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1 uires the encoding of pheromonal cues by the vomeronasal system.
2 rs associated with behaviors signaled by the Vomeronasal system.
3 document any synaptic connectivity with the vomeronasal system.
4 can adequately characterize the role of the vomeronasal system.
5 tanding the molecular logic of the mammalian vomeronasal system.
6 work for understanding sensory coding in the vomeronasal system.
7 e detection of pheromones is mediated by the vomeronasal system.
8 then the concept that the PMV is part of the vomeronasal system and integrates the brain circuitry co
9 xities of chemosensory communication via the vomeronasal system and the role of this system in handli
10 tes further connections of the olfactory and vomeronasal systems and describes the afferent connectio
11 gers coexist in neurons of the olfactory and vomeronasal systems, and that some are already detectabl
14 ng: (a) perception of social signals via the vomeronasal system, (b) formation of social memory via l
15 ioning independently, the main olfactory and vomeronasal systems have been found to have considerable
16 or cues, suggesting an expanded role for the vomeronasal system in both conspecific and interspecific
17 ntary roles of the main olfactory system and vomeronasal system in mediating pheromonal responses.
18 the first evidence for the importance of the vomeronasal system in the detection of chemosignals of k
19 ning the roles of both the olfactory and the vomeronasal systems in the processing of both pheromones
25 protostomes (and even between the nasal and vomeronasal systems of craniates), olfactory neuropils s
27 elatively few OMP (+) VSNs have a functional vomeronasal system, OMP is not critical for stimulus det
29 ial claims that humans possess a functioning vomeronasal system responsive to "pheromones" has added
30 suggest that the dichotomy in the peripheral vomeronasal system serves to separate pheromones based o
31 basic rules of information processing in the vomeronasal system, we developed a unique preparation th
32 tructures, the main olfactory system and the vomeronasal system, which each detect distinct types of
33 emosensory input from the main olfactory and vomeronasal systems, whose central pathways contain cell
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