Publications

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All publications

2023
[656] An adversarial collaboration protocol for testing contrasting predictions of global neuronal workspace and integrated information theory (, , , , , , , , , , , , , , , , , , , , , , , , , and ), In PLOS ONE, Public Library of Science, volume 18, . [bibtex] [pdf] [doi]
[655] Measuring Consciousness in the Intensive Care Unit (), In Neurocrit Care, volume , . [bibtex] [pdf] [doi]
[654] System Integrated Information (, , , , , , , , and ), In Entropy, volume 25, . [bibtex] [pdf] [doi]
[653] System Integrated Information (, , , , , , , , and ), In arXiv, volume , . [bibtex] [pdf] [doi]
[652] Measuring the integrated information of a quantum mechanism (, and ), In Entropy, volume 25, . [bibtex] [pdf] [doi]
[651] Measuring the integrated information of a quantum mechanism (, and ), In arXiv, volume , . [bibtex] [pdf] [doi]
[650] Sleep/wake changes in perturbational complexity in rats and mice (, , , , , and ), In iScience, volume 26, . [bibtex] [pdf] [doi]
[649] Origin, synchronization, and propagation of sleep slow waves in children (, , , , , , , and ), In NeuroImage, volume 274, . [bibtex] [pdf] [doi]
[648] Integrated information theory (IIT) 4.0: Formulating the properties of phenomenal existence in physical terms (, , , , , , , , , , , , , , and ), In arXiv, volume , . [bibtex] [pdf] [doi]
[647] A survey of neurophysiological differentiation across mouse visual brain areas and timescales (, , , , , , , , , , and ), In Frontiers in Computational Neuroscience, volume 17, . [bibtex] [pdf] [doi]
2022
[646] Inflammation, tau pathology, and synaptic integrity associated with sleep spindles and memory prior to β-amyloid positivity (, , , , , , , , , , , , , , , , , and ), In Sleep, volume 45, . [bibtex] [url] [doi]
[645] Restricted truncal sagittal movements of rapid eye movement behaviour disorder (, , , , , , , , , , , , and ), In npj Parkinson's Disease, volume 8, . [bibtex] [pdf] [doi]
[644] Multiple Traces and altered signal-to-noise in systems consolidation: Evidence from the 7T fMRI Natural Scenes Dataset (, , , , , , and ), In PNAS, volume 119, . [bibtex] [pdf] [doi]
[643] Only what exists can cause: An intrinsic view of free will (, , , and ), In arXiv, volume , . [bibtex] [pdf] [doi]
[642] IIT, half masked and half disfigured (, , , , , , and ), In Behavioral and Brain Sciences, volume 45, . [bibtex] [url] [doi]
[641] Increase in NREM sleep slow waves following injections of sodium oxybate in the mouse cerebral cortex and the role of somatostatin-positive interneurons (, , , and ), In European Journal of Neuroscience, volume , . [bibtex] [url] [doi]
[640] fMRI spectral signatures of sleep (, , , and ), In PNAS, volume 119, . [bibtex] [url] [doi]
[639] Quantifying arousal and awareness in altered states of consciousness using interpretable deep learning (, , , , , , , , , , , , , , , , and ), In Nature Communications, volume 13, . [bibtex] [pdf] [doi]
[638] Measuring stimulus-evoked neurophysiological differentiation in distinct populations of neurons in mouse visual cortex (, , , , , , , , , , , , , , , , , , , , , and ), In eNeuro, volume 9, . [bibtex] [pdf] [doi]
[637] New behavioral signs of consciousness in patients with severe brain injuries (, , , , and ), In Semin Neurol, volume 42, . [bibtex] [url] [doi]
[636] Ultrastructural effects of sleep and wake on the parallel fiber synapses of the cerebellum (, , , , , , , , , and ), In eLife, volume 11, . [bibtex] [pdf] [doi]
[635] Distinct signatures of loss of consciousness during Focal Impaired Awareness versus Focal to Bilateral Tonic Clonic seizures (, , , , , , , , , , , , , and ), In Brain, volume awac291, . [bibtex] [pdf] [doi]
[634] Sleep and wake in a model of the thalamocortical system with Martinotti cells (, , and ), In European Journal of Neuroscience, volume , . [bibtex] [url] [doi]
[633] Lucid Dreaming Occurs in Activated REM Sleep, Not a Mixture of Sleep and Wakefulness (, and ), In Sleep, volume 45, . [bibtex] [url] [doi]
[632] Episodic thought distinguishes spontaneous cognition in waking from REM and NREM sleep (, , , , and ), In Consciousness and Cognition, volume 97, . [bibtex] [url] [doi]
2021
[631] Of maps and grids (, and ), In Neuroscience of Consciousness, volume 2021, . [bibtex] [pdf] [doi]
[630] Identification of Ultrastructural Signatures of Sleep and Wake in the Fly Brain (, , , , , and ), In Sleep, . [bibtex] [url] [doi]
[629] Mechanism Integrated Information (, , and ), In Entropy, volume 23, . [bibtex] [url] [doi]
[628]Regional and global resting-state functional MR connectivity in temporal lobe epilepsy: Results from the Epilepsy Connectome Project (, , , , , , , , , , , and ), In Epilepsy & Behavior, volume 117, . [bibtex] [doi]
[627] A high-density electroencephalography study reveals abnormal sleep homeostasis in patients with rapid eye movement sleep behavior disorder (, , , , , , and ), In Scientific Reports, volume 11, . [bibtex] [pdf] [doi]
[626] The evolving view of replay and its functions in wake and sleep (, and ), In SLEEP Advances, volume 1, . [bibtex] [pdf] [doi]
[625] What we are is more than what we do ( and ), In arXiv preprint arXiv:2102.04219, . [bibtex] [pdf]
[624]Neural fatigue due to intensive learning is reversed by a nap but not by quiet waking (, , , , , , , , , , and ), In Sleep, volume 44, . [bibtex] [doi]
[623] Sleep and emotion processing in paediatric posttraumatic stress disorder: A pilot investigation (, , , , , , and ), In Journal of Sleep Research, volume 30, . [bibtex] [url] [doi]
[622] Computing Integrated Information (Φ) in Discrete Dynamical Systems with Multi-Valued Elements (, , , and ), In Entropy, volume 23, . [bibtex] [url] [doi]
[621] Extended Visual Sequence Learning Leaves a Local Trace in the Spontaneous EEG (, , , , , , and ), In Frontiers in Neuroscience, volume 15, . [bibtex] [pdf] [doi]
[620] The Curing Coma Campaign: Framing Initial Scientific Challenges—Proceedings of the First Curing Coma Campaign Scientific Advisory Council Meeting (), In Neurocritical Care, volume 33, . [bibtex] [pdf] [doi]
[619] Gulf War veterans exhibit broadband sleep EEG power reductions in regions overlying the frontal lobe (, , , , and ), In Life Sciences, volume 280, . [bibtex] [url] [doi]
[618] Net decrease in spine-surface GluA1-containing AMPA receptors after post-learning sleep in the adult mouse cortex (, , and ), In Nature Communications, . [bibtex] [url] [doi]
[617] What is visible across the visual field? (), In Neuroscience of Consciousness, volume 7, . [bibtex] [pdf] [doi]
