔法频段(8 - 12赫兹)和贝塔频段(13 - 30赫兹)的神经振荡被认为反映了反馈/折返环路以及大规模的皮质间相互作用。在过去几十年里,人们主要致力于将感知与阿尔法频段振荡联系起来,越来越多的证据表明,阿尔法振荡在视觉输入的时间和特征绑定中起着关键作用,使阿尔法节律成为有意识视觉体验的关键决定因素。历史上较少关注将贝塔振荡与视觉处理联系起来。尽管如此,越来越多的研究报告称,那些需要在空间中分离/整合刺激、区分局部/整体形状、在空间上重新组织视觉输入以及实现运动感知或形式 - 运动整合的任务条件,依赖于贝塔振荡的活动,其主要枢纽位于顶叶区域。在本综述中,我们总结了将贝塔频段内的振荡与视觉感知联系起来的证据。我们提出,贝塔振荡代表一种神经编码,它支持大细胞 - 背侧(M - D)视觉通路的功能,作为一种快速的初级神经编码,对较慢的小细胞 - 腹侧视觉通路活动施加自上而下的影响。这种与M - D相关的贝塔活动主要被认为是在意识前起作用,提供视觉的空间坐标,并引导在腹侧区域通过较慢的阿尔法节律实现的物体身份的有意识提取。最后,在这个新的理论框架内,我们讨论了与M - D相关的贝塔振荡在视觉空间注意、眼动行为和阅读(障碍)能力方面的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bfc/10753839/b4c3637f71bb/fpsyg-14-1296483-g001.jpg

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