Brain Gene Expression Analysis: a MATLAB toolbox for the analysis of brain-wide gene-expression data
Abstract
The Allen Brain Atlas project (ABA) generated a genome-scale collection of gene-expression profiles using in-situ hybridization. These profiles were co-registered to the three-dimensional Allen Reference Atlas (ARA) of the adult mouse brain. A set of more than 4,000 such volumetric data are available for the full brain, at a resolution of 200 microns. These data are presented in a voxel-by-gene matrix. The ARA comes with several systems of annotation, hierarchical (40 cortical regions, 209 sub-cortical regions in the whole brain), or non-hierarchical (12 regions in the left hemisphere, with refinement into 94 regions, and cortical layers). The high-dimensional nature of this dataset and the possible connection between anatomy and gene expression pose challenges to data analysis. We developed the Brain Gene Expression Analysis Toolbox, whose functionalities include: determination of marker genes for brain regions, statistical analysis of brain-wide co-expression patterns, and the computation of brain-wide correlation maps with cell-type specific microarray data.
Keywords
Cite
@article{arxiv.1211.6177,
title = {Brain Gene Expression Analysis: a MATLAB toolbox for the analysis of brain-wide gene-expression data},
author = {Pascal Grange and Jason W. Bohland and Michael Hawrylycz and Partha P. Mitra},
journal= {arXiv preprint arXiv:1211.6177},
year = {2017}
}
Comments
59 pages; v2: bug fixed on page 5, preface added; v3: more bugs fixed, cell-type-specific data released (chapter 5); v4: references added, chapter 2 expanded; v5: download link fixed, more typos corrected; v6: download link fixed