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灵长类动物的神经发育时间和社会认知发展与亲社会的合作繁殖有关。

Neurodevelopmental timing and socio-cognitive development in a prosocial cooperatively breeding primate ().

机构信息

Department of Evolutionary Anthropology, University of Zurich, Zürich, Switzerland.

Collegium Helveticum, Zürich, Switzerland.

出版信息

Sci Adv. 2024 Nov;10(44):eado3486. doi: 10.1126/sciadv.ado3486. Epub 2024 Oct 30.

Abstract

Primate brain development is shaped by inputs received during critical periods. These inputs differ between independent and cooperative breeders: In cooperative breeders, infants interact with multiple caregivers. We study how the neurodevelopmental timing of the cooperatively breeding common marmoset maps onto behavioral milestones. To obtain structure-function co-constructions, we combine behavioral, neuroimaging (anatomical and functional), and neural tracing experiments. We find that brain areas critically involved in observing conspecifics interacting (i) develop in clusters, (ii) have prolonged developmental trajectories, (iii) differentiate during the period of negotiations between immatures and multiple caregivers, and (iv) do not share stronger connectivity than with other regions. Overall, developmental timing of social brain areas correlates with social and behavioral milestones in marmosets and, as in humans, extends into adulthood. This rich social input is likely critical for the emergence of their strong socio-cognitive skills. Because humans are cooperative breeders too, these findings have strong implications for the evolution of human social cognition.

摘要

灵长类动物的大脑发育受关键期内接收到的信息影响。这些输入在独立繁殖者和合作繁殖者之间存在差异:在合作繁殖者中,婴儿与多个照顾者互动。我们研究了合作繁殖的普通狨猴的神经发育时间如何与行为里程碑相吻合。为了获得结构-功能的共同构建,我们结合了行为、神经影像学(解剖学和功能学)和神经示踪实验。我们发现,与观察同种个体相互作用密切相关的大脑区域(i)呈簇状发育,(ii)具有延长的发育轨迹,(iii)在幼仔与多个照顾者之间的协商期间分化,(iv)与其他区域的连接性并不比其他区域更强。总的来说,社会大脑区域的发育时间与狨猴的社会和行为里程碑相关,并且与人类一样,这种发育时间会延伸到成年期。这种丰富的社会输入可能对它们强大的社会认知技能的出现至关重要。由于人类也是合作繁殖者,因此这些发现对人类社会认知的进化具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c326/11804945/4699ebde1f75/sciadv.ado3486-f1.jpg

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