Patents by Inventor Gary J. Van Berkel

Gary J. Van Berkel 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: 8117929
    Abstract: A system and method utilizes distance-measuring equipment including a laser sensor for controlling the collection instrument-to-surface distance during a sample collection process for use, for example, with mass spectrometric detection. The laser sensor is arranged in a fixed positional relationship with the collection instrument, and a signal is generated by way of the laser sensor which corresponds to the actual distance between the laser sensor and the surface. The actual distance between the laser sensor and the surface is compared to a target distance between the laser sensor and the surface when the collection instrument is arranged at a desired distance from the surface for sample collecting purposes, and adjustments are made, if necessary, so that the actual distance approaches the target distance.
    Type: Grant
    Filed: July 2, 2008
    Date of Patent: February 21, 2012
    Assignee: UT-Battelle, LLC
    Inventors: Gary J. Van Berkel, Vilmos Kertesz
  • Publication number: 20110284735
    Abstract: A system and method is disclosed for extracting a sample from a sample surface. A sample is provided and a sample surface receives the sample which is deposited on the sample surface. A hydrophobic material is applied to the sample surface, and one or more devices are configured to dispense a liquid on the sample, the liquid dissolving the sample to form a dissolved sample material, and the one or more devices are configured to extract the dissolved sample material from the sample surface.
    Type: Application
    Filed: May 6, 2011
    Publication date: November 24, 2011
    Inventors: Gary J. Van Berkel, Covey Tom
  • Publication number: 20110269166
    Abstract: A sample assembly includes a stack of a sample and a hydrophobic elastic layer located on the back side surface thereof or a filter layer. The sample may include a biological material or a chemical, and can include an absorptive material. The filter layer includes an absorptive material in which a sample material is embedded. A sealing surface sampling probe including a knife edge lands on an area of interest in the sample or the filter layer. The hydrophobic elastic layer or the substrate in conjunction with the knife edge provides a complete sealing of a confined portion of the sample or the filter layer to prevent inclusion of any other material from outside the confined volume and to enhance the precision and sensitivity of the analysis.
    Type: Application
    Filed: April 30, 2010
    Publication date: November 3, 2011
    Applicant: UT-BATTELLE, LLC
    Inventors: Gary J. Van Berkel, Vilmos Kertesz
  • Patent number: 7995216
    Abstract: A system and method utilizes an image analysis approach for controlling the collection instrument-to-surface distance in a sampling system for use, for example, with mass spectrometric detection. Such an approach involves the capturing of an image of the collection instrument or the shadow thereof cast across the surface and the utilization of line average brightness (LAB) techniques to determine the actual distance between the collection instrument and the surface. The actual distance is subsequently compared to a target distance for re-optimization, as necessary, of the collection instrument-to-surface during an automated surface sampling operation.
    Type: Grant
    Filed: July 2, 2008
    Date of Patent: August 9, 2011
    Assignee: UT-Battelle, LLC
    Inventors: Gary J. Van Berkel, Vilmos Kertesz
  • Publication number: 20100224013
    Abstract: A method and system for formation and withdrawal of a sample from a surface to be analyzed utilizes a collection instrument having a port through which a liquid solution is conducted onto the surface to be analyzed. The port is positioned adjacent the surface to be analyzed, and the liquid solution is conducted onto the surface through the port so that the liquid solution conducted onto the surface interacts with material comprising the surface. An amount of material is thereafter withdrawn from the surface. Pressure control can be utilized to manipulate the solution balance at the surface to thereby control the withdrawal of the amount of material from the surface. Furthermore, such pressure control can be coordinated with the movement of the surface relative to the port of the collection instrument within the X-Y plane.
    Type: Application
    Filed: March 5, 2009
    Publication date: September 9, 2010
    Inventors: Gary J. Van Berkel, Vilmos Kertesz
  • Publication number: 20100072357
    Abstract: An electrospray ion (ESI) source and method capable of ionizing an analyte molecule without oxidizing or reducing the analyte of interest. The ESI source can include an emitter having a liquid conduit, a working electrode having a liquid contacting surface, a spray tip, a secondary working electrode, and a charge storage coating covering partially or fully the liquid contacting surface of the working electrode. The liquid conduit, the working electrode and the secondary working electrode can be in liquid communication. The electrospray ion source can also include a counter electrode proximate to, but separated from, said spray tip. The electrospray ion source can also include a power system for applying a voltage difference between the working electrodes and a counter-electrode. The power system can deliver pulsed voltage changes to the working electrodes during operation of said electrospray ion source to minimize the surface potential of the charge storage coating.
