Patents by Inventor Steven J. Robles

Steven J. Robles has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 7379601
    Abstract: Complex multidimensional datasets generated by digital imaging spectroscopy can be organized and analyzed by applying software and computer-based methods comprising sorting algorithms. Combinations of these algorithms to images and graphical data, allow pixels or features to be rapidly and efficiently classified into meaningful groups according to defined criteria. Multiple rounds of pixel or feature selection may be performed based on independent sorting criteria. In one embodiment sorting by spectral criteria (e.g., intensity at a given wavelength) is combined with sorting by temporal criteria (e.g., absorbance at a given time) to identify microcolonies of recombinant organisms harboring mutated genes encoding enzymes having desirable kinetic attributes and substrate specificity. Restriction of the set of pixels analyzed in a subsequent sort based on criteria applied in an earlier sort (“sort and lock” analyses) minimize computational and storage resources.
    Type: Grant
    Filed: May 17, 2007
    Date of Patent: May 27, 2008
    Assignee: Kairos-Scientific Inc.
    Inventors: Mary Mei-Iing Yang, Edward J. Bylina, William Joseph Coleman, Michael Robert Dilworth, Steven J. Robles, Douglas Charles Youvan
  • Patent number: 6834122
    Abstract: Complex multidimensional datasets generated by digital imaging spectroscopy can be organized and analyzed by applying software and computer-based methods comprising sorting algorithms. Combinations of these algorithms to images and graphical data, allow pixels or features to be rapidly and efficiently classified into meaningful groups according to defined criteria. Multiple rounds of pixel or feature selection may be performed based on independent sorting criteria. In one embodiment sorting by spectral criteria (e.g., intensity at a given wavelength) is combined with sorting by temporal criteria (e.g., absorbance at a given time) to identify microcolonies of recombinant organisms harboring mutated genes encoding enzymes having desirable kinetic attributes and substrate specificity. Restriction of the set of pixels analyzed in a subsequent sort based on criteria applied in an earlier sort (“sort and lock” analyses) minimize computational and storage resources.
    Type: Grant
    Filed: January 22, 2001
    Date of Patent: December 21, 2004
    Assignee: Kairos Scientific, Inc.
    Inventors: Mary M. Yang, Edward J. Bylina, William J. Coleman, Michael R. Dilworth, Steven J. Robles, Douglas C. Youvan
  • Patent number: 6738502
    Abstract: The present invention provides an instrument and methods for a multispectral optical technique that can simultaneously classify individual biological cells within mixed populations. This invention, known as Multispectral Taxonomic Identification (MTID), shows that microscopy can be combined with a software analysis program to measure and categorize the fluorescence and other spectroscopically identifiable signals from complex populations of cells in situ, without cultivation. The invention thus enables high-throughput screening of cells for taxonomic classification.
    Type: Grant
    Filed: June 2, 2000
    Date of Patent: May 18, 2004
    Assignee: Kairos Scientific, Inc.
    Inventors: William Coleman, Michael A. Tanner, Christopher M. Silva, Edward Bylina, Steven J. Robles, Michael R. Dilworth, Douglas C. Youvan, Mary M. Yang
  • Publication number: 20010036304
    Abstract: Complex multidimensional datasets generated by digital imaging spectroscopy can be organized and analyzed by applying software and computer-based methods comprising sorting algorithms. Combinations of these algorithms to images and graphical data, allow pixels or features to be rapidly and efficiently classified into meaningful groups according to defined criteria. Multiple rounds of pixel or feature selection may be performed based on independent sorting criteria. In one embodiment sorting by spectral criteria (e.g., intensity at a given wavelength) is combined with sorting by temporal criteria (e.g., absorbance at a given time) to identify microcolonies of recombinant organisms harboring mutated genes encoding enzymes having desirable kinetic attributes and substrate specificity. Restriction of the set of pixels analyzed in a subsequent sort based on criteria applied in an earlier sort (“sort and lock” analyses) minimize computational and storage resources.
    Type: Application
    Filed: January 22, 2001
    Publication date: November 1, 2001
    Inventors: Mary M. Yang, Edward J. Bylina, William J. Coleman, Michael R. Dilworth, Steven J. Robles, Douglas C. Youvan