Abstract
Spatially mapped large scale gene expression databases enable quantitative comparison of data measurements across genes, anatomy, and phenotype. In most ongoing efforts to study gene expression in the mammalian brain, significant resources are applied to the mapping and visualization of data. This paper describes the implementation and utility of Brain Explorer, a 3D visualization tool for studying in situ hybridization-based (ISH) expression patterns in the Allen Brain Atlas, a genome-wide survey of 21,000 expression patterns in the C57BL\6J adult mouse brain. Brain Explorer enables users to visualize gene expression data from the C57Bl/6J mouse brain in 3D at a resolution of 100 microm3, allowing co-display of several experiments as well as 179 reference neuro-anatomical structures. Brain Explorer also allows viewing of the original ISH images referenced from any point in a 3D data set. Anatomic and spatial homology searches can be performed from the application to find data sets with expression in specific structures and with similar expression patterns. This latter feature allows for anatomy independent queries and genome wide expression correlation studies. These tools offer convenient access to detailed expression information in the adult mouse brain and the ability to perform data mining and visualization of gene expression and neuroanatomy in an integrated manner.
MeSH Terms
Animals
Brain/anatomy & histology,metabolism
Computer Graphics
Computer Simulation
Gene Expression/physiology
Gene Expression Profiling/methods
Mice
Mice, Inbred C57BL
Models, Anatomic
Models, Biological
Nerve Tissue Proteins/metabolism
Oligonucleotide Array Sequence Analysis/methods
Software
Tissue Distribution
User-Computer Interface
Chemicals
Nerve Tissue Proteins
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Lau Christopher
Allen Institute for Brain Science, Seattle, WA, USA. chrisl@alleninstitute.org
Ng Lydia
Thompson Carol
Pathak Sayan
Kuan Leonard
Jones Allan
Hawrylycz Mike
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