首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Two-photon imaging in living brain slices.
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Two-photon imaging in living brain slices.

机译:活脑切片中的双光子成像。

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Two-photon excitation laser scanning microscopy (TPLSM) has become the tool of choice for high-resolution fluorescence imaging in intact neural tissues. Compared with other optical techniques, TPLSM allows high-resolution imaging and efficient detection of fluorescence signal with minimal photobleaching and phototoxicity. The advantages of TPLSM are especially pronounced in highly scattering environments such as the brain slice. Here we describe our approaches to imaging various aspects of synaptic function in living brain slices. To combine several imaging modes together with patch-clamp electrophysiological recordings we found it advantageous to custom-build an upright microscope. Our design goals were primarily experimental convenience and efficient collection of fluorescence. We describe our TPLSM imaging system and its performance in detail. We present dynamic measurements of neuronal morphology of neurons expressing green fluorescent protein (GFP) and GFP fusion proteins as well as functional imaging of calcium dynamics in individual dendritic spines. Although our microscope is a custom instrument, its key advantages can be easily implemented as a modification of commercial laser scanning microscopes. Copyright 1999 Academic Press.
机译:两光子激发激光扫描显微镜(TPLSM)已成为完整神经组织中高分辨率荧光成像的首选工具。与其他光学技术相比,TPLSM可以实现高分辨率成像并以最小的光漂白和光毒性有效检测荧光信号。 TPLSM的优势在高度分散的环境(例如脑切片)中尤其明显。在这里,我们描述了对活脑切片中突触功能各个方面进行成像的方法。将多个成像模式与膜片钳电生理记录结合在一起,我们发现定制构建直立显微镜是有利的。我们的设计目标主要是实验的便利性和荧光的有效收集。我们将详细描述TPLSM成像系统及其性能。我们目前表达绿色荧光蛋白(GFP)和GFP融合蛋白的神经元的神经元形态的动态测量,以及单个树突棘中钙动力学的功能成像。尽管我们的显微镜是定制仪器,但其主要优点可以轻松实现,作为对商用激光扫描显微镜的改进。版权所有1999 Academic Press。

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