Open Access
Polarized light scattering
R. G. Johnston,S. B. Singham,G. C. Salzman +2 more
- Vol. 5, Iss: 3, pp 171-192
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The article was published on 1988-01-01 and is currently open access. It has received 27 citations till now. The article focuses on the topics: Light scattering & Polarized light microscopy.read more
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Polarized light interaction with tissues
TL;DR: The substantial reduction of light scattering multiplicity at tissue optical clearing that leads to a lesser influence of scattering on the measured intrinsic polarization properties of the tissue and allows for more precise quantification of these properties is demonstrated.
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Significant contribution of large particles to optical backscattering in the open ocean
TL;DR: In this article, the authors evaluated the relationship between particle size distribution and particle backscattering coefficient (bbp), a property retrievable from space, and demonstrated that satellite-derived bbpcould provide similar information on phytoplankton biomass in the open ocean as particle beam-attenuation coefficient.
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Mueller matrix decomposition for polarized light assessment of biological tissues
Nirmalya Ghosh,Michael F. G. Wood,Shu-Hong Li,Richard D. Weisel,Brian C. Wilson,Ren-Ke Li,I. Alex Vitkin +6 more
TL;DR: The methodology is validated theoretically via a novel polarized‐light propagation model, and experimentally in tissue simulating phantoms, to achieve the objective of monitoring of changes in myocardial tissues following regenerative stem cell therapy and non‐invasive blood glucose measurements through chirality‐induced rotation of the light's linear polarization.
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Coherent optical techniques for the analysis of tissue structure and dynamics.
TL;DR: In this paper, the authors summarized the description of speckle-correlation, speck-interferometric, and polarimetric methods and instruments designed for various tissue structure imaging and their optical and dynamical parameter monitoring.
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Tissue Optics and Photonics: Light-Tissue Interaction
TL;DR: In this paper, the authors describe light-tissue interactions themselves that caused by tissue dispersion, scattering, and absorption properties, including light reflection and refraction, absorption, elastic, and quasi-elastic scattering.