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一种新型的半球间相互作用:对视区神经元协同性的调节。

A novel interhemispheric interaction: modulation of neuronal cooperativity in the visual areas.

作者信息

Carmeli Cristian, Lopez-Aguado Laura, Schmidt Kerstin E, De Feo Oscar, Innocenti Giorgio M

机构信息

Laboratory of Nonlinear Systems, I & C Schools of Computer and Communication Sciences, Swiss Federal Institute of Technology Lausanne (EPFL), Lausanne, Switzerland.

出版信息

PLoS One. 2007 Dec 12;2(12):e1287. doi: 10.1371/journal.pone.0001287.

Abstract

BACKGROUND

The cortical representation of the visual field is split along the vertical midline, with the left and the right hemi-fields projecting to separate hemispheres. Connections between the visual areas of the two hemispheres are abundant near the representation of the visual midline. It was suggested that they re-establish the functional continuity of the visual field by controlling the dynamics of the responses in the two hemispheres.

METHODS/PRINCIPAL FINDINGS: To understand if and how the interactions between the two hemispheres participate in processing visual stimuli, the synchronization of responses to identical or different moving gratings in the two hemi-fields were studied in anesthetized ferrets. The responses were recorded by multiple electrodes in the primary visual areas and the synchronization of local field potentials across the electrodes were analyzed with a recent method derived from dynamical system theory. Inactivating the visual areas of one hemisphere modulated the synchronization of the stimulus-driven activity in the other hemisphere. The modulation was stimulus-specific and was consistent with the fine morphology of callosal axons in particular with the spatio-temporal pattern of activity that axonal geometry can generate.

CONCLUSIONS/SIGNIFICANCE: These findings describe a new kind of interaction between the cerebral hemispheres and highlight the role of axonal geometry in modulating aspects of cortical dynamics responsible for stimulus detection and/or categorization.

摘要

背景

视野的皮质表征沿垂直中线分开,左、右半视野投射到不同的半球。两个半球视觉区域之间的连接在视觉中线表征附近丰富。有人提出,它们通过控制两个半球中反应的动态来重新建立视野的功能连续性。

方法/主要发现:为了了解两个半球之间的相互作用是否以及如何参与视觉刺激的处理,在麻醉的雪貂中研究了对两个半视野中相同或不同移动光栅的反应同步性。通过多个电极在初级视觉区域记录反应,并使用源自动力系统理论的最新方法分析电极间局部场电位的同步性。使一个半球的视觉区域失活会调节另一个半球中刺激驱动活动的同步性。这种调节是刺激特异性的,并且与胼胝体轴突的精细形态一致,特别是与轴突几何形状可以产生的时空活动模式一致。

结论/意义:这些发现描述了一种新的大脑半球间相互作用,并突出了轴突几何形状在调节负责刺激检测和/或分类的皮质动力学方面的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35f0/2110896/bbda5ebb2987/pone.0001287.g001.jpg

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