Research advances in vocal communication behavior and neural mechanisms of common marmosets
Received date: 2025-05-14
Accepted date: 2025-11-04
Online published: 2025-12-03
Vocal communication is a major way of information exchange among individual animals or groups, exhibiting diversity across different species. The common marmoset (Callithrix jacchus) has become a prominent non-human primate model in neurobiology, particularly in vocal communication research, due to its rich vocal repertoire, highly developed auditory system, complex vocal communication behaviors, and notable social characteristics. This article reviews the progress in research on vocal communication behavior and its neural mechanisms in common marmosets. It begins by outlining their vocal repertoire and acoustic characteristics. Building on this, the vocalizations are functionally categorized, with a focus on their specific roles and ecological significance in social interactions, foraging behavior, and alarm responses. Next, the neural mechanisms underlying vocal communication in common marmosets are presented, including the neural circuits and regulatory mechanisms of vocal production, as well as the key roles of the auditory cortex, prefrontal cortex, and limbic system in primary sound processing and higher-order functional integration. Finally, based on the current state of research, suggestions for future studies are proposed. This review aims to advance research on vocal communication in common marmosets and provide theoretical references for related fields.
Qianbing LI , Xiangyu ZHANG , Lixia GAO . Research advances in vocal communication behavior and neural mechanisms of common marmosets[J]. ACTA THERIOLOGICA SINICA, 2025 , 45(6) : 753 -762 . DOI: 10.16829/j.slxb.151104
| Agamaite J A, Chang C J, Osmanski M S, Wang X. 2015. A quantitative acoustic analysis of the vocal repertoire of the common marmoset (Callithrix jacchus) [J].Journal of the Acoustical Society of America, 138 (5): 2906-2928. | |
| An R, Lu C, Wang C, Chang L, Huang J, Jiang F, Xu T L, Gong N. 2024. Developmental patterns and gender differences of vocal production in marmoset monkeys [J]. Neuroscience Bulletin, 40 (1): 133-138. | |
| Bakola S, Burman K J, Bednarek S, Chan J M, Jermakow N, Worthy K H, Majka P, Rosa M G P. 2021. Afferent connections of cytoarchitectural area 6 m and surrounding cortex in the marmoset: Putative homologues of the supplementary and pre?supplementary motor areas [J]. Cerebral Cortex, 32 (1): 41-62. | |
| Bendor D, Wang X. 2008. Neural response properties of primary, rostral, and rostrotemporal core fields in the auditory cortex of marmoset monkeys [J]. Journal of Neurophysiollogy, 100 (2): 888-906. | |
| Bezerra B M, Souto A. 2008. Structure and usage of the vocal repertoire of Callithrix jacchus [J]. International Journal of Primatology, 29 (3): 671-701. | |
| Bosshard A B, Burkart J M, Merlo P, Cathcart C, Townsend S W, Bickel B. 2024. Beyond bigrams: call sequencing in the common marmoset (Callithrix jacchus) vocal system [J]. Royal Society Open Science, 11 (11): 240218.DOI: 10.1098/rsos.240218 . | |
| Buchinger T J, Li W. 2023. Chemical communication and its role in sexual selection across animalia [J]. Communications Biology, 6 (1): 1178.DOI: 10.1038/s42003-023-05572-w . | |
| Cerkevich C M, Rathelot J A, Strick P L. 2022. Cortical basis for skilled vocalization [J].Proceedings of the National Academy of Sciences of the United States of America, 119 (19): e2122345119.DOI: 10.1073/pnas.2122345119 . | |
| Chen H C, Kaplan G, Rogers L J. 2009. Contact calls of common marmosets (Callithrix jacchus): influence of age of caller on antiphonal calling and other vocal responses [J]. American Journal of Primatology, 71 (2): 165-170. | |
| Chow C P, Mitchell J F, Miller C T. 2015. Vocal turn?taking in a non?human primate is learned during ontogeny [J]. Proceedings of the Royal Society B-Biological Sciences, 282 (1807): 20150069.DOI: 10.1098/rspb.2015.0069 . | |
