2023
Separable processes for live “in-person” and live “zoom-like” faces
Zhao N, Zhang X, Noah J, Tiede M, Hirsch J. Separable processes for live “in-person” and live “zoom-like” faces. Imaging Neuroscience 2023, 1: 1-17. DOI: 10.1162/imag_a_00027.Peer-Reviewed Original ResearchDorsal parietal regionsFace conditionFace processingVisual streamInteractive faceReal facesSocial contextFace processing mechanismsEye-tracking measuresVentral visual streamDorsal visual streamBehavioral findingsTheta powerNeural activityHuman faceNeural codingSeparable processesFacial featuresBehavioral differencesPupil diameterFaceProcessingCurrent modelsFNIRSArousal
2022
Structural covariance of the ventral visual stream predicts posttraumatic intrusion and nightmare symptoms: a multivariate data fusion analysis
Harnett NG, Finegold KE, Lebois LAM, van Rooij SJH, Ely TD, Murty VP, Jovanovic T, Bruce SE, House SL, Beaudoin FL, An X, Zeng D, Neylan TC, Clifford GD, Linnstaedt SD, Germine LT, Bollen KA, Rauch SL, Haran JP, Storrow AB, Lewandowski C, Musey PI, Hendry PL, Sheikh S, Jones CW, Punches BE, Kurz MC, Swor RA, Hudak LA, Pascual JL, Seamon MJ, Harris E, Chang AM, Pearson C, Peak DA, Domeier RM, Rathlev NK, O’Neil B, Sergot P, Sanchez LD, Miller MW, Pietrzak RH, Joormann J, Barch DM, Pizzagalli DA, Sheridan JF, Harte SE, Elliott JM, Kessler RC, Koenen KC, McLean SA, Nickerson LD, Ressler KJ, Stevens JS. Structural covariance of the ventral visual stream predicts posttraumatic intrusion and nightmare symptoms: a multivariate data fusion analysis. Translational Psychiatry 2022, 12: 321. PMID: 35941117, PMCID: PMC9360028, DOI: 10.1038/s41398-022-02085-8.Peer-Reviewed Original ResearchConceptsVentral visual streamPosttraumatic stress disorderVisual streamTrauma memoriesStructural covariance networksPTSD symptomsDevelopment of PTSDVisual componentsHigher PTSD symptom severityMultimodal magnetic resonance imaging (MRI) dataPTSD symptom severityFunctional covariance networkInferior temporal gyrusAdverse posttraumatic neuropsychiatric sequelaeCovariance networksPosttraumatic intrusionsTrauma exposureIntrusion symptomsStress disorderTemporal gyrusMagnetic resonance imaging dataNegative alterationsAffective disturbancesNightmare symptomsSymptom severity
2021
Allocentric representation in the human amygdala and ventral visual stream
Evensmoen H, Rimol L, Winkler A, Betzel R, Hansen T, Nili H, Håberg A. Allocentric representation in the human amygdala and ventral visual stream. Cell Reports 2021, 34: 108658. PMID: 33472067, DOI: 10.1016/j.celrep.2020.108658.Peer-Reviewed Original ResearchConceptsFunctional magnetic resonance imagingMedial temporal lobeVentral visual streamHigh-resolution functional magnetic resonance imagingMagnetic resonance imagingBrain activation patternsDistinct neural populationsVisual streamMain brain structuresEntorhinal cortexTemporal lobePerirhinal cortexResonance imagingParahippocampal cortexBrain structuresCortexHippocampusAmygdalaFusiform cortexActivation patternsHuman amygdalaYoung menNeural populationsAllocentric representationsConnector hubs
2020
Multimodal Computational Modeling of Visual Object Recognition Deficits but Intact Repetition Priming in Schizophrenia
Sehatpour P, Nia A, Adair D, Wang Z, DeBaun H, Silipo G, Martinez A, Javitt D. Multimodal Computational Modeling of Visual Object Recognition Deficits but Intact Repetition Priming in Schizophrenia. Frontiers In Psychiatry 2020, 11: 547189. PMID: 33329086, PMCID: PMC7719812, DOI: 10.3389/fpsyt.2020.547189.Peer-Reviewed Original ResearchFunctional magnetic resonance imagingLateral occipital complexPrefrontal cortexDorsal visual streamPerceptual closureVisual streamHippocampal formationNetwork of cortical regionsObject recognition deficitsLine drawingsVentral visual streamNetwork-level interactionsAdverse viewing conditionsRepetition primingRecognition deficitsClosure taskNeural processesOccipital complexCortical regionsSchizophreniaSensory informationMagnetic resonance imagingElectrophysiological recordingsPrimingCortex
