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全局工作空间动力学:皮层“绑定与传播”使意识内容成为可能。

Global workspace dynamics: cortical "binding and propagation" enables conscious contents.

机构信息

The Neurosciences Institute La Jolla, CA, USA.

出版信息

Front Psychol. 2013 May 28;4:200. doi: 10.3389/fpsyg.2013.00200. eCollection 2013.

Abstract

A global workspace (GW) is a functional hub of binding and propagation in a population of loosely coupled signaling elements. In computational applications, GW architectures recruit many distributed, specialized agents to cooperate in resolving focal ambiguities. In the brain, conscious experiences may reflect a GW function. For animals, the natural world is full of unpredictable dangers and opportunities, suggesting a general adaptive pressure for brains to resolve focal ambiguities quickly and accurately. GW theory aims to understand the differences between conscious and unconscious brain events. In humans and related species the cortico-thalamic (C-T) core is believed to underlie conscious aspects of perception, thinking, learning, feelings of knowing (FOK), felt emotions, visual imagery, working memory, and executive control. Alternative theoretical perspectives are also discussed. The C-T core has many anatomical hubs, but conscious percepts are unitary and internally consistent at any given moment. Over time, conscious contents constitute a very large, open set. This suggests that a brain-based GW capacity cannot be localized in a single anatomical hub. Rather, it should be sought in a functional hub - a dynamic capacity for binding and propagation of neural signals over multiple task-related networks, a kind of neuronal cloud computing. In this view, conscious contents can arise in any region of the C-T core when multiple input streams settle on a winner-take-all equilibrium. The resulting conscious gestalt may ignite an any-to-many broadcast, lasting ∼100-200 ms, and trigger widespread adaptation in previously established networks. To account for the great range of conscious contents over time, the theory suggests an open repertoire of binding coalitions that can broadcast via theta/gamma or alpha/gamma phase coupling, like radio channels competing for a narrow frequency band. Conscious moments are thought to hold only 1-4 unrelated items; this small focal capacity may be the biological price to pay for global access. Visuotopic maps in cortex specialize in features like color, retinal size, motion, object identity, and egocentric/allocentric framing, so that a binding coalition for the sight of a rolling billiard ball in nearby space may resonate among activity maps of LGN, V1-V4, MT, IT, as well as the dorsal stream. Spatiotopic activity maps can bind into coherent gestalts using adaptive resonance (reentry). Single neurons can join a dominant coalition by phase tuning to regional oscillations in the 4-12 Hz range. Sensory percepts may bind and broadcast from posterior cortex, while non-sensory FOKs may involve prefrontal and frontotemporal areas. The anatomy and physiology of the hippocampal complex suggest a GW architecture as well. In the intact brain the hippocampal complex may support conscious event organization as well as episodic memory storage.

摘要

一个全局工作空间(GW)是一个松散耦合的信号元素群体中绑定和传播的功能中心。在计算应用中,GW 架构招募了许多分布式的、专门的代理来合作解决焦点模糊问题。在大脑中,意识体验可能反映了 GW 的功能。对于动物来说,自然世界充满了不可预测的危险和机会,这表明大脑需要快速而准确地解决焦点模糊问题,这是一种普遍的适应性压力。GW 理论旨在理解意识和无意识脑事件之间的区别。在人类和相关物种中,皮质丘脑(C-T)核心被认为是感知、思维、学习、知晓感(FOK)、感觉情绪、视觉意象、工作记忆和执行控制等意识方面的基础。也讨论了替代的理论观点。C-T 核心有许多解剖学枢纽,但在任何给定时刻,有意识的知觉都是单一的和内部一致的。随着时间的推移,有意识的内容构成了一个非常大的、开放的集合。这表明,基于大脑的 GW 能力不能局限于单个解剖学枢纽。相反,它应该在一个功能枢纽中寻找——一种在多个任务相关网络上进行神经信号绑定和传播的动态能力,一种神经元云计算。在这种观点中,当多个输入流在赢家通吃的平衡中确定时,C-T 核心的任何区域都可以产生有意识的内容。由此产生的有意识的整体可能会引发一个任意到多个的广播,持续约 100-200ms,并触发先前建立的网络中的广泛适应。为了说明随时间变化的大量有意识的内容,该理论提出了一个开放的绑定联盟组合,可以通过θ/γ或α/γ相位耦合进行广播,就像争夺窄频带的无线电频道一样。有意识的时刻只包含 1-4 个不相关的项目;这种小的焦点容量可能是全球访问的生物代价。皮质中的视知觉图专门用于颜色、视网膜大小、运动、物体身份以及以自我为中心/以环境为中心的框架等特征,因此,对于附近空间中滚动台球的视觉,LGN、V1-V4、MT、IT 以及背侧流中的活动图可能会产生共鸣。空间活动图可以通过自适应共振(再进入)绑定成连贯的整体。单个神经元可以通过相位调谐到 4-12Hz 范围内的区域振荡来加入主导联盟。感觉知觉可以从后皮质绑定和广播,而非感觉 FOK 可能涉及前额叶和额颞叶区域。海马复合体的解剖学和生理学表明它也是一个 GW 结构。在完整的大脑中,海马复合体可能支持有意识的事件组织以及情景记忆存储。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51d6/3664777/7724c37322d5/fpsyg-04-00200-g001.jpg

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