Patents by Inventor Eric S. Nordman

Eric S. Nordman 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).

  • Publication number: 20160011186
    Abstract: There is disclosed a system for electrical charge detection comprising a nanoFET device. Also disclosed is a method of electrical charge detection for single molecule sequencing. The method includes attaching a macromolecule or assemblies thereof to a gate of a nanoFET device and flowing in a solution of charge tags, where a charge tag includes a nucleotide attached to a charge complex. The method also includes incorporating one charge tag into the macromolecule or assemblies thereof and cleaving the charge tags from the macromolecule or assemblies thereof. The method further includes detecting at least one of current and voltage from the nanoFET device.
    Type: Application
    Filed: September 24, 2015
    Publication date: January 14, 2016
    Inventors: Mark F. OLDHAM, Eric S. NORDMAN
  • Patent number: 9187783
    Abstract: A method comprises magnetically holding a bead carrying biological material (e.g., nucleic acid, which may be in the form of DNA fragments or amplified DNA) in a specific location of a substrate, and applying an electric field local to the bead to isolate the biological material or products or byproducts of reactions of the biological material. For example, the bead is isolated from other beads having associated biological material. The electric field in various embodiments concentrates reagents for an amplification or sequencing reaction, and/or concentrates and isolates detectable reaction by-products. For example, by isolating nucleic acids around individual beads, the electric field can allow for clonal amplification, as an alternative to emulsion PCR. In other embodiments, the electric field isolates a nanosensor proximate to the bead, to facilitate detection of at least one of local pH change, local conductivity change, local charge concentration change and local heat.
    Type: Grant
    Filed: October 4, 2011
    Date of Patent: November 17, 2015
    Assignee: GENAPSYS, INC.
    Inventors: Hesaam Esfandyarpour, Mark F. Oldham, Eric S. Nordman, Kosar Baghbani Parizi
  • Patent number: 9151751
    Abstract: There is disclosed a system for electrical charge detection comprising a nanoFET device. Also disclosed is a method of electrical charge detection for single molecule sequencing. The method includes attaching a macromolecule or assemblies thereof to a gate of a nanoFET device and flowing in a solution of charge tags, where a charge tag includes a nucleotide attached to a charge complex. The method also includes incorporating one charge tag into the macromolecule or assemblies thereof and cleaving the charge tags from the macromolecule or assemblies thereof. The method further includes detecting at least one of current and voltage from the nanoFET device.
    Type: Grant
    Filed: June 30, 2008
    Date of Patent: October 6, 2015
    Assignee: Applied Biosystems, LLC
    Inventors: Mark F. Oldham, Eric S. Nordman
  • Patent number: 8969090
    Abstract: In some embodiments, an analyte detection system is provided that includes a nanochannel, an electrode arrangement, and a plurality of nanoFET devices disposed in the nanochannel. A plurality of nucleic acid base detection components can be used that include a plurality of nanopores, a plurality of nanochannels, a plurality of hybridization probes, combinations thereof, and the like. According to other embodiments of the present teachings, different coded molecules are hybridized to a target DNA molecule and used to detect the presence of various sequences along the target molecule. A kit including mixtures of coded molecules is also provided. In some embodiments, devices including nanochannels, nanopores, and the like, are used for manipulating movement of DNA molecules, for example, in preparation for a DNA sequencing detection. Nanopore structures and methods of making the same are also provided as are methods of nucleic acid sequencing using the nanopore structures.
    Type: Grant
    Filed: January 4, 2011
    Date of Patent: March 3, 2015
    Assignee: Life Technologies Corporation
    Inventors: Hongye Sun, Eric S. Nordman, Mark F. Oldham, John R. O'Neill, Charles Connell, Umberto Ulmanella, Aldrich N. K. Lau, Theofilos Kotseroglou, Kenneth J. Livak
  • Publication number: 20140315206
    Abstract: A scanning detection system is provided wherein emissions from locations in a flow cell are detected. In some embodiments, the system can comprise an excitation source, a photocleavage source, and modulating optics configured to cause an excitation beam generated by the excitation source to irradiate a first group of the fixed locations and to cause a photocleavage beam generated by the photocleavage source to irradiate a second group of the fixed locations, which is separate and apart from the first group of fixed locations. Methods of detecting sequencing reactions using such a system are also provided.
    Type: Application
    Filed: July 3, 2014
    Publication date: October 23, 2014
    Inventors: Mark F. OLDHAM, Eric S. NORDMAN, Hongye SUN, Steven J. BOEGE
  • Patent number: 8834797
    Abstract: A scanning detection system is provided in which emissions from locations in a flow cell are detected. In some embodiments, the system can include an excitation source, a photocleavage source, and modulating optics configured to cause an excitation beam generated by the excitation source to irradiate a first group of the fixed locations and to cause a photocleavage beam generated by the photocleavage source to irradiate a second group of the fixed locations, which is separate and apart from the first group of fixed locations. Methods of detecting sequencing reactions using such a system are also provided.
