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Entorhinal transformations in abstract frames of reference

机译:参考框架中的内嗅转化

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摘要

Knowing how another’s preferences relate to our own is a central aspect of everyday decision-making, yet how the brain performs this transformation is unclear. Here, we ask whether the putative role of the hippocampal–entorhinal system in transforming relative and absolute spatial coordinates during navigation extends to transformations in abstract decision spaces. During functional magnetic resonance imaging (fMRI), subjects learned a stranger’s preference for an everyday activity—relative to one of three personally known individuals—and subsequently decided how the stranger's preference relates to the other two individuals’ preferences. We observed entorhinal/subicular responses to the absolute distance between the ratings of the stranger and the familiar choice options. Notably, entorhinal/subicular signals were sensitive to which familiar individuals were being compared to the stranger. In contrast, striatal signals increased when accurately determining the ordinal position of choice options in relation to the stranger. Paralleling its role in navigation, these data implicate the entorhinal/subicular region in assimilating relatively coded knowledge within abstract metric spaces.
机译:知道别人的喜好与我们自己的喜好之间的关系是日常决策的核心内容,但是大脑如何执行这种转变尚不清楚。在这里,我们问海马-肠胃系统在导航过程中相对和绝对空间坐标转换中的假定作用是否扩展到抽象决策空间中的转换。在功能磁共振成像(fMRI)期间,受试者学习了一个陌生人对日常活动的偏爱(相对于三个个人所知的一个),随后决定了该陌生人的偏爱与其他两个人的偏爱之间的关系。我们观察到内啡肽/亚种对陌生人的评分与熟悉的选择选项之间的绝对距离的反应。值得注意的是,内嗅/亚特异性信号对比较熟悉的人与陌生人比较敏感。相反,当准确确定选择选项相对于陌生人的顺序位置时,纹状体信号增加。这些数据与导航中的角色无关,暗示着内嗅/亚区域吸收了抽象度量空间中相对编码的知识。

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