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使用红移钙指示剂进行体内深层双光子成像。

Deep Two-Photon Imaging In Vivo with a Red-Shifted Calcium Indicator.

作者信息

Birkner Antje, Konnerth Arthur

机构信息

Institute of Neuroscience, Technical University of Munich, Munich, Germany.

Munich Cluster for Systems Neurology (SyNergy) and Center for Integrated Protein Sciences (CIPSM), Munich, Germany.

出版信息

Methods Mol Biol. 2019;1929:15-26. doi: 10.1007/978-1-4939-9030-6_2.

Abstract

Two-photon calcium imaging became in recent years a very popular method for the functional analysis of neural cell populations on a single-cell level in anesthetized or awake behaving animals. Scientific insights about single-cell processing of sensory information but also analyses of higher cognitive functions in healthy or diseased states became thereby feasible. However, two-photon imaging is generally limited to depths of a few hundred micrometers when recording from densely labeled cell populations. Therefore, such recordings are often restricted to the superficial layers 1-3 of the mouse cortex, whereas the deep cell layers 4-6 are hardly accessible with standard two-photon imaging. Here, we provide a protocol for deep two-photon calcium imaging, which allows imaging of neuronal circuits with single-cell resolution in all cortical layers of the mouse primary cortex. This technique can be readily applied to other species. The method includes a reduction of excitation light scattering by the use of a red-shifted calcium indicator and the minimization of background fluorescence by visually guided local application of the fluorescent dye. The technique is similar to previously published protocols for in vivo two-photon calcium imaging with synthetic calcium dyes (Stosiek et al. Proc Natl Acad Sci U S A 100:7319-7324, 2003). Hence, only minor changes of a generic two-photon setup and some adaptations of the experimental procedures are required.

摘要

近年来,双光子钙成像成为一种非常流行的方法,用于在麻醉或清醒行为动物的单细胞水平上对神经细胞群体进行功能分析。由此,关于感觉信息单细胞处理的科学见解以及对健康或疾病状态下更高认知功能的分析变得可行。然而,当从密集标记的细胞群体进行记录时,双光子成像通常限于几百微米的深度。因此,此类记录通常仅限于小鼠皮层的浅表层1-3,而标准双光子成像很难触及深层细胞层4-6。在此,我们提供了一种用于深度双光子钙成像的方案,该方案允许在小鼠初级皮层的所有皮层层中以单细胞分辨率对神经元回路进行成像。该技术可轻松应用于其他物种。该方法包括通过使用红移钙指示剂减少激发光散射,并通过视觉引导局部应用荧光染料将背景荧光降至最低。该技术类似于先前发表的使用合成钙染料进行体内双光子钙成像的方案(Stosiek等人,《美国国家科学院院刊》100:7319-7324,2003)。因此,只需对通用双光子设置进行微小更改并对实验程序进行一些调整即可。

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