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Dulac, Catherine

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Dulac

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Catherine

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Dulac, Catherine

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Now showing 1 - 3 of 3
  • Publication

    The Neurobiology of Parenting: A Neural Circuit Perspective

    (Wiley, 2016-12-06) Kohl, Johannes; Dulac, Catherine; Autry, Anita

    Social interactions are essential for animals to reproduce, defend their territory, and raise their young. The conserved nature of social behaviors across animal species suggests that the neural pathways underlying the motivation for, and the execution of, specific social responses are also maintained. Modern tools of neuroscience have offered new opportunities for dissecting the molecular and neural mechanisms controlling specific social responses. We will review here recent insights into the neural circuits underlying a particularly fascinating and important form of social interaction, that of parental care. We will discuss how these findings open new avenues to deconstruct infant-directed behavioral control in males and females, and to help understand the neural basis of parenting in a variety of animal species, including humans.

  • Publication

    Sex separation induces differences in the olfactory sensory receptor repertoires of male and female mice

    (Springer Science and Business Media LLC, 2018-12) van der Linden, Carl; Jakob, Susanne; Gupta, Pooja; Dulac, Catherine; Santoro, Stephen W.

    Within the mammalian olfactory sensory epithelium, experience-dependent changes in the rate of neuronal turnover can alter the relative abundance of neurons expressing specific chemoreceptors. Here we investigate how the mouse olfactory sensory receptor repertoire changes as a function of exposure to odors emitted from members of the opposite sex, which are highly complex and sexually dimorphic. Upon housing mice either sex-separated or sex-combined until six months of age, we find that sex-separated mice exhibit significantly more numerous differentially expressed genes within their olfactory epithelia. A subset of these chemoreceptors exhibit altered expression frequencies following both sex-separation and olfactory deprivation. We show that several of these receptors detect either male- or female-specific odors. We conclude that the distinct odor experiences of sex-separated male and female mice induce sex-specific differences in the abundance of neurons that detect sexually dimorphic odors.

  • Publication

    Neuronal Representation of Social Information in the Medial Amygdala of Awake Behaving Mice

    (Elsevier BV, 2017-11) Li, Ying; Mathis, Alexander; Grewe, Benjamin F.; Osterhout, Jessica A.; Ahanonu, Biafra; Schnitzer, Mark J.; Murthy, Venkatesh; Dulac, Catherine

    The medial amygdala (MeA) plays a critical role in processing species- and sex-specific signals that trigger social and defensive behaviors. However, the principles by which this deep brain structure encodes social information is poorly understood. We used a miniature microscope to image the Ca2+ dynamics of large neural ensembles in awake behaving mice and tracked the responses of MeA neurons over several months. These recordings revealed spatially intermingled subsets of MeA neurons with distinct temporal dynamics. The encoding of social information in the MeA differed between males and females and relied on information from both individual cells and neuronal populations. By performing long-term Ca2+ imaging across different social contexts, we found that sexual experience triggers lasting and sex-specific changes in MeA activity, which, in males, involve signaling by oxytocin. These findings reveal basic principles underlying the brain’s representation of social information and its modulation by intrinsic and extrinsic factors.