A brief review on the use of functional near-infrared spectroscopy (fNIRS) for language imaging studies in human newborns and adults

► Non-invasive fNIRS measures changes in oxygenated and deoxygenated hemoglobin over human scalp. ► Upon stimulation, real time maps of cortical hemodynamic responses can be obtained by fNIRS. ► So far, 60 fNIRS language studies in newborn/children/adults have been published. ► fNIRS features, advan...

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Veröffentlicht in:Brain and language Jg. 121; H. 2; S. 79 - 89
Hauptverfasser: Quaresima, Valentina, Bisconti, Silvia, Ferrari, Marco
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Netherlands Elsevier Inc 01.05.2012
Elsevier
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ISSN:0093-934X, 1090-2155, 1090-2155
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Abstract ► Non-invasive fNIRS measures changes in oxygenated and deoxygenated hemoglobin over human scalp. ► Upon stimulation, real time maps of cortical hemodynamic responses can be obtained by fNIRS. ► So far, 60 fNIRS language studies in newborn/children/adults have been published. ► fNIRS features, advantages/limitations, and prospects for language studies are reported. Upon stimulation, real time maps of cortical hemodynamic responses can be obtained by non-invasive functional near-infrared spectroscopy (fNIRS) which measures changes in oxygenated and deoxygenated hemoglobin after positioning multiple sources and detectors over the human scalp. The current commercially available transportable fNIRS systems have a time resolution of 1–10Hz, a depth sensitivity of about 1.5cm, and a spatial resolution of about 1cm. The goal of this brief review is to report infants, children and adults fNIRS language studies. Since 1998, 60 studies have been published on cortical activation in the brain’s classic language areas in children/adults as well as newborns using fNIRS instrumentations of different complexity. In addition, the basic principles of fNIRS including features, strengths, advantages, and limitations are summarized in terms that can be understood even by non specialists. Future prospects of fNIRS in the field of language processing imaging are highlighted.
AbstractList Upon stimulation, real time maps of cortical hemodynamic responses can be obtained by non-invasive functional near-infrared spectroscopy (fNIRS) which measures changes in oxygenated and deoxygenated hemoglobin after positioning multiple sources and detectors over the human scalp. The current commercially available transportable fNIRS systems have a time resolution of 1-10Hz, a depth sensitivity of about 1.5cm, and a spatial resolution of about 1cm. The goal of this brief review is to report infants, children and adults fNIRS language studies. Since 1998, 60 studies have been published on cortical activation in the brain's classic language areas in children/adults as well as newborns using fNIRS instrumentations of different complexity. In addition, the basic principles of fNIRS including features, strengths, advantages, and limitations are summarized in terms that can be understood even by non-specialists. Future prospects of fNIRS in the field of language processing imaging are highlighted. [Copyright Elsevier Inc.]
Upon stimulation, real time maps of cortical hemodynamic responses can be obtained by non-invasive functional near-infrared spectroscopy (fNIRS) which measures changes in oxygenated and deoxygenated hemoglobin after positioning multiple sources and detectors over the human scalp. The current commercially available transportable fNIRS systems have a time resolution of 1-10 Hz, a depth sensitivity of about 1.5 cm, and a spatial resolution of about 1cm. The goal of this brief review is to report infants, children and adults fNIRS language studies. Since 1998, 60 studies have been published on cortical activation in the brain's classic language areas in children/adults as well as newborns using fNIRS instrumentations of different complexity. In addition, the basic principles of fNIRS including features, strengths, advantages, and limitations are summarized in terms that can be understood even by non specialists. Future prospects of fNIRS in the field of language processing imaging are highlighted.Upon stimulation, real time maps of cortical hemodynamic responses can be obtained by non-invasive functional near-infrared spectroscopy (fNIRS) which measures changes in oxygenated and deoxygenated hemoglobin after positioning multiple sources and detectors over the human scalp. The current commercially available transportable fNIRS systems have a time resolution of 1-10 Hz, a depth sensitivity of about 1.5 cm, and a spatial resolution of about 1cm. The goal of this brief review is to report infants, children and adults fNIRS language studies. Since 1998, 60 studies have been published on cortical activation in the brain's classic language areas in children/adults as well as newborns using fNIRS instrumentations of different complexity. In addition, the basic principles of fNIRS including features, strengths, advantages, and limitations are summarized in terms that can be understood even by non specialists. Future prospects of fNIRS in the field of language processing imaging are highlighted.
