Patents Assigned to EDUCATION ON BEHALF OF UNIVERSITY OF OREGON
  • Patent number: 8212225
    Abstract: Silicon grids with electron-transparent SiO2 windows for use as substrates for high-resolution transmission electron microscopy of chemically-modified SiO2 surfaces are fabricated by forming an oxide layer on a silicon substrate. An aperture is defined in the silicon substrate by etching the substrate to the oxide layer. A single substrate can include a plurality of apertures that are in respective frame regions that are defined by one or more channels in the substrate. Structural or chemical functionalizations can be provided, and surface interactions observed via TEM.
    Type: Grant
    Filed: May 19, 2008
    Date of Patent: July 3, 2012
    Assignee: State of Oregon acting by and through the State Board of Higher Education on behalf of the University of Oregon
    Inventors: James E. Hutchison, Gregory J. Kearns
  • Patent number: 8094910
    Abstract: A method of reconstructing an image function on the basis of a plurality of projection profiles corresponding to a plurality of projection directions through a region of investigation, each projection profile including a series of value positions, wherein measured projection values corresponding to projection lines parallel to the respective projection direction are assigned to respective value positions and a plurality of remaining value positions are empty, comprises the steps of (a) assigning first interpolation values to the empty value positions for constructing a plurality of interpolation profiles on the basis of the projection profiles, wherein the first interpolation values are obtained from a first interpolation within a group of measured projection values having the same value position in different projection profiles, and (b) determining the image function by applying a predetermined reconstruction algorithm on the interpolation profiles.
    Type: Grant
    Filed: March 14, 2007
    Date of Patent: January 10, 2012
    Assignees: State of Oregon Acting by and through the State Board of Higher Education on Behalf of the University of Oregon, Helmholtz Zentrum München Deutsches Forschungszentrum für Gesundheit und Umwelt (GmbH)
    Inventors: Yuan Xu, Oleg Tischenko, Christoph Hoeschen
  • Patent number: 8090089
    Abstract: An imaging method for imaging a region of investigation of an object comprises the steps of generating an energy input beam with an energy beam source, irradiating the region of investigation with energy input beam components of the energy input beam along a plurality of projection directions, the energy input beam components being formed with a frame mask being arranged between the energy input beam and the object and including frame mask windows, measuring first integrated attenuation values of the energy input beam components with an outer detector device arranged outside the frame mask, measuring second integrated attenuation values of the energy input beam components with a frame mask detector device being arranged on an inner surface of the frame mask, and reconstructing an image of the region of investigation based on the first and second integrated attenuation values. Furthermore, an imaging device for imaging a region of investigation of an object is described.
    Type: Grant
    Filed: October 25, 2006
    Date of Patent: January 3, 2012
    Assignees: State of Oregon Acting by and through the State Board of Higher Education on Behalf of the University of Oregon, Helmholtz Zentrum München Deutsches Forschungszentrum für Gesundheit und Umwelt (GmbH)
    Inventors: Oleg Tischenko, Christoph Hoeschen, Yuan Xu
  • Patent number: 8081807
    Abstract: A method of reconstructing an (n+1)-dimensional image function ƒ representing a region of investigation comprises determining the image function ƒ from n-dimensional or less dimensional Radon data comprising a plurality of projection functions p?(t) measured corresponding to a plurality of predetermined projection directions (?), wherein the image function ƒ is determined as a sum of polynomials multiplied with values of the projection functions p?(t). Imaging methods, imaging devices, and computer tomography devices using this reconstruction method are described.
    Type: Grant
    Filed: December 21, 2005
    Date of Patent: December 20, 2011
    Assignees: State of Oregon Acting by and through the State Board of Higher Education on Behalf of the University of Oregon, Helmholtz Zentrum München Deutsches Forschungszentrum für Gesundheit und Umwelt (GmbH)
    Inventors: Yuan Xu, Oleg Tischenko, Christoph Hoeschen
  • Patent number: 8048872
    Abstract: The present invention relates to vinca alkaloid and analog N-oxides having activity for treating hyperproliferative disorders. Further, the invention relates to pharmaceutical compositions and methods of using vinca alkaloid and analog N-oxides, alone or in combination with one or more other active agents or treatments, to treat hyperproliferative disorders.