[616] Causal reductionism and causal structures (, , and ), In Nature Neuroscience, volume 24, . [bibtex] [pdf] [doi]
[615] Consciousness and the fallacy of misplaced objectivity (, , , , , , , , and ), In Neuroscience of Consciousness, volume 2021, . [bibtex] [pdf] [doi]
[614] Common Data Elements for COVID-19 Neuroimaging: A GCS-NeuroCOVID Proposal (, , , , , , , , , and ), In Neurocritical Care, . [bibtex] [pdf] [doi]
[613] Effects of severe sleep disruption on the synaptic ultrastructure of young mice (, , , and ), In eNeuro, volume 8, . [bibtex] [pdf] [doi]
[612] The why and how of sleep-dependent synaptic down-selection ( and ), In Seminars in Cell & Developmental Biology, . [bibtex] [url] [doi]
[611] Two-Way Communication in Lucid REM Sleep Dreaming (, and ), In Trends in Cognitive Science, volume 25, . [bibtex] [pdf] [doi]
[610] Consciousness depends on integration between parietal cortex, striatum, and thalamus (, , , , , , and ), In Cell Systems, volume 12, . [bibtex] [url] [doi]
[609]Integrated information theory (), Chapter in Beyond Neural Correlates of Consciousness (Overgaard, Martin, Mogensen, Jesper, Kirkeby-Hinrup, Asger, eds.), Taylor and Francis, . [bibtex] [doi]
[608] Quantifying the Autonomy of Structurally Diverse Automata: A Comparison of Candidate Measures (), In Entropy, volume 23, . [bibtex] [url] [doi]
2020
[607] How cognitive and environmental constraints influence the reliability of simulated animats in groups (, and ), In PLOS ONE, Public Library of Science, volume 15, . [bibtex] [pdf] [doi]
[606] Quantitative spatio-temporal characterization of epileptic spikes using high density EEG: differences between NREM sleep and REM sleep (, , , , , and ), In Scientific reports, volume 10, . [bibtex] [pdf] [doi]
[605] Reasonable criteria for functionalists; scarce criteria from phenomenological perspective ( and ), In Cognitive Neuroscience, Routledge, volume 0, . [bibtex] [url] [doi]
[604] A reply to the "unfolding argument": Beyond functionalism/behaviorism and towards a science of causal structure theories of consciousness (, and ), In Consciousness and Cognition, volume 79, . [bibtex] [url] [doi]
[603] A macro agent and its actions (, , and ), In arXiv preprint arXiv:2004.00058, . [bibtex] [pdf]
[602] Measuring stimulus-evoked neurophysiological differentiation in distinct populations of neurons in mouse visual cortex (, , , , , , , , , , , , , , , , , , , , , and ), In bioRxiv, . [bibtex] [pdf] [doi]
[601] Sleep and synaptic down-selection ( and ), In European Journal of Neuroscience, volume 51, . [bibtex] [pdf] [doi]
[600]High Density EEG Correlates of NREM Sleep Parasomnia Episodes (, , , , , , , , and ), In Sleep, volume 43, . [bibtex]
[599]Two main topographic patterns characterize morning-to-evening increases in low-frequency brain activity (, , , , , , and ), In Journal of Sleep Research, volume 29, . [bibtex] [doi]
[598]Effects of motor learning, sleep, and sleep deprivation on cortical synapses (, , and ), In Journal of Sleep Research, volume 29, . [bibtex]
[597] A measure for intrinsic information (, , , and ), In Scientific Reports, volume 10, . [bibtex] [pdf] [doi]
[596]Local Sleep Slow-Wave Activity Colocalizes With the Ictal Symptomatogenic Zone in a Patient With Reflex Epilepsy: A High-Density EEG Study (, , , , , , , , , , and ), In Frontiers in Systems Neuroscience, volume 14, . [bibtex] [doi]
[595] Prior Practice Affects Movement-Related Beta Modulation and Quiet Wake Restores It to Baseline (, , , , , , , and ), In Frontiers in Systems Neuroscience, volume 14, . [bibtex] [pdf] [doi]
[594] Effects of sleep and waking on the synaptic ultrastructure ( and ), In Philosophical Transactions of the Royal Society B: Biological Sciences, volume 375, . [bibtex] [pdf] [doi]
[593]Slow wave oscillations in Schizophrenia First-Degree Relatives: A confirmatory analysis and feasibility study on slow wave traveling (, , , , , , , , , and ), In Schizophrenia Research, volume 221, . [bibtex] [doi]
[592] Integrity of Corpus Callosum Is Essential for theCross-Hemispheric Propagation of Sleep Slow Waves:A High-Density EEG Study in Split-Brain Patients (, , , , , , , , , , , , , , and ), In The Journal of Neuroscience, volume 40, . [bibtex] [pdf] [doi]
[591] Self-regulated critical brain dynamics originate from high frequency-band activity in the MEG (, , , , , , and ), In PLOS ONE, volume 15, . [bibtex] [pdf] [doi]
2019
[590] Slowing less than 1 Hz is decreased near the seizure onset zone (, , , and ), In Scientific reports, volume 9, . [bibtex] [pdf] [doi]
[589]Changes in whole brain dynamics and connectivity patterns during sevoflurane-and propofol-induced unconsciousness identified by functional magnetic resonance imaging (, , , , , , , , , and ), In Anesthesiology, volume 130, . [bibtex] [doi]
[588] The spectral exponent of the resting EEG indexes the presence of consciousness during unresponsiveness induced by propofol, xenon, and ketamine (, , , , , , , , , and ), In NeuroImage, Elsevier, volume 189, . [bibtex] [pdf] [doi]
[587] The cognitive neuroscience of lucid dreaming (, and ), In Neuroscience & Biobehavioral Reviews, volume 100, . [bibtex] [pdf] [doi]
[586] When is an action caused from within? Quantifying the causal chain leading to actions in simulated agents (, , and ), In arXiv preprint arXiv:1904.02995, . [bibtex] [pdf]
[585] BOLD signatures of sleep (, , , and ), In bioRxiv, . [bibtex] [url] [doi]
[584] Visual imagery and visual perception induce similar changes in occipital slow waves of sleep (, , , , , , , , , and ), In bioRxiv, . [bibtex] [url] [doi]
[583] A fast and general method to empirically estimate the complexity of brain responses to transcranial and intracranial stimulations (, , , , , , , , , , , , , , , and ), In bioRxiv, . [bibtex] [url] [doi]
[582] Fear in dreams and in wakefulness: evidence for day/night affective homeostasis (, , and ), In bioRxiv, . [bibtex] [url] [doi]
[581] Integrity of corpus callosum is essential for the cross-hemispheric propagation of sleep slow waves: a high-density EEG study in split-brain patients (, , , , , , , , , , , , , , and ), In bioRxiv, . [bibtex] [pdf] [doi]
[580]Graph Theoretical Analysis of Cortical Networks based on Conscious Experience (, , , , , and ), In 2019 41st Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), . [bibtex] [doi]
[579]Causal Connectivity According to Conscious Experience in Non-Rapid Eye Movement Sleep (, , , , , and ), In 2019 IEEE International Conference on Systems, Man and Cybernetics (SMC), . [bibtex] [doi]
[578] Why Does Space Feel the Way it Does? Towards a Principled Account of Spatial Experience ( and ), In Entropy, volume 21, . [bibtex] [url]
