SummarySex hormones such as estrogen and testosterone are essential for sexually dimorphic behaviors in vertebrates. However, the hormone-activated molecular mechanisms that control the development and function of the underlying neural circuits remain poorly defined. We have identified numerous sexually dimorphic gene expression patterns in the adult mouse hypothalamus and amygdala. We find that adult sex hormones regulate these expression patterns in a sex-specific, regionally restricted manner, suggesting that these genes regulate sex typical behaviors. Indeed, we find that mice with targeted disruptions of each of four of these genes (Brs3, Cckar, Irs4, Sytl4) exhibit extremely specific deficits in sex specific behaviors, with single gen...
We tested the hypothesis that genes encoded on the sex chromosomes play a direct role in sexual diff...
All vertebrates require testosterone for male sexual and territorial behaviors. Testosterone acts o...
AbstractOestradiol establishes neural sex differences in many vertebrates1–3 and modulates mood, beh...
SummarySex hormones such as estrogen and testosterone are essential for sexually dimorphic behaviors...
Sexually dimorphic behaviors, qualitative or quantitative differences in behaviors between the sexes...
Sex specific behaviors are essential for the reproductive success of individuals and the propagation...
Sexually dimorphic behaviors, qualitative or quantitative differences in behaviors between the sexes...
AbstractSexually dimorphic behaviors are likely to involve neural pathways that express the androgen...
SummarySexual dimorphisms in the brain underlie behavioral sex differences, but the function of indi...
Sexual dimorphisms in the brain underlie behavioral sex differences, but the function of individual ...
All sexually reproducing animals exhibit gender differences in behavior. Such sexual dimorphisms in ...
While single-cell transcriptomics in the brain has uncovered a vast diversity of neural cell types i...
SummaryAlthough neural substrates of mammalian female mating behavior have been described [1, 2], th...
Testosterone and estrogen are essential for male behaviors in vertebrates. How these two signaling p...
All sexually reproducing animals exhibit gender differences in behavior. Such sexual dimorphisms in ...
We tested the hypothesis that genes encoded on the sex chromosomes play a direct role in sexual diff...
All vertebrates require testosterone for male sexual and territorial behaviors. Testosterone acts o...
AbstractOestradiol establishes neural sex differences in many vertebrates1–3 and modulates mood, beh...
SummarySex hormones such as estrogen and testosterone are essential for sexually dimorphic behaviors...
Sexually dimorphic behaviors, qualitative or quantitative differences in behaviors between the sexes...
Sex specific behaviors are essential for the reproductive success of individuals and the propagation...
Sexually dimorphic behaviors, qualitative or quantitative differences in behaviors between the sexes...
AbstractSexually dimorphic behaviors are likely to involve neural pathways that express the androgen...
SummarySexual dimorphisms in the brain underlie behavioral sex differences, but the function of indi...
Sexual dimorphisms in the brain underlie behavioral sex differences, but the function of individual ...
All sexually reproducing animals exhibit gender differences in behavior. Such sexual dimorphisms in ...
While single-cell transcriptomics in the brain has uncovered a vast diversity of neural cell types i...
SummaryAlthough neural substrates of mammalian female mating behavior have been described [1, 2], th...
Testosterone and estrogen are essential for male behaviors in vertebrates. How these two signaling p...
All sexually reproducing animals exhibit gender differences in behavior. Such sexual dimorphisms in ...
We tested the hypothesis that genes encoded on the sex chromosomes play a direct role in sexual diff...
All vertebrates require testosterone for male sexual and territorial behaviors. Testosterone acts o...
AbstractOestradiol establishes neural sex differences in many vertebrates1–3 and modulates mood, beh...