    Type: Grant
    Filed: April 6, 2009
    Date of Patent: September 16, 2014
    Assignee: Life Technologies Corporation
    Inventors: Mark F. Oldham, Eric S. Nordman, Hongye Sun, Steven J. Boege
  • Publication number: 20140235457
    Abstract: The invention relate to systems and methods for sequencing polynucleotides, as well as detecting reactions and binding events involving other biological molecules. The systems and methods may employ chamber-free devices and nanosensors to detect or characterize such reactions in high-throughput. Because the system in many embodiments is reusable, the system can be subject to more sophisticated and improved engineering, as compared to single use devices.
    Type: Application
    Filed: May 29, 2012
    Publication date: August 21, 2014
    Applicant: GENAPSYS, INC.
    Inventors: Hesaam Esfandyarpour, Kosar Baghbani Parazi, Mark F. Oldham, Eric S. Nordman, Richard T. Reel, Susanne Baumhueter, Cheryl Heiner, Frank Lee
  • Publication number: 20140057339
    Abstract: The invention relate to systems and methods for sequencing polynucleotides, as well as detecting reactions and binding events involving other biological molecules. The systems and methods may employ chamber-free devices and nanosensors to detect or characterize such reactions in high-throughput. Because the system in many embodiments is reusable, the system can be subject to more sophisticated and improved engineering, as compared to single use devices.
    Type: Application
    Filed: March 15, 2013
    Publication date: February 27, 2014
    Applicant: GENAPSYS INC.
    Inventors: Hesaam Esfandyarpour, Kosar Baghbani Parazi, Mark F. Oldham, Eric S. Nordman, Richard T. Reel, Susanne Baumhueter, Cheryl Heiner, Frank Lee
  • Publication number: 20130011842
    Abstract: An apparatus for detecting labeled beads is provided. The apparatus can include: one or more irradiation sources disposed for irradiating the one or more detection zones with radiation; at least one detector disposed for collecting charges corresponding to light signals emitted from labeled beads in the one or more detection zones, which have been excited by the radiation; and a system coupled to the at least one detector for effecting time delay integration of the charges by accumulating the charges before reading the charges at the output of the at least one detector.
    Type: Application
    Filed: September 14, 2012
    Publication date: January 10, 2013
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Mark F. OLDHAM, Eric S. Nordman, Richard T. Reel, John S. Shigeura, Janice Shigeura
  • Publication number: 20120248334
    Abstract: System and method for fluorescent light excitation and detection from samples to enhance the numerical aperture and/or reduce the cross-talk of the fluorescent light.
    Type: Application
    Filed: December 28, 2011
    Publication date: October 4, 2012
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Richard T. Reel, Eric S. Nordman, Tomoyuki Sakai, Satoshi Takahashi, Ryoji Inaba
  • Publication number: 20120218554
    Abstract: System and method for fluorescent light excitation and detection from samples to enhance the numerical aperture and/or reduce the cross-talk of the fluorescent light.
    Type: Application
    Filed: May 7, 2012
    Publication date: August 30, 2012
    Applicant: APPLIED BIOSYSTEMS, LLC
    Inventors: Richard T. REEL, Eric S. NORDMAN
  • Publication number: 20120212740
    Abstract: An apparatus for detecting labeled beads is provided. The apparatus can include: one or more irradiation sources disposed for irradiating the one or more detection zones with radiation; at least one detector disposed for collecting charges corresponding to light signals emitted from labeled beads in the one or more detection zones, which have been excited by the radiation; and a system coupled to the at least one detector for effecting time delay integration of the charges by accumulating the charges before reading the charges at the output of the at least one detector.
    Type: Application
    Filed: April 9, 2012
    Publication date: August 23, 2012
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Mark E. OLDHAM, Eric S. NORDMAN, Richard T. REEL, John S. SHIGEURA, Janice G. SHIGEURA
  • Patent number: 8246806
    Abstract: An electrophoresis apparatus includes a multi-capillary array having a liquid or solid disposed between the capillaries of the array. The liquid or solid exhibits a refractive index higher than that of air and less than that of water and reduces the amount of laser beams scattered by the capillaries. Also provided are methods of adjusting refracted and reflected excitation light beams passing through capillaries of a multi-capillary array, to reduce loss of intensity of the laser beams and increase irradiation of respective samples disposed in the capillaries.