[577] Evidence for sleep-dependent synaptic renormalization in mouse pups (, , , , , , , , , and ), In Sleep, volume 42, . [bibtex] [pdf] [doi]
[576] Fear in dreams and in wakefulness: Evidence for day/night affective homeostasis (, , and ), In Human Brain Mapping, volume 0, . [bibtex] [pdf] [doi]
[575] Causal Composition: Structural Differences among Dynamically Equivalent Systems ( and ), In Entropy, volume 21, . [bibtex] [url]
[574] Sleep Deprivation by Exposure to Novel Objects Increases Synapse Density and Axon–Spine Interface in the Hippocampal CA1 Region of Adolescent Mice (, , , , , , and ), In The Journal of Neuroscience, volume 39, . [bibtex] [pdf]
[573] Linking the need to sleep with synaptic function ( and ), In Science, volume 366, . [bibtex] [pdf] [doi]
[572]A fast and general method to empirically estimate the complexity of brain responses to transcranial and intracranial stimulations (, , , , , , , , , , , , , , , and ), In Brain Stimulation, volume 12, . [bibtex] [doi]
[571]Encephalopathy related to Status Epilepticus during slow Sleep: a link with sleep homeostasis? (, , and ), In Epileptic Disorders, volume 21, . [bibtex] [doi]
[570] What Caused What? A Quantitative Account of Actual Causation Using Dynamical Causal Networks (, , and ), In Entropy, volume 21, . [bibtex] [url]
[569]Visual imagery and visual perception induce similar changes in occipital slow waves of sleep (, , , , , , , , , and ), In J Neurophysiol, volume 121, . [bibtex] [doi]
[568] Regional Delta Waves In Human Rapid Eye Movement Sleep (, , , , and ), In The Journal of Neuroscience, volume 39, . [bibtex] [pdf] [doi]
[567] Connectivity differences between consciousness and unconsciousness in non-rapid eye movement sleep: a TMS–EEG study (, , , , , , and ), In Scientific Reports, volume 9, . [bibtex] [pdf] [doi]
[566] Assessing recurrent interactions in cortical networks: Modeling EEG response to transcranial magnetic stimulation (, , , , and ), In Journal of Neuroscience Methods, volume 312, . [bibtex] [pdf] [doi]
[565]IIT vs. Russellian Monism: A metaphysical showdown on the content of experience (), In Journal of Consciousness Studies, volume 26, . [bibtex]
2018
[564] Leptomeningeal enhancement is associated with transient neurologic deficits after flow diversion of intracranial aneurysms (, , , , , and ), In World neurosurgery, volume 120, . [bibtex] [pdf] [doi]
[563] Smooth tracking of visual targets distinguishes lucid REM sleep dreaming and waking perception from imagination (, and ), In Nature communications, volume 9, . [bibtex] [pdf] [doi]
[562]Functional ‘unlocking’: bedside detection of covert awareness after severe brain damage ( and ), In Brain, volume 141, . [bibtex] [doi]
[561] Global structural integrity and effective connectivity in patients with disorders of consciousness (, , , , , , , , , and ), In Brain stimulation, volume 11, . [bibtex] [pdf] [doi]
[560] Regional low-frequency oscillations in human rapid-eye movement sleep (, , , , and ), In bioRxiv, . [bibtex] [pdf] [doi]
[559]Feeling awake while asleep: a high-density EEG assessment of sleep perception (, , , , , and ), In Journal of Sleep Research, volume 27, . [bibtex]
[558]The EEG Correlates of Sleep Misperception (, , , , , and ), In Sleep, volume 41, . [bibtex]
[557]Spatio-Temporal Analysis of EEG Signal during Consciousness using Convolutional Neural Network (, , , , , and ), In 2018 6th International Conference on Brain-Computer Interface (Bci), . [bibtex]
[556]Characterization of Psilocybin-Induced Altered State Consciousness using TMS-EEG and Integrated Information Theory (IIT) (, , , and ), In Neuropsychobiology, volume 77, . [bibtex]
[555]Philosophy and Science Dialogue: Consciousness ( and ), In Frontiers of Philosophy in China, volume 13, . [bibtex] [doi]
[554]Regional patterns of neuronal activity in REM sleep behavior disorder using high-density EEG (, , , , , , and ), In Journal of Sleep Research, volume 27, . [bibtex]
[553] Sleep endophenotypes of schizophrenia: slow waves and sleep spindles in unaffected first-degree relatives (, , , , , , , , , and ), In npj Schizophrenia, volume 4, . [bibtex] [pdf] [doi]
[552] Increased lucid dream frequency in long-term meditators but not following mindfulness-based stress reduction training (, , , and ), In Psychology of Consciousness: Theory, Research, and Practice, volume 6, . [bibtex] [pdf] [doi]
[551] Frequent lucid dreaming associated with increased functional connectivity between frontopolar cortex and temporoparietal association areas (, , and ), In Scientific Reports, volume 8, . [bibtex] [pdf] [doi]
[550] Evoked Alpha Power is Reduced in Disconnected Consciousness During Sleep and Anesthesia (, , , , , , , , , , and ), In Sci Rep, volume 8, . [bibtex] [pdf] [doi]
[549] Propofol-induced unresponsiveness is associated with impaired feedforward connectivity in cortical hierarchy (, , , , , , , , , , , , and ), In British Journal of Anaesthesia, volume 121, . [bibtex] [pdf] [doi]
[548] Dreaming in NREM Sleep: A High-Density EEG Study of Slow Waves and Spindles (, , and ), In The Journal of Neuroscience, volume 38, . [bibtex] [pdf] [doi]
[547] Closed-loop system to enhance slow-wave activity (, , , , , , , , , , , , and ), In Journal of Neural Engineering, volume 15, . [bibtex] [url] [doi]
[546] Acute effects of meditation training on the waking and sleeping brain: Is it all about homeostasis? (, , , , , and ), In Eur J Neurosci, volume 48, . [bibtex] [pdf] [doi]
[545] Human Rapid Eye Movement Sleep Shows Local Increases in Low-Frequency Oscillations and Global Decreases in High-Frequency Oscillations Compared to Resting Wakefulness (, , , , , , and ), In eneuro, volume 5, . [bibtex] [pdf] [doi]
[544] Sleep and Wake Affect Glycogen Content and Turnover at Perisynaptic Astrocytic Processes (, , , and ), In Frontiers in Cellular Neuroscience, volume 12, . [bibtex] [pdf] [doi]
[543] Metabolomic analysis of mouse prefrontal cortex reveals upregulated analytes during wakefulness compared to sleep (, , , , , , , , and ), In Sci Rep, volume 8, . [bibtex] [pdf] [doi]
[542]Differentiation Analysis of Continuous Electroencephalographic Activity Triggered by Video Clip Contents (, , and ), In J Cogn Neurosci, volume 30, . [bibtex] [doi]
[541] Sizing up Consciousness: Towards an objective measure of the capacity for experience ( and ), Oxford University Press, . [bibtex] [url]
[540] PyPhi: A toolbox for integrated information theory (, , , , and ), In PLoS Comput Biol, volume 14, . [bibtex] [pdf] [doi]
[539] Is consciousness frontal? Two perioperative case reports that challenge that concept (, , , and ), In British Journal of Anaesthesia, . [bibtex] [pdf] [doi]
