The Allen Brain Atlas (ABA) provides a similar gene expression dataset by genome-scale mapping of the C57BL/6J mouse brain. In this study, the authors describe a method to extract the spatial information of gene expression patterns across a set of 1047 genes. The genes were chosen from among the 4104 genes having the lowest Pearson correlation coefficient used to compare the expression patterns across voxels in a single hemisphere for available coronal and sagittal volumes. The set of genes analysed in this study is the one discarded in the article by Bohland et al., which was considered to be of a lower consistency, not a reliable dataset. Following a normalisation task with a global and local approach, voxels were clustered using hierarch...
Studying gene expression provides a powerful means of understanding structure-function relationships...
We review quantitative methods and software developed to analyze genome-scale, brain-wide spatially-...
BackgroundGene expression signatures in the mammalian brain hold the key to understanding neural dev...
The Allen Brain Atlas (ABA) provides a similar gene expression dataset by genome-scale mapping of th...
In this paper, clustering techniques are applied to spatial gene expression patterns with a low geno...
Spatial gene expression profiles provide a novel means of exploring the structural organization of t...
BackgroundThe Allen Brain Atlas (ABA) project systematically profiles three-dimensional high-resolut...
Motivation: The mammalian central nervous system (CNS) generates high-level behavior and cognitive f...
Many important high throughput projects use in situ hybridization and may require the analysis of im...
Massive amounts of data are being generated in an effort to represent for the brain the expression o...
To characterize gene expression patterns in the regional subdivisions of the mammalian brain, we int...
The Allen Brain Atlas project (ABA) generated a genome-scale collection of gene-expression profiles ...
Spatial patterns of gene expression in the vertebrate brain are not independent, as pairs of genes c...
Motivation: Gene expression patterns can be useful in understanding the structural organization of t...
Background Spatial gene expression is particularly interesting in the mammalian brain, with the pote...
Studying gene expression provides a powerful means of understanding structure-function relationships...
We review quantitative methods and software developed to analyze genome-scale, brain-wide spatially-...
BackgroundGene expression signatures in the mammalian brain hold the key to understanding neural dev...
The Allen Brain Atlas (ABA) provides a similar gene expression dataset by genome-scale mapping of th...
In this paper, clustering techniques are applied to spatial gene expression patterns with a low geno...
Spatial gene expression profiles provide a novel means of exploring the structural organization of t...
BackgroundThe Allen Brain Atlas (ABA) project systematically profiles three-dimensional high-resolut...
Motivation: The mammalian central nervous system (CNS) generates high-level behavior and cognitive f...
Many important high throughput projects use in situ hybridization and may require the analysis of im...
Massive amounts of data are being generated in an effort to represent for the brain the expression o...
To characterize gene expression patterns in the regional subdivisions of the mammalian brain, we int...
The Allen Brain Atlas project (ABA) generated a genome-scale collection of gene-expression profiles ...
Spatial patterns of gene expression in the vertebrate brain are not independent, as pairs of genes c...
Motivation: Gene expression patterns can be useful in understanding the structural organization of t...
Background Spatial gene expression is particularly interesting in the mammalian brain, with the pote...
Studying gene expression provides a powerful means of understanding structure-function relationships...
We review quantitative methods and software developed to analyze genome-scale, brain-wide spatially-...
BackgroundGene expression signatures in the mammalian brain hold the key to understanding neural dev...