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通过光的相位调制利用图案化照明对脑回路进行光学剖析。

Optical dissection of brain circuits with patterned illumination through the phase modulation of light.

作者信息

Bovetti Serena, Fellin Tommaso

机构信息

Department of Neuroscience and Brain Technologies, Istituto Italiano di Tecnologia, Via Morego 30, 16163 Genova, Italy.

出版信息

J Neurosci Methods. 2015 Feb 15;241:66-77. doi: 10.1016/j.jneumeth.2014.12.002. Epub 2014 Dec 11.

Abstract

Brain function relies on electrical signaling among ensembles of neurons. These signals are encoded in space - neurons are organized in complex three-dimensional networks - and in time-cells generate electrical signals on a millisecond scale. How the spatial and temporal structure of these signals controls higher brain functions is largely unknown. The recent advent of novel molecules that manipulate and monitor electrical activity in genetically identified cells provides, for the first time, the ability to causally test the contribution of specific cell subpopulations in these complex brain phenomena. However, most of the commonly used approaches are limited in their ability to illuminate brain tissue with high spatial and temporal precision. In this review article, we focus on one technique, patterned illumination through the phase modulation of light using liquid crystal spatial light modulators (LC-SLMs), which has the potential to overcome some of the major limitations of current experimental approaches.

摘要

脑功能依赖于神经元集群之间的电信号传递。这些信号在空间上被编码——神经元以复杂的三维网络形式组织——并且在时间上——细胞在毫秒级产生电信号。这些信号的时空结构如何控制高等脑功能在很大程度上尚不清楚。最近出现的能够操纵和监测基因识别细胞中电活动的新型分子首次提供了因果性测试特定细胞亚群在这些复杂脑现象中作用的能力。然而,大多数常用方法在以高时空精度照亮脑组织的能力方面存在局限。在这篇综述文章中,我们聚焦于一种技术,即使用液晶空间光调制器(LC-SLMs)通过光的相位调制进行图案化照明,它有潜力克服当前实验方法的一些主要局限。

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