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蝾螈嗅球局部回路中诱发活动的实时成像。

Real-time imaging of evoked activity in local circuits of the salamander olfactory bulb.

作者信息

Kauer J S

机构信息

Department of Neurosurgery, New England Medical Center Boston, Massachusetts.

出版信息

Nature. 1988 Jan 14;331(6152):166-8. doi: 10.1038/331166a0.

Abstract

The encoding of olfactory information in the central nervous system (CNS) depends on spatially distributed patterns of activity generated simultaneously in many neuronal circuits. Optical neurophysiological recording permits analysis of neural activity non-invasively and with high spatial and temporal resolution. Here, a video method for imaging voltage-sensitive dye fluorescence in vivo is used to map neuronal activity in local circuits of the salamander olfactory bulb. The method permits the imaging of simultaneous ensemble transmembrane activity in real time. After electrical stimulation of the olfactory nerve, activity spreads centripetally from the sites of synaptic input to generate nonhomogeneous response patterns that are presumably mediated by local circuits within the bulbar layers. The results also show the overlapping temporal sequences of activation of cell groups in each layer. The method thus provides high resolution, sequential video images of the spatial and temporal progression of transmembrane events in neuronal circuits after afferent stimulation and offers the opportunity for studying ensemble events in other brain regions.

摘要

嗅觉信息在中枢神经系统(CNS)中的编码依赖于许多神经元回路同时产生的空间分布活动模式。光学神经生理学记录允许以高空间和时间分辨率对神经活动进行非侵入性分析。在这里,一种用于在体内成像电压敏感染料荧光的视频方法被用于绘制蝾螈嗅球局部回路中的神经元活动。该方法允许实时成像同时的整体跨膜活动。在对嗅神经进行电刺激后,活动从突触输入部位向心扩散,以产生可能由球状体层内的局部回路介导的非均匀反应模式。结果还显示了每层中细胞群激活的重叠时间序列。因此,该方法提供了传入刺激后神经元回路中跨膜事件的空间和时间进展的高分辨率、连续视频图像,并为研究其他脑区的整体事件提供了机会。

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