[538] Black-boxing and cause-effect power (, and ), In PLoS Comput Biol, volume 14, . [bibtex] [pdf] [doi]
[537] Regulation of cortical activity and arousal by the matrix cells of the ventromedial thalamic nucleus (, , , , and ), In Nature Communications, volume 9, . [bibtex] [pdf] [doi]
[536]Local and Widespread Slow Waves in Stable NREM Sleep: Evidence for Distinct Regulation Mechanisms (, , , and ), In Frontiers in Human Neuroscience, volume 12, . [bibtex] [doi]
[535]Myelin modifications after chronic sleep loss in adolescent mice (, , , , , and ), In Sleep, volume 41, . [bibtex] [doi]
[534]How Swarm Size during Evolution Impacts the Behavior, Generalizability, and Brain Complexity of Animats Performing a Spatial Navigation Task (, and ), In Proceedings of the Genetic and Evolutionary Computation Conference, Association for Computing Machinery, . [bibtex] [doi]
[533]A Tale of Two Animats: What Does It Take to Have Goals? (), Chapter in Wandering Towards a Goal: How Can Mindless Mathematical Laws Give Rise to Aims and Intention? (Aguirre, Anthony, Foster, Brendan, Merali, Zeeya, eds.), Springer International Publishing, . [bibtex] [doi]
2017
[532] Extended Multiple-Field High-Definition transcranial direct current stimulation (HD-tDCS) is well tolerated and safe in healthy adults (, , , , , , , , and ), In Restorative neurology and neuroscience, IOS Press, volume 35, . [bibtex] [pdf] [doi]
[531] Consciousness regained: disentangling mechanisms, brain systems, and behavioral responses (, , , , , and ), In Journal of Neuroscience, volume 37, . [bibtex] [pdf] [doi]
[530] Sleep, synaptic homeostasis and neuronal firing rates (), In Current opinion in neurobiology, Elsevier, volume 44, . [bibtex] [pdf] [doi]
[529] Molecular mechanisms of sleep homeostasis in flies and mammals (, and ), In Cold Spring Harbor perspectives in biology, volume 9, . [bibtex] [pdf] [doi]
[528] PyPhi: A toolbox for integrated information theory (, , , , and ), In arXiv preprint arXiv:1712.09644, . [bibtex] [pdf]
[527] Are the neural correlates of consciousness in the front or in the back of the cerebral cortex? Clinical and neuroimaging evidence (, , , , and ), In The Journal of Neuroscience, volume 37, . [bibtex] [url] [doi]
[526] Role of somatostatin-positive cortical interneurons in the generation of sleep slow waves (, , , , and ), In bioRxiv, . [bibtex] [url] [doi]
[525] Propofol-Induced Unresponsiveness is Associated with Impaired Feedforward Connectivity in the Cortical Hierarchy (, , , , , , , , , , , , and ), In bioRxiv, . [bibtex] [url] [doi]
[524]Metabolomic Analysis of Microdialysis Samples from the Frontal Association Cortex (FrA) of C57BL/6J (B6) Mouse during Isoflurane Anesthesia (, , , , , , , , , and ), In Faseb Journal, volume 31, . [bibtex]
[523] Reduced sleep spindle activity point to a TRN-MD thalamus-PFC circuit dysfunction in schizophrenia ( and ), In Schizophrenia Research, volume 180, . [bibtex] [pdf] [doi]
[522]Characterization of Sleep Need Dissipation Using Eeg Based Slow-Wave Activity Analysis in Two Age Groups (, , , , , , , , and ), In Sleep, volume 40, . [bibtex] [doi]
[521]Automatic characterization of sleep need dissipation using a single hidden layer neural network (, , , , , , and ), In 2017 25th European Signal Processing Conference (Eusipco), . [bibtex]
[520]Experiencing Fear in Dreams Relates to Brain Responses to Aversive Stimuli during Wakefulness (, , and ), In Sleep Medicine, volume 40, . [bibtex] [doi]
[519] Plasticity in the Structure of Visual Space (, and ), In eneuro, volume 4, . [bibtex] [pdf] [doi]
[518] Local aspects of sleep and wakefulness ( and ), In Current Opinion in Neurobiology, volume 44, . [bibtex] [pdf] [doi]
[517] The neural correlates of dreaming (, , , , , , , and ), In Nat Neurosci, . [bibtex] [pdf] [doi]
[516] The Phenomenal Contents and Neural Correlates of Spontaneous Thoughts across Wakefulness, NREM Sleep, and REM Sleep (, , , , and ), In Journal of Cognitive Neuroscience, volume 0, . [bibtex] [pdf] [doi]
[515] Selective neuronal lapses precede human cognitive lapses following sleep deprivation (, , , , , and ), In Nat Med, volume 23, . [bibtex] [pdf] [doi]
[514] Beta Oscillatory Changes and Retention of Motor Skills during Practice in Healthy Subjects and in Patients with Parkinson's Disease (, , , , , , , , , , , and ), In Front Hum Neurosci, volume 11, . [bibtex] [pdf] [doi]
[513] Sleep Consolidates Motor Learning of Complex Movement Sequences in Mice (, , , , and ), In Sleep, volume 40, . [bibtex] [pdf] [doi]
[512]Change in functional networks for transitions between states of consciousness during midazolam-induced sedation (, , , , , , , , and ), In Conf Proc IEEE Eng Med Biol Soc, volume 2017, . [bibtex] [doi]
[511] EEG Differentiation Analysis and Stimulus Set Meaningfulness (, and ), In Frontiers in Psychology, volume 8, . [bibtex] [url] [doi]
[510] How causal analysis can reveal autonomy in models of biological systems (, , , and ), In Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, volume 375, . [bibtex] [pdf] [doi]
[509] Network Properties in Transitions of Consciousness during Propofol-induced Sedation (, , , , , , and ), In Sci Rep, volume 7, . [bibtex] [pdf] [doi]
[508] Higher Arc Nucleus-to-Cytoplasm Ratio during Sleep in the Superficial Layers of the Mouse Cortex (, , , , and ), In Frontiers in Neural Circuits, volume 11, . [bibtex] [pdf] [doi]
[507] Are we underestimating the richness of visual experience? (, , and ), In Neuroscience of Consciousness, volume 3, . [bibtex] [pdf]
[506] Role of Somatostatin-Positive Cortical Interneurons in the Generation of Sleep Slow Waves (, , , , and ), In The Journal of Neuroscience, volume 37, . [bibtex] [pdf] [doi]
[505] Ultrastructural evidence for synaptic scaling across the wake/sleep cycle (, , , , , and ), In Science, volume 355, . [bibtex] [pdf] [doi]
[504]The Sleeping Brain ( and ), In Cerebrum, volume 2017, . [bibtex]
[503] Are the Neural Correlates of Consciousness in the Front or in the Back of the Cerebral Cortex? Clinical and Neuroimaging Evidence (, , , , and ), In The Journal of Neuroscience, volume 37, . [bibtex] [pdf] [doi]
[502] Altered sleep homeostasis correlates with cognitive impairment in patients with focal epilepsy (, , , , , , and ), In Brain: a journal of neurology, volume 140, . [bibtex] [pdf] [doi]
[501] Measures of metabolism and complexity in the brain of patients with disorders of consciousness (, , , , , , , , , , and ), In Neuroimage Clin, volume 14, . [bibtex] [pdf] [doi]
[500] Sleep Loss Promotes Astrocytic Phagocytosis and Microglial Activation in Mouse Cerebral Cortex (, , , , and ), In J Neurosci, volume 37, . [bibtex] [pdf] [doi]
