Skip to content

Michael Pitts

11 papers in the library · 271 citations · publishing 2021-2026

Papers

An adversarial collaboration protocol for testing contrasting predictions of global neuronal workspace and integrated information theory

PLoS ONE February 10, 2023 Lucia Melloni, Liad Mudrik, Michael Pitts et al. 106 citations

An adversarial collaboration between proponents of Global Neuronal Workspace and Integrated Information Theory devised and preregistered two experiments that test contrasting predictions about the location and timing of correlates of visual consciousness. Six theory-impartial laboratories will follow the study protocol using fMRI, M-EEG, and intracranial EEG, with built-in replications between labs and within datasets. The project aims to provide decisive evidence for or against the two theories and clarify the neural footprints of conscious visual perception, while modeling large-scale, collaborative, and open science practice.

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

Nature June 1, 2025 Oscar Ferrante, Urszula Gorska-Klimowska, Simon Henin et al. 94 citations

Different theories explain how subjective experience arises from brain activity. An open science adversarial collaboration directly juxtaposed integrated information theory (IIT) and global neuronal workspace theory (GNWT). Human participants (n = 256) viewed suprathreshold stimuli for variable durations while neural activity was measured with fMRI, MEG, and intracranial EEG. Information about conscious content was found 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 but substantially challenge key tenets of both theories, including a lack of sustained posterior cortex synchronization for IIT and a lack of ignition at stimulus offset and limited prefrontal representation for GNWT.

The Consciousness Theories Studies (ConTraSt) database: analyzing and comparing empirical studies of consciousness theories

bioRxiv Preprint Server June 10, 2021 Itay Yaron, Lucia Melloni, Michael Pitts et al. 21 citations preprint

A bird's-eye analysis of 412 experiments on the neuroscience of consciousness reveals that methodological choices alone can predict which of four leading theories a study will support, regardless of the actual findings. Most studies interpret their results after the fact rather than testing critical predictions in advance. This suggests that the field's theoretical commitments may be driven more by how experiments are designed than by the evidence itself. The authors provide an open-access website for further exploration of these trends.

Studying unconscious processing: Contention and consensus.

The Behavioral and brain sciences July 22, 2025 François Stockart, Maor Schreiber, Pietro Amerio et al. 20 citations

The scope of unconscious processing remains hotly debated, driven by diverse methods for manipulating and measuring perceptual awareness. Through dialogue among researchers with varied theoretical backgrounds, ten recommendations and nine outstanding issues are provided for designing experimental paradigms, analyzing data, and reporting results. These guidelines aim to evoke discussion about norms in studying unconscious processes and help researchers make informed decisions. While some recommendations may not align with existing approaches and will likely evolve, they are intended to foster a more convergent understanding of the extent and limits of unconscious processing.

Neural signatures of visual awareness independent of postperceptual processing.

Cerebral cortex (New York, N.Y. : 1991) November 5, 2024 Michael A Cohen, Cole Dembski, Kevin Ortego et al. 20 citations

Using electroencephalography and a no-report visual masking paradigm, stimulus visibility was manipulated by varying the time between stimuli and masks in linear steps (17, 33, 50, 67, and 83 ms). Awareness increased nonlinearly, with stimuli never seen at the two shortest intervals, always seen at the two longest, and 50% seen at the intermediate interval. A neural signal closely linked to perceptual awareness, independent of task, was identified: a fronto-central event-related potential called the N2 (~250 to 300 ms). Earlier signals reflected the linear manipulation of stimulus strength, while later signals like P3b and temporal generalization of decoding were tied to task performance, appearing only in the report condition. These findings inform debates regarding theories of consciousness.

On a confusion about there being two types of consciousness.

Trends in cognitive sciences December 17, 2025 Liad Mudrik, Nathan Faivre, Michael Pitts et al. 5 citations

A major controversy in consciousness science divides sensory and cognitive theories. Reexamining Block's 1995 distinction between phenomenal consciousness (P) and access consciousness (A), the authors argue that P and A are not two different types of consciousness but two necessary conditions for consciousness. This conceptual shift helps resolve unresolved questions about neural mechanisms, functions of consciousness, and its relationship with attention. The proposal motivates selective unification across different classes of theories.

