AbstractPostnatal cerebral development is a complicated biological process precisely controlled by multiple genes. To understand the molecular mechanism of cerebral development, we compared dynamics of mouse cerebrum transcriptome through three developmental stages using high-throughput RNA-seq technique. Three libraries were generated from the mouse cerebrum at infancy, adolescence and adulthood, respectively. Consequently, 44,557,729 (infancy), 59,257,530 (adolescence) and 72,729,636 (adulthood) reads were produced, which were assembled into 15,344, 16,048 and 15,775 genes, respectively. We found that the overall gene expression level increased from infancy to adolescence and decreased later on upon reaching adulthood. The adolescence cer...
Transcriptome analysis of somatic stem cells and their progeny is fundamental to identify new factor...
Background: Development of the cerebral cortex requires highly specific spatio-temporal regulation...
SummaryThe hallmark of the cerebral neocortex is its organization into six layers, each containing a...
AbstractPostnatal cerebral development is a complicated biological process precisely controlled by m...
Brain structure and function experience dramatic changes from embryonic to postnatal development. Mi...
ABSTR ACT: We explored differential protein expression profiles in the mouse forebrain at different ...
<div><p>The transcriptome of the brain changes during development, reflecting processes that determi...
Cerebral corticogenesis involves specific influence of intrinsic and extrinsic mechanisms, which are...
Mouse embryonic brain development involves sequential differentiation of multipotent progenitors int...
BACKGROUND: Development of the cerebral cortex requires highly specific spatio-temporal regulation o...
AbstractThe mammalian CNS is one of the most complex biological systems to understand at the molecul...
The mammalian CNS is one of the most complex biological systems to understand at the molecular level...
MicroRNAs (miRNAs) regulate gene expression in a post-transcriptional sequence-specific manner. In o...
The mammalian CNS is one of the most complex biological systems to understand at the molecular level...
Transcriptome analysis of somatic stem cells and their progeny is fundamental to identify new factor...
Transcriptome analysis of somatic stem cells and their progeny is fundamental to identify new factor...
Background: Development of the cerebral cortex requires highly specific spatio-temporal regulation...
SummaryThe hallmark of the cerebral neocortex is its organization into six layers, each containing a...
AbstractPostnatal cerebral development is a complicated biological process precisely controlled by m...
Brain structure and function experience dramatic changes from embryonic to postnatal development. Mi...
ABSTR ACT: We explored differential protein expression profiles in the mouse forebrain at different ...
<div><p>The transcriptome of the brain changes during development, reflecting processes that determi...
Cerebral corticogenesis involves specific influence of intrinsic and extrinsic mechanisms, which are...
Mouse embryonic brain development involves sequential differentiation of multipotent progenitors int...
BACKGROUND: Development of the cerebral cortex requires highly specific spatio-temporal regulation o...
AbstractThe mammalian CNS is one of the most complex biological systems to understand at the molecul...
The mammalian CNS is one of the most complex biological systems to understand at the molecular level...
MicroRNAs (miRNAs) regulate gene expression in a post-transcriptional sequence-specific manner. In o...
The mammalian CNS is one of the most complex biological systems to understand at the molecular level...
Transcriptome analysis of somatic stem cells and their progeny is fundamental to identify new factor...
Transcriptome analysis of somatic stem cells and their progeny is fundamental to identify new factor...
Background: Development of the cerebral cortex requires highly specific spatio-temporal regulation...
SummaryThe hallmark of the cerebral neocortex is its organization into six layers, each containing a...