    Type: Grant
    Filed: April 29, 2008
    Date of Patent: November 1, 2011
    Assignee: Stat of Oregon Acting by and Through The Oregon State Board of Higher Education on Behalf of the University of Oregon
    Inventors: John G. Curd, John F. W. Keana, Alshad S. Lalani, Paul B. Westberg, Bradford Goodwin, W. David Henner
  • Patent number: 8028159
    Abstract: In a hybrid peer-to-peer file sharing network including a receiver peer and a provider peer, the receiver sends the provider a ticket [710] obtained from a server authorizing the receiver to obtain a data object O. The receiver obtains a root value of a hash tree for the object, verifies its digital signature, and sends the provider peer a request for a block of data object O and a request for a corresponding set of hash values from the hash tree [714]. The receiver receives from the provider peer the block of O and the corresponding set of hash values of the hash tree [716] that do not contain any hash value in the local hash tree. The receiver sends the provider an acknowledgement of receipt [718], obtains a block key from the provider [720], decrypts the block, verifies the integrity of the block using the subset of hash values and the local hash tree for O, and updates the local hash tree by adding the subset of hash values to the local hash tree, as well as any newly calculated hash values [722].
    Type: Grant
    Filed: August 19, 2008
    Date of Patent: September 27, 2011
    Assignee: The State of Oregon Acting by and through the State Board of Higher Education on Behalf of the University of Oregon
    Inventor: Jun Li
  • Patent number: 8019988
    Abstract: In a hybrid peer-to-peer file sharing network including a receiver peer and a provider peer, the receiver sends the provider a ticket [710] obtained from a server authorizing the receiver to obtain a data object O. The receiver obtains a root value of a hash tree for the object, verifies its digital signature, and sends the provider peer a request for a block of data object O and a request for a corresponding set of hash values from the hash tree [714]. The receiver receives from the provider peer the block of O and the corresponding set of hash values of the hash tree [716] that do not contain any hash value in the local hash tree. The receiver sends the provider an acknowledgement of receipt [718], obtains a block key from the provider [720], decrypts the block, verifies the integrity of the block using the subset of hash values and the local hash tree for O, and updates the local hash tree by adding the subset of hash values to the local hash tree, as well as any newly calculated hash values [722].
    Type: Grant
    Filed: August 22, 2006
    Date of Patent: September 13, 2011
    Assignee: The State of Oregon Acting by and through the State Board of Higher Education on Behalf of the University of Oregon
    Inventor: Jun Li
  • Patent number: 7985869
    Abstract: As demonstrated herein, the ligand exchange chemistry of phosphine-stabilized Au11 clusters with ?-functionalized thiols is a powerful synthetic method that provides convenient access to a diverse family of functionalized Au11 clusters. The general nature of the presented ligand exchange approach, in combination with the ease preparation, makes this approach of broad utility. The approach is general and shows the high tolerance for a wide variety of functional groups. Mechanistic studies provided conclusive evidence that the Au11 core of the precursor particle remains intact during ligand exchange and showed that the ligand exchange of these particles follows a different pathway than for ligand exchanges of larger gold nanoparticles such as “Au101(PPh3)21Cl5”. Optical studies of the products show a strong dependence on the nature of the stabilizing thiol ligands.
    Type: Grant
    Filed: May 22, 2006
    Date of Patent: July 26, 2011
    Assignee: State of Oregon Acting by and Through the State Board of Higher Education on Behalf of the University of Oregon
    Inventors: James E. Hutchison, Gerd H. Woehrle
  • Patent number: 7927569
    Abstract: Metallic clusters can be produced by contacting a metal salt such as a metal nitrate with an organic reducing agent. Metals can be selected from a group consisting of metals exhibiting octahedral coordination, and nitrates of the selected metal or metals are contacted with, for example nitrosobenzene. Binary, tertiary, or other clusters can be produced.
    Type: Grant
    Filed: August 14, 2009
    Date of Patent: April 19, 2011
    Assignee: State of Oregon Acting By and Through the State Board of Higher Education on Behalf of the University of Oregon
    Inventors: Darren W. Johnson, Elisabeth Rather Healey, Jason T. Gatlin, Zachary L. Mensinger
  • Patent number: 7902744
    Abstract: A structure for high performance light emitting electrochemical cells comprises at least two active layers of mixed ionic/electronic conducting materials, at least one of which is electroluminescent. The active layers are sandwiched between ion blocking electrodes, typically metal and/or transparent conducting oxide, that are electrically but not ionically conductive. Application of bias to the electrodes results in the polarization of ions at the electrodes thereby generating a field to drive the injection of electronic carriers into the active layer. The injected electron and holes recombine within the active layers to emit light. The ability to balance electron and hole injection in the design of such devices provides for optimal light emission efficiency.