► Non-invasive fNIRS measures changes in oxygenated and deoxygenated hemoglobin over human scalp. ► Upon stimulation, real time maps of cortical hemodynamic responses can be obtained by fNIRS. ► So far, 60 fNIRS language studies in newborn/children/adults have been published. ► fNIRS features, advantages/limitations, and prospects for language studies are reported. Upon stimulation, real time maps of cortical hemodynamic responses can be obtained by non-invasive functional near-infrared spectroscopy (fNIRS) which measures changes in oxygenated and deoxygenated hemoglobin after positioning multiple sources and detectors over the human scalp. The current commercially available transportable fNIRS systems have a time resolution of 1–10Hz, a depth sensitivity of about 1.5cm, and a spatial resolution of about 1cm. The goal of this brief review is to report infants, children and adults fNIRS language studies. Since 1998, 60 studies have been published on cortical activation in the brain’s classic language areas in children/adults as well as newborns using fNIRS instrumentations of different complexity. In addition, the basic principles of fNIRS including features, strengths, advantages, and limitations are summarized in terms that can be understood even by non specialists. Future prospects of fNIRS in the field of language processing imaging are highlighted.
Upon stimulation, real time maps of cortical hemodynamic responses can be obtained by non-invasive functional near-infrared spectroscopy (fNIRS) which measures changes in oxygenated and deoxygenated hemoglobin after positioning multiple sources and detectors over the human scalp. The current commercially available transportable fNIRS systems have a time resolution of 1-10 Hz, a depth sensitivity of about 1.5 cm, and a spatial resolution of about 1 cm. The goal of this brief review is to report infants, children and adults fNIRS language studies. Since 1998, 60 studies have been published on cortical activation in the brain's classic language areas in children/adults as well as newborns using fNIRS instrumentations of different complexity. In addition, the basic principles of fNIRS including features, strengths, advantages, and limitations are summarized in terms that can be understood even by non specialists. Future prospects of fNIRS in the field of language processing imaging are highlighted. (Contains 4 tables and 2 figures.)
Upon stimulation, real time maps of cortical hemodynamic responses can be obtained by non-invasive functional near-infrared spectroscopy (fNIRS) which measures changes in oxygenated and deoxygenated hemoglobin after positioning multiple sources and detectors over the human scalp. The current commercially available transportable fNIRS systems have a time resolution of 1-10 Hz, a depth sensitivity of about 1.5 cm, and a spatial resolution of about 1cm. The goal of this brief review is to report infants, children and adults fNIRS language studies. Since 1998, 60 studies have been published on cortical activation in the brain's classic language areas in children/adults as well as newborns using fNIRS instrumentations of different complexity. In addition, the basic principles of fNIRS including features, strengths, advantages, and limitations are summarized in terms that can be understood even by non specialists. Future prospects of fNIRS in the field of language processing imaging are highlighted.
Author Bisconti, Silvia
Quaresima, Valentina
Ferrari, Marco
Author_xml – sequence: 1
  givenname: Valentina
  surname: Quaresima
  fullname: Quaresima, Valentina
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– sequence: 2
  givenname: Silvia
  surname: Bisconti
  fullname: Bisconti, Silvia
– sequence: 3
  givenname: Marco
  surname: Ferrari
  fullname: Ferrari, Marco
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ISSN 0093-934X
1090-2155
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Tue Nov 18 22:32:14 EST 2025
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Issue 2
Keywords Neuroimaging
Broca’s area
Language
Functional topography
Cerebral cortex activation
Speech
Functional brain activity
Near-infrared imaging
Near-infrared spectroscopy
Language English
License https://www.elsevier.com/tdm/userlicense/1.0
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Snippet ► Non-invasive fNIRS measures changes in oxygenated and deoxygenated hemoglobin over human scalp. ► Upon stimulation, real time maps of cortical hemodynamic...
Upon stimulation, real time maps of cortical hemodynamic responses can be obtained by non-invasive functional near-infrared spectroscopy (fNIRS) which measures...
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SubjectTerms Adult
Adults
Biochemistry
Brain
Brain - physiology
Brain Hemisphere Functions
Brain Mapping - methods
Broca’s area
Cerebral cortex activation
Child
Children
Diagnostic Tests
Functional brain activity
Functional topography
Futures (of Society)
Humans
Infant, Newborn
Infants
Language
Language Processing
Near-infrared imaging
Near-infrared spectroscopy
Neonates
Neuroimaging
Neurolinguistics
Scientific Research
Spectroscopy
Spectroscopy, Near-Infrared - methods
Speech
Title A brief review on the use of functional near-infrared spectroscopy (fNIRS) for language imaging studies in human newborns and adults
URI https://dx.doi.org/10.1016/j.bandl.2011.03.009
http://eric.ed.gov/ERICWebPortal/detail?accno=EJ966858
https://www.ncbi.nlm.nih.gov/pubmed/21507474
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