Keller Daniel, Verasztó Csaba, Markram Henry
Blue Brain Project, École polytechnique fédérale de Lausanne (EPFL), Geneva, Switzerland.
Front Neuroanat. 2023 Mar 2;17:1118170. doi: 10.3389/fnana.2023.1118170. eCollection 2023.
Cells in the mammalian cerebral cortex exhibit layer-dependent patterns in their distribution. Classical methods of determining cell type distributions typically employ a painstaking process of large-scale sampling and characterization of cellular composition. We found that by combining hybridization (ISH) images with cell-type-specific transcriptomes, position-dependent cortical composition in P56 mouse could be estimated in the somatosensory cortex. The method uses ISH images from the Allen Institute for Brain Science. There are two novel aspects of the methodology. First, it is not necessary to select a subset of genes that are particular for a cell type of interest, nor is it necessary to only use ISH images with low variability among samples. Second, the method also compensated for differences in soma size and incompleteness of the transcriptomes. The soma size compensation is particularly important in order to obtain quantitative estimates since relying on bulk expression alone would overestimate the contribution of larger cells. Predicted distributions of broader classes of cell types agreed with literature distributions. The primary result is that there is a high degree of substructure in the distribution of transcriptomic types beyond the resolution of layers. Furthermore, transcriptomic cell types each exhibited characteristic soma size distributions. Results suggest that the method could also be employed to assign transcriptomic cell types to well-aligned image sets in the entire brain.
哺乳动物大脑皮层中的细胞在其分布上呈现出层依赖性模式。确定细胞类型分布的传统方法通常采用大规模采样和细胞组成特征描述这一艰苦的过程。我们发现,通过将原位杂交(ISH)图像与细胞类型特异性转录组相结合,可以在体感皮层中估计P56小鼠中位置依赖性的皮层组成。该方法使用来自艾伦脑科学研究所的ISH图像。该方法有两个新颖之处。首先,没有必要选择特定于感兴趣细胞类型的基因子集,也没有必要仅使用样本间变异性低的ISH图像。其次,该方法还补偿了体细胞大小和转录组不完整性的差异。体细胞大小补偿对于获得定量估计尤为重要,因为仅依靠总体表达会高估较大细胞的贡献。更广泛细胞类型类别的预测分布与文献分布一致。主要结果是,在转录组类型分布中存在高度的亚结构,其超出了层分辨率。此外,转录组细胞类型各自表现出特征性的体细胞大小分布。结果表明,该方法也可用于将转录组细胞类型分配到全脑排列良好的图像集中。