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David D Sampson

Showing results (11-20 of 140) with videos related to

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Optics Express|March 26, 2014
A compact source condition for modelling focused fields using the pseudospectral time-domain methodPeter R T Munro, Daniel Engelke, David D Sampson
Biomedical Optics Express|February 19, 2019
Short-time series optical coherence tomography angiography and its application to cutaneous microvasculatureQiang Wang, Peijun Gong, Barry Cense, et al.
Physiology (Bethesda, Md.)|September 3, 2014
Optical coherence tomography in respiratory science and medicine: from airways to alveoliRobert A McLaughlin, Peter B Noble, David D Sampson
Optics Letters|January 5, 2006
Spatially resolved Fourier holographic light scattering angular spectroscopySergey A Alexandrov, Timothy R Hillman, David D Sampson
Optics Letters|November 23, 2007
Real-time dispersion compensation in scanning interferometryElwyn D J Smith, Andrei V Zvyagin, David D Sampson
Biomedical Optics Express|October 25, 2019
Recent progress in optical probing and manipulation of tissue: introductionKirill V Larin, Dan Zhu, Alexander Priezzhev, et al.
Journal of Biomedical Optics|December 20, 2017
Special Section Guest Editorial: Commemorating 25 Years of Optical Coherence Tomography: a Perspective on Biomedical ApplicationsDavid D Sampson, Peter Andersen, Ton van Leeuwen, et al.
Journal of the Optical Society of America. A, Optics, Image Science, and Vision|February 7, 2003
Delay and dispersion characteristics of a frequency-domain optical delay line for scanning interferometryAndrei V Zvyagin, Elwyn D J Smith, David D Sampson
Optics Letters|February 4, 2014
Energy-efficient low-Fresnel-number Bessel beams and their application in optical coherence tomographyDirk Lorenser, C Christian Singe, Andrea Curatolo, et al.
Optics Express|June 25, 2009
Modified discrete particle model of optical scattering in skin tissue accounting for multiparticle scatteringDirk H P Schneiderheinze, Timothy R Hillman, David D Sampson
Pageof 14

Showing results (11-20 of 140) with videos related to

Sort By:
Pageof 14
Optics Express|March 26, 2014
A compact source condition for modelling focused fields using the pseudospectral time-domain methodPeter R T Munro, Daniel Engelke, David D Sampson
Biomedical Optics Express|February 19, 2019
Short-time series optical coherence tomography angiography and its application to cutaneous microvasculatureQiang Wang, Peijun Gong, Barry Cense, et al.
Physiology (Bethesda, Md.)|September 3, 2014
Optical coherence tomography in respiratory science and medicine: from airways to alveoliRobert A McLaughlin, Peter B Noble, David D Sampson
Optics Letters|January 5, 2006
Spatially resolved Fourier holographic light scattering angular spectroscopySergey A Alexandrov, Timothy R Hillman, David D Sampson
Optics Letters|November 23, 2007
Real-time dispersion compensation in scanning interferometryElwyn D J Smith, Andrei V Zvyagin, David D Sampson
Biomedical Optics Express|October 25, 2019
Recent progress in optical probing and manipulation of tissue: introductionKirill V Larin, Dan Zhu, Alexander Priezzhev, et al.
Journal of Biomedical Optics|December 20, 2017
Special Section Guest Editorial: Commemorating 25 Years of Optical Coherence Tomography: a Perspective on Biomedical ApplicationsDavid D Sampson, Peter Andersen, Ton van Leeuwen, et al.
Journal of the Optical Society of America. A, Optics, Image Science, and Vision|February 7, 2003
Delay and dispersion characteristics of a frequency-domain optical delay line for scanning interferometryAndrei V Zvyagin, Elwyn D J Smith, David D Sampson
Optics Letters|February 4, 2014
Energy-efficient low-Fresnel-number Bessel beams and their application in optical coherence tomographyDirk Lorenser, C Christian Singe, Andrea Curatolo, et al.
Optics Express|June 25, 2009
Modified discrete particle model of optical scattering in skin tissue accounting for multiparticle scatteringDirk H P Schneiderheinze, Timothy R Hillman, David D Sampson
Pageof 14