SteponaviciusR.ThennadilS.N., “Extraction of chemical information of suspensions using radiative transfer theory to remove multiple scattering effects: Application to a model two-component system”, Anal. Chem.81, 7713–7723 (2009). doi: 10.1021/ac9011667
2.
ThennadilS.N.MartensH.KohlerA., “Physics-based multiplicative scatter correction approaches for improving the performance of calibration models”, Appl. Spectrosc.60, 315–321 (2006). doi: 10.1366/000370206776342535
3.
SteponaviciusR.ThennadilS.N., “Extraction of chemical information of suspensions using radiative transfer theory to remove multiple scattering effects: Application to a model multicomponent system”, Anal. Chem.83(6), 1931–1937 (2011). doi: 10.1021/ac1024073
4.
SteponaviciusR.ThennadilS.N., “Full Correction of scattering effects by using the radiative transfer theory for improved quantitative analysis of absorbing species in suspensions”, Appl. Spectrosc.67, 526–535 (2013). doi: 10.1366/12-06735
5.
IshimaruA., Wave Propagation and Scattering in Random Media. IEEE Press (1997).
6.
AllenT., Particle Size Measurement, 5th Edn, Vol. 1—Powder Sampling and Particle Size Measurement. Chapman & Hall (1997).
7.
CarforaM.F.EspositoF.SerioC., “Numerical methods for retrieving aerosol size distributions from optical measurements of solar radiation”, J. Aerosol Sci. 29, 1225–1236 (1998). doi: 10.1016/S0021-8502(98)00010-X
8.
TroyT.L.ThennadilS.N., “Optical properties of human skin in the NIR wavelength range of 1000–2200nm”, J. Biomed. Optics6, 167–176 (2001). doi: 10.1117/1.1344191
9.
PrahlS.A., “The adding-doubling method”, in Optical Thermal Response of Laser Irradiated Tissue, Ed by WelchA.J.GemertM.J.C., Plenum Press, New York, pp. 101–129 (1995). doi: 10.1007/978-1-4757-6092-7 5
10.
NicholsM.G.HullE.L.FosterT.H., “Design and testing of a white-light, steady-state diffuse reflectance spectrometer for determination of optical properties of highly scattering systems”, Appl. Optics36, 93–104 (1997). doi: 10.1364/AO.36.000093
11.
DoornbosR.M.P., “The determination of in vivo human tissue optical properties and absolute chromophore concentrations using spatially resolved steady-state diffuse reflectance spectroscopy”, Physics in Medicine and Biology, 44(4) 967–981 (1999). doi: 10.1088/0031-9155/44/4/012
12.
HjalmarssonP.ThennadilS.N., “Determination of glucose concentration in tissue-like material using spatially resolved steady-state diffuse reflectance spectroscopy”, in Proceedings of SPIE. Complex dynamics and fluctuations in biomedical photonics V, Ed by TuchinV.V.WangL.V., Vol. 6855, paper 685508 (Jan 2008).