狨猴
灵长类动物
神经科学
生物
紫苏蓟马
感觉系统
丘脑
功能磁共振成像
人脑
大脑皮层
大脑定位
非人灵长类
皮质神经元
投影(关系代数)
职能组织
功能连接
翻译(生物学)
神经网络
哺乳动物进化
体感系统
运动前神经元活动
猕猴
解剖
皮质(解剖学)
电生理学
视皮层
作者
Zhi Rui Huang,Qianqian Yang,Shenglong Li,Xiaojia Zhu,He Wang,Jixuan Lin,Yafeng Zhan,Yan Wu,Z.-H. Wang,Piotr Majka,Haichao Qu,Nafiseh Atapour,Tao Yang,Youning Lin,Luman Cui,Yong‐Gang Yao,Zhifeng Liang,Zhen Liu,Chao Li,Wei Wu
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-04-16
卷期号:392 (6795): eaea2673-eaea2673
被引量:6
标识
DOI:10.1126/science.aea2673
摘要
The principles organizing cellular diversity and connectivity in primate brains remain elusive. By integrating spatial transcriptomics, magnetic resonance imaging, and retrograde labeling in marmosets, we identified two opposing molecular gradients that undergo postnatal refinement, emanating from allocortices and primary sensory cortices, respectively. These gradients reconcile conflicting hypotheses on cortical expansion and characterize distinct cortical areas. Cortical gradients align with thalamic gene expression and thalamocortical projection patterns. At gradient intersections, the default mode network and frontal pole exhibited similar molecular features in humans and marmosets, despite species-specific differences in functional connectivity. Comparative analysis of gradient-related genes showed that marmoset and human auditory cortices are highly similar but differ from those of macaques, potentially reflecting complex vocalization. Together, these opposing gradients represent a fundamental organizing principle of the primate cortex.
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