有意识获取的主动推理模型:认知行为选择如何调和报告范式和非报告范式的结果

Christopher J. Whyte , Jakob Hohwy , Ryan Smith
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引用次数: 4

摘要

意识的认知理论,如全局工作空间理论和高阶理论,假设额顶叶回路在意识访问中起着至关重要的作用。然而,最近使用无报告范式的研究通过证明在明显缺乏前额叶皮层(PFC)激活的情况下有意识的可及性,对认知理论提出了挑战。为了解决这一挑战,本文提出了一个基于主动推理的有意识访问的计算模型,该模型将工作记忆门控视为一种认知行为。我们模拟了一个视觉掩蔽任务,并发现自我报告生成的工作记忆需求诱发了p3b样事件相关电位(ERPs)的晚期和PFC活动的增加。当报告需求被移除时,这些后期erp就会消失,PFC活动也会减少。因此,这些结果再现并可能解释无报告范式的结果。然而,即使没有报告要求,我们的模型表明,在可见刺激试验中模拟的PFC活动仍然跨越了可报告性的阈值——保持了PFC和有意识访问之间的联系。因此,我们的模拟表明,无报告范式提供的证据并不一定与意识的认知理论相矛盾。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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An active inference model of conscious access: How cognitive action selection reconciles the results of report and no-report paradigms

Cognitive theories of consciousness, such as global workspace theory and higher-order theories, posit that frontoparietal circuits play a crucial role in conscious access. However, recent studies using no-report paradigms have posed a challenge to cognitive theories by demonstrating conscious accessibility in the apparent absence of prefrontal cortex (PFC) activation. To address this challenge, this paper presents a computational model of conscious access, based upon active inference, that treats working memory gating as a cognitive action. We simulate a visual masking task and show that late P3b-like event-related potentials (ERPs), and increased PFC activity, are induced by the working memory demands of self-report generation. When reporting demands are removed, these late ERPs vanish and PFC activity is reduced. These results therefore reproduce, and potentially explain, results from no-report paradigms. However, even without reporting demands, our model shows that simulated PFC activity on visible stimulus trials still crosses the threshold for reportability – maintaining the link between PFC and conscious access. Therefore, our simulations show that evidence provided by no-report paradigms does not necessarily contradict cognitive theories of consciousness.

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