2025
A telescopic independent component analysis on functional magnetic resonance imaging dataset
Mirzaeian S, Faghiri A, Calhoun V, Iraji A. A telescopic independent component analysis on functional magnetic resonance imaging dataset. Network Neuroscience 2025, 9: 61-76. PMCID: PMC11949590, DOI: 10.1162/netn_a_00421.Peer-Reviewed Original ResearchRight frontoparietal networkVisual networkIndependent component analysisBrain functionExtraction of informationFunctional magnetic resonance imaging datasetsImage datasetsFrontoparietal networkMagnetic resonance imaging datasetFMRI dataGroup differencesLeverage informationSmall networksDMNNetworkComponent analysisIncomplete viewAbstract Brain functionFunctional sourceConnectome-based predictive modeling of early and chronic psychosis symptoms
Foster M, Ye J, Powers A, Dvornek N, Scheinost D. Connectome-based predictive modeling of early and chronic psychosis symptoms. Neuropsychopharmacology 2025, 1-9. PMID: 40016363, DOI: 10.1038/s41386-025-02064-9.Peer-Reviewed Original ResearchConnectome-based predictive modelingPositive and Negative Syndrome ScalePsychosis symptomsSymptom networksSymptom severityBrain networksNeural correlates of CPResting-state functional magnetic resonance imagingFunctional magnetic resonance imagingNegative Syndrome ScaleIdentified group differencesPredicted effect sizeCorrelates of CPGeneral psychopathologyNegative symptomsPositive symptomsSyndrome ScaleFrontoparietal networkNeural correlatesVirtual lesion analysisGroup differencesConnectivity changesEffect sizeLesion analysisLongitudinal study
2024
Acute Stress Increases Striatal Connectivity With Cortical Regions Enriched for μ and κ Opioid Receptors
Zhukovsky P, Ironside M, Duda J, Moser A, Null K, Dhaynaut M, Normandin M, Guehl N, El Fakhri G, Alexander M, Holsen L, Misra M, Narendran R, Hoye J, Morris E, Esfand S, Goldstein J, Pizzagalli D. Acute Stress Increases Striatal Connectivity With Cortical Regions Enriched for μ and κ Opioid Receptors. Biological Psychiatry 2024, 96: 717-726. PMID: 38395372, PMCID: PMC11339240, DOI: 10.1016/j.biopsych.2024.02.005.Peer-Reviewed Original ResearchMajor depressive disorderFunctional connectivityEffects of stressAcute stressK-opioid receptorsStriatal connectivityEtiology of major depressive disorderCortical regionsMontreal Imaging Stress TaskEffects of acute stressGlobal FCIncreased striatal connectivityVentral attention/salience networkAllen Human Brain AtlasDefault mode networkCortical connectivityHuman Brain AtlasMDD studiesDepressive disorderFrontoparietal networkNeurobiological effectsMode networkStress taskDimensional approachMDD risk
2023
Cerebral systems underlying anosognosia for memory loss in aging and Alzheimer’s disease
Mimmack K, Qiao K, Gagliardi G, Bueichekú E, Cacciamani F, Wang S, Udeogu O, Marshall G, Sepulcre J, Vannini P. Cerebral systems underlying anosognosia for memory loss in aging and Alzheimer’s disease. Alzheimer's & Dementia 2023, 19 DOI: 10.1002/alz.080305.Peer-Reviewed Original ResearchBetween-network connectivityFrontoparietal networkSensory-motor networkMemory awarenessFunctional connectivityDecreased connectivityAssociated with increased connectivitySensory-motorWithin-network connectivitySelf-referential networkCognitive Function InstrumentAwareness of cognitive declineResting-state fMRISensory-motor relationshipsWhole-brain connectivityAlzheimer's diseaseSymptoms of Alzheimer's diseaseMultiple comparison correctionSalience networkDefault modeDorsal attentionBrain regionsFC patternsPartners' scoresMedial visualLeft Frontoparietal Connectivity Counteracts Locus Coeruleus‐Related Attentional Decline in Preclinical Alzheimer’s Disease
