Patents by Inventor J. Michael Ramsey

J. Michael Ramsey 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: 20030075446
    Abstract: Microfluidic systems and methods are disclosed which are adapted to transport and lyse cellular components of a test sample for analysis. The disclosed microfluidic systems and methods, which employ an electric field to rupture the cell membrane, cause unusually rapid lysis, thereby minimizing continued cellular activity and resulting in greater accuracy of analysis of cell processes.
    Type: Application
    Filed: October 19, 2001
    Publication date: April 24, 2003
    Inventors: Christopher T. Culbertson, Stephen C. Jacobson, Maxine A. McClain, J. Michael Ramsey
  • Patent number: 6524456
    Abstract: A method for conducting a broad range of biochemical analyses or manipulations on a series of nano- to subnanoliter reaction volumes and an apparatus for carrying out the same are disclosed. The method and apparatus are implemented on a fluidic microchip to provide high serial throughput. The method and device of the invention also lend themselves to multiple parallel analyses and manipulation to provide greater throughput for the generation of biochemical information. In particular, the disclosed device is a microfabricated channel device that can manipulate nanoliter or subnanoliter biochemical reaction volumes in a controlled manner to produce results at rates of 1 to 10 Hz per channel. The individual reaction volumes are manipulated in serial fashion analogous to a digital shift register.
    Type: Grant
    Filed: September 29, 1999
    Date of Patent: February 25, 2003
    Assignee: UT-Battelle, LLC
    Inventors: J. Michael Ramsey, Stephen C. Jacobson
  • Patent number: 6475363
    Abstract: A microchip laboratory system and method provide fluid manipulations for a variety of applications, including sample injection for microchip chemical separations. The microchip is fabricated using standard photolithographic procedures and chemical wet etching, with the substrate and cover plate joined using direct bonding. Capillary electrophoresis and electrochromatography are performed in channels formed in the substrate. Analytes are loaded into a four-way intersection of channels by electrokinetically pumping the analyte through the intersection, followed by switching of the potentials to force an analyte plug into the separation channel.
    Type: Grant
    Filed: January 4, 2000
    Date of Patent: November 5, 2002
    Assignee: UT-Battelle, LLC
    Inventor: J. Michael Ramsey
  • Publication number: 20020160405
    Abstract: A method and apparatus for analyzing nucleic acids includes immobilizing nucleic probes at specific sites within a microchannel structure and moving target nucleic acids into proximity to the probes in order to allow hybridization and fluorescence detection of specific target sequences.
    Type: Application
    Filed: March 5, 2002
    Publication date: October 31, 2002
    Inventors: J. Michael Ramsey, Robert S. Foote
  • Patent number: 6469298
    Abstract: An ion trap for mass spectrometric chemical analysis of ions is delineated. The ion trap includes a central electrode having an aperture; a pair of insulators, each having an aperture; a pair of end cap electrodes, each having an aperture; a first electronic signal source coupled to the central electrode; a second electronic signal source coupled to the end cap electrodes. The central electrode, insulators, and end cap electrodes are united in a sandwich construction where their respective apertures are coaxially aligned and symmetric about an axis to form a partially enclosed cavity having an effective radius r0 and an effective length 2z0, wherein r0 and/or z0 are less than 1.0 mm, and a ratio z0/r0 is greater than 0.83.
    Type: Grant
    Filed: September 20, 1999
    Date of Patent: October 22, 2002
    Assignee: UT-Battelle, LLC
    Inventors: J. Michael Ramsey, William B. Witten, Oleg Kornienko
  • Publication number: 20020106700
    Abstract: A method for characterizing an individual protein contained in a complex mixture of proteins includes the steps of: providing a mixture containing different proteins; fragmenting at least one of the proteins contained in the mixture into a terminal peptide and a non-terminal peptide; separating the terminal peptide from the non-terminal peptide; and analyzing at least one chemical characteristic of the terminal peptide.
    Type: Application
    Filed: February 5, 2001
    Publication date: August 8, 2002
    Inventors: Robert S. Foote, J. Michael Ramsey
  • Patent number: 6428896
    Abstract: A method of performing a lower temperature bonding technique to bond together two mating pieces of glass includes applying a sodium silicate aqueous solution between the two pieces.
