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Orije, J.

Publications and source records attributed to Orije, J..

2 recordsLinked to original sources

Emergence of social recognition in auditory and integrative circuits during pair bonding

Social relationships profoundly shape the perception of communication signals. In animals that form long-term social bonds, sensory cues such as vocalizations, scent, or physical appearance, and rewarding mating experiences can become associated with a bonded mate. While this natural process has hallmarks of some forms of associative learning, little is known about where or how these experiences shape neural circuits over the course of pair bonding. We used whole-brain BOLD fMRI in female songbirds to explore experience-dependent changes in neural activity in response to male songs. Pair bonding experiences drove changes in activation in response to the partners song within secondary auditory areas as well as two regulatory hubs that receive sensory input and connect to circuits that generate behavioral responses. In contrast, mere exposure to the vocal interactions of a neighboring pair did not result in changes in response to the neighbors song within the same areas, suggesting that pair bonding uniquely impacts auditory responses to familiar songs in select sensory and integrative circuits. Moreover, within the areas that showed increased activation for the partners song over the course of pair bonding, we observed diminished activation in response to the partners song after blocking D1 dopamine receptors, indicating a potential role for dopamine in the expression or maintenance of preference for the partners song. Eavesdropping females had changes in neural activation in response to the familiar song in a different suite of brain regions that were not affected by dopamine manipulation. Our data identify a potential circuit in which concurrent activation of sensory, reward, and regulatory hubs integrates multisensory information from social interactions and leads to the emergence of acoustic preferences and formation of long-lasting social bonds.

neuroscience↗

Season-dependent processing of innate conspecific vocalizations in the male and female European starling (Sturnus vulgaris)

Avian innate nestling begging calls are similar to human infant cries in the behavioral response they elicit. However, it remains unknown whether the auditory processing of innate begging calls changes in seasonal songbirds from non-breeding to breeding season when hormonal neuromodulation of the auditory forebrain occurs. An fMRI experiment was set up to expose male and female European starlings (Sturnus vulgaris) to recordings of seasonal conspecific nestling begging calls in the breeding and non-breeding season. This response was compared with their response to conspecific warble motifs and artificial pure tones, both proven seasonally invariable at least in the male starlings neural response. Our results demonstrate significant seasonal variation in auditory forebrain responses exclusively elicited by begging calls and not by the applied control stimuli. Right Field L and the Caudomedial Nidopallium (NCM) seemed, irrespective of season or sex, more sensitive in response to begging than to control stimuli. A seasonal differential response specifically to begging calls was found in both sexes in a ventral midsagittal region of NCM. Our findings thereby support the functional fine-tuning of vocal communications between sender and receiver in a breeding context for innate vocalizations and are in line with the bi-parenting behavior in this species.

neuroscience↗