Aromatase-expressing neuroendocrine neurons in the vertebrate male brain synthesize estradiol from circulating testosterone. This locally produced estradiol controls neural circuits underlying courtship vocalization, mating, aggression, and territory marking in male mice. How aromatase-expressing neuronal populations control these diverse estrogen-dependent male behaviors is poorly understood, and the function, if any, of aromatase-expressingneurons in females is unclear. Using targeted genetic approaches, we show that aromatase-expressing neurons within the male posterodorsal medial amygdala (MeApd) regulate components of aggression, but not other estrogen-dependent male-typical behaviors. Remarkably, aromatase-expressing MeApd neurons in ...
Estrogens regulate a variety of social behaviors, including appetitive and consummatory sexual behav...
All vertebrates require testosterone for male sexual and territorial behaviors. Testosterone acts o...
Cognitive function relies on a balanced interplay between excitatory and inhibitory neurons (INs), b...
Aromatase-expressing neuroendocrine neurons in the vertebrate male brain synthesize estradiol from c...
Aromatase-expressing neuroendocrine neurons in the vertebrate male brain synthesize estradiol from c...
SummaryAromatase-expressing neuroendocrine neurons in the vertebrate male brain synthesize estradiol...
Sex hormones are essential for neural circuit development and sex-specific behaviors. Male behaviors...
SummarySex hormones are essential for neural circuit development and sex-specific behaviors. Male be...
The medial amygdala (MeA) is a central node in the interwoven circuits that regulate social behavior...
The medial amygdala (MeA) is a central node in the interwoven circuits that regulate social behavior...
All sexually reproducing animals display sex differences in social behaviors. These dimorphic behavi...
Treatment with testosterone (T) or estradiol (E2) facilitates intraspecific aggressive behavior in a...
Treatment with testosterone (T) or estradiol (E2) facilitates intraspecific aggressive behavior in a...
Sex steroid hormones act on hypothalamic kisspeptin neurons to regulate reproductive neural circuits...
Beside their genomic mode of action, estrogens also activate a variety of cellular signaling pathway...
Estrogens regulate a variety of social behaviors, including appetitive and consummatory sexual behav...
All vertebrates require testosterone for male sexual and territorial behaviors. Testosterone acts o...
Cognitive function relies on a balanced interplay between excitatory and inhibitory neurons (INs), b...
Aromatase-expressing neuroendocrine neurons in the vertebrate male brain synthesize estradiol from c...
Aromatase-expressing neuroendocrine neurons in the vertebrate male brain synthesize estradiol from c...
SummaryAromatase-expressing neuroendocrine neurons in the vertebrate male brain synthesize estradiol...
Sex hormones are essential for neural circuit development and sex-specific behaviors. Male behaviors...
SummarySex hormones are essential for neural circuit development and sex-specific behaviors. Male be...
The medial amygdala (MeA) is a central node in the interwoven circuits that regulate social behavior...
The medial amygdala (MeA) is a central node in the interwoven circuits that regulate social behavior...
All sexually reproducing animals display sex differences in social behaviors. These dimorphic behavi...
Treatment with testosterone (T) or estradiol (E2) facilitates intraspecific aggressive behavior in a...
Treatment with testosterone (T) or estradiol (E2) facilitates intraspecific aggressive behavior in a...
Sex steroid hormones act on hypothalamic kisspeptin neurons to regulate reproductive neural circuits...
Beside their genomic mode of action, estrogens also activate a variety of cellular signaling pathway...
Estrogens regulate a variety of social behaviors, including appetitive and consummatory sexual behav...
All vertebrates require testosterone for male sexual and territorial behaviors. Testosterone acts o...
Cognitive function relies on a balanced interplay between excitatory and inhibitory neurons (INs), b...