2023
Quantification of inter-brain coupling: A review of current methods used in haemodynamic and electrophysiological hyperscanning studies
Hakim U, De Felice S, Pinti P, Zhang X, Noah J, Ono Y, Burgess P, Hamilton A, Hirsch J, Tachtsidis I. Quantification of inter-brain coupling: A review of current methods used in haemodynamic and electrophysiological hyperscanning studies. NeuroImage 2023, 280: 120354. PMID: 37666393, DOI: 10.1016/j.neuroimage.2023.120354.Peer-Reviewed Original ResearchConceptsInter-brain couplingHyperscanning studyFunctional magnetic resonanceBrain imaging modalitiesSocial neuroscienceCognitive mechanismsSocial anxietyBrain couplingCognitive researchSocial interactionHyperscanningMental healthDifferent modalitiesMagnetoencephalographyDevelopmental conditionsElectroencephalographyMore participantsParticipantsAutismNeuroscienceFNIRSAnxietyBrainModalitiesSchizophrenia
2019
Remote photonic sensing of cerebral hemodynamic changes via temporal spatial analysis of acoustic vibrations
Ozana N, Noah JA, Zhang X, Ono Y, Hirsch J, Zalevsky Z. Remote photonic sensing of cerebral hemodynamic changes via temporal spatial analysis of acoustic vibrations. Journal Of Biophotonics 2019, 13: e201900201. PMID: 31415118, DOI: 10.1002/jbio.201900201.Peer-Reviewed Original ResearchConceptsHemodynamic changesCerebral hemodynamic changesNeural activityTask-specific neural activityVisual checkerboard stimulationHuman brain activationHemodynamic responseOccipital lobeBlood flowTissue oxygenationCheckerboard stimulationRest epochsBrain activationHemodynamic response functionHuman brainBrainRemote sensingNovel photonic methodPhysiological processesAcoustic vibrationsTemporal vibrationsTemporal-spatial analysisPhotonic sensing
2017
Neural correlates of conflict between gestures and words: A domain-specific role for a temporal-parietal complex
Noah JA, Dravida S, Zhang X, Yahil S, Hirsch J. Neural correlates of conflict between gestures and words: A domain-specific role for a temporal-parietal complex. PLOS ONE 2017, 12: e0173525. PMID: 28278240, PMCID: PMC5344449, DOI: 10.1371/journal.pone.0173525.Peer-Reviewed Original ResearchConceptsTemporal-parietal junctionDorsolateral prefrontal cortexRight temporal-parietal junctionRight dorsolateral prefrontal cortexLeft dorsolateral prefrontal cortexSuperior temporal gyrusColor taskConflict taskIncongruent trialsSocial cuesGesture tasksSupramarginal gyrusBehavioral interference effectDomain-general mechanismsUnderlying neural processesReceptive language areasHuman social behaviorAuditory association cortexDomain-specific rolesFrontal eye fieldConflict processing mechanismCongruent trialsGestural cuesNeural correlatesNeural processes
2015
Motor learning and modulation of prefrontal cortex: an fNIRS assessment
Ono Y, Noah JA, Zhang X, Nomoto Y, Suzuki T, Shimada S, Tachibana A, Bronner S, Hirsch J. Motor learning and modulation of prefrontal cortex: an fNIRS assessment. Journal Of Neural Engineering 2015, 12: 066004. PMID: 26401727, DOI: 10.1088/1741-2560/12/6/066004.Peer-Reviewed Original ResearchConceptsDance video gameHemodynamic responsePrefrontal cortexMotor tasksMotor learningMotor performanceSpecific rehabilitation programPrefrontal hemodynamic responsesBaseline patternsHealthy young adultsTraining-induced changesComplex motor tasksRehabilitation programYoung adultsRegression analysisCortexRegression modelsAuditory cuesNovice playersSensitive indicatorResponseParticipants
2006
Hemodynamic Impairment as a Stimulus for Functional Brain Reorganization
Marshall RS, Krakauer JW, Matejovsky T, Zarahn E, Barnes A, Lazar RM, Hirsch J. Hemodynamic Impairment as a Stimulus for Functional Brain Reorganization. Cerebrovascular And Brain Metabolism Reviews 2006, 26: 1256-1262. PMID: 16421509, DOI: 10.1038/sj.jcbfm.9600274.Peer-Reviewed Original ResearchMeSH KeywordsAdultAgedAged, 80 and overBrain InfarctionHemodynamicsHumansMagnetic Resonance ImagingMiddle AgedConceptsVasomotor reactivityHemodynamic impairmentMotor-related activityControl subjectsFunctional reorganizationMotor regionsLevel-dependent signal intensityAbnormal cerebral hemodynamicsTypical motor activitiesLarge vessel occlusionSubgroup of patientsBlood oxygen level-dependent (BOLD) signal intensityContralateral motor areasFunctional brain reorganizationCarbon dioxide inhalationSimple motor taskFunctional magnetic resonanceAbnormal vasoreactivityTranscranial DopplerBrain reorganizationVessel occlusionCerebral hemodynamicsHand contralateralMotor areaFocal lesions