6533b82efe1ef96bd1293f29

RESEARCH PRODUCT

Synchronized Activity in The Main and Accessory Olfactory Bulbs and Vomeronasal Amygdala Elicited by Chemical Signals in Freely Behaving Mice

Sergio Martínez-bellverFernando Martínez-garcíaVicent Teruel-martíCecília Pardo-bellverEnrique Lanuza

subject

0301 basic medicineNasal cavityOlfactory systemMaleVomeronasal organmedia_common.quotation_subjectOlfactelcsh:MedicineNeutral stimulusBiologyAmygdalaArticle03 medical and health sciencesMice0302 clinical medicineSex FactorsXarxes neuronals (Neurobiologia)medicineAnimalsOlfactory memoryInternalizationlcsh:Scienceneural circuitsmedia_commonMultidisciplinaryBehavior Animallcsh:RamygdalaAmygdalaOlfactory BulbElectric StimulationElectrophysiology030104 developmental biologymedicine.anatomical_structurenervous systemolfactory bulbFemalelcsh:QVomeronasal OrganNeuroscience030217 neurology & neurosurgery

description

AbstractChemosensory processing in mammals involves the olfactory and vomeronasal systems, but how the activity of both circuits is integrated is unknown. In our study, we recorded the electrophysiological activity in the olfactory bulbs and the vomeronasal amygdala in freely behaving mice exploring a battery of neutral and conspecific stimuli. The exploration of stimuli, including a neutral stimulus, induced synchronic activity in the olfactory bulbs characterized by a dominant theta rhythmicity, with specific theta-gamma coupling, distinguishing between vomeronasal and olfactory structures. The correlated activation of the bulbs suggests a coupling between the stimuli internalization in the nasal cavity and the vomeronasal pumping. In the amygdala, male stimuli are preferentially processed in the medial nucleus, whereas female cues induced a differential response in the posteromedial cortical amygdala. Thus, particular theta-gamma patterns in the olfactory network modulates the integration of chemosensory information in the amygdala, allowing the selection of an appropriate behaviour.

10.1016/10.1038/s41598-017-10089-4