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The present and future use of functional near‐infrared spectroscopy (fNIRS) for cognitive neuroscience

Annals of the New York Academy of Sciences · 2018 · Vol. 1464(1) · pp. 5–29
Paola PintiIlias TachtsidisAntonia F. de C. HamiltonJoy HirschClarisse AichelburgSam J. GilbertPaul W. Burgess

Abstract

The past few decades have seen a rapid increase in the use of functional near-infrared spectroscopy (fNIRS) in cognitive neuroscience. This fast growth is due to the several advances that fNIRS offers over the other neuroimaging modalities such as functional magnetic resonance imaging and electroencephalography/magnetoencephalography. In particular, fNIRS is harmless, tolerant to bodily movements, and highly portable, being suitable for all possible participant populations, from newborns to the elderly and experimental settings, both inside and outside the laboratory. In this review we aim to provide a comprehensive and state-of-the-art review of fNIRS basics, technical developments, and applications. In particular, we discuss some of the open challenges and the potential of fNIRS for cognitive neuroscience research, with a particular focus on neuroimaging in naturalistic environments and social cognitive neuroscience.

Optical Imaging and Spectroscopy TechniquesFunctional Brain Connectivity StudiesEEG and Brain-Computer InterfacesFunctional near-infrared spectroscopyNeuroimagingModalitiesCognitive neuroscienceNeuroscienceMagnetoencephalographyFunctional neuroimagingCognitionPsychologyFunctional magnetic resonance imaging

MeSH terms

Cognitive NeuroscienceBrainElectroencephalographyHumansMagnetic Resonance ImagingSpectroscopy, Near-InfraredFunctional Neuroimaging

Funding

  • Wellcome
  • European Research Council
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