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猫视觉皮层中快速瞬态反应对持续伽马振荡(35 - 80赫兹)的抑制作用。

Inhibition of sustained gamma oscillations (35-80 Hz) by fast transient responses in cat visual cortex.

作者信息

Kruse W, Eckhorn R

机构信息

Department of Biophysics, Phillips-University, Marburg, Germany.

出版信息

Proc Natl Acad Sci U S A. 1996 Jun 11;93(12):6112-7. doi: 10.1073/pnas.93.12.6112.

Abstract

Interactions between stimulus-induced oscillations (35-80 Hz) and stimulus-locked nonoscillatory responses were investigated in the visual cortex areas 17 and 18 of anaesthetized cats. A single square-wave luminance grating was used as a visual stimulus during simultaneous recordings from up to seven electrodes. The stimulus movement consisted of a superposition of a smooth movement with a sequence of dynamically changing accelerations. Responses of local groups of neurons at each electrode were studied on the basis of multiple unit activity and local slow field potentials (13-120 Hz). Oscillatory and stimulus-locked components were extracted from multiple unit activity and local slow field potentials and quantified by a combination of temporal and spectral correlation methods. We found fast stimulus-locked components primarily evoked by sudden stimulus accelerations, whereas oscillatory components (35-80 Hz) were induced during slow smooth movements. Oscillations were gradually reduced in amplitude and finally fully suppressed with increasing amplitudes of fast stimulus-locked components. It is argued that suppression of oscillations is necessary to prevent confusion during sequential processing of stationary and fast changing retinal images.

摘要

在麻醉猫的视皮层17区和18区,研究了刺激诱发振荡(35 - 80赫兹)与刺激锁定的非振荡反应之间的相互作用。在同时记录多达七个电极的过程中,使用单个方波亮度光栅作为视觉刺激。刺激运动由平滑运动与一系列动态变化的加速度叠加而成。基于多单元活动和局部慢场电位(13 - 120赫兹),研究每个电极处局部神经元群的反应。从多单元活动和局部慢场电位中提取振荡和刺激锁定成分,并通过时间和频谱相关方法的组合进行量化。我们发现快速刺激锁定成分主要由突然的刺激加速度诱发,而振荡成分(35 - 80赫兹)则在缓慢平滑运动期间诱发。随着快速刺激锁定成分幅度的增加,振荡的幅度逐渐减小,最终完全被抑制。有人认为,抑制振荡对于防止在静止和快速变化的视网膜图像的顺序处理过程中产生混淆是必要的。

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