| Collier K, Bickel B, van Schaik C P, Manser M B, Townsend S W. 2014. Language evolution: Syntax before phonology? [J]. Proceedings of the Royal Society B-Biological Sciences, 281 (1788): 20140263.DOI: 10.1098/rspb.2014.0263 . | |
| Dureux A, Zanini A, Everling S. 2024. Mapping of facial and vocal processing in common marmosets with ultra?high field fmri [J]. Communications Biology, 7 (1): 317.DOI: 10.1038/s42003-024-06002-1 . | |
| Dureux A, Zanini A, Trapeau R, Belin P, Everling S. 2025. Functional organization of voice patches in marmosets and cross?species comparisons with macaques and humans [J]. Current Biology, 35 (16): 3869-3882. | |
| Ebina T, Sasagawa A, Hong D, Setsuie R, Obara K, Masamizu Y, Kondo M, Terada S I, Ozawa K, Uemura M, Takaji M, Watakabe A, Kobayashi K, Ohki K, Yamamori T, Murayama M, Matsuzaki M. 2024. Dynamics of directional motor tuning in the primate premotor and primary motor cortices during sensorimotor learning [J]. Nature Communications, 15 (1): 7127.DOI: 10.1038/s41467-024-51425-3 . | |
| Eliades S J, Miller C T. 2017. Marmoset vocal communication: behavior and neurobiology [J]. Developmental Neurobiology, 77 (3): 286-299. | |
| Eliades S J, Tsunada J. 2018. Auditory cortical activity drives feedback?dependent vocal control in marmosets [J]. Nature Communications, 9: 2540.DOI: 10.1038/s41467-018-04961-8 . | |
| Eliades S J, Wang X. 2005. Dynamics of auditory?vocal interaction in monkey auditory cortex [J]. Cerebral Cortex, 15 (10): 1510-1523. | |
| Eliades S J, Wang X. 2008. Neural substrates of vocalization feedback monitoring in primate auditory cortex [J]. Nature, 453 (7193): 1102-1106. | |
| Eliades S J, Wang X. 2012. Neural correlates of the lombard effect in primate auditory cortex [J]. Journal of Neuroscience, 32 (31): 10737-10748. | |
| Eliades S J, Wang X. 2019. Corollary discharge mechanisms during vocal production in marmoset monkeys [J]. Biological Psychiatry-Cognitive Neuroscience and Neuroimaging, 4 (9): 805-812. | |
| Engesser S, Townsend S W. 2019. Combinatoriality in the vocal systems of nonhuman animals [J]. Wiley Interdisciplinary Reviews-Cognitive Science, 10 (4): e1493. | |
| Fitch W T. 2010. The Evolution of Language [M]. Cambridge: Cambridge University Press, 175-176. | |
| Fox J G. 2019. The Common Marmoset in Captivity and Biomedical Research [M]. New York: Academic Press, 17. | |
| Gao L, Wang X. 2020. Intracellular neuronal recording in awake nonhuman primates [J]. Nature Protocols, 15 (11): 3615-3631.DOI: 10.1038/s41596-020-0388-3 . | |
| Gavassa S, Goldina A, Silva A C, Stoddard P K. 2013. Behavioral ecology, endocrinology and signal reliability of electric communication [J]. Journal of Experimental Biology, 216 (13): 2403-2411. | |
| Gilliland R L, Selvanayagam J, Zanini A, Johnston K D, Everling S. 2024. Neural activity for complex sounds in the marmoset anterior cingulate cortex [J]. Communications Biology, 7 (1): 1310.DOI: 10.1038/s42003-024-07019-2 . | |
| Gothard K M. 2022. Previews Marmosets confirm that context is king [J]. Neuron, 110 (8): 1273-1274. | |
| Grijseels D M, Fairbank D A, Miller C T. 2024. A model of marmoset monkey vocal turn?taking [J]. Proceedings of the Royal Society B-Biological Sciences, 291 (2026): 20240150.DOI: 10.1098/rspb.2024.0150 | |
| Grijseels D M, Prendergast B J, Gorman J C, Miller C T. 2023. The neurobiology of vocal communication in marmosets [J]. Annals of the New York Academy of Sciences, 1528 (1): 13-28. | |
| Gultekin Y B, Hage S R. 2018. Limiting parental interaction during vocal development affects acoustic call structure in marmoset monkeys [J]. Science Advances, 4 (4): eaar4012.DOI: 10.1126/sciadv.aar4012 . | |
| Hauser M D, Chomsky N, Fitch W T. 2002. The faculty of language: What is it, who has it, and how did it evolve? [J]. Science, 298 (25598): 1569-1579. | |
| Huang J, Cheng X, Zhang S, Chang L, Li X, Liang Z, Gong N. 2020. Having infants in the family group promotes altruistic behavior of marmoset monkeys [J]. Current Biology, 30 (20): 4047-4055. | |
