The present and future use of functional near‐infrared spectroscopy (fNIRS) for cognitive neuroscience
Pinti P, Tachtsidis I, Hamilton A, Hirsch J, Aichelburg C, Gilbert S, Burgess PW. The present and future use of functional near‐infrared spectroscopy (fNIRS) for cognitive neuroscience. Annals Of The New York Academy Of Sciences 2018, 1464: 5-29. PMID: 30085354, PMCID: PMC6367070, DOI: 10.1111/nyas.13948.Peer-Reviewed Original ResearchConceptsCognitive neuroscienceSocial cognitive neuroscienceCognitive neuroscience researchFunctional magnetic resonance imagingElectroencephalography/magnetoencephalographyPotential of fNIRSNaturalistic environmentNeuroscience researchNeuroscienceNeuroimaging modalitiesBodily movementParticipant populationExperimental settingsMagnetic resonance imagingFNIRSMagnetoencephalographyResonance imagingParticular focusResearchA Review on the Use of Wearable Functional Near‐Infrared Spectroscopy in Naturalistic Environments
Pinti P, Aichelburg C, Gilbert S, Hamilton A, Hirsch J, Burgess P, Tachtsidis I. A Review on the Use of Wearable Functional Near‐Infrared Spectroscopy in Naturalistic Environments. Japanese Psychological Research 2018, 60: 347-373. PMID: 30643322, PMCID: PMC6329605, DOI: 10.1111/jpr.12206.Peer-Reviewed Original ResearchCognitive neuroscienceFunctional magnetic resonance imagingFunctional Near-Infrared SpectroscopyCognitive research fieldHuman brain functioningEveryday life scenariosFunctional brain activityFunctional brain imagingNeural basisFNIR systemNaturalistic environmentBrain activityBrain functioningNaturalistic settingNeuroimaging modalitiesBrain imagingOverview of studiesHealthy brainNeuroscienceFNIRSNear-Infrared SpectroscopyMagnetic resonance imagingAccurate inferenceLife scenariosFunctioning