2019
The hippocampus as a visual area organized by space and time: A spatiotemporal similarity hypothesis
Turk-Browne NB. The hippocampus as a visual area organized by space and time: A spatiotemporal similarity hypothesis. Vision Research 2019, 165: 123-130. PMID: 31734633, PMCID: PMC6881556, DOI: 10.1016/j.visres.2019.10.007.Peer-Reviewed Original ResearchConceptsVision scienceMemory systemVisual systemVentral visual streamHippocampal memory systemRelational bindingEpisodic memoryVisual streamVisual expectationsHippocampal mechanismsPattern separationVisual areasStatistical learningSimilarity hypothesisVisual representationComputational functionsBrief primerHippocampusCertain aspectsMemoryHypothesisLearningUnique formCircuityScience
2013
Is Attention Based on Spatial Contextual Memory Preferentially Guided by Low Spatial Frequency Signals?
Patai E, Buckley A, Nobre A. Is Attention Based on Spatial Contextual Memory Preferentially Guided by Low Spatial Frequency Signals? PLOS ONE 2013, 8: e65601. PMID: 23776509, PMCID: PMC3679178, DOI: 10.1371/journal.pone.0065601.Peer-Reviewed Original ResearchConceptsLow-spatial frequenciesContextual memoryAttentional orienting taskMemory-guided attentionPerceptual discrimination taskOrienting of attentionVentral visual streamMedial temporal areasAmbiguous visual stimuliLower spatial frequency signalsFrequency versionBias attentionMemory cuesSpatial memoryPerceptual discriminationAttentional benefitsDiscrimination taskTarget stimuliDorsal streamOrientation taskVisual streamTemporal areaVisual stimuliFrequency cuesMemory
2012
Shaping of Object Representations in the Human Medial Temporal Lobe Based on Temporal Regularities
Schapiro AC, Kustner LV, Turk-Browne NB. Shaping of Object Representations in the Human Medial Temporal Lobe Based on Temporal Regularities. Current Biology 2012, 22: 1622-1627. PMID: 22885059, PMCID: PMC3443305, DOI: 10.1016/j.cub.2012.06.056.Peer-Reviewed Original ResearchConceptsMedial temporal lobeHuman medial temporal lobeObject representationsStatistical learningTemporal lobeBlood oxygen level-dependent activityCA3/dentate gyrusMultivariate pattern analysisLevel-dependent activityHigh-resolution fMRIRepresentation of objectsPairs of objectsRepresentational similarityVisual streamInitial learningKind of representationPerirhinal cortexParahippocampal cortexTemporal regularitySingle experienceConstituent objectsTemporal structureLearningCortexPattern analysis
2001
Hunger Selectively Modulates Corticolimbic Activation to Food Stimuli in Humans
LaBar K, Gitelman D, Parrish T, Kim Y, Nobre A, Mesulam M. Hunger Selectively Modulates Corticolimbic Activation to Food Stimuli in Humans. Behavioral Neuroscience 2001, 115: 493-500. PMID: 11345973, DOI: 10.1037/0735-7044.115.2.493.Peer-Reviewed Original ResearchConceptsFunctional magnetic resonance imagingHuman functional magnetic resonance imagingAnterior fusiform gyrusVentral visual streamState of hungerState-dependent activityCorticolimbic structuresInteroceptive statesFusiform gyrusCorticolimbic activationSatiated conditionsHuman amygdalaHungry stateParahippocampal gyrusSatiated stateBrain structuresVisual streamResponse to foodFood-stimuliIrrelevant objectsAmygdalaVisual stimuliSensory cuesInferotemporal regionGyrus
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