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We performed bulk RNA sequencing on the mouse IC and BLA in an aim to identify the differential expression genes between siblings and strangers.
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创建时间:
2023-03-16
相关数据集
Differential Regulation of Alcohol Consumption and Reward by the Transcription Cofactor LMO4. Differential Regulation of Alcohol Consumption and Reward by the Transcription Cofactor LMO4
The goal of this study is to identify and validate transcriptional targets of LMO4 in the Basolateral Amygdala (BLA) and the Nucleus Accumbens (NAc) We mapped about 15-25 million reads per sample to t
NIAID Data Ecosystem40
Transcriptomic analysis of prefrontal medial cortex, hippocampus and nucleus accumbens of alcohol-preferring and nonpreferring rats
Animal models provide opportunity to study neurobiological aspects of human alcoholism. Changes in gene expression have been implicated in mediating brain function, including reward system and addict
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RNA-seq experiment on five mouse brain regions--hypothalamus, hippocampus, neocortex, cerebellum, and the amygdala --comparing expression in virgin females to primiparous females three weeks after pup weaning.
RNA-seq experiment on five mouse brain regions-- --comparing expression in virgin females to primiparous females three weeks after pup weaning. For each brain region there are 8 replicates, though thr
NIAID Data Ecosystem10
Genome-wide transcriptome analysis of brain region (ventral part of telenchephalon, hypothalamus and pituitary) in medaka [RNA-seq]. Genome-wide transcriptome analysis of brain region (ventral part of telenchephalon, hypothalamus and pituitary) in medaka [RNA-seq]
We compared the gene expression of ventral part of telenchephalon, hypothalamus and pituitary using RNA-seq between the two comparison groups, medaka kept under short day and long day. Overall design:
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Transcriptome analysis reveals downregulation of urocortin expression in the hypothalamo-neurohypophysial system of Spontaneously Hypertensive rats. Transcriptome analysis reveals downregulation of urocortin expression in the hypothalamo-neurohypophysial system of Spontaneously Hypertensive rats
Tissue extracted from the Supraoptic nucleus (SON), paraventricular nucleus (PVN) to determine gene expression differences as a consequence of hypertension within these structures Overall design: SHR
NIAID Data Ecosystem10



