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Updated: Jun 25, 2026

High-resolution Fiber-optic Microendoscopy for in situ Cellular Imaging
Published on: January 12, 2011
Fibre orientation contrast for depth-resolved identification of structural interfaces in birefringent tissue
Nate J Kemp1, Jesung Park, Haitham N Zaatari
1Department of Biomedical Engineering, The University of Texas at Austin, 1 University Station #C0800, Austin, TX 78712-1084, USA. natekemp@gmail.com
Abstract:
Incorporation of polarimetric sensitivity into optical coherence tomography can provide additional image contrast when structures of interest are optically anisotropic (e.g., fibrous tissue). We present a generalized technique based on polarization-sensitive optical coherence tomography to detect changes in depth-resolved fibre orientation and thus increase image contrast in multiple-layered birefringent tissues. A high contrast B-scan image of collagen fibre orientation is shown for a porcine intervertebral disc cartilage specimen that exhibited low backscattering intensity contrast. Interfaces in the annulus fibrosus identified using depth-resolved fibre orientation allowed quantification of lamellae thickness. Moreover, the technique detects changes in fibre orientation without intense processing needed to effectively quantify tissue retardation and diattenuation.
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