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视觉运动诱发乌龟视觉皮层中的同步振荡。

Visual motion induces synchronous oscillations in turtle visual cortex.

作者信息

Prechtl J C

机构信息

Neurobiology Unit, Scripps Institution of Oceanography, University of California, San Diego, La Jolla 92093-0201.

出版信息

Proc Natl Acad Sci U S A. 1994 Dec 20;91(26):12467-71. doi: 10.1073/pnas.91.26.12467.

Abstract

In mammalian brains, multielectrode recordings during sensory stimulation have revealed oscillations in different cortical areas that are transiently synchronous. These synchronizations have been hypothesized to support integration of sensory information or represent the operation of attentional mechanisms, but their stimulus requirements and prevalence are still unclear. Here I report an analogous synchronization in a reptilian cortex induced by moving visual stimuli. The synchronization, as measured by the coherence function, applies to spindle-like 20-Hz oscillations recorded with multiple electrodes implanted in the dorsal cortex and the dorsal ventricular ridge of the pond turtle. Additionally, widespread increases in coherence are observed in the 1- to 2-Hz band, and widespread decreases in coherence are seen in the 10- and 30- to 45-Hz bands. The 20-Hz oscillations induced by the moving bar or more natural stimuli are nonstationary and can be sustained for seconds. Early reptile studies may have interpreted similar spindles as electroencephalogram correlates of arousal; however, the absence of these spindles during arousing stimuli in the dark suggests a more specific role in visual processing. Thus, visually induced synchronous oscillations are not unique to the mammalian cortex but also occur in the visual area of the primitive three-layered cortex of reptiles.

摘要

在哺乳动物大脑中,感觉刺激期间的多电极记录揭示了不同皮层区域中短暂同步的振荡。这些同步现象被认为有助于感觉信息的整合或代表注意力机制的运作,但其刺激要求和普遍性仍不清楚。在此,我报告了由移动视觉刺激在爬行动物皮层中诱导的类似同步现象。通过相干函数测量的这种同步现象,适用于用植入池塘龟背侧皮层和背侧脑室嵴的多个电极记录的纺锤状20赫兹振荡。此外,在1至2赫兹频段观察到相干性普遍增加,而在10赫兹以及30至45赫兹频段观察到相干性普遍降低。由移动条形物或更自然的刺激诱导的20赫兹振荡是非平稳的,并且可以持续数秒。早期对爬行动物的研究可能将类似的纺锤波解释为与觉醒相关的脑电图;然而,在黑暗中觉醒刺激期间没有这些纺锤波,这表明它们在视觉处理中具有更特定的作用。因此,视觉诱导的同步振荡并非哺乳动物皮层所特有,也发生在爬行动物原始三层皮层的视觉区域。

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