Pahl J, Prokopiou P, Bueicheku E, Schultz A, Papp K, Rentz D, Sperling R, Johnson K, Jacobs H. Left Frontoparietal Connectivity Counteracts Locus Coeruleus‐Related Attentional Decline in Preclinical Alzheimer’s Disease. Alzheimer's & Dementia 2023, 19 DOI: 10.1002/alz.079733.Peer-Reviewed Original ResearchDigit Symbol Substitution TestLC integrityLocus coeruleusFunctional connectivityCognitive declineAttentional controlAssociated with less steep declinesAssess attentional controlHarvard Aging Brain StudyPrefrontal functional connectivityAging Brain StudyPreclinical Alzheimer's diseaseCognitive follow-upYears of educationAlzheimer's diseaseNeural reserveFrontoparietal networkBrain mechanismsMixed effects analysisAttention deficitSubstitution TestCognitive performanceDSST performanceAttentional declinePreclinical AD
2022
Associations among Household and Neighborhood Socioeconomic Disadvantages, Resting-state Frontoamygdala Connectivity, and Internalizing Symptoms in Youth
Ip KI, Sisk LM, Horien C, Conley MI, Rapuano KM, Rosenberg MD, Greene AS, Scheinost D, Constable RT, Casey BJ, Baskin-Sommers A, Gee DG. Associations among Household and Neighborhood Socioeconomic Disadvantages, Resting-state Frontoamygdala Connectivity, and Internalizing Symptoms in Youth. Journal Of Cognitive Neuroscience 2022, 34: 1810-1841. PMID: 35104356, DOI: 10.1162/jocn_a_01826.Peer-Reviewed Original ResearchConceptsSocioeconomic disadvantageNeighbourhood deprivationResting-state functional connectivityInternalizing symptomsSymptoms 1 yearHigher neighborhood deprivationNeighborhood socioeconomic disadvantageCognitive Development StudyAdolescent Brain Cognitive Development (ABCD) studyEarly interventionBilateral amygdalaElevated symptomsNegative connectivitySymptomsFunctional connectivityMental healthPositive connectivityBaselineHigher internalizing symptomsFrontoparietal networkOFC regionsFunctional couplingDeleterious effectsHigh disadvantageNeeds ratio
2021
Large-scale functional brain networks of maladaptive childhood aggression identified by connectome-based predictive modeling
Ibrahim K, Noble S, He G, Lacadie C, Crowley MJ, McCarthy G, Scheinost D, Sukhodolsky DG. Large-scale functional brain networks of maladaptive childhood aggression identified by connectome-based predictive modeling. Molecular Psychiatry 2021, 27: 985-999. PMID: 34690348, PMCID: PMC9035467, DOI: 10.1038/s41380-021-01317-5.Peer-Reviewed Original ResearchConceptsLarge-scale functional networksChildhood aggressionSeverity of aggressionIndividual differencesBrain networksAdolescent Brain Cognitive Development (ABCD) studyConnectome-based predictive modelingReactive-Proactive Aggression QuestionnaireEmotion perception taskLarge-scale functional brain networksAssociation of connectivityFunctional networksCognitive Development StudyAggressive behaviorFunctional brain networksIndependent samplesCognitive controlEmotion regulationEmotion processingPerception taskCalm facesMaladaptive aggressionPsychiatric disordersTransdiagnostic sampleFrontoparietal network
2020
Functional neural network configuration in late childhood varies by age and cognitive state
Le TM, Huang AS, O’Rawe J, Leung HC. Functional neural network configuration in late childhood varies by age and cognitive state. Developmental Cognitive Neuroscience 2020, 45: 100862. PMID: 32920279, PMCID: PMC7494462, DOI: 10.1016/j.dcn.2020.100862.Peer-Reviewed Original ResearchConceptsWhole-brain networksCognitive demandsLate childhoodConnectivity patternsFunctional network characteristicsFunctional network connectivityNetwork connectivity patternsPerceptual tasksFrontoparietal networkVisual processingCognitive developmentCognitive stateVisual perceptionBehavioral performanceTask statesEarly adolescenceBrain maturationConnectivity profilesDistinct tasksYoung adultsNeural network configurationMemoryNetwork architectureExploratory analysisTask
2019
Distance disintegration delineates the brain connectivity failure of Alzheimer's disease
