Patents by Inventor Bradley James Larson

Bradley James Larson 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: 20110095651
    Abstract: A device and method for the detection of the interaction between two or more objects is disclosed. The device utilizes electrical impedance spectra measured from a piezoelectric element attached to one such object. Comparison of such spectra along a range of traverse allows precise estimates of distance to be made. One useful application is the topographical mapping of a surface.
    Type: Application
    Filed: October 27, 2010
    Publication date: April 28, 2011
    Applicant: SONOPLOT, INC.
    Inventors: Bradley James Larson, Joerg Werner Baier
  • Patent number: 7849738
    Abstract: A device and method for the detection of the interaction between two or more objects is disclosed. The device utilizes electrical impedance spectra measured from a piezoelectric element attached to one such object. Comparison of such spectra along a range of traverse allows precise estimates of distance to be made. One useful application is the topographical mapping of a surface.
    Type: Grant
    Filed: March 9, 2007
    Date of Patent: December 14, 2010
    Assignee: Sonoplot, Inc.
    Inventors: Bradley James Larson, Joerg Werner Baier
  • Patent number: 7806137
    Abstract: The present invention provides devices and methods for micro-scale simulated moving bed chromatography (SMB) for continuous preparation of analytic quantities of highly pure fractions of target molecules. The present apparatus and method of the invention is adapted in a preferred embodiment to separations by affinity chromatography involving three discontinuous liquid flow loops. An alternative embodiment of affinity chromatography utilizes standard SMB operating under isocratic conditions.
    Type: Grant
    Filed: August 30, 2007
    Date of Patent: October 5, 2010
    Assignee: Semba Biosciences, Inc.
    Inventors: Bradley James Larson, Thomas Paul Blandino
  • Patent number: 7723126
    Abstract: Methods for producing plasma-treated, functionalized inorganic oxide surfaces are provided. The methods include the steps of subjecting an oxide surface to a plasma to create hydroxyl functionalities on the surface and reacting the hydroxyl functionalities with epoxy group-containing molecules in situ in the absence of plasma. Biomolecules may be immobilized on the resulting functionalized surfaces. The methods may be used to treat a variety of oxide surfaces, including glass, quartz, silica and metal oxides.
    Type: Grant
    Filed: March 24, 2004
    Date of Patent: May 25, 2010
    Assignee: Wisconsin Alumni Research Foundation
    Inventors: Ferencz S. Denes, Sorin Odisei Manolache, Jason M. Helgren, Max G. Lagally, Bradley James Larson
  • Publication number: 20100021654
    Abstract: Methods for producing plasma-treated, functionalized inorganic oxide surfaces are provided. The methods include the steps of subjecting an oxide surface to a plasma to create hydroxyl functionalities on the surface and reacting the hydroxyl functionalities with epoxy group-containing molecules in situ in the absence of plasma. Biomolecules may be immobilized on the resulting functionalized surfaces. The methods may be used to treat a variety of oxide surfaces, including glass, quartz, silica and metal oxides.
    Type: Application
    Filed: March 24, 2004
    Publication date: January 28, 2010
    Inventors: Ferencz S. Denes, Sorin Odisei Manolache, Jason M. Helgren, Max G. Lagally, Bradley James Larson
  • Patent number: 7467751
    Abstract: Devices and methods for depositing fluids on substrates in patterns of spots, lines, or other features use a nozzle, which is preferably configured similarly to a micropipette, having a piezoelectric crystal or other ultrasonic actuator coupled to one of its sides. The nozzle may be charged via capillary action by dipping it into a well containing the fluid to be deposited, and may then be positioned over a desired area of a substrate, at which point activation of the ultrasonic actuator at ultrasonic frequencies will eject the fluid onto the substrate. The needle may subsequently be dipped into a well of rinsing fluid for cleaning. Spots or lines on the order of 5 micrometers width may be generated, making the invention particularly suitable for use in biological applications such as microarray production and in microelectronics applications such as the printing of organic circuitry.
    Type: Grant
    Filed: February 22, 2005
    Date of Patent: December 23, 2008
    Assignee: Wisconsin Alumni Research Foundation
    Inventors: Bradley James Larson, Chung Hoon Lee, Amit Lal, Max G. Lagally
  • Patent number: 7276283
    Abstract: Methods for producing plasma-treated, functionalized carbon-containing surfaces are provided. The methods include the steps of subjecting a carbon-containing substrate to a plasma to create surface active sites on the surface of the substrate and reacting the surface active sites with stable spacer molecules in the absence of plasma. Biomolecules may be immobilized on the resulting functionalized surfaces. The methods may be used to treat a variety of carbon-containing substrates, including polymeric surfaces, diamond-like carbon films and carbon nanotubes and nanoparticles.
    Type: Grant
    Filed: March 24, 2004
    Date of Patent: October 2, 2007
    Assignee: Wisconsin Alumni Research Foundation
    Inventors: Ferencz S. Denes, Sorin Odisei Manolache, Luis Emilio Cruz-Barba, Max G. Lagally, Bradley James Larson
  • Publication number: 20070210677
    Abstract: A device and method for the detection of the interaction between two or more objects is disclosed. The device utilizes electrical impedance spectra measured from a piezoelectric element attached to one such object. Comparison of such spectra along a range of traverse allows precise estimates of distance to be made. One useful application is the topographical mapping of a surface.
    Type: Application
    Filed: March 9, 2007
    Publication date: September 13, 2007
    Inventors: Bradley James Larson, Joerg Werner Baier
  • Patent number: 6874699
    Abstract: Devices and methods for depositing fluids on substrates in patterns of spots, lines, or other features use a nozzle, which is preferably configured similarly to a micropipette, having a piezoelectric crystal or other ultrasonic actuator coupled to one of its sides. The nozzle may be charged via capillary action by dipping it into a well containing the fluid to be deposited, and may then be positioned over a desired area of a substrate, at which point activation of the ultrasonic actuator at ultrasonic frequencies will eject the fluid onto the substrate. The needle may subsequently be dipped into a well of rinsing fluid for cleaning. Spots or lines on the order of 5 micrometers width may be generated, making the invention particularly suitable for use in biological applications such as microarray production and in microelectronics applications such as the printing of organic circuitry.
    Type: Grant
    Filed: October 15, 2002
    Date of Patent: April 5, 2005
    Assignee: Wisconsin Alumni Research Foundation
    Inventors: Bradley James Larson, Chung Hoon Lee, Amit Lal, Max G. Lagally
  • Publication number: 20040071601
    Abstract: Devices and methods for depositing fluids on substrates in patterns of spots, lines, or other features use a nozzle, which is preferably configured similarly to a micropipette, having a piezoelectric crystal or other ultrasonic actuator coupled to one of its sides. The nozzle may be charged via capillary action by dipping it into a well containing the fluid to be deposited, and may then be positioned over a desired area of a substrate, at which point activation of the ultrasonic actuator at ultrasonic frequencies will eject the fluid onto the substrate. The needle may subsequently be dipped into a well of rinsing fluid for cleaning. Spots or lines on the order of 5 micrometers width may be generated, making the invention particularly suitable for use in biological applications such as microarray production and in microelectronics applications such as the printing of organic circuitry.
    Type: Application
    Filed: October 15, 2002
    Publication date: April 15, 2004
    Inventors: Bradley James Larson, Chung Hoon Lee, Amit Lal, Max G. Lagally