    Type: Grant
    Filed: December 13, 2007
    Date of Patent: March 8, 2011
    Assignee: The State of Oregon Acting by and through the State Board of Higher Education on Behalf of the University of Oregon
    Inventors: Mark C. Lonergan, Calvin H. W. Cheng, Dean H. Johnston
  • Patent number: 7876503
    Abstract: An asymmetric mirror is composed of a dielectric substrate [500] and a coating [502] on the dielectric substrate. Within an operational wavelength range ??, the mirror has a transmission symmetry ?T=0% and a reflection asymmetry ?R>10%, where the reflection asymmetry ?R varies by less than 5% within the operational wavelength range ??. In addition, the wavelength range ?? is substantially broad, i.e., satisfies ??/?max>10%. The coating [502] is a metamaterial having structural features smaller than the smallest operational wavelength, e.g., a nano-structured metamaterial such as a photonic crystal or a disordered nano-composite of a metal and a dielectric. In a preferred embodiment, the coating [502] is semi-continuous with a filling factor p between 70% and 75%. The dielectric may be, for example, air, vacuum, an electro-optic polymer, an optical gain material, an electro-active material, or a semiconductor.
    Type: Grant
    Filed: November 7, 2007
    Date of Patent: January 25, 2011
    Assignee: The State of Oregon Acting by and through the State Board of Higher Education on Behalf of the University of Oregon
    Inventors: Miriam Deutsch, Alqing Chen, Keisuke Hasegawa
  • Publication number: 20100331268
    Abstract: Described herein are nitrated lipids and methods of making and using the nitrated lipids.
    Type: Application
    Filed: June 9, 2010
    Publication date: December 30, 2010
    Applicants: THE UAB RESEARCH FOUNDATION, State of Oregon Acting By and Through the Board of Education on behalf of the University of Oregon
    Inventors: Bruce A. Freeman, Francisco Schopfer, Valerie O'Donnell, Paul Baker, Yuqing E. Chen, Bruce Branchaud
  • Patent number: 7683619
    Abstract: Antenna assemblies for magnetic resonance signals comprise a non-resonant loop antenna and a high impedance differential amplifier. The amplifier can include first and second high electron mobility transistors that have gates coupled to an antenna loop that is defined on a rigid substrate. The non-resonant loop has an effective length of less than about 1/10 of a wavelength of a signal to be detected. Arrays of such loops can be defined on the rigid substrate, and HEMTs for the loops secured to the substrate.
    Type: Grant
    Filed: September 11, 2006
    Date of Patent: March 23, 2010
    Assignee: The State of Oregen Acting by and through the State Board of Higher Education on Behalf of the University of Oregon
    Inventors: Jolinda C. Smith, Clifford D. Dax, Ray L. Nunnally
  • Patent number: 7626192
    Abstract: A method for forming arrays of metal, alloy, semiconductor or magnetic nanoparticles is described. An embodiment of the method comprises placing a scaffold on a substrate, the scaffold comprising, for example, polynucleotides and/or polypeptides, and coupling the nanoparticles to the scaffold. Methods of producing arrays in predetermined patterns and electronic devices that incorporate such patterned arrays are also described.
    Type: Grant
    Filed: May 2, 2005
    Date of Patent: December 1, 2009
    Assignee: State of Oregon Acting by the Through the State Board of Higher Education on Behalf of the University of Oregon
    Inventors: James E. Hutchison, Martin N. Wybourne, Scott M. Reed
  • Patent number: 7624788
    Abstract: A heat exchanger according to certain embodiments includes an outer portion formed of at least one inflatable cell and an inner portion. The inflatable cell has inner and outer surfaces that are separated from each other and at least partially support the outer portion when inflated. The outer portion defines a first interior passage configured to convey fluid. The inner portion is positioned within the outer portion, the inner portion defining a second interior passage configured to convey fluid.
