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使用快速三维激光扫描对细胞网络动力学进行三维成像。

Imaging cellular network dynamics in three dimensions using fast 3D laser scanning.

作者信息

Göbel Werner, Kampa Björn M, Helmchen Fritjof

机构信息

Department of Neurophysiology, Brain Research Institute, University of Zurich, Winterthurerstr. 190, CH-8057 Zürich, Switzerland.

出版信息

Nat Methods. 2007 Jan;4(1):73-9. doi: 10.1038/nmeth989. Epub 2006 Dec 3.

Abstract

Spatiotemporal activity patterns in three-dimensionally organized cellular networks are fundamental to the function of the nervous system. Despite advances in functional imaging of cell populations, a method to resolve local network activity in three dimensions has been lacking. Here we introduce a three-dimensional (3D) line-scan technology for two-photon microscopy that permits fast fluorescence measurements from several hundred cells distributed in 3D space. We combined sinusoidal vibration of the microscope objective at 10 Hz with 'smart' movements of galvanometric x-y scanners to repeatedly scan the laser focus along a closed 3D trajectory. More than 90% of cell somata were sampled by the scan line within volumes of 250 microm side length. Using bulk-loading of calcium indicator, we applied this method to reveal spatiotemporal activity patterns in neuronal and astrocytic networks in the rat neocortex in vivo. Two-photon population imaging using 3D scanning opens the field for comprehensive studies of local network dynamics in intact tissue.

摘要

三维组织化细胞网络中的时空活动模式是神经系统功能的基础。尽管在细胞群体功能成像方面取得了进展,但一直缺乏一种在三维空间中解析局部网络活动的方法。在此,我们介绍一种用于双光子显微镜的三维(3D)线扫描技术,该技术能够对分布在三维空间中的数百个细胞进行快速荧光测量。我们将显微镜物镜以10Hz的频率进行正弦振动与振镜式xy扫描器的“智能”移动相结合,沿着封闭的三维轨迹重复扫描激光焦点。在边长为250微米的体积内,超过90%的细胞胞体被扫描线采样。通过大量加载钙指示剂,我们应用该方法揭示了大鼠新皮质体内神经元和星形胶质细胞网络中的时空活动模式。使用三维扫描的双光子群体成像为完整组织中局部网络动力学的综合研究开辟了领域。

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