<p>Scatter plot with Spearman correlation analysis between individual brain samples (A), between brain and the most similar peripheral tissue, the adrenal gland (B) and between brain and the least similar tissue, testis (C). 69% of all 20,239 currently known genes are expressed in the frontal cortex (FPKM >1). The majority of these genes are highly (14%) or moderately (32%) expressed in all tissue types (D). The majority (80%) of mRNA molecules in frontal cortex codes for proteins expressed in most tissue types analyzed, 4% of detected transcripts are brain-enhanced and 9% are brain-enriched (E).</p
Gene expression profiling holds great promise for identifying molecular pathologies of central nervo...
The transcriptome of the cerebral cortex is remarkably homogeneous, with variations being stronger b...
Gene expression profiling holds great promise for identifying molecular pathologies of central nervo...
The mammalian brain is a complex organ composed of many specialized cells, harboring sets of both co...
The mammalian brain is a complex organ composed of many specialized cells, harboring sets of both co...
<div><p>The mammalian brain is a complex organ composed of many specialized cells, harboring sets of...
The mammalian brain is a complex organ composed of many specialized cells, harboring sets of both co...
Transcriptome analysis of mammalian brain structures is a potentially powerful approach in addressin...
The mammalian brain is a complex organ composed of many specialized cells, harboring sets of both co...
Neuroanatomically precise, genome-wide maps of transcript distributions are critical resources to co...
Identifying the proteome variation in different parts of the body provides fundamental molecular det...
Identifying the proteome variation in different parts of the body provides fundamental molecular det...
SummaryOur understanding of the evolution, formation, and pathological disruption of human brain cir...
The cerebral cortex is the source of our most complex cognitive capabilities and a vulnerable target...
The cerebral cortex is the source of our most complex cognitive capabilities and a vulnerable target...
Gene expression profiling holds great promise for identifying molecular pathologies of central nervo...
The transcriptome of the cerebral cortex is remarkably homogeneous, with variations being stronger b...
Gene expression profiling holds great promise for identifying molecular pathologies of central nervo...
The mammalian brain is a complex organ composed of many specialized cells, harboring sets of both co...
The mammalian brain is a complex organ composed of many specialized cells, harboring sets of both co...
<div><p>The mammalian brain is a complex organ composed of many specialized cells, harboring sets of...
The mammalian brain is a complex organ composed of many specialized cells, harboring sets of both co...
Transcriptome analysis of mammalian brain structures is a potentially powerful approach in addressin...
The mammalian brain is a complex organ composed of many specialized cells, harboring sets of both co...
Neuroanatomically precise, genome-wide maps of transcript distributions are critical resources to co...
Identifying the proteome variation in different parts of the body provides fundamental molecular det...
Identifying the proteome variation in different parts of the body provides fundamental molecular det...
SummaryOur understanding of the evolution, formation, and pathological disruption of human brain cir...
The cerebral cortex is the source of our most complex cognitive capabilities and a vulnerable target...
The cerebral cortex is the source of our most complex cognitive capabilities and a vulnerable target...
Gene expression profiling holds great promise for identifying molecular pathologies of central nervo...
The transcriptome of the cerebral cortex is remarkably homogeneous, with variations being stronger b...
Gene expression profiling holds great promise for identifying molecular pathologies of central nervo...