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对全局神经元工作空间和意识整合信息理论的对抗性测试。

Adversarial testing of global neuronal workspace and integrated information theories of consciousness.

作者信息

Ferrante Oscar, Gorska-Klimowska Urszula, Henin Simon, Hirschhorn Rony, Khalaf Aya, Lepauvre Alex, Liu Ling, Richter David, Vidal Yamil, Bonacchi Niccolò, Brown Tanya, Sripad Praveen, Armendariz Marcelo, Bendtz Katarina, Ghafari Tara, Hetenyi Dorottya, Jeschke Jay, Kozma Csaba, Mazumder David R, Montenegro Stephanie, Seedat Alia, Sharafeldin Abdelrahman, Yang Shujun, Baillet Sylvain, Chalmers David J, Cichy Radoslaw M, Fallon Francis, Panagiotaropoulos Theofanis I, Blumenfeld Hal, de Lange Floris P, Devore Sasha, Jensen Ole, Kreiman Gabriel, Luo Huan, Boly Melanie, Dehaene Stanislas, Koch Christof, Tononi Giulio, Pitts Michael, Mudrik Liad, Melloni Lucia

机构信息

Centre for Human Brain Health, School of Psychology, University of Birmingham, Birmingham, UK.

Department of Psychiatry, University of Wisconsin-Madison, Madison, WI, USA.

出版信息

Nature. 2025 Apr 30. doi: 10.1038/s41586-025-08888-1.

Abstract

Different theories explain how subjective experience arises from brain activity. These theories have independently accrued evidence, but have not been directly compared. Here we present an open science adversarial collaboration directly juxtaposing integrated information theory (IIT) and global neuronal workspace theory (GNWT) via a theory-neutral consortium. The theory proponents and the consortium developed and preregistered the experimental design, divergent predictions, expected outcomes and interpretation thereof. Human participants (n = 256) viewed suprathreshold stimuli for variable durations while neural activity was measured with functional magnetic resonance imaging, magnetoencephalography and intracranial electroencephalography. We found information about conscious content in visual, ventrotemporal and inferior frontal cortex, with sustained responses in occipital and lateral temporal cortex reflecting stimulus duration, and content-specific synchronization between frontal and early visual areas. These results align with some predictions of IIT and GNWT, while substantially challenging key tenets of both theories. For IIT, a lack of sustained synchronization within the posterior cortex contradicts the claim that network connectivity specifies consciousness. GNWT is challenged by the general lack of ignition at stimulus offset and limited representation of certain conscious dimensions in the prefrontal cortex. These challenges extend to other theories of consciousness that share some of the predictions tested here. Beyond challenging the theories, we present an alternative approach to advance cognitive neuroscience through principled, theory-driven, collaborative research and highlight the need for a quantitative framework for systematic theory testing and building.

摘要

不同的理论解释了主观体验是如何从大脑活动中产生的。这些理论各自积累了证据,但尚未进行直接比较。在此,我们通过一个理论中立的联盟,提出了一种开放科学的对抗性合作,将整合信息理论(IIT)和全局神经元工作空间理论(GNWT)直接并列比较。理论支持者和联盟共同制定并预先注册了实验设计、不同的预测、预期结果及其解释。256名人类参与者观看了不同持续时间的阈上刺激,同时通过功能磁共振成像、脑磁图和颅内脑电图测量神经活动。我们在视觉、腹侧颞叶和额下回皮质中发现了有关意识内容的信息,枕叶和外侧颞叶皮质的持续反应反映了刺激持续时间,额叶和早期视觉区域之间存在内容特异性同步。这些结果与IIT和GNWT的一些预测相符,同时也对这两种理论的关键信条提出了重大挑战。对于IIT来说,后皮质内缺乏持续同步与网络连通性决定意识的说法相矛盾。GNWT面临的挑战是,刺激消失时普遍缺乏点火现象,以及前额叶皮质中某些意识维度的表征有限。这些挑战也延伸到了其他一些与这里所测试的某些预测有共同之处的意识理论。除了对这些理论提出挑战之外,我们还提出了一种通过有原则的、理论驱动的合作研究来推进认知神经科学的替代方法,并强调需要一个定量框架来进行系统的理论测试和构建。

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