Costumero V, d'Oleire Uquillas F, Diez I, Andorrà M, Basaia S, Bueichekú E, Ortiz-Terán L, Belloch V, Escudero J, Ávila C, Sepulcre J. Distance disintegration delineates the brain connectivity failure of Alzheimer's disease. Neurobiology Of Aging 2019, 88: 51-60. PMID: 31941578, PMCID: PMC7085436, DOI: 10.1016/j.neurobiolaging.2019.12.005.Peer-Reviewed Original ResearchConceptsAssociated with lower global cognitionCognitive impairmentAlzheimer's diseaseBrain network dysfunctionAD-related changesMild cognitive impairmentFrontoparietal networkSalience networkMode networkStrength of connectionsNetwork-based investigationsGlobal cognitionNetwork dysfunctionAD-related conditionsBrain connectivityConnectivity changesCortical regionsConnection distanceInvestigation of brain connectivityAD spectrumVoxel levelHealthy controlsDistance of connectionBrainPathways of connectivityDissociable neural substrates of opioid and cocaine use identified via connectome-based modelling
Lichenstein SD, Scheinost D, Potenza MN, Carroll KM, Yip SW. Dissociable neural substrates of opioid and cocaine use identified via connectome-based modelling. Molecular Psychiatry 2019, 26: 4383-4393. PMID: 31719641, PMCID: PMC7214212, DOI: 10.1038/s41380-019-0586-y.Peer-Reviewed Original ResearchConceptsBrain statesDissociable neural substratesMultiple brain statesSubstance use outcomesHealthy comparison subjectsWhole-brain approachFMRI scanningFrontoparietal networkNeural substratesSubstance use treatmentNeural mechanismsDifferent brain statesFurther clinical relevanceDefault modeFMRI dataSubject replicationTreatment approachesReduced connectivityUse outcomesComparison subjectsNetwork strengthUse disordersSensory networksTreatment respondersSensory connectivityToward a Neural Model of the Openness-Psychoticism Dimension: Functional Connectivity in the Default and Frontoparietal Control Networks
Blain S, Grazioplene R, Ma Y, DeYoung C. Toward a Neural Model of the Openness-Psychoticism Dimension: Functional Connectivity in the Default and Frontoparietal Control Networks. Schizophrenia Bulletin 2019, 46: 540-551. PMID: 31603227, PMCID: PMC7147581, DOI: 10.1093/schbul/sbz103.Peer-Reviewed Original ResearchConceptsFrontoparietal networkFunctional connectivityFunctional magnetic resonance imagingFrontoparietal control networkState functional magnetic resonance imagingIntelligenceNeural modelIntrinsic connectivity networksMeasures of psychoticismHuman Connectome ProjectStructural equation modelingNetworkCognitive controlNeural correlatesPsychosis pronenessLatter networkCognitive deficitsNetwork coherenceConnectome ProjectControl networkEquation modelingPsychosis riskConnectivityRepeated Working Memory Training Improves Task Performance and Neural Efficiency in Multiple Sclerosis Patients and Healthy Controls
Aguirre N, Cruz-Gómez Á, Miró-Padilla A, Bueichekú E, Torres R, Ávila C, Sanchis-Segura C, Forn C. Repeated Working Memory Training Improves Task Performance and Neural Efficiency in Multiple Sclerosis Patients and Healthy Controls. Multiple Sclerosis International 2019, 2019: 2657902. PMID: 31139470, PMCID: PMC6500632, DOI: 10.1155/2019/2657902.Peer-Reviewed Original ResearchFunctional magnetic resonance imagingWorking memoryNeural efficiencyBrain activityCorrect responsesTask performanceAdaptive n-back trainingHealthy controlsEnhanced neural efficiencyN-back performanceN-back trainingPost-trainingImprovement of task performanceTraining groupImprove task performanceWM trainingFMRI sessionFrontoparietal networkN-backHC participantsMS patientsMatched HCNeuroplastic processesMagnetic resonance imagingBrainThe individual functional connectome is unique and stable over months to years
Horien C, Shen X, Scheinost D, Constable RT. The individual functional connectome is unique and stable over months to years. NeuroImage 2019, 189: 676-687. PMID: 30721751, PMCID: PMC6422733, DOI: 10.1016/j.neuroimage.2019.02.002.Peer-Reviewed Original ResearchConceptsHigh ID ratesIndividual differencesFunctional connectomeIndividual functional connectomesStable individual differencesID rateResting-state fMRI datasetsFrontoparietal networkFunctional connectivityParietal cortexFMRI datasetsIdiosyncratic aspectsConnectomeHead motionEntire brainFMRIBrainCortexSpecific datasetDifferencesConnectivity