    Type: Application
    Filed: September 25, 2008
    Publication date: March 25, 2010
    Inventors: VILMOS KERTESZ, Gary J. Van Berkel
  • Publication number: 20100072394
    Abstract: An electrospray ion source and method of operation includes the application of pulsed voltage to prevent electrolysis of analytes with a low electrochemical potential. The electrospray ion source can include an emitter, a counter electrode, and a power supply. The emitter can include a liquid conduit, a primary working electrode having a liquid contacting surface, and a spray tip, where the liquid conduit and the working electrode are in liquid communication. The counter electrode can be proximate to, but separated from, the spray tip. The power system can supply voltage to the working electrode in the form of a pulse wave, where the pulse wave oscillates between at least an energized voltage and a relaxation voltage. The relaxation duration of the relaxation voltage can range from 1 millisecond to 35 milliseconds. The pulse duration of the energized voltage can be less than 1 millisecond and the frequency of the pulse wave can range from 30 to 800 Hz.
    Type: Application
    Filed: April 28, 2009
    Publication date: March 25, 2010
    Inventors: Vilmos Kertesz, Gary J. Van Berkel
  • Publication number: 20100002905
    Abstract: A system and method utilizes an image analysis approach for controlling the collection instrument-to-surface distance in a sampling system for use, for example, with mass spectrometric detection. Such an approach involves the capturing of an image of the collection instrument or the shadow thereof cast across the surface and the utilization of line average brightness (LAB) techniques to determine the actual distance between the collection instrument and the surface. The actual distance is subsequently compared to a target distance for re-optimization, as necessary, of the collection instrument-to-surface during an automated surface sampling operation.
    Type: Application
    Filed: July 2, 2008
    Publication date: January 7, 2010
    Inventors: Gary J. Van Berkel, Vilmos Kertesz
  • Publication number: 20100000338
    Abstract: A system and method utilizes distance-measuring equipment including a laser sensor for controlling the collection instrument-to-surface distance during a sample collection process for use, for example, with mass spectrometric detection. The laser sensor is arranged in a fixed positional relationship with the collection instrument, and a signal is generated by way of the laser sensor which corresponds to the actual distance between the laser sensor and the surface. The actual distance between the laser sensor and the surface is compared to a target distance between the laser sensor and the surface when the collection instrument is arranged at a desired distance from the surface for sample collecting purposes, and adjustments are made, if necessary, so that the actual distance approaches the target distance.
    Type: Application
    Filed: July 2, 2008
    Publication date: January 7, 2010
    Inventors: Gary J. Van Berkel, Vilmos Kertesz
  • Patent number: 7295026
    Abstract: A system and method utilizes an image analysis approach for controlling the probe-to-surface distance of a liquid junction-based surface sampling system for use with mass spectrometric detection. Such an approach enables a hands-free formation of the liquid microjunction used to sample solution composition from the surface and for re-optimization, as necessary, of the microjunction thickness during a surface scan to achieve a fully automated surface sampling system.
    Type: Grant
    Filed: June 3, 2005
    Date of Patent: November 13, 2007
    Assignee: UT-Battelle, LLC
    Inventors: Gary J. Van Berkel, Vilmos Kertesz, Michael James Ford
  • Patent number: 6952013
    Abstract: Disclosed are systems and methods that include a flow-cell that includes porous conductive material(s) that provides a working electrode(s), an inlet connected to the flow-cell to deliver a solution continuing an analyte(s), an outlet connected to the flow-cell to allow the solution to exit the flow-cell, a counter electrode positioned proximate to the outlet, and a voltage source(s) coupled to the working electrode(s) and the counter electrode. The methods can include delivering a solution containing an analyte(s) through an inlet to a flow-cell that includes porous conductive material(s) that provides a working electrode(s), connecting the flow-cell to an outlet for allowing the solution to exit the flow-cell, placing a counter-electrode proximate the outlet, and supplying a voltage from a voltage source(s) to the working electrode(s) and/or the counter-electrode.
    Type: Grant
    Filed: May 19, 2004
    Date of Patent: October 4, 2005
    Assignees: ESA Biosciences, Inc., UT—Battelle, LLC
    Inventors: Michael C. Granger, Gary J. Van Berkel
  • Publication number: 20040245457
    Abstract: Disclosed are systems and methods that include a flow-cell that includes porous conductive material(s) that provides a working electrode(s), an inlet connected to the flow-cell to deliver a solution containing an analyte(s), an outlet connected to the flow-cell to allow the solution to exit the flow-cell, a counter electrode positioned proximate to the outlet, and a voltage source(s) coupled to the working electrode(s) and the counter electrode. The methods can include delivering a solution containing an analyte(s) through an inlet to a flow-cell that includes porous conductive material(s) that provides a working electrode(s), connecting the flow-cell to an outlet for allowing the solution to exit the flow-cell, placing a counter-electrode proximate the outlet, and supplying a voltage from a voltage source(s) to the working electrode(s) and/or the counter-electrode.