Open multi-center intracranial electroencephalography dataset with task probing conscious visual perception.

Scientific data May 23, 2025 Alia Seedat, Alex Lepauvre, Jay Jeschke et al. 5 citations

An intracranial EEG dataset was collected from 38 epilepsy patients across three research centers as part of an adversarial collaboration testing Global Neuronal Workspace Theory and Integrated Information Theory. Participants viewed visual stimuli—faces, objects, letters, and false fonts—in three orientations and for three durations, performing a Go/No-Go target detection task. The dataset includes demographics, clinical information, electrode reconstructions, behavioral performance, and eye-tracking data, all converted to BIDS format. It is intended for reuse in consciousness science and vision neuroscience to investigate stimulus processing, target detection, and task-relevance.

An open multi-center MEG-EEG dataset for studying conscious visual perception.

Scientific data May 29, 2026 Ling Liu, Oscar Ferrante, Tara Ghafari et al.

A large-scale, multi-center dataset combines MEG, EEG, eye-tracking, and structural MRI recordings from 100 individuals (mean age 22.79, 54 female, all right-handed) across two research centers (UK and China). The data were collected through an adversarial collaboration between advocates of the Global Neuronal Workspace Theory and the Integrated Information Theory of consciousness. Participants performed a non-speeded Go/No-Go target detection task with visual stimuli from four categories (faces, objects, letters, false fonts) at different orientations and durations (0.5, 1.0, 1.5 s) under various task conditions. The dataset follows the Brain Imaging Data Structure (BIDS) and includes extensive metadata to enhance reusability.

An open-access multi-site fMRI dataset for investigating conscious visual perception.

Scientific data May 7, 2026 Aya Khalaf, David Richter, Yamil Vidal et al.

An adversarial collaboration between proponents of the Global Neuronal Workspace theory and the Integrated Information Theory of consciousness produced a functional magnetic resonance imaging dataset from 118 participants. Participants viewed faces, objects, letters, and false fonts presented at three orientations and three durations (0.5, 1.0, 1.5 seconds) while identifying infrequent targets. Two categories were task-relevant and two were task-irrelevant in each block. The simple design makes the data broadly reusable for testing predictions from other theories of consciousness and for examining visual processing. Anonymized data, quality reports, demographics, behavioral performance, and eye-tracking data are publicly accessible.

An adversarial collaboration to critically evaluate theories of consciousness

bioRxiv Preprint Server June 23, 2023 Oscar Ferrante, Urszula Gorska-Klimowska, Simon Henin et al. preprint

An open science adversarial collaboration directly juxtaposed Integrated Information Theory (IIT) and Global Neuronal Workspace Theory (GNWT) by investigating neural correlates of visual experience. 256 human subjects viewed suprathreshold stimuli for variable durations while neural activity was measured with fMRI, MEG, and ECoG. Information about conscious content was found in visual, ventro-temporal, 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.

Dissociating the Neural Correlates of Consciousness and Task Relevance in Face Perception Using Simultaneous EEG-fMRI.

The Journal of neuroscience : the official journal of the Society for Neuroscience September 15, 2021 Torge Dellert, Miriam Müller-Bardorff, Insa Schlossmacher et al.

Conscious visual perception of faces is linked to early processing in sensory brain regions, especially the fusiform gyrus, rather than requiring later widespread frontoparietal network activity. Using simultaneous EEG-fMRI and an inattentional blindness paradigm with three identical phases, participants either spontaneously noticed or remained blind to faces during a distractor task. Bayesian analysis showed conscious face perception most strongly activated the fusiform gyrus (fMRI) and produced the N170 and visual awareness negativity (EEG), with smaller effects in occipital and prefrontal cortex. In contrast, task-relevant face processing activated extensive occipitotemporal, frontoparietal, and attentional networks and elicited a pronounced P3b component, suggesting strong frontoparietal activity and the P3b reflect task-related processes rather than consciousness itself.