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Panomsak Meemon

age ~47

from Fairfax, CA

Also known as:
  • Meemon Panomsak
Phone and address:
235 Bolinas Rd APT 5, Fairfax, CA 94930

Panomsak Meemon Phones & Addresses

  • 235 Bolinas Rd APT 5, Fairfax, CA 94930
  • Pittsford, NY
  • Rochester, NY
  • Orlando, FL
  • New York, NY

Us Patents

  • Systems And Methods For Performing Gabor-Domain Optical Coherence Microscopy

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  • US Patent:
    8340455, Dec 25, 2012
  • Filed:
    Mar 31, 2009
  • Appl. No.:
    12/415951
  • Inventors:
    Jannick Rolland - Orlando FL, US
    Panomsak Meemon - Orlando FL, US
  • Assignee:
    University of Central Florida Research Foundation, Inc. - Orlando FL
  • International Classification:
    G06K 9/40
    G01B 9/02
  • US Classification:
    382255, 356479
  • Abstract:
    In one embodiment, imaging a medium under evaluation includes generating acquired images of the medium, each acquired image comprising a cross-sectional image along a lateral and a depth direction of the medium that results from scanning the medium at a different depths, filtering each acquired image to remove out-of-focus portions of the images and generate filtered images, and merging the filtered images to form a high-resolution fused image.
  • Optical Coherence Tomography (Oct) Apparatus, Methods, And Applications

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  • US Patent:
    8363225, Jan 29, 2013
  • Filed:
    Jan 14, 2011
  • Appl. No.:
    13/006535
  • Inventors:
    Jannick P. Rolland - Pittsford NY, US
    Panomsak Meemon - Rochester NY, US
  • Assignee:
    University of Rochester - Rochester NY
  • International Classification:
    G01B 11/02
  • US Classification:
    356479, 356497
  • Abstract:
    A free-space Michelson Interferometer-based Dual Detection Frequency Domain-Optical Coherency Tomography (DD-FD-OCT) apparatus includes a non-polarizing beam splitter that can be used to misalign sample and reference beam paths to provide a stable π/2 phase shift between simultaneously detected interfering sample and reference beams to eliminate the mirror image created by Fourier transformation during image reconstruction. A hybrid fiber system Mach Zehnder Interferometer- and free-space Michelson Interferometer-based Dual Detection Frequency Domain-Doppler Optical Coherency Tomography (DD-FD-DOCT) apparatus provides higher power efficiency and thus better sensitivity compared to the free-space DD-FD-OCT. Both DD-FD-OCT systems enable functional imaging with the contrasts of Doppler and that of polarization, in addition to full range images simultaneously.
  • Dynamic Focus Optical Probes

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  • US Patent:
    20090147373, Jun 11, 2009
  • Filed:
    Oct 16, 2008
  • Appl. No.:
    12/252511
  • Inventors:
    Jannick Rolland - Chuluota FL, US
    Panomsak Meemon - Orlando FL, US
    Supraja Murali - Oviedo FL, US
  • Assignee:
    UNIVERSITY OF CENTRAL FLORIDA RESEARCH FOUNDATION, INC. - Orlando FL
  • International Classification:
    G02B 3/12
  • US Classification:
    359665
  • Abstract:
    In one embodiment, an optical probe includes a housing, and an optical system provided within the housing, the optical system having a dynamically adjustable focal length such that the optical system can be focused at different points spaced a variety of distances from the housing while the probe is in use.
  • Systems And Methods For Generating A Tunable Laser Beam

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  • US Patent:
    20090323738, Dec 31, 2009
  • Filed:
    Jun 30, 2009
  • Appl. No.:
    12/494713
  • Inventors:
    Peter Delfyett - Orlando FL, US
    Jannick Rolland - Pittsford NY, US
    Panomsak Meemon - Orlando FL, US
  • Assignee:
    UNIVERSITY OF CENTRAL FLORIDA RESEARCH FOUNDATION - Orlando FL
  • International Classification:
    H01S 3/10
  • US Classification:
    372 20
  • Abstract:
    Systems and methods of generating a tunable laser beam are disclosed. An example method includes: generating coherent optical beams from a plurality of semiconductor optical amplifiers (SOAs); combining the coherent optical beams into a combined coherent optical beam; and tuning the combined beam to a selected frequency range to output a coherent optical beam having only the selected frequency range. In some embodiments, the SOAs are arranged in parallel within a resonant cavity, and each coherent optical beam has a different center wavelength that overlaps in bandwidth with another one of the coherent optical beams.

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