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首页> 外文期刊>Nature neuroscience >Three-dimensional random access multiphoton microscopy for functional imaging of neuronal activity.
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Three-dimensional random access multiphoton microscopy for functional imaging of neuronal activity.

机译:三维随机访问多光子显微镜用于神经元活动的功能成像。

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摘要

The dynamic ability of neuronal dendrites to shape and integrate synaptic responses is the hallmark of information processing in the brain. Effectively studying this phenomenon requires concurrent measurements at multiple sites on live neurons. Substantial progress has been made by optical imaging systems that combine confocal and multiphoton microscopy with inertia-free laser scanning. However, all of the systems developed so far restrict fast imaging to two dimensions. This severely limits the extent to which neurons can be studied, as they represent complex three-dimensional structures. Here we present a new imaging system that utilizes a unique arrangement of acousto-optic deflectors to steer a focused, ultra-fast laser beam to arbitrary locations in three-dimensional space without moving the objective lens. As we demonstrate, this highly versatile random-access multiphoton microscope supports functional imaging of complex three-dimensional cellular structures such as neuronal dendrites or neural populations at acquisition rates on the order of tens of kilohertz.
机译:神经元树突形成和整合突触反应的动态能力是大脑中信息处理的标志。有效研究这种现象需要在活神经元的多个部位同时进行测量。将共焦和多光子显微镜与无惯性激光扫描相结合的光学成像系统已经取得了实质性进展。但是,到目前为止开发的所有系统都将快速成像限制在二维范围内。这严重限制了神经元的研究范围,因为它们代表了复杂的三维结构。在这里,我们介绍了一种新的成像系统,该系统利用声光偏转器的独特布置将聚焦的超快激光束引导到三维空间中的任意位置,而无需移动物镜。如我们所展示的,这种高度通用的随机访问多光子显微镜支持复杂的三维细胞结构(例如神经元树突或神经群体)的功能成像,采集速率约为数十千赫兹。

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