| Jia G, Bai S, Lin Y, Wang X, Zhu L, Lyu C, Sun G, An K, Roe A W, Li X, Gao L. 2023. Representation of conspecific vocalizations in amygdala of awake marmosets [J]. National Science Review, 10 (11): nwad194.DOI: 10.1093/nsr/nwad194 . | |
| Jovanovic V, Fishbein A R, de la Mothe L, Lee K F, Miller C T. 2022. Behavioral context affects social signal representations within single primate prefrontal cortex neurons [J]. Neuron, 110 (8): 1318-1326. | |
| Kadia S C, Wang X. 2003. Spectral integration in a1 of awake primates: Neurons with single? and multipeaked tuning characteristics [J]. Journal of Neurophysiology, 89: 1603-1622. | |
| Kajikawa Y, de la Mothe L A, Blumell S, Sterbing?D’Angelo S J, D’Angelo W, Camalier C R, Hackett T A. 2008. Coding of fm sweep trains and twitter calls in area cm of marmoset auditory cortex [J]. Hearing Research, 239 (1-2): 107-125. | |
| Kato M, Yokoyama C, Kawasaki A, Takeda C, Koike T, Onoe H, Iriki A. 2018. Individual identity and affective valence in marmoset calls: In vivo brain imaging with vocal sound playback [J]. Animal Cognnition, 21 (3): 331-343. | |
| Kershenbaum A, Garland E C. 2015. Quantifying similarity in animal vocal sequences: Which metric performs best? [J]. Methods in Ecology and Evolution, 6 (12): 1452-1461. | |
| Landman R, Sharma J, Hyman J B, Fanucci?Kiss A, Meisner O, Parmar S, Feng G, Desimone R. 2020. Close?range vocal interaction in the common marmoset (Callithrix jacchus) [J]. PLoS ONE, 15(4): e0227392.DOI: 10.1371/journal.pone.0227392 . | |
| Li J, Aoi M C, Miller C T. 2024. Representing the dynamics of natural marmoset vocal behaviors in frontal cortex [J]. Neuron, 112 (21): 3542-3550. | |
| Liao D A, Zhang Y S, Cai L X, Ghazanfar A A. 2018. Internal states and extrinsic factors both determine monkey vocal production [J].Proceedings of the National Academy of Sciences of the United States of America, 115 (15): 3978-3983. | |
| L?schner J, Hage S R. 2025. Sound amongst the din: Primate strategies against noise [J]. Trends in Cognitive Sciences, 29 (2): 111-113. | |
| Lu T, Liang L, Wang X. 2001. Temporal and rate representations of time?varying signals in the auditory cortex of awake primates [J]. Nature Neuroscience, 4 (11): 1131-1138. | |
| Marler P. 1967. Animal communication signals: We are beginning to understand how the structure of animal signals relates to the function they serve [J]. Science, 157 (3790): 769-774. | |
| Marler P. 2010. Bird calls: Their potential for behavioral neurobiology [J]. Behavioral Neurobiology of Birdsong, 1016: 31-44. | |
| Miller C T, Beck K, Meade B, Wang X. 2009. Antiphonal call timing in marmosets is behaviorally significant: Interactive playback experiments [J]. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology, 195 (8): 783-789. | |
| Miller C T, Freiwald W A, Leopold D A, Mitchell J F, Silva A C, Wang X. 2016. Marmosets: A neuroscientific model of human social behavior [J]. Neuron, 90 (2): 219-233. | |
| Obara K, Ebina T, Terada S I, Uka T, Komatsu M, Takaji M, Watakabe A, Kobayashi K, Masamizu Y, Mizukami H, Yamamori T, Kasai K, Matsuzaki M. 2023. Change detection in the primate auditory cortex through feedback of prediction error signals [J]. Nature Communication, 14 (1): 6981.DOI: 10.1038/s41467-023-42553-3 . | |
| Oren G, Shapira A, Lifshitz R, Vinepinsky E, Cohen R, Fried T, Hadad G P, Omer D. 2024. Vocal labeling of others by nonhuman primates [J]. Science, 385 (6712): 996-1003. | |
| Pomberger T, Risueno?Segovia C, Gultekin Y B, Dohmen D, Hage S R. 2019. Cognitive control of complex motor behavior in marmoset monkeys [J]. Nature Communications, 10: 3796.DOI: 10.1038/s41467-019-11714-8 . | |
| Qi R, Lin Y, Liu S, Cao X, Xie M, Yu C, Sun H, Gao L, Li X. 2025. Vocal taking turns is premature at birth and improved by the postnatal phonetic environment in marmosets [J]. National Science Review, 12 (7): nwaf162.DOI: 10.1093/nsr/nwaf162 . | |
| Risueno?Segovia C, Hage S R. 2020. Theta synchronization of phonatory and articulatory systems in marmoset monkey vocal production [J]. Current Biology, 30 (21): 4276-4283. | |