    Type: Grant
    Filed: June 17, 1998
    Date of Patent: August 6, 2002
    Assignee: UT-Battelle, LLC
    Inventors: J. Michael Ramsey, Robert S. Foote
  • Patent number: 6376181
    Abstract: A method and apparatus for analyzing nucleic acids includes immobilizing nucleic probes at specific sites within a microchannel structure and moving target nucleic acids into proximity to the probes in order to allow hybridization and fluorescence detection of specific target sequences.
    Type: Grant
    Filed: December 14, 1999
    Date of Patent: April 23, 2002
    Assignee: UT-Battelle, LLC
    Inventors: J. Michael Ramsey, Robert S. Foote
  • Patent number: 6346305
    Abstract: A method of performing a lower temperature bonding technique to bond together two mating pieces of glass includes applying a sodium silicate aqueous solution between the two pieces.
    Type: Grant
    Filed: June 17, 1998
    Date of Patent: February 12, 2002
    Assignee: UT-Battelle, LLC
    Inventors: J. Michael Ramsey, Robert S. Foote
  • Patent number: 6342142
    Abstract: A microchip apparatus and method provide fluidic manipulations for a variety of applications, including sample injection for microchip liquid chromatography. The microchip is fabricated using standard photolitographic procedures and chemical wet etching, with the substrate and cover plate joined using direct bonding. Capillary electrophoresis is performed in channels formed in the substrate. Injections are made by electro-osmotically pumping sample through the injection channel that crosses the separation channel, followed by a switching of the potentials to force a plug into the separation channel.
    Type: Grant
    Filed: April 27, 1999
    Date of Patent: January 29, 2002
    Assignee: UT-Battelle, LLC
    Inventor: J. Michael Ramsey
  • Publication number: 20020008030
    Abstract: A microchip apparatus and method provide fluidic manipulations for a variety of applications, including sample injection for microchip liquid chromatography. The microchip is fabricated using standard photolithographic procedures and chemical wet etching, with the substrate and cover plate joined using direct bonding. Capillary electrophoresis is performed in channels formed in the substrate. Injections are made by electro-osmotically pumping sample through the injection channel that crosses the separation channel, followed by a switching of the potentials to force a plug into the separation channel.
    Type: Application
    Filed: July 20, 2001
    Publication date: January 24, 2002
    Inventor: J. Michael Ramsey
  • Publication number: 20020008028
    Abstract: A microfluidic device for forming and/or dispensing minute volume segments of a material is described. In accordance with one aspect of the present invention, a microfluidic device and method is provided for spatially confining the material in a focusing element. The device is also capable of segmenting the confined material into minute volume segments, and dispensing a volume segment to a waste or collection channel. The device further includes means for driving the respective streams of sample and focusing fluids through respective channels into a chamber, such that the focusing fluid streams spatially confine the sample material. The device may also include additional means for driving a minute volume segment of the spatially confined sample material into a collection channel in fluid communication with the waste reservoir.
    Type: Application
    Filed: January 12, 2001
    Publication date: January 24, 2002
    Inventors: Stephen C. Jacobson, J. Michael Ramsey
  • Publication number: 20010006785
    Abstract: A method and apparatus for analyzing nucleic acids includes immobilizing nucleic probes at specific sites within a microchannel structure and moving target nucleic acids into proximity to the probes in order to allow hybridization and fluorescence detection of specific target sequences.
    Type: Application
    Filed: December 14, 1999
    Publication date: July 5, 2001
    Inventors: J. MICHAEL RAMSEY, ROBERT S. FOOTE
  • Patent number: 6246061
    Abstract: Fluorescent dichroic fibers randomly incorporated within a media provide an improved method for authentication and counterfeiting protection. The dichroism is provided by an alignment of fluorescent molecules along the length of the fibers. The fluorescent fibers provide an authentication mechanism of varying levels of capability. The authentication signature depends on four parameters, the x,y position, the dichroism and the local environment. The availability of so many non-deterministic variables makes production of counterfeit articles (e.g., currency, credit cards, etc.
