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整合斑马鱼回路分析的解剖学和功能。

Integrating anatomy and function for zebrafish circuit analysis.

机构信息

Developmental Biology, Institute of Biology I, Faculty of Biology, BIOSS - Centre for Biological Signalling Studies, Albert-Ludwigs-University Freiburg Freiburg, Germany.

出版信息

Front Neural Circuits. 2013 Apr 23;7:74. doi: 10.3389/fncir.2013.00074. eCollection 2013.

Abstract

Due to its transparency, virtually every brain structure of the larval zebrafish is accessible to light-based interrogation of circuit function. Advanced stimulation techniques allow the activation of optogenetic actuators at different resolution levels, and genetically encoded calcium indicators report the activity of a large proportion of neurons in the CNS. Large datasets result and need to be analyzed to identify cells that have specific properties-e.g., activity correlation to sensory stimulation or behavior. Advances in three-dimensional (3D) functional mapping in zebrafish are promising; however, the mere coordinates of implicated neurons are not sufficient. To comprehensively understand circuit function, these functional maps need to be placed into the proper context of morphological features and projection patterns, neurotransmitter phenotypes, and key anatomical landmarks. We discuss the prospect of merging functional and anatomical data in an integrated atlas from the perspective of our work on long-range dopaminergic neuromodulation and the oculomotor system. We propose that such a resource would help researchers to surpass current hurdles in circuit analysis to achieve an integrated understanding of anatomy and function.

摘要

由于其透明性,幼鱼斑马鱼的几乎每个大脑结构都可以通过基于光的回路功能检测进行检测。先进的刺激技术允许在不同的分辨率水平上激活光遗传学致动器,并且遗传编码的钙指示剂报告 CNS 中很大一部分神经元的活动。产生了大量数据集,需要进行分析以识别具有特定属性的细胞,例如,与感觉刺激或行为的活动相关性。斑马鱼中三维(3D)功能映射的进展很有希望,但是,仅仅涉及神经元的坐标是不够的。为了全面了解回路功能,需要将这些功能图置于形态特征和投射模式、神经递质表型以及关键解剖学标志的适当背景中。我们从我们对长程多巴胺能神经调制和眼球运动系统的研究工作的角度讨论了在综合图谱中合并功能和解剖数据的前景。我们提出,这样的资源将帮助研究人员克服当前在回路分析方面的障碍,从而实现对解剖结构和功能的综合理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4cb/3632786/c6edf2c3c191/fncir-07-00074-g0001.jpg

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