Publication | Open Access
Analysis of optimum conditions of depolarization imaging by polarization-sensitive optical coherence tomography in the human retina
24
Citations
45
References
2015
Year
EngineeringPolarization UniformityCoherenceBiomedical EngineeringTissue ImagingRetinaHuman RetinaBiomedical OpticComputational ImagingOptimum ConditionsOphthalmologyMedical ImagingBiophotonicsComputational Optical ImagingPolarization ImagingOptical ImagingSkin OpticsIntegrated Retinal TrackerBiomedical ImagingDepolarization ImagingNeuroscienceGlaucomaOptical Coherence TomographyMedicineRetinal BiologyTomography
Measurement and imaging of depolarization by polarization-sensitive optical coherence tomography (PS-OCT) requires averaging of Stokes vector elements within two- or three-dimensional (3-D) evaluation windows to obtain the degree of polarization uniformity (DOPU). By use of a PS-OCT system with an integrated retinal tracker, we analyze optimum conditions for depolarization imaging, data processing, and segmentation of depolarizing tissue in the human retina. The trade-offs between figures of merit like DOPU imaging sensitivity, efficiency, and susceptibility are evaluated in terms of 3-D resolution. The results are used for a new, detailed interpretation of PS-OCT high-resolution images of the human retinal pigment epithelium and Bruch’s membrane.
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