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单扫描电压敏感染料成像技术在相互作用的鉴定神经元中的应用。

Single-sweep voltage-sensitive dye imaging of interacting identified neurons.

机构信息

Institute of Neurobiology, Ulm University, D-89069 Ulm, Germany.

出版信息

J Neurosci Methods. 2011 Jan 15;194(2):224-34. doi: 10.1016/j.jneumeth.2010.10.007. Epub 2010 Oct 20.

Abstract

The simultaneous recording of many individual neurons is fundamental to understanding the integral functionality of neural systems. Imaging with voltage-sensitive dyes (VSDs) is a key approach to achieve this goal and a promising technique to supplement electrophysiological recordings. However, the lack of connectivity maps between imaged neurons and the requirement of averaging over repeated trials impede functional interpretations. Here we demonstrate fast, high resolution and single-sweep VSD imaging of identified and synaptically interacting neurons. We show for the first time the optical recording of individual action potentials and mutual inhibitory synaptic input of two key players in the well-characterized pyloric central pattern generator in the crab stomatogastric ganglion (STG). We also demonstrate the presence of individual synaptic potentials from other identified circuit neurons. We argue that imaging of neural networks with identifiable neurons with well-known connectivity, like in the STG, is crucial for the understanding of emergence of network functionality.

摘要

同时记录许多单个神经元对于理解神经系统的整体功能至关重要。用电压敏感染料(VSD)进行成像,是实现这一目标的关键方法,也是补充电生理记录的有前途的技术。然而,成像神经元之间缺乏连接图,并且需要在重复试验中进行平均,这阻碍了功能解释。在这里,我们展示了对已鉴定的和突触相互作用的神经元进行快速、高分辨率和单次扫描 VSD 成像。我们首次展示了光学记录在具有良好特征的螃蟹口胃神经节(STG)中的幽门中央模式发生器中的两个关键参与者的单个动作电位和相互抑制性突触输入。我们还证明了来自其他已鉴定的电路神经元的单个突触电位的存在。我们认为,用具有已知连接的可识别神经元对神经网络进行成像,对于理解网络功能的出现至关重要。

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