    Type: Application
    Filed: May 19, 2004
    Publication date: December 9, 2004
    Applicant: ESA, Inc.
    Inventors: Michael C. Granger, Gary J. Van Berkel
  • Patent number: 6803566
    Abstract: An automated electrospray based sampling system and method for analysis obtains samples from surface array spots having analytes. The system includes at least one probe, the probe including an inlet for flowing at least one eluting solvent to respective ones of a plurality of spots and an outlet for directing the analyte away from the spots. An automatic positioning system is provided for translating the probe relative to the spots to permit sampling of any spot. An electrospray ion source having an input fluidicly connected to the probe receives the analyte and generates ions from the analyte. The ion source provides the generated ions to a structure for analysis to identify the analyte, preferably being a mass spectrometer. The probe can be a surface contact probe, where the probe forms an enclosing seal along the periphery of the array spot surface.
    Type: Grant
    Filed: April 16, 2002
    Date of Patent: October 12, 2004
    Assignee: UT-Battelle, LLC
    Inventor: Gary J. Van Berkel
  • Patent number: 6784439
    Abstract: An electrospray device includes a high voltage electrode chamber. The high voltage electrode chamber includes an inlet for receiving a fluid to be ionized and for directing the fluid into the chamber and at least one electrode having an exposed surface within the chamber. A flow channel directs fluid over a surface of the electrode and out of the chamber. The length of the flow channel over the electrode is greater than the height of the flow channel over the electrode, thereby producing enhanced mass transport to the working electrode resulting in improved electrolysis efficiency. An outlet is provided for transmitting the fluid out from the electrode chamber. A method of creating charged droplets includes flowing a fluid over an electrode where the length over the electrode is greater than the height of the fluid flowing over the electrode.
    Type: Grant
    Filed: July 19, 2001
    Date of Patent: August 31, 2004
    Assignee: UT Battelle, LLC
    Inventor: Gary J. Van Berkel
  • Patent number: 6677593
    Abstract: An electrospray ion source includes a chamber including a channel region therein, the channel including at least one inlet for directing a solution into the channel and at least a first and a second outlet for transmitting the solution or derivatives therefrom out from channel. Structure for separating ions in the solution is provided from separating the solution into at least a first and a second flow stream portion. The first flow stream portion is enriched in negative ions and the second flow stream portion is enriched in positive ions. The first flow stream portion is adapted to exit the chamber through the first outlet while the second flow stream portion is adapted to exit the chamber through the second outlet. A method of charge separation can include the step of simultaneously providing at least two gas phase ion stream portions having opposite polarity.
    Type: Grant
    Filed: August 28, 2002
    Date of Patent: January 13, 2004
    Assignee: UT-Battelle, LLC
    Inventor: Gary J. Van Berkel
  • Publication number: 20030193020
    Abstract: An automated electrospray based sampling system and method for analysis obtains samples from surface array spots having analytes. The system includes at least one probe, the probe including an inlet for flowing at least one eluting solvent to respective ones of a plurality of spots and an outlet for directing the analyte away from the spots. An automatic positioning system is provided for translating the probe relative to the spots to permit sampling of any spot. An electrospray ion source having an input fluidicly connected to the probe receives the analyte and generates ions from the analyte. The ion source provides the generated ions to a structure for analysis to identify the analyte, preferably being a mass spectrometer. The probe can be a surface contact probe, where the probe forms an enclosing seal along the periphery of the array spot surface.
    Type: Application
    Filed: April 16, 2002
    Publication date: October 16, 2003
    Inventor: Gary J. Van Berkel
  • Publication number: 20030015656
    Abstract: An electrospray device includes a high voltage electrode chamber. The high voltage electrode chamber includes an inlet for receiving a fluid to be ionized and for directing the fluid into the chamber and at least one electrode having an exposed surface within the chamber. A flow channel directs fluid over a surface of the electrode and out of the chamber. The length of the flow channel over the electrode is greater than the height of the flow channel over the electrode, thereby producing enhanced mass transport to the working electrode resulting in improved electrolysis efficiency. An outlet is provided for transmitting the fluid out from the electrode chamber. A method of creating charged droplets includes flowing a fluid over an electrode where the length over the electrode is greater than the height of the fluid flowing over the electrode.
    Type: Application
    Filed: July 19, 2001
    Publication date: January 23, 2003
    Inventor: Gary J. Van Berkel