首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The Effect of Counterfactual Information on Outcome Value Coding in Medial Prefrontal and Cingulate Cortex: From an Absolute to a Relative Neural Code
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The Effect of Counterfactual Information on Outcome Value Coding in Medial Prefrontal and Cingulate Cortex: From an Absolute to a Relative Neural Code

机译:反事实信息对内侧前额外和Cingulate Cortex中果价值编码的影响:从绝对到相对神经码

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摘要

Adaptive coding of stimuli is well documented in perception, where it supports efficient encoding over a broad range of possible percepts. Recently, a similar neural mechanism has been reported also in value-based decision, where it allows optimal encoding of vast ranges of values in PFC: neuronal response to value depends on the choice context (relative coding), rather than being invariant across contexts (absolute coding). Additionally, value learning is sensitive to the amount of feedback information: providing complete feedback (both obtained and forgone outcomes) instead of partial feedback (only obtained outcome) improves learning. However, it is unclear whether relative coding occurs in all PFC regions and how it is affected by feedback information. We systematically investigated univariate and multivariate feedback encoding in various mPFC regions and compared three modes of neural coding: absolute, partially-adaptive and fully-adaptive.
机译:刺激的自适应编码在感知中良好地记录,其中支持在广泛的可能感知范围内进行高效编码。 最近,还在基于价值的决定中报告了类似的神经机制,其中允许PFC中的大规模值的最佳编码:对值的神经元响应取决于选择上下文(相对编码),而不是跨越上下文的不变性 绝对编码)。 此外,价值学习对反馈信息的量敏感:提供完整的反馈(获得和不错的结果)而不是部分反馈(仅获得的结果)改善了学习。 然而,目前尚不清楚所有PFC区域是否发生相对编码以及它如何受到反馈信息的影响。 我们系统地调查了各种MPFC区域中的单次数和多变量反馈编码,并比较了三种神经编码模式:绝对,部分自适应和完全自适应。

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