脊椎动物全局神经元工作区的进化起源。

IF 3.1 Q1 PSYCHOLOGY, BIOLOGICAL
Neuroscience of Consciousness Pub Date : 2023-09-13 eCollection Date: 2023-01-01 DOI:10.1093/nc/niad020
Oryan Zacks, Eva Jablonka
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引用次数: 0

摘要

意识的全局神经元工作空间理论提供了一种明确的功能结构,将意识与感知、注意力、记忆和评估等认知能力联系起来。我们发现,主要基于人类研究的全局神经元工作区的功能架构与描述最小意识的无限联想学习理论提出的认知-情感架构相对应。然而,我们认为,当应用于基础脊椎动物时,这两个模型都需要进行重要的修改,以适应对脊椎动物大脑进化的了解。最重要的是,比较研究表明,在基础脊椎动物中,全局神经元工作区是由海马同源物中发现的事件记忆系统实例化的。这一建议对理解海马和皮层功能、记忆和意识之间的进化关系以及统一感知的进化具有可测试的预测和意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The evolutionary origins of the Global Neuronal Workspace in vertebrates.

The evolutionary origins of the Global Neuronal Workspace in vertebrates.

The evolutionary origins of the Global Neuronal Workspace in vertebrates.

The evolutionary origins of the Global Neuronal Workspace in vertebrates.

The Global Neuronal Workspace theory of consciousness offers an explicit functional architecture that relates consciousness to cognitive abilities such as perception, attention, memory, and evaluation. We show that the functional architecture of the Global Neuronal Workspace, which is based mainly on human studies, corresponds to the cognitive-affective architecture proposed by the Unlimited Associative Learning theory that describes minimal consciousness. However, we suggest that when applied to basal vertebrates, both models require important modifications to accommodate what has been learned about the evolution of the vertebrate brain. Most importantly, comparative studies suggest that in basal vertebrates, the Global Neuronal Workspace is instantiated by the event memory system found in the hippocampal homolog. This proposal has testable predictions and implications for understanding hippocampal and cortical functions, the evolutionary relations between memory and consciousness, and the evolution of unified perception.

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来源期刊
Neuroscience of Consciousness
Neuroscience of Consciousness Psychology-Clinical Psychology
CiteScore
6.90
自引率
2.40%
发文量
16
审稿时长
19 weeks
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