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通过校准的脑片 3D 重建对单个神经元进行精确映射,揭示了小鼠视觉皮层中的拓扑投影。

Precise Mapping of Single Neurons by Calibrated 3D Reconstruction of Brain Slices Reveals Topographic Projection in Mouse Visual Cortex.

机构信息

Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea; Information and Electronics Research Institute, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea.

Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea; Program of Brain and Cognitive Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea.

出版信息

Cell Rep. 2020 May 26;31(8):107682. doi: 10.1016/j.celrep.2020.107682.

Abstract

Recent breakthroughs in neuroanatomical tracing methods have helped unravel complicated neural connectivity in whole-brain tissue at single-cell resolution. However, in most cases, analysis of brain images remains dependent on highly subjective and sample-specific manual processing, preventing precise comparison across sample animals. In the present study, we introduce AMaSiNe, software for automated mapping of single neurons in the standard mouse brain atlas with annotated regions. AMaSiNe automatically calibrates misaligned and deformed slice samples to locate labeled neuronal positions from multiple brain samples into the standardized 3D Allen Mouse Brain Reference Atlas. We exploit the high fidelity and reliability of AMaSiNe to investigate the topographic structures of feedforward projections from the lateral geniculate nucleus to the primary visual area by reconstructing rabies-virus-injected brain slices in 3D space. Our results demonstrate that distinct organization of neural projections can be precisely mapped using AMaSiNe.

摘要

最近神经解剖学追踪方法的突破帮助我们以单细胞分辨率揭示了全脑组织中复杂的神经连接。然而,在大多数情况下,脑图像的分析仍然依赖于高度主观和特定于样本的手动处理,这阻碍了样本动物之间的精确比较。在本研究中,我们引入了 AMaSiNe,这是一款用于自动绘制带有注释区域的标准小鼠脑图谱中单神经元的软件。AMaSiNe 自动校准错位和变形的切片样本,将来自多个脑样本的标记神经元位置定位到标准化的 3D Allen Mouse Brain Reference Atlas 中。我们利用 AMaSiNe 的高保真度和可靠性,通过在 3D 空间中重建狂犬病毒注射的脑切片,来研究从外侧膝状体到初级视觉区的前馈投射的拓扑结构。我们的结果表明,使用 AMaSiNe 可以精确绘制神经投射的不同组织。

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