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Submicron scale tissue multifractal anisotropy in polarized laser light scattering

Authors :
Das, N. K. (Nandan Kumar)
Dey, R. (Rajib)
Chakraborty, S. (Semanti)
Panigrahi, P. K. (Prasanta K.)
Meglinski, I. (Igor)
Ghosh, N. (Nirmalya)
Das, N. K. (Nandan Kumar)
Dey, R. (Rajib)
Chakraborty, S. (Semanti)
Panigrahi, P. K. (Prasanta K.)
Meglinski, I. (Igor)
Ghosh, N. (Nirmalya)
Publication Year :
2018

Abstract

The spatial fluctuations of the refractive index within biological tissues exhibit multifractal anisotropy, leaving its signature as a spectral linear diattenuation of scattered polarized light. The multifractal anisotropy has been quantitatively assessed by the processing of relevant Mueller matrix elements in the Fourier domain, utilizing the Born approximation and subsequent multifractal analysis. The differential scaling exponent and width of the singularity spectrum appear to be highly sensitive to the structural multifractal anisotropy at the micron/sub-micron length scales. An immediate practical use of these multifractal anisotropy parameters was explored for non-invasive screening of cervical precancerous alterations ex vivo, with the indication of a strong potential for clinical diagnostic purposes.

Details

Database :
OAIster
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1103708345
Document Type :
Electronic Resource