bioRxiv · 10.1101/414524
Hippocampal-entorhinal transformations in abstract frames of reference
Abstract
Knowing how anothers 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 fMRI scanning, subjects learned a strangers preference for an everyday activity - relative to one of three personally known individuals - and subsequently decided how the strangers preference relates to the other two individuals preferences. We found that entorhinal cortex/subiculum signals exhibited reference frame-sensitive responses to the absolute distance between the ratings of the stranger and the familiar choice options. 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.
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Kaplan, R., Friston, K. J.. 2018-09-11. Hippocampal-entorhinal transformations in abstract frames of reference. https://doi.org/10.1101/414524
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