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Quantitative neuroanatomy of all Purkinje cells with light sheet microscopy and high-throughput image analysis

机译:利用光片显微镜和高通量图像分析对所有浦肯野细胞进行定量神经解剖

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摘要

Characterizing the cytoarchitecture of mammalian central nervous system on a brain-wide scale is becoming a compelling need in neuroscience. For example, realistic modeling of brain activity requires the definition of quantitative features of large neuronal populations in the whole brain. Quantitative anatomical maps will also be crucial to classify the cytoarchtitectonic abnormalities associated with neuronal pathologies in a high reproducible and reliable manner. In this paper, we apply recent advances in optical microscopy and image analysis to characterize the spatial distribution of Purkinje cells (PCs) across the whole cerebellum. Light sheet microscopy was used to image with micron-scale resolution a fixed and cleared cerebellum of an L7-GFP transgenic mouse, in which all PCs are fluorescently labeled. A fast and scalable algorithm for fully automated cell identification was applied on the image to extract the position of all the fluorescent PCs. This vectorized representation of the cell population allows a thorough characterization of the complex three-dimensional distribution of the neurons, highlighting the presence of gaps inside the lamellar organization of PCs, whose density is believed to play a significant role in autism spectrum disorders. Furthermore, clustering analysis of the localized somata permits dividing the whole cerebellum in groups of PCs with high spatial correlation, suggesting new possibilities of anatomical partition. The quantitative approach presented here can be extended to study the distribution of different types of cell in many brain regions and across the whole encephalon, providing a robust base for building realistic computational models of the brain, and for unbiased morphological tissue screening in presence of pathologies and/or drug treatments.
机译:在全脑范围内表征哺乳动物中枢神经系统的细胞结构正在成为神经科学的迫切需求。例如,对大脑活动的现实建模需要定义整个大脑中大型神经元群体的定量特征。定量解剖图对于以高度可复制和可靠的方式对与神经元病理相关的细胞结构异常进行分类也至关重要。在本文中,我们应用光学显微镜和图像分析的最新进展来表征整个小脑内Purkinje细胞(PC)的空间分布。光片显微镜用于以微米级分辨率对L7-GFP转基因小鼠的固定和清除的小脑成像,其中所有PC都进行了荧光标记。快速,可扩展的用于全自动细胞识别的算法被应用于图像,以提取所有荧光PC的位置。细胞群的这种矢量化表示可以对神经元的复杂三维分布进行全面表征,从而突出显示PC的层状组织内部存在间隙,其密度被认为在自闭症谱系障碍中起着重要作用。此外,局部躯体的聚类分析允许将整个小脑分为具有高度空间相关性的PC组,这提示了解剖分区的新可能性。此处介绍的定量方法可以扩展为研究许多类型的细胞在整个大脑区域和整个脑中的分布,为构建现实的大脑计算模型以及在存在病理情况下进行无偏态的形态学筛选提供了坚实的基础。和/或药物治疗。

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