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三维重建和大鼠触须皮层标准化,以实现单个神经元形态的精确配准。

3D reconstruction and standardization of the rat vibrissal cortex for precise registration of single neuron morphology.

机构信息

Digital Neuroanatomy, Max Planck Florida Institute, Jupiter, Florida, USA.

出版信息

PLoS Comput Biol. 2012;8(12):e1002837. doi: 10.1371/journal.pcbi.1002837. Epub 2012 Dec 20.

Abstract

The three-dimensional (3D) structure of neural circuits is commonly studied by reconstructing individual or small groups of neurons in separate preparations. Investigation of structural organization principles or quantification of dendritic and axonal innervation thus requires integration of many reconstructed morphologies into a common reference frame. Here we present a standardized 3D model of the rat vibrissal cortex and introduce an automated registration tool that allows for precise placement of single neuron reconstructions. We (1) developed an automated image processing pipeline to reconstruct 3D anatomical landmarks, i.e., the barrels in Layer 4, the pia and white matter surfaces and the blood vessel pattern from high-resolution images, (2) quantified these landmarks in 12 different rats, (3) generated an average 3D model of the vibrissal cortex and (4) used rigid transformations and stepwise linear scaling to register 94 neuron morphologies, reconstructed from in vivo stainings, to the standardized cortex model. We find that anatomical landmarks vary substantially across the vibrissal cortex within an individual rat. In contrast, the 3D layout of the entire vibrissal cortex remains remarkably preserved across animals. This allows for precise registration of individual neuron reconstructions with approximately 30 µm accuracy. Our approach could be used to reconstruct and standardize other anatomically defined brain areas and may ultimately lead to a precise digital reference atlas of the rat brain.

摘要

三维(3D)神经回路结构通常通过在单独的准备中重建单个或小群神经元来研究。因此,对结构组织原则的调查或树突和轴突支配的定量需要将许多重建的形态整合到共同的参考框架中。在这里,我们提出了大鼠触须皮层的标准化 3D 模型,并介绍了一种自动注册工具,该工具允许精确放置单个神经元重建。我们 (1) 开发了一种自动图像处理管道,从高分辨率图像中重建 3D 解剖学标记,即第 4 层中的桶、软脑膜和白质表面以及血管模式,(2) 在 12 只不同的大鼠中量化了这些标记,(3) 生成了触须皮层的平均 3D 模型,(4) 使用刚性变换和逐步线性缩放将 94 个从体内染色中重建的神经元形态注册到标准化的皮层模型。我们发现,在单个大鼠中,解剖学标记在触须皮层内变化很大。相比之下,整个触须皮层的 3D 布局在动物之间仍然保持着惊人的一致。这允许以大约 30 µm 的精度精确注册单个神经元重建。我们的方法可用于重建和标准化其他解剖定义的脑区,并最终可能导致大鼠大脑的精确数字参考图谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e206/3527218/bee5757c2b3d/pcbi.1002837.g001.jpg

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