    Type: Grant
    Filed: September 1, 1999
    Date of Patent: June 12, 2001
    Assignee: UT-Battelle, LLC
    Inventors: J. Michael Ramsey, Leon N. Klatt
  • Patent number: 6231737
    Abstract: An electrospray apparatus uses a microchannel formed in a microchip. Fluid is pumped through the channel to an outlet orifice using either hydraulic or electrokinetic means. An electrospray is generated by establishing a sufficient potential difference between the fluid at the outlet orifice and a target electrode spaced from the outlet orifice. Electrokinetic pumping is also utilized to provide additional benefits to microchip devices.
    Type: Grant
    Filed: November 16, 1999
    Date of Patent: May 15, 2001
    Assignee: UT-Battelle, LLC
    Inventors: J. Michael Ramsey, Roswitha S. Ramsey
  • Patent number: 6213151
    Abstract: A microfabricated device and method for proportioning and mixing biological or chemical materials by pressure- or vacuum-driven flow is disclosed. The microfabricated device mixes a plurality of materials in volumetric proportions controlled by the flow resistances of tributary reagent channels through which the materials are transported. The microchip includes two or more tributary reagent channels combining at one or more junctions to form one or more mixing channels. By varying the geometries of the channels (length, cross section, etc.), a plurality of reagent materials can be mixed at a junction such that the proportions of the reagent materials in the mixing channel depend on a ratio of the channel geometries and material properties. Such an approach facilitates flow division on the microchip without relying on techniques external to the microchip.
    Type: Grant
    Filed: April 25, 2000
    Date of Patent: April 10, 2001
    Assignee: UT-Battelle, LLC
    Inventors: Stephen C. Jacobson, J. Michael Ramsey
  • Patent number: 6129854
    Abstract: A method of performing a lower temperature bonding technique to bond together two mating pieces of glass includes applying a sodium silicate aqueous solution between the two pieces.
    Type: Grant
    Filed: June 17, 1998
    Date of Patent: October 10, 2000
    Assignee: UT-Battelle, LLC
    Inventors: J. Michael Ramsey, Robert S. Foote
  • Patent number: 6120666
    Abstract: A microfabricated device and method for electrokinetic transport of a liquid phase biological or chemical material is described. In accordance with one aspect of the present invention there is provided a microchip that is adapted for the simultaneous spatial confinement of electrokinetically driven fluidic material streams on a substrate. The apparatus includes a focusing chamber formed in a surface of the substrate and in fluid communication with two sample fluid channels and three focusing fluid channels. The device further includes electromotive means operatively connected to the sources of the sample fluid and the source of focusing fluid for electrokinetically driving the respective streams of the sample and focusing fluids through the respective channels into the focusing chamber such that the focusing fluid streams spatially confine the first and second sample fluid streams within the focusing chamber.
    Type: Grant
    Filed: June 16, 1998
    Date of Patent: September 19, 2000
    Assignee: UT-Battelle, LLC
    Inventors: Stephen C. Jacobson, J. Michael Ramsey
  • Patent number: 6110343
    Abstract: An electrospray apparatus uses a microchannel formed in a microchip. Fluid is pumped through the channel to an outlet orifice using either hydraulic or electrokinetic means. An electrospray is generated by establishing a sufficient potential difference between the fluid at the outlet orifice and a target electrode spaced from the outlet orifice. Electrokinetic pumping is also utilized to provide additional benefits to microchip devices.
    Type: Grant
    Filed: October 4, 1996
    Date of Patent: August 29, 2000
    Assignee: Lockheed Martin Energy Research Corporation
    Inventors: J. Michael Ramsey, Roswitha S. Ramsey
  • Patent number: 6062261
    Abstract: A microfabricated device and method for proportioning and mixing electrokinetically manipulated biological or chemical materials is disclosed. The microfabricated device mixes a plurality of materials in volumetric proportions controlled by the electrical resistances of tributary reagent channels through which the materials are transported. The microchip includes two or more tributary reagent channels combining at one or more junctions to form one or more mixing channels. By varying the geometries of the channels (length, cross section, etc.), a plurality of reagent materials can be mixed at a junction such that the proportions of the reagent materials in the mixing channel depend on a ratio of the channel geometries and material properties. Such an approach facilitates voltage division on the microchip without relying on external wiring schemes and voltage division techniques external to the microchip.
    Type: Grant
    Filed: December 16, 1998
    Date of Patent: May 16, 2000
    Assignee: Lockheed Martin Energy Research Corporation
    Inventors: Stephen C. Jacobson, J. Michael Ramsey