4.6 Article

Development of a polarization imaging method to detect paraffin-embedded pathology tissues before applying other techniques

Journal

JOURNAL OF BIOPHOTONICS
Volume 14, Issue 1, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/jbio.202000288

Keywords

biomedical optics; eye; imaging; polarization; Stokes parameters; tissue optics

Funding

  1. Banco Santander [CT27/16-CT28/16]
  2. Ministerio de Economia y Competitividad [TEC2013-40442]
  3. Ministerio de Sanidad, Servicios Sociales e Igualdad [PI06/0184 PS09/01762]
  4. Universidad Complutense de Madrid

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The article presents a biomedical diagnostic technique based on polarized light detection to visualize structural damage in paraffin-embedded tissues, aiding in the diagnosis of tissue abnormalities, particularly in cases where dietary folic acid deficiency affects developing embryos. Through this method, changes in tissues can be visualized and identified, allowing for comparison with a healthy control group.
The present article describes the development of a technique, applied to paraffin-embedded tissues, which uses three different wavelengths of monochromatic light (lambda 1 = 445 nm, lambda 2 = 540 nm and lambda 3 = 660 nm) for the measures of the degree of polarization, degree of linear polarization, degree of circular polarization and birefringence, all obtained from measurements of Stokes parameters by using polarized light. The goal of this study was to detect changes in developing embryonic mouse eye when pregnant mice fed diets without folic acid for variable periods compared with a healthy control group. We present a biomedical diagnostic technique based on polarized light detection applied to paraffin-embedded tissues to visualize the structural damage to aid us in the diagnosis before applying other techniques. Through this method, we can visualize and identify which parts of the tissue were altered with respect to the control group.

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