    Type: Grant
    Filed: March 6, 2007
    Date of Patent: August 21, 2012
    Assignees: Applera Corporation, Hitachi, Ltd.
    Inventors: Ryoji Inaba, Tomohiro Shoji, Shozo Kasai, Masaya Kojima, Yasushi Shimizu, Seiichi Ugai, Eric S. Nordman
  • Publication number: 20120196296
    Abstract: An apparatus for detecting labeled beads is provided. The apparatus can include: one or more irradiation sources disposed for irradiating the one or more detection zones with radiation; at least one detector disposed for collecting charges corresponding to light signals emitted from labeled beads in the one or more detection zones, which have been excited by the radiation; and a system coupled to the at least one detector for effecting time delay integration of the charges by accumulating the charges before reading the charges at the output of the at least one detector.
    Type: Application
    Filed: April 9, 2012
    Publication date: August 2, 2012
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Mark E. Oldham, Eric S. Nordman, Richard T. Reel, John S. Shigeura, Janice G. Shigeura
  • Publication number: 20110278474
    Abstract: System and method for fluorescent light excitation and detection from samples to enhance the numerical aperture and/or reduce the cross-talk of the fluorescent light.
    Type: Application
    Filed: July 26, 2011
    Publication date: November 17, 2011
    Applicant: APPLIED BIOSYSTEMS, LLC
    Inventors: Richard T. Reel, Eric S. Nordman
  • Publication number: 20110236964
    Abstract: An apparatus for detecting labeled beads is provided. The apparatus can include: one or more irradiation sources disposed for irradiating the one or more detection zones with radiation; at least one detector disposed for collecting charges corresponding to light signals emitted from labeled beads in the one or more detection zones, which have been excited by the radiation; and a system coupled to the at least one detector for effecting time delay integration of the charges by accumulating the charges before reading the charges at the output of the at least one detector.
    Type: Application
    Filed: June 6, 2011
    Publication date: September 29, 2011
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Mark F. OLDHAM, Eric S. Nordman, Richard T. Reel, John S. Shigeura, Janice G. Shigeura
  • Publication number: 20110236984
    Abstract: In some embodiments, an analyte detection system is provided that includes a nanochannel, an electrode arrangement, and a plurality of nanoFET devices disposed in the nanochannel. A plurality of nucleic acid base detection components can be used that include a plurality of nanopores, a plurality of nanochannels, a plurality of hybridization probes, combinations thereof, and the like. According to other embodiments of the present teachings, different coded molecules are hybridized to a target DNA molecule and used to detect the presence of various sequences along the target molecule. A kit including mixtures of coded molecules is also provided. In some embodiments, devices including nanochannels, nanopores, and the like, are used for manipulating movement of DNA molecules, for example, in preparation for a DNA sequencing detection. Nanopore structures and methods of making the same are also provided as are methods of nucleic acid sequencing using the nanopore structures.
    Type: Application
    Filed: January 4, 2011
    Publication date: September 29, 2011
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Hongye Sun, Eric S. Nordman, Mark F. Oldham, John R. O'Neill, Charles Connell, Umberto Ulmanella, Aldrich N.K. Lau, Theofilos Kotseroglou, Kenneth J. Livak
  • Publication number: 20110174623
    Abstract: Embodiments of a device and method are described which provide for concentration and purification of analytes, e.g., polynucleotides, in channel devices using AC and DC electric fields.
    Type: Application
    Filed: April 1, 2011
    Publication date: July 21, 2011
    Applicant: APPLIED BIOSYSTEMS, LLC
    Inventors: Michael HARROLD, Eric S. NORDMAN
  • Patent number: 7978326
    Abstract: An apparatus for detecting labeled beads is provided. The apparatus can include: one or more irradiation sources disposed for irradiating the one or more detection zones with radiation; at least one detector disposed for collecting charges corresponding to light signals emitted from labeled beads in the one or more detection zones, which have been excited by the radiation; and a system coupled to the at least one detector for effecting time delay integration of the charges by accumulating the charges before reading the charges at the output of the at least one detector.
    Type: Grant
    Filed: December 3, 2009
    Date of Patent: July 12, 2011
    Assignee: Applied Biosystems, LLC
    Inventors: Mark F. Oldham, Eric S. Nordman, Richard T. Reel, John S. Shigeura, Janice G. Shigeura, legal representative
  • Publication number: 20110143446
    Abstract: System and method for fluorescent light excitation and detection from samples to enhance the numerical aperture and/or reduce the cross-talk of the fluorescent light.
    Type: Application
    Filed: February 18, 2011
    Publication date: June 16, 2011
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Richard T. REEL, Eric S. Nordman