[499]Unifying concepts of biological function from molecules to ecosystems (, and ), In Oikos, volume 126, . [bibtex] [doi]
[498]Automata and Animats: From Dynamics to Cause–Effect Structures ( and ), Chapter in From Matter to Life: Information and Causality (Walker, Sara Imari, Davies, Paul C. W., Ellis, George F. R., eds.), Cambridge University Press, . [bibtex] [doi]
2016
[497] Learning a New Selection Rule in Visual and Frontal Cortex (, , , , and ), In Cerebral Cortex, volume 26, . [bibtex] [pdf] [doi]
[496] Propofol-induced frontal cortex disconnection: a study of resting-state networks, total brain connectivity, and mean BOLD signal oscillation frequencies (, , , , , , , , , and ), In Brain connectivity, volume 6, . [bibtex] [pdf] [doi]
[495]Resting-state network-specific breakdown of functional connectivity during ketamine alteration of consciousness in volunteers (, , , , , , , , , and ), In Anesthesiology, volume 125, . [bibtex]
[494] Black-boxing and cause-effect power (, and ), In arXiv preprint arXiv:1608.03461, . [bibtex] [pdf]
[493] The neural correlates of dreaming (, , , , , , , and ), In bioRxiv, . [bibtex] [url] [doi]
[492]Contribution of sleep to the repair of neuronal DNA double-strand breaks: evidence from flies and mice (, , , and ), In Journal of Sleep Research, volume 25, . [bibtex]
[491]Low-frequency oscillations in REM-sleep: a high density EEG study (, , , , , , , and ), In Journal of Sleep Research, volume 25, . [bibtex]
[490]Spontaneous, localized EEG activations in REM sleep: a high-density EEG investigation (, , , , , , , and ), In Journal of Sleep Research, volume 25, . [bibtex]
[489] Sleep spindle deficit in Schizophrenia: a high-density EEG study in First-Degree Relatives (, , , , , , , and ), In Journal of Sleep Research, volume 25, . [bibtex] [pdf] [doi]
[488]Slow wave travelling in First-Episode Psychosis: an early measure of brain disconnectivity? (, , , , , , and ), In Early Intervention in Psychiatry, volume 10, . [bibtex]
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[123]The noradrenergic system in sleep and wakefulness-I: Regulation of brain gene expression (, and ), In Sleep, volume 27, . [bibtex]
[122]Modeling wakefulness and sleep in a large-scale thalamocortical model ( and ), In Sleep, volume 27, . [bibtex]
[121]Local increase in slow-wave activity after a learning task (, , and ), In Sleep, volume 27, . [bibtex]
[120]Sleep slow oscillations as traveling waves: Origins and pathways of propagation in humans (, , and ), In Sleep, volume 27, . [bibtex]
[119]Molecular correlates of sleep deprivation: A clue to its antidepressant effects? (), In Neuropsychopharmacology, volume 29, . [bibtex]
[118] An information integration theory of consciousness (), In BMC Neurosci, volume 5, . [bibtex] [pdf] [doi]
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[115]Sleep homeostasis in Drosophila melanogaster (, , , , and ), In Sleep, volume 27, . [bibtex] [doi]
[114]Local sleep and learning (, , and ), In Nature, volume 430, . [bibtex] [doi]
2003
[113]Searching for sleep mutants of Drosophila melanogaster (), In Bioessays, volume 25, . [bibtex] [doi]
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[111]Sleep and synaptic homeostasis: a hypothesis ( and ), In Brain Res Bull, volume 62, . [bibtex] [doi]
[110]Sleep homeostasis in the fruit fly (, , , , and ), In Sleep, volume 26, . [bibtex]
[109]Sleep in drosophila melanogaster: A mutagenesis screening (, , , , , , and ), In Sleep, volume 26, . [bibtex]
[108]Molecular correlates of fatal familial insomnia (, , and ), In Sleep, volume 26, . [bibtex]
[107]Simulating cortical TMS during sleep and wakefulness (, , and ), In Sleep, volume 26, . [bibtex]
[106]Natural variation in the sleep phenotype in drosophila melanogaster (, , , , , , , and ), In Sleep, volume 26, . [bibtex]
[105]Studying local sleep homeostasis with high density EEG in humans (, , and ), In Sleep, volume 26, . [bibtex]
[104]Correlates of sleep pressure during long-term sleep deprivation in the rat (, , , and ), In Sleep, volume 26, . [bibtex]
[103]Light effects on the sleep pattern in drosophila melanogaster (, , , , , , , and ), In Sleep, volume 26, . [bibtex]
[102]Galileo e il fotodiodo (), Laterza, . [bibtex]
2002
[101] Invited Review: How sleep deprivation affects gene expression in the brain: a review of recent findings (), In Journal of Applied Physiology, American Physiological Society Bethesda, MD, volume 92, . [bibtex] [url] [doi]
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2001
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[92]Information measures for conscious experience (), In Arch Ital Biol, volume 139, . [bibtex]
[91]Immediate early gene expression in the vestibular nuclei and related vegetative areas in rats during space flight (, , , , and ), In Acta Otolaryngol Suppl, volume 545, . [bibtex] [doi]
[90]The search for the molecular correlates of sleep and wakefulness ( and ), In Sleep Medicine Reviews, volume 5, . [bibtex] [doi]
[89]Uncoupling proteins and sleep deprivation ( and ), In Sleep, volume 24, . [bibtex]
[88]Gene expression in the cerebral cortex of Djungarian hamsters during sleep and wakefulness (, , and ), In Sleep, volume 24, . [bibtex]
[87]Sleep and the fruit fly (, , and ), In Trends in Neurosciences, volume 24, . [bibtex] [doi]
[86]The dynamics of sleep and waking in a large-scale computer model of the thalamocortical system (, , and ), In Sleep, volume 24, . [bibtex]
[85]REM sleep and SWS whisker EMG activity in the rat ( and ), In Sleep, volume 24, . [bibtex]
[84]Local field potential recordings from Drosophila mushroom bodies and their modulation by activity state (, , and ), In Sleep, volume 24, . [bibtex]
[83]Fos-related antigens are involved in the transcriptional responses of locus coeruleus neurons to altered gravitational fields in rats (, , , , and ), In Acta Oto-Laryngologica, . [bibtex] [doi]
2000
[82]Schizophrenia and the mechanisms of conscious integration ( and ), In Brain Res Brain Res Rev, volume 31, . [bibtex] [doi]
[81] Theoretical neuroanatomy: relating anatomical and functional connectivity in graphs and cortical connection matrices (, and ), In Cereb Cortex, volume 10, . [bibtex] [pdf] [doi]
[80]Connectivity and complexity: the relationship between neuroanatomy and brain dynamics (, and ), In Neural Netw, volume 13, . [bibtex] [doi]
[79]Correlates of sleep and waking in Drosophila melanogaster (, , and ), In Science, volume 287, . [bibtex] [doi]
[78]On the functional significance of c-fos induction during the sleep-waking cycle. ( and ), In Sleep, volume 23, . [bibtex]
