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Neuron ID dataset facilitates neuronal annotation for whole-brain activity imaging of C. elegans

机译:Neuron ID数据集有助于C.秀丽隐杆线虫全脑活动成像的神经元注释

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BACKGROUND:Annotation of cell identity is an essential process in neuroscience that allows comparison of cells, including that of neural activities across different animals. In Caenorhabditis elegans, although unique identities have been assigned to all neurons, the number of annotatable neurons in an intact animal has been limited due to the lack of quantitative information on the location and identity of neurons.RESULTS:Here, we present a dataset that facilitates the annotation of neuronal identities, and demonstrate its application in a comprehensive analysis of whole-brain imaging. We systematically identified neurons in the head region of 311 adult worms using 35 cell-specific promoters and created a dataset of the expression patterns and the positions of the neurons. We found large positional variations that illustrated the difficulty of the annotation task. We investigated multiple combinations of cell-specific promoters driving distinct fluorescence and generated optimal strains for the annotation of most head neurons in an animal. We also developed an automatic annotation method with human interaction functionality that facilitates annotations needed for whole-brain imaging.CONCLUSION:Our neuron ID dataset and optimal fluorescent strains enable the annotation of most neurons in the head region of adult C. elegans, both in full-automated fashion and a semi-automated version that includes human interaction functionalities. Our method can potentially be applied to model species used in research other than C. elegans, where the number of available cell-type-specific promoters and their variety will be an important consideration.
机译:背景:细胞标识的注释是神经科学中的重要过程,其允许比较细胞,包括跨不同动物的神经活动。在Caenorhabditis elegans中,虽然已经将独特的身份分配给所有神经元,但由于神经元的位置和身份缺乏定量信息,因此完整的动物中的无形神经元的数量受到限制。结果:在这里,我们提出了一个数据集促进神经元形象的注释,并证明其在全脑成像的综合分析中的应用。我们使用35个细胞特异性启动子系统地鉴定了311成年蠕虫的头部区域的神经元,并产生了表达模式的数据集和神经元的位置。我们发现了大的位置变体,说明了注释任务的难度。我们研究了促进了不同荧光的细胞特异性启动子的多种组合,并为动物中大多数头神经元的注释产生了最佳菌株。我们还开发了一种具有人类交互功能的自动注释方法,便于整体脑成像所需的注释。结论:我们的神经元ID数据集和最佳荧光菌株使得大多数神经元在成人C.秀丽隐杆线虫的头部区域中的涂布能够。 - 包括人为互动功能的时尚和半自动版本。我们的方法可能潜在地应用于C.杆杆线虫以外的研究中使用的模型物种,其中可用的细胞类型特异性启动子数及其品种将是一个重要的考虑因素。

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