BPG is committed to discovery and dissemination of knowledge
Review
Copyright: ©Author(s) 2026.
World J Psychiatry. Sep 19, 2026; 16(9): 120999
Published online Sep 19, 2026. doi: 10.5498/wjp.120999
Table 1 Core paradigms used to study conscious and unconscious processing in schizophrenia
Ref.
Paradigm/method
Processing level emphasized
Main use in the review
Main limitation
[10,28,42,43,48]Visual masking/object substitutionConscious access threshold; subliminal processingDistinguishes impaired reportable perception from preserved masked processing in selected paradigmsSensitive to visual deficits, attention, and task design
[8,10,15]Attentional amplification paradigmsTop-down contribution to conscious accessUsed to discuss reduced amplification and elevated access thresholdInterpretation depends on task demands
[16,42]Semantic/affective primingSubliminal or implicit processingUsed to discuss preserved unconscious semantic or affective processing in specific conditionsDoes not generalize to all unconscious or preattentive functions
[31]Change blindness/implicit detectionExplicit report vs covert sensitivityUsed to discuss dissociation of explicit and implicit responsesOften behaviorally indirect
[1,11,21,26,29,38,70]ERP measures (P50, MMN, P3/P3b, error-related signals)Preattentive filtering, deviance detection, conscious access, performance monitoringUsed to relate physiological signatures to conscious and unconscious processingERP components do not map one to one onto single cognitive operations
[60,76,83,95]Resting-state fMRIIntrinsic large-scale organizationUsed to discuss baseline network organization and unconscious neural dynamicsWeak specificity for individual cognitive operations
[22,40,83]Structural connectivity imagingWhite matter and network organizationUsed to relate structural connectivity to access-related deficitsRelatively indirect for task specific mechanisms
[23,34,54,67,103]Metacognitive tasks and insight measuresConfidence calibration, self-evaluation, insightUsed to discuss explicit self-monitoring abnormalitiesMust control first order performance
Table 2 Conscious functions in schizophrenia: Domains and neural systems
Ref.
Functional domain
Main features described in the review
Neural systems discussed
[8,10,15,19,42,43,63]Conscious accessElevated threshold for reportable perception, impaired explicit accessPrefrontal-parietal workspace systems, access-related cortical dynamics
[15,61,63]Explicit memory retrievalReduced recollection accuracy, increased reaction time, disproportionate frontal recruitmentDLPFC, VLPFC, hippocampal-prefrontal circuitry
[38,61,62]Reality monitoring/self-monitoringAltered explicit monitoring of internally generated information and performanceACC, medial frontal systems, prefrontal control circuitry
[39,54,61,64]Conscious social cognitionAltered theory of mind, self-other distinction, explicit social interpretationmPFC, TPJ, anterior insula, ACC, control/salience systems
[65,75]Conscious emotion processingAltered explicit emotional-network engagement and transdiagnostic comparisonFrontal-limbic and large-scale emotion-related systems
[9,12,77,85]Stream of consciousness/self-related continuityFragmented continuity and altered temporal integrationLarge-scale temporal organization, self-related network interactions
Table 3 Unconscious and preattentive functions in schizophrenia
Ref.
Domain
Main features described in the review
Neural/circuit systems discussed
[7,8,10,18,30,31,42]Subliminal processingRelative preservation in selected paradigmsLocal sensory and perceptual processing systems
[1,25,26,68]Sensory gatingReduced inhibitory filtering of repetitive or redundant inputAuditory cortex, hippocampal-prefrontal circuitry, thalamocortical pathways
[1,25,68,69]HabituationReduced attenuation to repeated sensory stimulationSensory cortices, inhibitory networks, thalamocortical systems
[1,26,29,70]Mismatch negativityReduced MMN amplitude and altered automatic deviance detectionPrimary auditory cortex and related predictive networks
[4,71,72]Predictive coding at preattentive levelAltered prediction-error processing and vocalization-related predictive codingAuditory and action-related predictive systems
[16,64,75]Implicit social/affective processingAltered responses to socially or emotionally salient stimuli outside explicit reportAmygdala, insula, frontal regions, fusiform and related systems
[7]Unconscious motivational processingPreserved unconscious motivational effects in a specific paradigmMotivation-related processing without explicit awareness
[60,76,83,95]Resting-state intrinsic activityAltered baseline large-scale organization reflecting ongoing unconscious neural processesResting-state whole-brain functional architecture
Table 4 Neural circuit and molecular mechanisms linking conscious and unconscious functions
Ref.
Domain
Neural/circuit systems discussed
[8,12,13,15,19,20,41]Global neuronal workspace/conscious broadcastingFramework for conscious access and ignition-like large-scale integration
[8,22,54,59]DysconnectionLarge-scale failure of coordinated integration across neural systems
[4,8,15,25,54,59,71]NMDA receptor-related dysfunctionReduced recurrent integration, altered filtering, impaired predictive coding and conscious access
[8,54,77,104]GABAergic dysfunction/synchrony disturbanceAltered long-range oscillatory coordination and weakened integration
[25,26,68]Cholinergic modulationSensory-gating-related modulation, including nicotinic mechanisms
[1,6,24,76]Thalamocortical disturbanceAbnormal relay, filtering, and integration of sensory and higher-order signals
[39]ClaustrumDiscussed as a multimodal integration hub
[78-82]Orbitofrontal latent-state representationSupports inferred state representation, latent learning, and flexible updating
[13,15,54,77,104]Neural synchronization/temporal bindingOne mechanism linking unconscious processing with conscious integration
Table 5 Shared and relatively distinctive findings across disorders
Ref.
Domain
Schizophrenia
Bipolar disorder
Autism spectrum disorder
[10,22,105]Conscious accessOften impaired in masking and related tasksLess consistently studied in this specific formNot central in the same psychosis-oriented literature
[33,111-113]Preattentive deviance detectionRobust MMN abnormalitiesAbnormalities reported, often less centralAtypical prediction and sensory processing are also reported
[76,114,115]Thalamocortical dysconnectivityProminent and repeatedly implicatedPresent but often less sensory weightedSensory and social differences are common but framed differently
[23,67,116]Metacognition and insightConfidence, source monitoring, and insight often disturbedInsight varies with mood stateSelf-monitoring difficulties differ in structure and clinical meaning


Write to the Help Desk