[77] Differential expression of plasticity-related genes in waking and sleep and their regulation by the noradrenergic system ( and ), In J Neurosci, volume 20, . [bibtex] [pdf] [doi]
[76]Gene expression in the brain across the sleep-waking cycle ( and ), In Brain Res, volume 885, . [bibtex] [doi]
[75]Criteria for consciousness in the brain: Methodological implications of recent developments in cognitive neuroscience. (, and ), In Consciousness and Cognition, volume 9, . [bibtex]
[74]Consciousness integrated and differentiated. (), In Consciousness and Cognition, volume 9, . [bibtex]
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1999
[72] Measures of degeneracy and redundancy in biological networks (, and ), In Proc Natl Acad Sci U S A, volume 96, . [bibtex] [pdf] [doi]
[71]The frontiers of sleep ( and ), In Trends Neurosci, volume 22, . [bibtex] [doi]
[70] Increased synchronization of neuromagnetic responses during conscious perception (, , and ), In J Neurosci, volume 19, . [bibtex] [pdf] [doi]
[69] Differences in gene expression during sleep and wakefulness ( and ), In Annals Of Medicine, volume 31, . [bibtex] [url] [doi]
[68] Differences in brain gene expression between sleep and waking as revealed by mRNA differential display and cDNA microarray technology ( and ), In J Sleep Res, volume 8 Suppl 1, . [bibtex] [url] [doi]
[67]No evidence of brain cell degeneration after long-term sleep deprivation in rats (, , and ), In Brain Res, volume 840, . [bibtex] [doi]
[66] Synchronization of neuromagnetic responses by the conscious perception (, , and ), In Journal of Cognitive Neuroscience, . [bibtex] [pdf] [doi]
1998
[65] Investigating neural correlates of conscious perception by frequency-tagged neuromagnetic responses (, , and ), In Proc Natl Acad Sci U S A, volume 95, . [bibtex] [pdf] [doi]
[64]Functional clustering: identifying strongly interactive brain regions in neuroimaging data (, , and ), In Neuroimage, volume 7, . [bibtex] [doi]
[63]Complexity and coherency: integrating information in the brain (, and ), In Trends in Cognitive Sciences, volume 2, . [bibtex] [doi]
[62]Complexity and functional integration: A theoretical perspective (), In Journal of Cognitive Neuroscience, volume 10, . [bibtex]
[61]Consciousness and the integration of information in the brain ( and ), In Adv Neurol, volume 77, . [bibtex]
[60] Consciousness and complexity ( and ), In Science, volume 282, . [bibtex] [pdf] [doi]
[59]Changes in anti-phosphoserine and anti-phosphothreonine antibody binding during the sleep-waking cycle and after lesions of the locus coeruleus ( and ), In Sleep Res Online, volume 1, . [bibtex]
[58]Differences in gene expression between sleep and waking as revealed by mRNA differential display ( and ), In Brain Res Mol Brain Res, volume 56, . [bibtex] [doi]
[57]Immediate early genes as a tool to understand the regulation of the sleep-waking cycle: immunocytochemistry, in situ hybridization, and antisense approaches. (, and ), Chapter in Molecular Regulation of Conscious States (Lydic, R, ed.), CRC Press, . [bibtex]
[56] The quest for the essence of sleep ( and ), In Daedalus, volume 127, . [bibtex] [pdf]
1997
[55] A robotic system emulating the adaptive orienting behavior of the barn owl (, , and ), In 1997 Ieee International Conference on Robotics and Automation - Proceedings, Vols 1-4, . [bibtex] [url]
[54]Neural dynamics in a model of the thalamocortical system .1. Layers, loops and the emergence of fast synchronous rhythms (, and ), In Cerebral Cortex, volume 7, . [bibtex] [doi]
[53]Neural dynamics in a model of the thalamocortical system .2. The role of neural synchrony tested through perturbations of spike timing (, and ), In Cerebral Cortex, volume 7, . [bibtex] [doi]
[52]Information: In the stimulus or in the context? ( and ), In Behavioral and Brain Sciences, volume 20, . [bibtex]
[51]Registration of neural maps through value-dependent learning: modeling the alignment of auditory and visual maps in the barn owl's optic tectum (, and ), In J Neurosci, volume 17, . [bibtex]
[50] NGFI-A expression in the rat brain after sleep deprivation (, , and ), In Brain Res Mol Brain Res, volume 46, . [bibtex] [url]
[49]Neural Darwinism: A selectionist view of the brain. ( and ), Piper Verlag Press, . [bibtex]
1996
[48] Identification and characterization of a RING zinc finger gene (C-RZF) expressed in chicken embryo cells (, , , and ), In Proceedings of the National Academy of Sciences, National Acad Sciences, volume 93, . [bibtex] [pdf] [doi]
[47]c-fos Expression in the rat brain after unilateral labyrinthectomy and its relation to the uncompensated and compensated stages (, , , and ), In Neuroscience, Elsevier, volume 70, . [bibtex]
[46]Specialization, integration, and complexity (), In Journal of Psychophysiology, volume 10, . [bibtex]
[45] A complexity measure for selective matching of signals by the brain (, and ), In Proc Natl Acad Sci U S A, volume 93, . [bibtex] [pdf] [doi]
[44]What is the minimal brain unit capable of sleep? (), In World Federation of Sleep Research Society Newsletter, volume 5, . [bibtex]
[43]Selection and development: The brain as a complex system. ( and ), Chapter in Lifespan Development of Individuals (Magnusson, G, ed.), Cambridge University Press, . [bibtex]
[42]New perspectives on sleep and gene expression. (, and ), In Sleep Research Society Bulletin, volume 2, . [bibtex]
[41]Neuronal gene expression in the waking state: a role for the locus coeruleus (, and ), In Science, volume 274, . [bibtex] [doi]
[40] Functional segregation and integration in the nervous system: Theory and models (), Chapter in Somesthesis and the Neurobiology of the Somatosensory Cortex, Springer, . [bibtex] [url]
1995
[39]Modulation of vestibulospinal reflexes through microinjection of GABAergic agents in the dorsal pontine tegmentum of decerebrate cats. (, and ), In Archives italiennes de biologie, volume 133, . [bibtex]
[38] Multilevel analysis of classical conditioning in a behaving real world artifact (, , , and ), In Robotics and Autonomous Systems, volume 16, . [bibtex] [pdf]
[37]Pharmacology of the cholinergic system. ( and ), Chapter in Pharmacology of Sleep (Kales, A, ed.), Springer-Verlag, . [bibtex]
[36]Changes in gene expression during the sleep-waking cycle: a new view of activating systems (, and ), In Arch Ital Biol, volume 134, . [bibtex]
[35]Reentry and dynamical interactions of cortical networks. (, and ), Chapter in Models of neural networks II. (JL van Hemmen K Schulten, E Domany, ed.), Springer-Verlag, . [bibtex]
[34]c-Fos expression during wakefulness and sleep (, , and ), In Neurophysiol Clin, volume 25, . [bibtex] [doi]
