A cognitive map of subjective value space for human risky choice
作者:Mark A. Orloff, Seongmin A. Park, Jake Blumwald, Philippe DOMENECH, Erie D Boorman · 发表于:bioRxiv (Cold Spring Harbor Laboratory) · 年份:2026 · DOI:10.64898/2026.05.19.726239 · 研究领域:Neural and Behavioral Psychology Studies、Functional Brain Connectivity Studies、Cognitive Science and Mapping
Abstract Individuals are thought to make choices based on subjective valuations of options that integrate multiple attributes into a unified subjective value signal in the brain’s “value coding system.” How these attributes are transformed into a subjective valuation remains poorly understood. One candidate is the “cognitive mapping system,” which efficiently represents relational, multi-dimensional information and has been proposed to afford novel inferences. We develop a risky decision-making task and use fMRI to show that a two-dimensional (2D) subjective value space of reward probability and amount is represented in the cognitive mapping system as both a grid-like representation of decision vectors and a 2D “positional” code in entorhinal cortex (EC) and medial prefrontal cortex (mPFC). The strength of grid-like and subjective value representations are positively correlated, suggesting the cognitive mapping and value coding systems work in tandem. These findings bridge these systems and support a new framework for how the brain constructs values.