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Whole-brain activity mapping onto a zebrafish brain atlas

机译:全脑活动映射到斑马鱼脑图谱

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摘要

In order to localize the neural circuits involved in generating behaviors, it is necessary to assign activity onto anatomical maps of the nervous system. Using brain registration across hundreds of larval zebrafish, we have built an expandable open source atlas containing molecular labels and anatomical region definitions, the Z-Brain. Using this platform and immunohistochemical detection of phosphorylated-Extracellular signal-regulated kinase (ERK/MAPK) as a readout of neural activity, we have developed a system to create and contextualize whole brain maps of stimulus- and behavior-dependent neural activity. This MAP-Mapping (Mitogen Activated Protein kinase – Mapping) assay is technically simple, fast, inexpensive, and data analysis is completely automated. Since MAP-Mapping is performed on fish that are freely swimming, it is applicable to nearly any stimulus or behavior. We demonstrate the utility of our high-throughput approach using hunting/feeding, pharmacological, visual and noxious stimuli. The resultant maps outline hundreds of areas associated with behaviors.
机译:为了定位与产生行为有关的神经回路,有必要将活动分配到神经系统的解剖图上。通过在数百只幼虫斑马鱼上进行大脑配准,我们构建了一个可扩展的开源图集,其中包含分子标记和解剖区域定义,即Z脑。使用这个平台和磷酸化的细胞外信号调节激酶(ERK / MAPK)的免疫组织化学检测作为神经活动的读数,我们开发了一个系统来创建和关联刺激和行为相关神经活动的全脑图。这种MAP-Mapping(促分裂原活化蛋白激酶-定位)测定技术上简单,快速,廉价,并且数据分析是完全自动化的。由于MAP映射是在自由游泳的鱼类上执行的,因此它几乎适用于任何刺激或行为。我们通过狩猎/进食,药理,视觉和有害刺激展示了高通量方法的实用性。生成的地图概述了与行为相关的数百个区域。

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