新皮层
神经科学
结构塑性
双光子激发显微术
临床前影像学
窗口(计算)
大脑皮层
神经可塑性
树突棘
生物
生物医学工程
材料科学
体内
光学
荧光
医学
计算机科学
物理
海马结构
生物技术
操作系统
作者
Anthony Holtmaat,Tobias Bonhoeffer,David K Chow,JA Chuckowree,Vincenzo De Paola,Sonja B. Hofer,Mark Hübener,Tara Keck,Graham Knott,Wei-Chung Allen Lee,Ricardo Mostany,Thomas D. Mrsic‐Flogel,Elly Nedivi,Carlos Portera‐Cailliau,Karel Svoboda,Joshua T. Trachtenberg,Linda Wilbrecht
出处
期刊:Nature Protocols
[Springer Nature]
日期:2009-07-16
卷期号:4 (8): 1128-1144
被引量:953
标识
DOI:10.1038/nprot.2009.89
摘要
To understand the cellular and circuit mechanisms of experience-dependent plasticity, neurons and their synapses need to be studied in the intact brain over extended periods of time. Two-photon excitation laser scanning microscopy (2PLSM), together with expression of fluorescent proteins, enables high-resolution imaging of neuronal structure in vivo. In this protocol we describe a chronic cranial window to obtain optical access to the mouse cerebral cortex for long-term imaging. A small bone flap is replaced with a coverglass, which is permanently sealed in place with dental acrylic, providing a clear imaging window with a large field of view (∼0.8–12 mm2). The surgical procedure can be completed within ∼1 h. The preparation allows imaging over time periods of months with arbitrary imaging intervals. The large size of the imaging window facilitates imaging of ongoing structural plasticity of small neuronal structures in mice, with low densities of labeled neurons. The entire dendritic and axonal arbor of individual neurons can be reconstructed.
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