    Type: Grant
    Filed: November 29, 2004
    Date of Patent: December 1, 2009
    Assignee: State of Oregon acting by and through the State Board of Higher Education on Behalf of The University of Oregon
    Inventors: George Zindel Brown, Thomas Dale Northcutt, Jeffrey Alan Kline
  • Patent number: 7573975
    Abstract: An irradiation method, in particular for imaging a region of investigation (2) of an object (1), comprises generating at least one energy input beam (3) with at least one energy input beam source (210), wherein the at least one energy input beam (3) comprises a plurality of individual energy input beam components (3.1, 3.2, 3.3, . . . ), and irradiating the region of investigation (2) with the at least one energy input beam (3) along a plurality of projection directions, wherein the energy input beam components (3.1, 3.2, 3.3, . . . ) are formed with at least one beam mask (211) made of an energy input shielding material with through holes. Furthermore, imaging methods and devices for irradiating or imaging the object are described.
    Type: Grant
    Filed: December 21, 2005
    Date of Patent: August 11, 2009
    Assignees: State of Oregon Acting By and Through the State Board of Higher Education on Behalf of the University of Oregon, Helmholtz Zentrum Munchen Deutsches Forschungszentrum fur Gesundheit (GmbH)
    Inventors: Yuan Xu, Oleg Tischenko, Christoph Hoeschen
  • Patent number: 7563581
    Abstract: This disclosure provides methods for detecting and localizing DNA mutations by DNA microarray. In various embodiments, the described methods include use of restriction endonuclease(s) and/or mismatch-recognition nuclease(s) to detect and/or localize mutations. In one representative method, reference and target DNA are digested using one or more restriction endonucleases, resultant DNA strands are labeled (e.g., using a DNA polymerase), and the labeled mixture of DNAs is hybridized to a microarray. In another representative method, reference and target DNA are denatured and annealed to form a mixture containing heteroduplex DNA, one or more mismatch-recognition nuclease(s) are used to nick or cleave at least a portion of the heteroduplex DNA, resultant DNA strands are labeled (e.g., using a DNA polymerase) and the labeled mixture of DNAs is hybridized to a microarray.
    Type: Grant
    Filed: April 29, 2008
    Date of Patent: July 21, 2009
    Assignee: State of Oregon acting by and through the State Board of Higher Education on Behalf of the University of Oregon
    Inventor: Guowen Liu
  • Patent number: 7560287
    Abstract: Engineered fluorescent proteins, nucleic acids encoding them and methods of use are provided.
    Type: Grant
    Filed: August 23, 2004
    Date of Patent: July 14, 2009
    Assignees: The Regents of the University of California, State of Oregon acting by and through the State Board of Higher Education on behalf of the University of Oregon
    Inventors: Roger Y. Tsien, S. James Remington, Andrew B. Cubitt, Roger Heim, Mats F. Ormö
  • Patent number: 7529481
    Abstract: An optical data signal can be sampled by linearly combining the optical data signal with optical sampling pulses, and delivering the combination to first and second balanced detectors. The optical data signal and the optical sampling pulse are configured to have a first phase difference at the first balanced detector and a second phase difference at the second balanced detector. Typically, a difference between the first phase difference and the second phase difference is configured to be about 90 degrees. In-phase and quadrature balanced detector outputs can be combined as a sum of squares to produce a linear sampling signal representative of data signal intensity, and the sample pulses can be configured to temporally step through the optical data signal so that a sampled representation of the optical data signal is obtained.
    Type: Grant
    Filed: March 15, 2004
    Date of Patent: May 5, 2009
    Assignees: State of Oregon Acting By and Through the State Board of Higher Education on Behalf of The University of Oregon, Lucent Technologies
    Inventors: Christopher R. Doerr, Christophe J. Dorrer, Daniel C. Kilper, Michael G. Raymer, Howard R. Stuart, Peter J. Winzer
  • Patent number: 7442573
    Abstract: A method for forming arrays of metal, alloy, semiconductor or magnetic clusters is described. The method comprises placing a scaffold on a substrate, the scaffold comprising, for example, polynucleotides and/or polypeptides, and coupling the clusters to the scaffold. Methods of producing arrays in predetermined patterns and electronic devices that incorporate such patterned arrays are also described.
    Type: Grant
    Filed: March 29, 2005
    Date of Patent: October 28, 2008
    Assignee: State of Oregon Acting by and Through the State Board of Higher Education on Behalf of the University of Oregon
    Inventors: James E. Hutchison, Scott M. Reed, Martin N. Wybourne