Mouse has been extensively used as a tool for investigating the onset and development of human neurological disorders. As a first step to construct a transgenic mouse model of human brain lesions, it is of fundamental importance to clarify the similarity and divergence of genetic background between non-diseased human and mouse brain tissues.We systematically compared, based on large scale integrated microarray data, the transcriptomes of three anatomically distinct brain regions; prefrontal cortex (PFC), hippocampus (HIP) and striatum (STR), across human and mouse. The widely used DAVID web server was used to decipher the biological functions of the highly expressed genes that were identified using a previously reported approach. Venn analy...
BackgroundExpression quantitative trait locus (eQTL) mapping is used to find loci that are responsib...
Background: We performed a statistical analysis of a previously published set of gene expression mic...
BackgroundGene expression signatures in the mammalian brain hold the key to understanding neural dev...
BACKGROUND:Mouse has been extensively used as a tool for investigating the onset and development of ...
Many neurodegenerative diseases have a hallmark regional and cellular pathology. Gene expression ana...
Using serial analysis of gene expression, we collected quantitative transcriptome data in 11 regions...
Many neurodegenerative diseases have a hallmark regional and cellular pathology. Gene expression ana...
Many neurodegenerative diseases have a hallmark regional and cellular pathology. Gene expression ana...
The use of high-throughput genomic technologies has led to significant advances in the study of the ...
Transcriptome analysis of mammalian brain structures is a potentially powerful approach in addressin...
The distinctiveness of brain structures and circuits depends on interacting gene products, yet the o...
Understanding complex networks that modulate development in humans is hampered by genetic and phenot...
Understanding complex networks that modulate development in humans is hampered by genetic and phenot...
Abstract Background We performed gene expression profiling of the amygdala and hippocampus taken fro...
BackgroundMouse models have allowed for the direct interrogation of genetic effects on molecular, ph...
BackgroundExpression quantitative trait locus (eQTL) mapping is used to find loci that are responsib...
Background: We performed a statistical analysis of a previously published set of gene expression mic...
BackgroundGene expression signatures in the mammalian brain hold the key to understanding neural dev...
BACKGROUND:Mouse has been extensively used as a tool for investigating the onset and development of ...
Many neurodegenerative diseases have a hallmark regional and cellular pathology. Gene expression ana...
Using serial analysis of gene expression, we collected quantitative transcriptome data in 11 regions...
Many neurodegenerative diseases have a hallmark regional and cellular pathology. Gene expression ana...
Many neurodegenerative diseases have a hallmark regional and cellular pathology. Gene expression ana...
The use of high-throughput genomic technologies has led to significant advances in the study of the ...
Transcriptome analysis of mammalian brain structures is a potentially powerful approach in addressin...
The distinctiveness of brain structures and circuits depends on interacting gene products, yet the o...
Understanding complex networks that modulate development in humans is hampered by genetic and phenot...
Understanding complex networks that modulate development in humans is hampered by genetic and phenot...
Abstract Background We performed gene expression profiling of the amygdala and hippocampus taken fro...
BackgroundMouse models have allowed for the direct interrogation of genetic effects on molecular, ph...
BackgroundExpression quantitative trait locus (eQTL) mapping is used to find loci that are responsib...
Background: We performed a statistical analysis of a previously published set of gene expression mic...
BackgroundGene expression signatures in the mammalian brain hold the key to understanding neural dev...