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Light propagation in NIR spectroscopy of the human brain
Vesa O. Korhonen
, Teemu S. Myllylä
, Mikhail Yu. Kirillin
,
Alexey P. Popov
, Alexander V. Bykov
, Anton V. Gorshkov
, Ekaterina A. Sergeeva
, Matti Kinnunen
, Vesa Kiviniemi
Not published at VTT
University of Oulu
Russian Academy of Sciences: Institute of Applied Physics
Nizhny Novgorod State Technical University
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
53
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Citations (Scopus)
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Keyphrases
Human Brain
100%
Light Propagation
100%
NIR Spectroscopy
100%
Cerebral Cortex
100%
Monte Carlo Simulation
66%
Near-infrared Spectroscopy
66%
Brain Tissue
66%
Forehead
66%
Source-detector Distance
66%
Optical Properties
33%
Optical Sensing
33%
Magnetic Resonance Imaging
33%
Optical Methods
33%
Phantom
33%
Oxygenation
33%
Brain Cortex
33%
Tissue Layer
33%
Tissue Phantom
33%
Phantom Measurements
33%
In Vivo Measurement
33%
Intralipid
33%
Multilayer Phantom
33%
Neural Activity
33%
Brain Oxygenation
33%
Oxyhemoglobin
33%
Deoxyhemoglobin
33%
INIS
spectroscopy
100%
humans
100%
brain
100%
light transmission
100%
tissues
66%
phantoms
50%
cerebral cortex
50%
simulation
33%
monte carlo method
33%
depth
33%
distance
33%
layers
16%
comparative evaluations
16%
thickness
16%
images
16%
morphology
16%
concentration
16%
coupling
16%
increasing
16%
optical properties
16%
vessels
16%
in vivo
16%
magnetic resonance
16%
accounting
16%
suspensions
16%
Neuroscience
Near Infrared Spectroscopy
100%
Cerebral Cortex
100%
Spectroscopy
66%
Monte Carlo Method
66%
Magnetic Resonance Imaging
33%
In Vivo
33%
Oxyhemoglobin
33%
Deoxyhemoglobin
33%
Medicine and Dentistry
near Infrared Spectroscopy
100%
Cerebral Cortex
100%
Monte Carlo Method
66%
Brain Tissue
66%
Oxyhemoglobin
33%
Intralipid
33%
Hemodynamic
33%
Brain Cortex
33%
Engineering
Light Propagation
100%
Human Brain
100%
Brain Tissue
100%
Experimental Result
50%
Test Subject
50%
Physics
Monte Carlo Method
100%
Magnetic Resonance
50%
Optical Method
50%
Optical Property
50%
Oxyhemoglobin
50%