TY - JOUR
T1 - Adversarial testing of global neuronal workspace and integrated information theories of consciousness
AU - Cogitate Consortium
AU - Ferrante, Oscar
AU - Gorska-Klimowska, Urszula
AU - Henin, Simon
AU - Hirschhorn, Rony
AU - Khalaf, Aya
AU - Lepauvre, Alex
AU - Liu, Ling
AU - Richter, David
AU - Vidal, Yamil
AU - Bonacchi, Niccolò
AU - Brown, Tanya
AU - Sripad, Praveen
AU - Armendariz, Marcelo
AU - Bendtz, Katarina
AU - Ghafari, Tara
AU - Hetenyi, Dorottya
AU - Jeschke, Jay
AU - Kozma, Csaba
AU - Mazumder, David R.
AU - Montenegro, Stephanie
AU - Seedat, Alia
AU - Sharafeldin, Abdelrahman
AU - Yang, Shujun
AU - Baillet, Sylvain
AU - Chalmers, David J.
AU - Cichy, Radoslaw M.
AU - Fallon, Francis
AU - Panagiotaropoulos, Theofanis I.
AU - Blumenfeld, Hal
AU - de Lange, Floris P.
AU - Devore, Sasha
AU - Jensen, Ole
AU - Kreiman, Gabriel
AU - Luo, Huan
AU - Boly, Melanie
AU - Dehaene, Stanislas
AU - Koch, Christof
AU - Tononi, Giulio
AU - Pitts, Michael
AU - Mudrik, Liad
AU - Melloni, Lucia
PY - 2025/6/5
Y1 - 2025/6/5
N2 - Different theories explain how subjective experience arises from brain activity1, 2. These theories have independently accrued evidence, but have not been directly compared3. Here we present an open science adversarial collaboration directly juxtaposing integrated information theory (IIT)4, 5 and global neuronal workspace theory (GNWT)6, 7, 8, 9, 10 via a theory-neutral consortium11, 12, 13. The theory proponents and the consortium developed and preregistered the experimental design, divergent predictions, expected outcomes and interpretation thereof12. 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 here14, 15, 16, 17. 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.
AB - Different theories explain how subjective experience arises from brain activity1, 2. These theories have independently accrued evidence, but have not been directly compared3. Here we present an open science adversarial collaboration directly juxtaposing integrated information theory (IIT)4, 5 and global neuronal workspace theory (GNWT)6, 7, 8, 9, 10 via a theory-neutral consortium11, 12, 13. The theory proponents and the consortium developed and preregistered the experimental design, divergent predictions, expected outcomes and interpretation thereof12. 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 here14, 15, 16, 17. 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.
U2 - 10.1038/s41586-025-08888-1
DO - 10.1038/s41586-025-08888-1
M3 - Article
SN - 0028-0836
VL - 642
SP - 133
EP - 142
JO - Nature
JF - Nature
IS - 8066
ER -