DeDe宝 (2025-11-08 01:56):
paper 【doi】10.1073/pnas.2520067122;【发表年份】2025年;【期刊】PNAS;【标题】Parallel systems for social and spatial cognition reaching the cortical apex。【内容总结】这项研究旨在厘清高级推理功能是否如同感知层面一样具有领域特异性。研究采用功能磁共振成像(fMRI)获取数据,通过全脑分析、ROI分析、功能连接分析、皮层梯度分析等方法检验功能脑区是否存在独立子系统。研究结果表明,全脑存在多处社会推理和空间推理的特异性偏好区域,这些区域在不同任务重保持一致,不受刺激物理性质和任务需求差异的影响。在解剖结构上,社会推理和空间推理的偏好区域相邻或者交替排列;但在功能连接上,区域间连接显著弱于区域内连接,说明确实存在两个独立的网络。综上,本研究支持了高级推理功能的相关皮层是多个特异性子系统构成的观点。
Parallel systems for social and spatial cognition reaching the cortical apex
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Abstract:
How are systems supporting high-level cognition organized in the human brain? We hypothesize that cognitive processes involved in understanding people and places are implemented by distinct neural systems with parallel anatomical organization. We test this hypothesis using precision neuroimaging of individual human brains on diverse tasks involving perception and cognition in the domains of familiar people, places, and objects. We find that thinking about people and places elicits responses in distinct areas of high-level association cortex within the default mode network, spanning the frontal, parietal, and temporal lobes. Person- and place-preferring brain regions are systematically spatially adjacent across cortical zones. These areas have strongly domain-specific response profiles across visual, semantic, and episodic tasks and are specifically functionally connected to other parts of association cortex with like domain preference. Social and spatial networks remain anatomically separated at the apex of a unimodal-to-transmodal gradient across cortex and include regions with anatomical connections to the hippocampal formation. These results demonstrate the existence of parallel, domain-specific networks reaching the cortical apex.
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