2017
Multi-modal analysis of functional connectivity and cerebral blood flow reveals shared and unique effects of propofol in large-scale brain networks
Qiu M, Scheinost D, Ramani R, Constable RT. Multi-modal analysis of functional connectivity and cerebral blood flow reveals shared and unique effects of propofol in large-scale brain networks. NeuroImage 2017, 148: 130-140. PMID: 28069540, PMCID: PMC5410383, DOI: 10.1016/j.neuroimage.2016.12.080.Peer-Reviewed Original ResearchConceptsCerebral blood flowIntrinsic connectivity distributionLarge-scale brain networksFunctional connectivityReduced consciousnessBlood flowBrain networksSedation conditionsWhole-brain connectivityAltered connectivityMotor networkCBF dataRs-fMRIPharmacological alterationsConnectivity differencesPropofolMultiple large-scale brain networksUnique neural correlatesBlow flowFrontoparietal networkAnesthesiaKey markersDefault modeNeural correlatesSame subjects
2016
Top–Down Activation of Spatiotopic Sensory Codes in Perceptual and Working Memory Search
Kuo B, Nobre A, Scerif G, Astle D. Top–Down Activation of Spatiotopic Sensory Codes in Perceptual and Working Memory Search. Journal Of Cognitive Neuroscience 2016, 28: 996-1009. PMID: 26967943, DOI: 10.1162/jocn_a_00952.Peer-Reviewed Original ResearchConceptsFrontoparietal networkEarly visual areasMemory searchVisual areasPrioritization of relevant informationMEG dataRelevant sensory corticesLevels of processingTop-down activationDynamics of functional connectivitySensory codingN2pc effectTemporal dynamics of functional connectivityCombined fMRITarget itemsFunctional connectivityFMRI dataFrontoparietal areasCognitive systemPhase-phase couplingFMRISensory cortexInternal representationN2pcSensory input
2015
Frontoparietal and Cingulo-opercular Networks Play Dissociable Roles in Control of Working Memory
Wallis G, Stokes M, Cousijn H, Woolrich M, Nobre A. Frontoparietal and Cingulo-opercular Networks Play Dissociable Roles in Control of Working Memory. Journal Of Cognitive Neuroscience 2015, 27: 2019-2034. PMID: 26042457, DOI: 10.1162/jocn_a_00838.Peer-Reviewed Original ResearchConceptsControl of working memoryCingulo-opercular networkFrontoparietal networkTop-down modulation of activityFrontoparietal network activityModulation of alpha activityTop-down modulationDynamics of cortical activityModulation of activityTop-down controlNetwork activityCognitive controlWorking memoryDissociative roleFMRI studyPreparatory attentionSpatial cuesCortical activitySensory cortexRetrocueMemoryCortexRelevant itemsAlpha activityMaintenance period
2013
Dynamic Coupling Between the Lateral Occipital-Cortex, Default-Mode, and Frontoparietal Networks During Bistable Perception
Karten A, Pantazatos SP, Khalil D, Zhang X, Hirsch J. Dynamic Coupling Between the Lateral Occipital-Cortex, Default-Mode, and Frontoparietal Networks During Bistable Perception. Brain Connectivity 2013, 3: 286-293. PMID: 23510237, PMCID: PMC3685318, DOI: 10.1089/brain.2012.0119.Peer-Reviewed Original Research
2006
Orienting attention to semantic categories
Cristescu T, Devlin J, Nobre A. Orienting attention to semantic categories. NeuroImage 2006, 33: 1178-1187. PMID: 17011212, PMCID: PMC2651199, DOI: 10.1016/j.neuroimage.2006.08.017.Peer-Reviewed Original ResearchConceptsAttentional orientingLeft anterior inferior frontal cortexFunctional magnetic-resonance imagingInferior frontal cortexSpeeded response taskSemantic analysis of wordsAttributes of stimuliType of expectancyWord stimuliFrontoparietal networkNeural correlatesOrienting attentionFrontal cortexBehavioral performanceAnalysis of wordsBrain areasResponse taskBehavioral consequencesSemantic categoriesFrontal areasOptimal perceptionSpatial orientationMagnetic-resonance imagingFunctional specializationStimuli
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