Wide‐field Stokes polarimetric microscopy for second harmonic generation imaging

Author:

Uribe Castaño Leonardo12ORCID,Mirsanaye Kamdin12,Kontenis Lukas34,Krouglov Serguei12,Žurauskas Edvardas5,Navab Roya6,Yasufuku Kazuhiro67,Tsao Ming‐Sound6,Akens Margarete K.8910,Wilson Brian C.68ORCID,Barzda Virginijus123

Affiliation:

1. Department of Physics University of Toronto Toronto Ontario Canada

2. Department of Chemical and Physical Sciences University of Toronto Mississauga Mississauga Ontario Canada

3. Laser Research Centre, Faculty of Physics Vilnius University Vilnius Lithuania

4. Light Conversion Vilnius Lithuania

5. Department of Pathology Forensic Medicine and Pharmacology, Vilnius University Vilnius Lithuania

6. Princess Margaret Cancer Centre University Health Network Toronto Ontario Canada

7. Toronto General Hospital University Health Network Toronto Ontario Canada

8. Department of Medical Biophysics University of Toronto Toronto Ontario Canada

9. Techna Institute University Health Network Toronto Ontario Canada

10. Department of Surgery University of Toronto Toronto Ontario Canada

Abstract

AbstractWe employ wide‐field second harmonic generation (SHG) microscopy together with nonlinear Stokes polarimetry for quick ultrastructural investigation of large sample areas (700 μm × 700 μm) in thin histology sections. The Stokes vector components for SHG are obtained from the polarimetric measurements with incident and outgoing linear and circular polarization states. The Stokes components are used to construct the images of polarimetric parameters and deduce the maps of ultrastructural parameters of achiral and chiral nonlinear susceptibility tensor components ratios and cylindrical axis orientation in fibrillar materials. The large area imaging was employed for lung tumor margin investigations. The imaging shows reduced SHG intensity, increased achiral susceptibility ratio values, and preferential orientation of collagen strands along the boarder of tumor margin. The wide‐field Stokes polarimetric SHG microscopy opens a possibility of quick large area imaging of ultrastructural parameters of tissue collagen, which can be used for nonlinear histopathology investigations.

Funder

European Regional Development Fund

Natural Sciences and Engineering Research Council of Canada

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,General Biochemistry, Genetics and Molecular Biology,General Materials Science,General Chemistry

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