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Sergey Proskurin
Sergey Proskurin
Associate Professor, Tambov State Technical University
Verified email at tamb.ru - Homepage
Title
Cited by
Cited by
Year
Optical coherence tomography imaging depth enhancement by superficial skin optical clearing
SG Proskurin, IV Meglinski
Laser Physics Letters 4 (11), 824, 2007
1192007
Imaging of subcutaneous blood vessels and flow velocity profiles by optical coherence tomography
M Bonesi, SG Proskurin, IV Meglinski
Laser Physics 20, 891-899, 2010
832010
Determination of flow velocity vector based on Doppler shift and spectrum broadening with optical coherence tomography
SG Proskurin, Y He, RK Wang
Optics letters 28 (14), 1227-1229, 2003
682003
A new method of bone tissue measurement based upon light scattering
A Takeuchi, R Araki, SG Proskurin, Y Takahashi, Y Yamada, J Ishii, ...
Journal of Bone and Mineral Research 12 (2), 261-266, 1997
391997
Imaging of non-parabolic velocity profiles in converging flow with optical coherence tomography
SG Proskurin, IA Sokolova, RK Wang
Physics in Medicine & Biology 48 (17), 2907, 2003
362003
Three-dimensional representation of late-arriving photons for detecting inhomogeneities in diffuse optical tomography
AY Potlov, SG Proskurin, SV Frolov
Quantum Electronics 44 (2), 174, 2014
342014
Doppler optical coherence imaging of converging flow
SG Proskurin, Y He, RK Wang
Physics in Medicine & Biology 49 (7), 1265, 2004
342004
One specific velocity color mapping using optical coherence tomography
SG Proskurin, AY Potlov, SV Frolov
Journal of Biomedical Optics 20 (5), 051034-051034, 2015
332015
Doppler mapping of an alternating-sign flow with complex geometry using optical coherence tomography
SG Proskurin, AY Potlov, SV Frolov
Quantum Electronics 44 (1), 54, 2014
312014
Early-and late-arriving photons in diffuse optical tomography/Früh und spät ankommende Photonen in der diffusen optischen Tomographie
SG Proskurin, AY Potlov
Photonics & Lasers in Medicine 2 (2), 139-145, 2013
312013
Using late arriving photons for diffuse optical tomography of biological objects
SG Proskurin
Quantum Electronics 41 (5), 402, 2011
312011
Specific features of diffuse photon migration in highly scattering media with optical properties of biological tissues
SG Proskurin, AY Potlov, SV Frolov
Quantum Electronics 45 (6), 540, 2015
232015
Detection of an absorbing heterogeneity in a biological object during recording of scattered photons
SG Proskurin, AY Potlov, SV Frolov
Biomedical Engineering 46 (6), 219-223, 2013
222013
Compression elastography and endoscopic optical coherence tomography for biomechanical properties evaluation of cerebral arteries walls with aneurysm and their phantoms
SV Frolov, AY Potlov, TA Frolova, SG Proskurin
AIP Conference Proceedings 2140 (1), 2019
212019
Movement of the photon density normalized maximum in homogeneous and inhomogeneous media with tissue-like optical properties
AY Potlov, SV Frolov, SG Proskurin
Laser Physics 25 (3), 035601, 2015
212015
Absorption coefficient measurements of strongly scattering media using time-resolved transmittance of a short pulse in near-infrared (NIR) wavelength range
SG Proskurin, Y Yamada, Y Takahashi
Optical Review 2 (4), 292-297, 1995
191995
Localization of inhomogeneities in diffuse optical tomography based on late arriving photons
AY Potlov, SV Frolov, SG Proskurin
Optics and Spectroscopy 120, 9-19, 2016
172016
Laser Doppler velocimetry: in-vitro and in-vivo measurements of biological fluid flows in restricted volumes
AV Priezzhev, SG Proskurin
Laser interferometry IV: Computer-aided interferometry 1553, 502-514, 1992
171992
Color mapping of one specific velocity of a biological fluid flows with complex geometry using optical coherence tomography
AY Potlov, SV Frolov, SG Proskurin
Saratov Fall Meeting 2017: Optical Technologies in Biophysics and Medicine …, 2018
162018
An algorithm for improving the quality of structural images of turbid media in endoscopic optical coherence tomography
AY Potlov, SV Frolov, SG Proskurin
Saratov Fall Meeting 2017: Optical Technologies in Biophysics and Medicine …, 2018
162018
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