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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Double dissociation between hippocampal and parahippocampal responses to object-background context and scene novelty.
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Double dissociation between hippocampal and parahippocampal responses to object-background context and scene novelty.

机译:海马和海马旁对对象背景背景和场景新颖性的反应之间的双重分离。

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Several recent models of medial temporal lobe (MTL) function have proposed that the parahippocampal cortex processes context information, the perirhinal cortex processes item information, and the hippocampus binds together items and contexts. While evidence for a clear functional distinction between the perirhinal cortex and other regions within the MTL has been well supported, it has been less clear whether such a dissociation exists between the hippocampus and parahippocampal cortex. In the current study, we use a novel approach applying a functional magnetic resonance imaging adaptation paradigm to address these issues. During scanning, human subjects performed an incidental target detection task while viewing trial-unique sequentially presented pairs of natural scenes, each containing a single prominent object. We observed a striking double dissociation between the hippocampus and parahippocampal cortex, with the former showing a selective sensitivity to changes in the spatial relationship between objects and their background context and the latter engaged only by scene novelty. Our findings provide compelling support for the hypothesis that rapid item-context binding is a function of the hippocampus, rather than the parahippocampal cortex, with the former acting to detect relational novelty of this nature through its function as a match-mismatch detector.
机译:几种最近的内侧颞叶(MTL)功能模型已提出,海马旁皮质处理上下文信息,周围皮层处理项目信息,海马将项目和上下文绑定在一起。虽然有充分的证据证明在MTL周围的皮层和其他区域之间有明显的功能区别,但尚不清楚海马体与海马旁皮层之间是否存在这种分离。在当前的研究中,我们使用一种新颖的方法来应用功能磁共振成像适应范例来解决这些问题。在扫描过程中,人类受试者执行了偶然的目标检测任务,同时查看了试验独特的顺序呈现的成对自然场景,每对自然场景都包含一个重要物体。我们观察到海马和海马旁皮层之间惊人的双重解离,前者对物体与其背景环境之间空间关系的变化表现出选择性的敏感性,而后者仅受场景新颖性的影响。我们的发现为以下假设提供了令人信服的支持:快速项-上下文绑定是海马而不是海马旁皮质的功能,而前者通过其作为匹配失配检测器的功能来检测这种性质的关系新奇。

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