Faucherre Adèle, López-Schier Hernán
Département de Physiologie, Institut de Génomique Fonctionnelle, CNRS UMR 5203, INSERM U661, Universtités Montpellier 1 & 2, Montpellier, France.
Methods Mol Biol. 2014;1082:187-95. doi: 10.1007/978-1-62703-655-9_13.
Genetic means to visualize and manipulate neuronal circuits in the intact animal have revolutionized neurobiology. "Dynamic neuroanatomy" defines a range of approaches aimed at quantifying the architecture or subcellular organization of neurons over time during their development, regeneration, or degeneration. A general feature of these approaches is their reliance on the optical isolation of defined neurons in toto by genetically expressing markers in one or few cells. Here we use the afferent neurons of the lateral line as an example to describe a simple method for the dynamic neuroanatomical study of axon terminals in the zebrafish by laser-scanning confocal microscopy.
在完整动物体内可视化和操纵神经回路的遗传学方法彻底改变了神经生物学。“动态神经解剖学”定义了一系列旨在量化神经元在发育、再生或退化过程中随时间变化的结构或亚细胞组织的方法。这些方法的一个共同特点是它们依赖于通过在一个或几个细胞中基因表达标记物来对特定神经元进行整体光学分离。在这里,我们以侧线的传入神经元为例,描述一种通过激光扫描共聚焦显微镜对斑马鱼轴突终末进行动态神经解剖学研究的简单方法。