European Laboratory for Non-Linear Spectroscopy (LENS), University of Florence, Sesto Fiorentino (FI), Italy.
Department of Biology, University of Florence, Florence, Italy.
Sci Adv. 2023 Oct 13;9(41):eadg3844. doi: 10.1126/sciadv.adg3844. Epub 2023 Oct 12.
Brain cells are arranged in laminar, nuclear, or columnar structures, spanning a range of scales. Here, we construct a reliable cell census in the frontal lobe of human cerebral cortex at micrometer resolution in a magnetic resonance imaging (MRI)-referenced system using innovative imaging and analysis methodologies. MRI establishes a macroscopic reference coordinate system of laminar and cytoarchitectural boundaries. Cell counting is obtained with a digital stereological approach on the 3D reconstruction at cellular resolution from a custom-made inverted confocal light-sheet fluorescence microscope (LSFM). Mesoscale optical coherence tomography enables the registration of the distorted histological cell typing obtained with LSFM to the MRI-based atlas coordinate system. The outcome is an integrated high-resolution cellular census of Broca's area in a human postmortem specimen, within a whole-brain reference space atlas.
脑细胞排列在层状、核状或柱状结构中,跨越多种尺度。在这里,我们使用创新的成像和分析方法,在磁共振成像 (MRI) 参考系统中以微米分辨率构建了人类大脑前额叶的可靠细胞普查。MRI 建立了层状和细胞构筑边界的宏观参考坐标系。细胞计数是通过数字体视学法在 3D 重建中获得的,该重建来自定制的倒置共焦光片荧光显微镜 (LSFM),具有细胞分辨率。中尺度光学相干断层扫描使得可以将 LSFM 获得的扭曲组织学细胞分型与基于 MRI 的图谱坐标系进行配准。结果是在全脑参考空间图谱中,对人类死后标本中布罗卡区进行了集成的高分辨率细胞普查。