| Rogers L J, Stewart L, Kaplan G. 2018. Food calls in common marmosets, Callithrix jacchus, and evidence that one is functionally referential [J]. Animals (Basel), 8: 99.DOI: 10.3390/ani8070099 . | |
| Roy S, Zhao L, Wang X. 2016. Distinct neural activities in premotor cortex during natural vocal behaviors in a new world primate, the common marmoset (Callithrix jacchus) [J]. Journal of Neuroscience, 36 (48): 12168-12179. | |
| Sadagopan S, Temiz?Karayol N Z, Voss H U. 2015. High?field functional magnetic resonance imaging of vocalization processing in marmosets [J]. Scientific Reports, 5: 10950.DOI: 10.1038/srep10950 . | |
| Scheerer?Bernhard J U, Tkachenko O Y, Heistermann M, Grundker C, Nayudu P L. 2015. Body weight?associated differences in ovarian morphology in captive common marmoset (Callithrix jacchus) [J]. Animal Reproduction Science, 157: 44-55. | |
| Schiel N, Souto A. 2017. The common marmoset: An overview of its natural history, ecology and behavior [J]. Developmental Neurobiology, 77 (3): 244-262. | |
| Smith D G. 1972. The role of the epaulets in the red?winged blackbird, (Agelaius phoeniceus) social system [J]. Behaviour, 41: 251-268. | |
| Song X, Guo Y, Li H, Chen C, Lee J H, Zhang Y, Schmidt Z, Wang X. 2022. Mesoscopic landscape of cortical functions revealed by through?skull wide?field optical imaging in marmoset monkeys [J]. Nature Communication, 13 (1): 2238.DOI: 10.1038/s41467-022-29864-7 . | |
| Suzuki R, Buck J R, Tyack P L. 2006. Information entropy of humpback whale songs [J]. Journal of the Acoustical Society of America, 119 (3): 1849-1866. | |
| Takahashi D Y, Fenley A R, Teramoto Y, Narayanan D Z, Borjon J I, Holmes P, Ghazanfar A A. 2015. Language development. The developmental dynamics of marmoset monkey vocal production [J]. Science, 349: 734-738. | |
| Takahashi D Y, Narayanan D Z, Ghazanfar A A. 2013. Coupled oscillator dynamics of vocal turn?taking in monkeys [J]. Current Biology, 23 (21): 2162-2168. | |
| Tsunada J, Eliades S J. 2025. Frontal?auditory cortical interactions and sensory prediction during vocal production in marmoset monkeys [J]. Current Biology, 35: 2307-2322 e2303. | |
| Tyree T J, Metke M, Miller C T. 2023. Cross?modal representation of identity in the primate hippocampus [J]. Science, 382: 417-423. | |
| Waal F B M D. 1989. Food sharing and reciprocal obligations among chimpanzees [J]. Journal of Human Evolution, 18 (5): 433-459. | |
| Wang X. 2007. Neural coding strategies in auditory cortex [J]. Hearing Research, 229 (1-2): 81-93. | |
| Wang X, Merzenich M M, Beitel R, Schreiner C E. 1995. Representation of a species?specific vocalization in the primary auditory cortex of the common marmoset: temporal and spectral characteristics [J]. Journal of Neurophysiol, 74 (6): 2685-2706. | |
| Wilson E O. 2000. Sociobiology: The New Synthesis [M]. Massachusetts: Harvard University Press, 177. | |
| Zeng H H, Huang J F, Li J R, Shen Z, Gong N, Wen Y Q, Wang L, Poo M M. 2021. Distinct neuron populations for simple and compound calls in the primary auditory cortex of awake marmosets [J]. National Science Review, 8 (11): nwab126.DOI: 10.1093/nsr/nwab126 . | |
| Zhang H, Wang D, Wei P, Fan X, Yang Y, An Y, Dai Y, Feng T, Shan Y, Ren L, Zhao G. 2023. Integrative roles of human amygdala subdivisions: insight from direct intracerebral stimulations via stereotactic EEG [J]. Human Brain Mapping, 44 (9): 3610-3623. | |
| Zhang Y, Shen S X, Bibic A, Wang X. 2024. Evolutionary continuity and divergence of auditory dorsal and ventral pathways in primates revealed by ultra?high field diffusion MRI [J]. Proceedings of the National Academy of Sciences of the United States of America, 121 (9): e2313831121.DOI: 10.1073/pnas. 2313831121 . | |
| Zhang Y S, Ghazanfar A A. 2022. Evolving alternative neural pathways for vocal dexterity [J]. Proceedings of the National Academy of Sciences of the United States of America, 119 (25): e2205899119.DOI: 10.1073/pnas.2205899119 . |
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