[33]Characterising the complexity of neuronal interactions (, , and ), In Human Brain Mapping, volume 3, . [bibtex]
[32]Sleep deprivation and c-fos expression in the rat brain (, and ), In J Sleep Res, volume 4, . [bibtex] [doi]
[31]In vivo antisense approaches to the role of immediate early gene expression in the brain (, and ), In Regul Pept, volume 59, . [bibtex] [doi]
[30]Fos-positive cells associated with forced wakefulness in the hypothalamus of the rat are not GABAergic (, , and ), In Arch Ital Biol, volume 133, . [bibtex]
[29]Sleep-waking changes after c-fos antisense injections in the medial preoptic area (, , and ), In Neuroreport, volume 6, . [bibtex] [doi]
1994
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[25]Reentry and the problem of cortical integration (), Chapter in Selectionism and the Brain, International Review of Neurobiology (Sporns, Olaf, ed.), Academic Press, volume 37, . [bibtex]
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1993
[22]Early c-fos expression in the rat vestibular and olivocerebellar systems after unilateral labyrinthectomy (, , and ), In Archives italiennes de biologie (1957), volume 131, . [bibtex]
[21]Correlated neuronal activity and behavior. (, and ), Chapter in ICANN'93 Proceedings of the International Conference on Artificial Neural Networks (S Gielen, B Kappens, ed.), Springer-Verlag, . [bibtex]
[20]Fos-like immunoreactivity in the rat brain in spontaneous wakefulness and sleep (, and ), In Arch Ital Biol, volume 131, . [bibtex]
1992
[19]Reentry and the problem of integrating multiple cortical areas: simulation of dynamic integration in the visual system (, and ), In Cereb Cortex, volume 2, . [bibtex] [doi]
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1991
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1990
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1989
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1988
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[1]Inhibition of vestibulospinal reflexes following cholinergic activation of the dorsal pontine reticular formation (, , and ), In Arch Ital Biol, volume 126, . [bibtex]

Integrated Information Theory publications

2023
[154] An adversarial collaboration protocol for testing contrasting predictions of global neuronal workspace and integrated information theory (, , , , , , , , , , , , , , , , , , , , , , , , , and ), In PLOS ONE, Public Library of Science, volume 18, . [bibtex] [pdf] [doi]
[153] System Integrated Information (, , , , , , , , and ), In Entropy, volume 25, . [bibtex] [pdf] [doi]
[152] System Integrated Information (, , , , , , , , and ), In arXiv, volume , . [bibtex] [pdf] [doi]
[151] Measuring the integrated information of a quantum mechanism (, and ), In Entropy, volume 25, . [bibtex] [pdf] [doi]
[150] Measuring the integrated information of a quantum mechanism (, and ), In arXiv, volume , . [bibtex] [pdf] [doi]
[149] Sleep/wake changes in perturbational complexity in rats and mice (, , , , , and ), In iScience, volume 26, . [bibtex] [pdf] [doi]
[148] Integrated information theory (IIT) 4.0: Formulating the properties of phenomenal existence in physical terms (, , , , , , , , , , , , , , and ), In arXiv, volume , . [bibtex] [pdf] [doi]
[147] A survey of neurophysiological differentiation across mouse visual brain areas and timescales (, , , , , , , , , , and ), In Frontiers in Computational Neuroscience, volume 17, . [bibtex] [pdf] [doi]
2022
[146] Only what exists can cause: An intrinsic view of free will (, , , and ), In arXiv, volume , . [bibtex] [pdf] [doi]
[145] IIT, half masked and half disfigured (, , , , , , and ), In Behavioral and Brain Sciences, volume 45, . [bibtex] [url] [doi]
[144] Quantifying arousal and awareness in altered states of consciousness using interpretable deep learning (, , , , , , , , , , , , , , , , and ), In Nature Communications, volume 13, . [bibtex] [pdf] [doi]
[143] Measuring stimulus-evoked neurophysiological differentiation in distinct populations of neurons in mouse visual cortex (, , , , , , , , , , , , , , , , , , , , , and ), In eNeuro, volume 9, . [bibtex] [pdf] [doi]
2021
[142] Of maps and grids (, and ), In Neuroscience of Consciousness, volume 2021, . [bibtex] [pdf] [doi]
[141] Mechanism Integrated Information (, , and ), In Entropy, volume 23, . [bibtex] [url] [doi]
[140] What we are is more than what we do ( and ), In arXiv preprint arXiv:2102.04219, . [bibtex] [pdf]
[139] Computing Integrated Information (Φ) in Discrete Dynamical Systems with Multi-Valued Elements (, , , and ), In Entropy, volume 23, . [bibtex] [url] [doi]
[138] What is visible across the visual field? (), In Neuroscience of Consciousness, volume 7, . [bibtex] [pdf] [doi]
[137] Causal reductionism and causal structures (, , and ), In Nature Neuroscience, volume 24, . [bibtex] [pdf] [doi]
[136] Consciousness and the fallacy of misplaced objectivity (, , , , , , , , and ), In Neuroscience of Consciousness, volume 2021, . [bibtex] [pdf] [doi]
[135] Consciousness depends on integration between parietal cortex, striatum, and thalamus (, , , , , , and ), In Cell Systems, volume 12, . [bibtex] [url] [doi]
[134]Integrated information theory (), Chapter in Beyond Neural Correlates of Consciousness (Overgaard, Martin, Mogensen, Jesper, Kirkeby-Hinrup, Asger, eds.), Taylor and Francis, . [bibtex] [doi]
[133] Quantifying the Autonomy of Structurally Diverse Automata: A Comparison of Candidate Measures (), In Entropy, volume 23, . [bibtex] [url] [doi]
2020
[132] How cognitive and environmental constraints influence the reliability of simulated animats in groups (, and ), In PLOS ONE, Public Library of Science, volume 15, . [bibtex] [pdf] [doi]
[131] Reasonable criteria for functionalists; scarce criteria from phenomenological perspective ( and ), In Cognitive Neuroscience, Routledge, volume 0, . [bibtex] [url] [doi]
[130] A reply to the "unfolding argument": Beyond functionalism/behaviorism and towards a science of causal structure theories of consciousness (, and ), In Consciousness and Cognition, volume 79, . [bibtex] [url] [doi]
[129] A macro agent and its actions (, , and ), In arXiv preprint arXiv:2004.00058, . [bibtex] [pdf]
[128] Measuring stimulus-evoked neurophysiological differentiation in distinct populations of neurons in mouse visual cortex (, , , , , , , , , , , , , , , , , , , , , and ), In bioRxiv, . [bibtex] [pdf] [doi]
[127] A measure for intrinsic information (, , , and ), In Scientific Reports, volume 10, . [bibtex] [pdf] [doi]
2019
