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Biomolecules | Free Full-Text | Non-Invasive Retinal Blood Vessel Wall Measurements with Polarization-Sensitive Optical Coherence Tomography for Diabetes Assessment: A Quantitative Study
4.2. Weaknesses Note that for each eye, at least four blood vessels were analyzed and that often both eyes were imaged. Optical properties of the investigated blood vessels between diabetic and healthy subjects were statistically well separated to limit the number of patients to five subjects in diabetic cohort and ten in healthy category. The number of subjects recruited in our study closely matches those from one of the most recent glaucoma and diabetic retinopathy clinical studies [62].
Optical dosimeter for selective retinal therapy based on multi-port fiber-optic interferometry
M. Kim, Y. G. Park, S. H. Jeon, S. Y. Choi, and Y. J. Roh, “The efficacy of selective retina therapy for diabetic macular edema based on pretreatment central foveal thickness,” Lasers Med. Sci. 35(8), 1781–1790 (2020). [Crossref] Y. Wang, Y. Hu, B. Peng, H. Zhou, Y. Zhao, and Z. Ma, “Complete-noncontact photoacoustic microscopy by detection of initial pressures using a 3×3 coupler-based fiber-optic interferometer,” Biomed. Opt. Express 11(1), 505–516 (2020). [Crossref] P. Deladurantaye, S. Méthot, O. Mermut, P.
Polarization properties of retinal blood vessel walls measured with polarization sensitive optical coherence tomography
D. C. Adams, M. V. Szabari, D. Lagares, A. F. McCrossan, L. P. Hariri, A. M. Tager, and M. J. Suter, “Assessing the progression of systemic sclerosis by monitoring the tissue optic axis using PS-OCT,” Sci. Rep. 10(1), 2561 (2020). [Crossref] P. Tang and R. K. Wang, “Polarization sensitive optical coherence tomography for imaging microvascular information within living tissue without polarization-induced artifacts,” Biomed. Opt. Express 11(11), 6379–6388 (2020). [Crossref] G. J. Ughi, M. G. Marosfoi, R. M. King, J.
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