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Optics Letters|August 2, 2024
Utilizing quantitative phase microscopy to localize fluorescence in three dimensions via the transport of intensity equationDeven K Gupta, Robert Highland, David A Miller, et al.Biomedical Optics Express|October 20, 2012
Phase-sensitive OCT imaging of multiple nanoparticle species using spectrally multiplexed single pulse photothermal excitationSanghoon Kim, Matthew T Rinehart, Hansang Park, et al.Biomedical Optics Express|January 25, 2011
Detection of early colorectal cancer development in the azoxymethane rat carcinogenesis model with Fourier domain low coherence interferometryFrancisco E Robles, Yizheng Zhu, Jin Lee, et al.Applied Optics|February 12, 2014
Fourier domain multispectral multiple scattering low coherence interferometryThomas E Matthews, Michael G Giacomelli, William J Brown, et al.Optics Letters|March 21, 2006
Fourier-domain angle-resolved low coherence interferometry through an endoscopic fiber bundle for light-scattering spectroscopyJohn W Pyhtila, Jeffrey D Boyer, Kevin J Chalut, et al.Optics Letters|April 19, 2007
Application of Mie theory to determine the structure of spheroidal scatterers in biological materialsJustin D Keener, Kevin J Chalut, John W Pyhtila, et al.Methods in Molecular Biology (Clifton, N.J.)|June 11, 2013
Three-dimensional molecular imaging with photothermal optical coherence tomographyMelissa C Skala, Matthew J Crow, Adam Wax, et al.Optics Letters|November 4, 2008
Application of the T-matrix method to determine the structure of spheroidal cell nuclei with angle-resolved light scatteringMichael G Giacomelli, Kevin J Chalut, Julie H Ostrander, et al.Journal of Biomedical Optics|July 10, 2010
Reflective interferometric chamber for quantitative phase imaging of biological sample dynamicsNatan T Shaked, Yizheng Zhu, Nima Badie, et al.Optica|October 12, 2020
Light scattering methods for tissue diagnosisZachary A Steelman, Derek S Ho, Kengyeh K Chu, et al.Pageof 16