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从比较连接组学到猕猴和狨猴的大规模工作记忆建模

From comparative connectomics to large-scale working memory modeling in macaque and marmoset.

作者信息

Magrou Loïc, Theodoni Panagiota, Arnsten Amy F T, Rosa Marcello G P, Wang Xiao-Jing

机构信息

Center for Neural Science, New York University, New York, 10003, NY, USA.

Department of Neurobiology, University of Chicago, Chicago, 60637, IL, USA.

出版信息

bioRxiv. 2025 Mar 17:2025.03.17.643781. doi: 10.1101/2025.03.17.643781.

Abstract

Although macaques and marmosets are both primates of choice for studying the brain mechanisms of cognition, they differ in key aspects of anatomy and behavior. Interestingly, recent connectomic analysis revealed that strong top-down projections from the prefrontal cortex to the posterior parietal cortex, present in macaques and important for executive function, are absent in marmosets. Here, we propose a consensus mapping that bridges the two species' cortical atlases and allows for direct area-to-area comparison of their connectomes, which are then used to build comparative computational large-scale modeling of the frontoparietal circuit for working memory. We found that the macaque model exhibits resilience against distractors, a prerequisite for normal working memory function. By contrast, the marmoset model is sensitive to distractibility commonly observed behaviorally in this species. Surprisingly, this contrasting trend can be swapped by scaling intrafrontal and frontoparietal connections. Finally, the relevance to primate ethology and evolution is discussed.

摘要

尽管猕猴和狨猴都是研究认知脑机制的首选灵长类动物,但它们在解剖结构和行为的关键方面存在差异。有趣的是,最近的连接组学分析表明,猕猴中存在的、对执行功能很重要的从前额叶皮质到后顶叶皮质的强自上而下投射,在狨猴中并不存在。在这里,我们提出了一种共识图谱,它连接了这两个物种的皮质图谱,并允许对它们的连接组进行直接的区域间比较,然后用于构建用于工作记忆的额顶叶回路的比较计算大规模模型。我们发现猕猴模型表现出对干扰物的抗性,这是正常工作记忆功能的一个先决条件。相比之下,狨猴模型对该物种行为中常见的分心敏感。令人惊讶的是,这种相反的趋势可以通过缩放额叶内和额顶叶连接来互换。最后,讨论了与灵长类动物行为学和进化的相关性。

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