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Role of scattering and birefringence in phase retardation revealed by locus of Stokes vector on Poincaré sphere
- Source :
- Journal of Biomedical Optics, Borovkova, M, Bykov, A, Popov, A & Meglinski, I 2020, ' Role of scattering and birefringence in phase retardation revealed by locus of Stokes vector on Poincaré sphere ', Journal of Biomedical Optics, vol. 25, no. 5, pp. 1-13 . https://doi.org/10.1117/1.JBO.25.5.057001
- Publication Year :
- 2020
- Publisher :
- SPIE-Intl Soc Optical Eng, 2020.
-
Abstract
- Significance: Biological tissues are typically characterized by high anisotropic scattering and may also exhibit linear form birefringence. Both scattering and birefringence bias the phase shift between transverse electric field components of polarized light. These phase alterations are associated with particular structural malformations in the tissue. In fact, the majority of polarization-based techniques are unable to distinguish the nature of the phase shift induced by birefringence or scattering of light. Aim: We explore the distinct contributions of scattering and birefringence in the phase retardation of circularly polarized light propagated in turbid tissue-like scattering medium. Approach: The circularly polarized light in frame of Stokes polarimetry approach is used for the screening of biotissue phantoms and chicken skin samples. The change of optical properties in chicken skin is accomplished by optical clearing, which reduces scattering, and mechanical stretch, which induces birefringence. The change of optical properties of skin tissue is confirmed by spectrophotometric measurements and second-harmonic generation imaging. Results: The contributions of scattering and birefringence in the phase retardation of circularly polarized light propagated in biological tissues are distinguished by the locus of the Stokes vector mapped on the Poincaré sphere. The phase retardation of circularly polarized light due to scattering alterations is assessed. The value of birefringence in chicken skin is estimated as 0.3 × 10− 3, which agrees with alternative studies. The change of birefringence of skin tissue due to mechanical stretch in the order of 10− 6 is detected. Conclusions: While the polarimetric parameters on their own do not allow distinguishing the contributions of scattering and birefringence, the resultant Stokes vector trajectory on the Poincaré sphere reveals the role of scattering and birefringence in the total phase retardation. The described approach, applied independently or in combination with Mueller polarimetry, can be beneficial for the advanced characterization of various types of malformations within biological tissues.
- Subjects :
- Diagnostic Imaging
Paper
skin
Poincaré sphere
Physics::Medical Physics
Biomedical Engineering
Polarimetry
Phase (waves)
Physics::Optics
01 natural sciences
Light scattering
010309 optics
Biomaterials
symbols.namesake
Optics
0103 physical sciences
tissue phantoms
Stokes parameters
010306 general physics
Circular polarization
Physics
Birefringence
birefringence
Phantoms, Imaging
Scattering
business.industry
Spectrum Analysis
scattering
Polarization (waves)
Atomic and Molecular Physics, and Optics
Electronic, Optical and Magnetic Materials
Sensing
symbols
Anisotropy
business
optical polarimetry
Subjects
Details
- ISSN :
- 10833668
- Volume :
- 25
- Database :
- OpenAIRE
- Journal :
- Journal of Biomedical Optics
- Accession number :
- edsair.doi.dedup.....955e9961fa834022e981ab591fe2dcb9