articleTop 10% cited
Estimation of optical pathlength through tissue from direct time of flight measurement
Physics in Medicine and Biology · 1988 · Vol. 33(12) · pp. 1433–1442
David T. Delpy✉(University College London)M. Cope(University College London)Pieter van der Zee(University College London)Simon Arridge(University College London)Susan Wray(University College London)J S Wyatt(University College London)
Abstract
Quantitation of near infrared spectroscopic data in a scattering medium such as tissue requires knowledge of the optical pathlength in the medium. This can now be estimated directly from the time of flight of picosecond length light pulses. Monte Carlo modelling of light pulses in tissue has shown that the mean value of the time dispersed light pulse correlates with the pathlength used in quantitative spectroscopic calculations. This result has been verified in a phantom material. Time of flight measurements of pathlength across the rat head give a pathlength of 5.3 +/- 0.3 times the head diameter.
Optical Imaging and Spectroscopy TechniquesNon-Invasive Vital Sign MonitoringPhotoacoustic and Ultrasonic ImagingMonte Carlo methodPicosecondOpticsTime of flightImaging phantomMaterials scienceScatteringNear-infrared spectroscopyPhysicsLaser
MeSH terms
AnimalsBrainLightModels, BiologicalMonte Carlo MethodRats, Inbred StrainsTransilluminationRats
Funding
- Wellcome Trust
- Hamamatsu Photonics K.K.
Citations
2,212
FWCI
8.81
field-weighted impact
References
19
Percentile
98%
vs. same field & year
Citations per year
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References
Characterization of the near infrared absorption spectra of cytochrome aa3 and haemoglobin for the non-invasive monitoring of cerebral oxygenation
Biochimica et Biophysica Acta (BBA) - Bioenergetics · 1988 · 910 citations
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