Literature DB >> 18323984

In vivo local determination of tissue optical properties: applications to human brain.

F Bevilacqua1, D Piguet, P Marquet, J D Gross, B J Tromberg, C Depeursinge.   

Abstract

Local and superficial near-infrared (NIR) optical-property characterization of turbid biological tissues can be achieved by measurement of spatially resolved diffuse reflectance at small source-detector separations (<1.4 mm). However, in these conditions the inverse problem, i.e., calculation of localized absorption and the reduced scattering coefficients, is necessarily sensitive to the scattering phase function. This effect can be minimized if a new parameter of the phase function gamma, which depends on the first and the second moments of the phase function, is known. If gamma is unknown, an estimation of this parameter can be obtained by the measurement, but the uncertainty of the absorption coefficient is increased. A spatially resolved reflectance probe employing multiple detector fibers (0.3-1.4 mm from the source) is described. Monte Carlo simulations are used to determine gamma, the reduced scattering and absorption coefficients from reflectance data. Probe performance is assessed by measurements on phantoms, the optical properties of which were measured by other techniques [frequency domain photon migration (FDPM) and spatially resolved transmittance]. Our results show that changes in the absorption coefficient, the reduced scattering coefficient, and gamma can be measured to within +/-0.005 mm(-1), +/-0.05 mm(-1), and +/-0.2, respectively. In vivo measurements performed intraoperatively on a human skull and brain are reported for four NIR wavelengths (674, 811, 849, 956 nm) when the spatially resolved probe and FDPM are used. The spatially resolved probe shows optimum measurement sensitivity in the measurement volume immediately beneath the probe (typically 1 mm(3) in tissues), whereas FDPM typically samples larger regions of tissues. Optical-property values for human skull, white matter, scar tissue, optic nerve, and tumors are reported that show distinct absorption and scattering differences between structures and a dependence on the phase-function parameter gamma.

Entities:  

Year:  1999        PMID: 18323984     DOI: 10.1364/ao.38.004939

Source DB:  PubMed          Journal:  Appl Opt        ISSN: 1559-128X            Impact factor:   1.980


  95 in total

Review 1.  A review of in-vivo optical properties of human tissues and its impact on PDT.

Authors:  Julia L Sandell; Timothy C Zhu
Journal:  J Biophotonics       Date:  2011-11       Impact factor: 3.207

2.  Limitations of the commonly used simplified laterally uniform optical fiber probe-tissue interface in Monte Carlo simulations of diffuse reflectance.

Authors:  Peter Naglič; Franjo Pernuš; Boštjan Likar; Miran Bürmen
Journal:  Biomed Opt Express       Date:  2015-09-11       Impact factor: 3.732

3.  OptogenSIM: a 3D Monte Carlo simulation platform for light delivery design in optogenetics.

Authors:  Yuming Liu; Steven L Jacques; Mehdi Azimipour; Jeremy D Rogers; Ramin Pashaie; Kevin W Eliceiri
Journal:  Biomed Opt Express       Date:  2015-11-16       Impact factor: 3.732

4.  Evaluating real-time image reconstruction in diffuse optical tomography using physiologically realistic test data.

Authors:  Sabrina Brigadoi; Samuel Powell; Robert J Cooper; Laura A Dempsey; Simon Arridge; Nick Everdell; Jeremy Hebden; Adam P Gibson
Journal:  Biomed Opt Express       Date:  2015-11-09       Impact factor: 3.732

5.  How short is short? Optimum source-detector distance for short-separation channels in functional near-infrared spectroscopy.

Authors:  Sabrina Brigadoi; Robert J Cooper
Journal:  Neurophotonics       Date:  2015-05-26       Impact factor: 3.593

Review 6.  Evolution of optogenetic microdevices.

Authors:  Rajas P Kale; Abbas Z Kouzani; Ken Walder; Michael Berk; Susannah J Tye
Journal:  Neurophotonics       Date:  2015-06-25       Impact factor: 3.593

7.  Optode Design Space Exploration for Clinically-robust Non-invasive Fetal Oximetry.

Authors:  Daniel D Fong; Vivek J Srinivasan; Kourosh Vali; Soheil Ghiasi
Journal:  ACM Trans Embed Comput Syst       Date:  2019-10-08       Impact factor: 1.193

8.  Pulsed 808-nm infrared laser stimulation of the auditory nerve in guinea pig cochlea.

Authors:  Nan Xia; Xiao Y Wu; Xing Wang; Zong X Mou; Man Q Wang; Xin Gu; Xiao L Zheng; Wen S Hou
Journal:  Lasers Med Sci       Date:  2013-05-28       Impact factor: 3.161

Review 9.  Diffuse optical imaging using spatially and temporally modulated light.

Authors:  Thomas D O'Sullivan; Albert E Cerussi; David J Cuccia; Bruce J Tromberg
Journal:  J Biomed Opt       Date:  2012-07       Impact factor: 3.170

10.  Measuring the optical characteristics of medulloblastoma with optical coherence tomography.

Authors:  Barry Vuong; Patryk Skowron; Tim-Rasmus Kiehl; Matthew Kyan; Livia Garzia; Cuiru Sun; Michael D Taylor; Victor X D Yang
Journal:  Biomed Opt Express       Date:  2015-03-25       Impact factor: 3.732

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