[126] When is an action caused from within? Quantifying the causal chain leading to actions in simulated agents (, , and ), In arXiv preprint arXiv:1904.02995, . [bibtex] [pdf]
[125] A fast and general method to empirically estimate the complexity of brain responses to transcranial and intracranial stimulations (, , , , , , , , , , , , , , , and ), In bioRxiv, . [bibtex] [url] [doi]
[124] Why Does Space Feel the Way it Does? Towards a Principled Account of Spatial Experience ( and ), In Entropy, volume 21, . [bibtex] [url]
[123] Causal Composition: Structural Differences among Dynamically Equivalent Systems ( and ), In Entropy, volume 21, . [bibtex] [url]
[122]A fast and general method to empirically estimate the complexity of brain responses to transcranial and intracranial stimulations (, , , , , , , , , , , , , , , and ), In Brain Stimulation, volume 12, . [bibtex] [doi]
[121] What Caused What? A Quantitative Account of Actual Causation Using Dynamical Causal Networks (, , and ), In Entropy, volume 21, . [bibtex] [url]
[120] Assessing recurrent interactions in cortical networks: Modeling EEG response to transcranial magnetic stimulation (, , , , and ), In Journal of Neuroscience Methods, volume 312, . [bibtex] [pdf] [doi]
[119]IIT vs. Russellian Monism: A metaphysical showdown on the content of experience (), In Journal of Consciousness Studies, volume 26, . [bibtex]
2018
[118]Characterization of Psilocybin-Induced Altered State Consciousness using TMS-EEG and Integrated Information Theory (IIT) (, , , and ), In Neuropsychobiology, volume 77, . [bibtex]
[117]Philosophy and Science Dialogue: Consciousness ( and ), In Frontiers of Philosophy in China, volume 13, . [bibtex] [doi]
[116] Propofol-induced unresponsiveness is associated with impaired feedforward connectivity in cortical hierarchy (, , , , , , , , , , , , and ), In British Journal of Anaesthesia, volume 121, . [bibtex] [pdf] [doi]
[115]Differentiation Analysis of Continuous Electroencephalographic Activity Triggered by Video Clip Contents (, , and ), In J Cogn Neurosci, volume 30, . [bibtex] [doi]
[114] Sizing up Consciousness: Towards an objective measure of the capacity for experience ( and ), Oxford University Press, . [bibtex] [url]
[113] PyPhi: A toolbox for integrated information theory (, , , , and ), In PLoS Comput Biol, volume 14, . [bibtex] [pdf] [doi]
[112] Is consciousness frontal? Two perioperative case reports that challenge that concept (, , , and ), In British Journal of Anaesthesia, . [bibtex] [pdf] [doi]
[111] Black-boxing and cause-effect power (, and ), In PLoS Comput Biol, volume 14, . [bibtex] [pdf] [doi]
[110]How Swarm Size during Evolution Impacts the Behavior, Generalizability, and Brain Complexity of Animats Performing a Spatial Navigation Task (, and ), In Proceedings of the Genetic and Evolutionary Computation Conference, Association for Computing Machinery, . [bibtex] [doi]
[109]A Tale of Two Animats: What Does It Take to Have Goals? (), Chapter in Wandering Towards a Goal: How Can Mindless Mathematical Laws Give Rise to Aims and Intention? (Aguirre, Anthony, Foster, Brendan, Merali, Zeeya, eds.), Springer International Publishing, . [bibtex] [doi]
2017
[108] PyPhi: A toolbox for integrated information theory (, , , , and ), In arXiv preprint arXiv:1712.09644, . [bibtex] [pdf]
[107] Are the neural correlates of consciousness in the front or in the back of the cerebral cortex? Clinical and neuroimaging evidence (, , , , and ), In The Journal of Neuroscience, volume 37, . [bibtex] [url] [doi]
[106] Propofol-Induced Unresponsiveness is Associated with Impaired Feedforward Connectivity in the Cortical Hierarchy (, , , , , , , , , , , , and ), In bioRxiv, . [bibtex] [url] [doi]
[105] The Phenomenal Contents and Neural Correlates of Spontaneous Thoughts across Wakefulness, NREM Sleep, and REM Sleep (, , , , and ), In Journal of Cognitive Neuroscience, volume 0, . [bibtex] [pdf] [doi]
[104] EEG Differentiation Analysis and Stimulus Set Meaningfulness (, and ), In Frontiers in Psychology, volume 8, . [bibtex] [url] [doi]
[103] How causal analysis can reveal autonomy in models of biological systems (, , , and ), In Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, volume 375, . [bibtex] [pdf] [doi]
[102] Are we underestimating the richness of visual experience? (, , and ), In Neuroscience of Consciousness, volume 3, . [bibtex] [pdf]
[101] Are the Neural Correlates of Consciousness in the Front or in the Back of the Cerebral Cortex? Clinical and Neuroimaging Evidence (, , , , and ), In The Journal of Neuroscience, volume 37, . [bibtex] [pdf] [doi]
[100]Automata and Animats: From Dynamics to Cause–Effect Structures ( and ), Chapter in From Matter to Life: Information and Causality (Walker, Sara Imari, Davies, Paul C. W., Ellis, George F. R., eds.), Cambridge University Press, . [bibtex] [doi]
2016
[99] Black-boxing and cause-effect power (, and ), In arXiv preprint arXiv:1608.03461, . [bibtex] [pdf]
[98]What determines the level of consciousness during Non-REM sleep? (, , , and ), In Journal of Sleep Research, volume 25, . [bibtex]
[97] A reply to Barrett (2016) ( and ), In Phil. Trans. R. Soc. B, volume 371, . [bibtex] [pdf] [doi]
[96]Integrated information theory: from consciousness to its physical substrate (, , and ), In Nat Rev Neurosci, volume 17, . [bibtex] [doi]
[95] Integrated information theory: from consciousness to its physical substrate SUPPLEMENTAL INFORMATION (, , and ), In Nat Rev Neurosci, . [bibtex] [url] [doi]
[94] Functional split brain in a driving/listening paradigm (, , and ), In Proceedings of the National Academy of Sciences, volume 113, . [bibtex] [pdf] [doi]
[93] Is consciousness fragile? (, , , and ), In Br J Anaesth, volume 116, . [bibtex] [url] [doi]
[92] Consciousness and cortical responsiveness: a within-state study during non-rapid eye movement sleep (, , , , , , , and ), In Sci Rep, volume 6, . [bibtex] [pdf] [doi]
[91] Integrated Information and State Differentiation (, and ), In Frontiers in Psychology, volume 7, . [bibtex] [pdf] [doi]
[90]Posterior and anterior cortex - where is the difference that makes the difference? (, , and ), In Nat Rev Neurosci, . [bibtex] [doi]
[89] Neural correlates of consciousness: progress and problems (, , and ), In Nat Rev Neurosci, volume 17, . [bibtex] [url] [doi]
[88] Propofol anesthesia reduces Lempel-Ziv complexity of spontaneous brain activity in rats (, , , and ), In Neuroscience Letters, volume 628, . [bibtex] [pdf] [doi]
[87] Can the macro beat the micro? Integrated information across spatiotemporal scales (, , and ), In Neuroscience of Consciousness, volume 2016, . [bibtex] [pdf] [doi]
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