基于全景和地标的视图集成在人类位置选择性皮质中的独特机制
Linfeng Tony Han1, Russell A Epstein1
1Department of Psychology, University of Pennsylvania 3710 Hamilton Walk, Philadelphia PA, 19104, USA.
概括
大脑使用两个单独的神经通路来构建认知地图:后复合体 (RSC) 来整合一个位置的视图,以及副海马位置区域 (PPA) 来整合地标的视图.
科学领域:
- 神经科学是一个神经科学.
- 认知科学 认知科学
- 空间导航 空间导航
背景情况:
- 空间导航依赖于整合不同的感知观点,以形成一个连贯的认知地图.
- 存在两种主要的整合策略:全景 (从单个视角) 和基于地标 (跨越多个视角).
研究的目的:
- 研究人类全景和地标视角集成的不同神经解剖基质.
- 为了确定不同大脑区域是否支持从相同的有利位置整合视图,而不是对同一地标的视图.
主要方法:
- fMRI扫描参与者执行一个涉及虚拟城市的空间记忆任务.
- 多维素模式分析 (MVPA) 用于识别编码特定空间关联的大脑区域.
- 实验性操纵店面协会,以创建全景和地标配对.
主要成果:
- 全景关联被编码在后体复合体 (RSC) 和体区域 (MPMA,LPMA,SPPMA).
- 标志性关联被特别编码在近海马位区域 (PPA).
- 为了整合基于观察者位置与观察到的地标的视图,确定了不同的神经基板.
结论:
- 人类大脑至少使用两个不同的神经机制来将视觉信息整合到空间表示中.
- 脊柱状皮质和状皮质支持从一个位置 (全景) 整合视图.
- 电力购买协议支持整合与特定地标相关的观点,无论观察者在何处.
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