神经科学
岛叶皮质
兴奋性突触后电位
职能组织
感觉系统
神经网络
生物
锥体细胞
电池类型
皮质(解剖学)
大脑皮层
灵长类动物
桥(图论)
皮质神经元
投影(关系代数)
生物神经网络
锥体束
电生理学
体感系统
大脑定位
功能专门化
神经生理学
作者
Bart C. Jongbloets,Yang Chen,Michael A. Muniak,Ian K. Gingerich,Kayla A. Maanum,Tianyi Mao
标识
DOI:10.1038/s41593-026-02391-0
摘要
The insular cortex integrates interoceptive and exteroceptive information to mediate bodily homeostasis, emotion and learning. However, the cellular and circuit substrates governing insular functions are poorly understood compared to primary cortices. Here we quantify dendritic morphology together with projections, electrical properties and/or local inputs of 1,130 mouse insular pyramidal neurons. Neurons are mapped onto a quantitative Nissl-derived model of the insula. Using improved algorithms, we define 21 morphological, 12 electrical and 9 input neuronal types, some unique to the insula. Several types exhibit elaborate dendrites, reminiscent of primate cortical neurons. Furthermore, morphological properties constrain and often predict inputs, electrical properties, projection targets or molecular markers. Eight morphological types are differentially distributed between the functionally distinct anterior and posterior insula, facilitating a quantitative demarcation between these subregions. Certain types receive intra-insular excitatory inputs originating far beyond cortical columns, which functionally bridge a long-range thalamus-to-amygdala circuit linking sensory information to valence behaviorally. Our work establishes a structure-and-function foundation for investigating the insula.
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