Patents by Inventor Conrad Laskowski

Conrad Laskowski 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: 10363558
    Abstract: The present invention relates to systems and methods for the real time processing of nucleic acid during polymerase chain reaction (PCR) and thermal melt applications. According to an aspect of the invention, a system for the rapid serial processing of multiple nucleic acid assays is provided. In one embodiment, the system includes, but is not limited to: a microfluidic cartridge having microfluidic (flow-through) channels, a fluorescence imaging system, a temperature measurement and control system; a pressure measurement and control system for applying variable pneumatic pressures to the microfluidic cartridge; a storage device for holding multiple reagents (e.g., a well-plate); a liquid handling system comprising at least one robotic pipettor for aspirating, mixing, and dispensing reagent mixtures to the microfluidic cartridge; systems for data storage, processing, and output; and a system controller to coordinate the various devices and functions.
    Type: Grant
    Filed: August 24, 2015
    Date of Patent: July 30, 2019
    Assignee: Canon U.S. Life Sciences, Inc.
    Inventors: Ivor T. Knight, Kenton C. Hasson, Johnathan S. Coursey, Hongye Liang, Sami Kanderian, Gregory H. Owen, Weidong Cao, Ying-Xin Wang, Scott Corey, Ben Lane, Conrad Laskowski, Alex Flamm, Brian Murphy, Eric Schneider, Takayoshi Hanagata, Hiroshi Inoue, Shulin Zeng, Brian Bean, Franklin Regan
  • Patent number: 9962692
    Abstract: In one aspect, the present invention provides methods, devices, and systems for ensuring that multiple components of a mixture are fully mixed in a continuous flow microfluidic system while ensuring that mixing between segments flowing through the chip is minimized. In some embodiments, the present invention includes mixing fluids in a droplet maintained at the tip of a pipette before the mixture is introduced to the microfluidic device. In another aspect, the present invention provides a pipette tip having a ratio of an outside diameter to an inside diameter that provides sufficient surface area for a droplet comprising up to the entire volume of the liquid to suspend from the pipette tip intact. In yet another aspect, the present invention provides methods, devices, and systems for delivering a reaction mixture to a microfluidic chip comprising a docking receptacle, an access tube and a reservoir.
    Type: Grant
    Filed: August 31, 2011
    Date of Patent: May 8, 2018
    Assignee: Canon U.S. Life Sciences, Inc.
    Inventors: Ivor T. Knight, Scott Corey, Ben Lane, Conrad Laskowski, Alex Flamm, Brian Murphy
  • Patent number: 9669158
    Abstract: Provided is an auto-injector for a syringe suitable for the injected delivery of drug to a patient. The auto-injector comprises a cassette unit arranged for receipt of a syringe. The cassette unit and/or syringe is movable from a rest position, in which the syringe needle tip is within the drive unit housing to a use position, in which the needle tip protrudes from a needle delivery aperture thereof. The auto-injector comprises a drive unit arranged for docking receipt of the cassette unit at a docking position and a drive arrangement. The drive unit is arranged for initial receipt of the cassette unit at an intermediate pre-docking position and for subsequent transport of the cassette unit to the docking position. In embodiments, the drive unit is arranged such that transport of the cassette unit to the docking position is permitted only following verification of an identifier at the intermediate pre-docking position.
    Type: Grant
    Filed: June 4, 2012
    Date of Patent: June 6, 2017
    Assignee: UCB BIOPHARMA SPRL
    Inventors: Martin John McLoughlin, Darrell P. Morgan, Kevin Richard Lozeau, Agnete Enga, Eric Freitag, Daniel Formosa, Brian Lipford, Jake Cowperthwaite, Alex Flamm, Conrad Laskowski
  • Publication number: 20160051985
    Abstract: The present invention relates to systems and methods for the real time processing of nucleic acid during polymerase chain reaction (PCR) and thermal melt applications. According to an aspect of the invention, a system for the rapid serial processing of multiple nucleic acid assays is provided. In one embodiment, the system includes, but is not limited to: a microfluidic cartridge having microfluidic (flow-through) channels, a fluorescence imaging system, a temperature measurement and control system; a pressure measurement and control system for applying variable pneumatic pressures to the microfluidic cartridge; a storage device for holding multiple reagents (e.g., a well-plate); a liquid handling system comprising at least one robotic pipettor for aspirating, mixing, and dispensing reagent mixtures to the microfluidic cartridge; systems for data storage, processing, and output; and a system controller to coordinate the various devices and functions.
    Type: Application
    Filed: August 24, 2015
    Publication date: February 25, 2016
    Applicant: Canon U.S. Life Sciences, Inc.
    Inventors: Ivor T. KNIGHT, Kenton C. Hasson, Johnathan S. Coursey, Hongye Liang, Sami Kanderian, Gregory H. Owen, Weidong Cao, Ying-Xin Wang, Scott Corey, Ben Lane, Conrad Laskowski, Alex Flamm, Brian Murphy, Eric Schneider, Takayoshi Hanagata, Hiroshi Inoue, Shulin Zeng, Brian Bean, Franklin Regan
  • Patent number: 9114399
    Abstract: The present invention relates to systems and methods for the real time processing of nucleic acid during polymerase chain reaction (PCR) and thermal melt applications. According to an aspect of the invention, a system for the rapid serial processing of multiple nucleic acid assays is provided. In one embodiment, the system includes, but is not limited to: a microfluidic cartridge having microfluidic (flow-through) channels, a fluorescence imaging system, a temperature measurement and control system; a pressure measurement and control system for applying variable pneumatic pressures to the microfluidic cartridge; a storage device for holding multiple reagents (e.g., a well-plate); a liquid handling system comprising at least one robotic pipettor for aspirating, mixing, and dispensing reagent mixtures to the microfluidic cartridge; systems for data storage, processing, and output; and a system controller to coordinate the various devices and functions.
    Type: Grant
    Filed: August 31, 2011
    Date of Patent: August 25, 2015
    Assignee: Canon U.S. Life Sciences, Inc.
    Inventors: Ivor T. Knight, Kenton C. Hasson, Johnathan S. Coursey, Hongye Liang, Sami Kanderian, Gregory H. Owen, Weidong Cao, Ying-Xin Wang, Scott Corey, Ben Lane, Conrad Laskowski, Alex Flamm, Brian Murphy, Eric Schneider, Takayoshi Hanagata, Hiroshi Inoue, Shulin Zeng, Brian Bean, Franklin Regan
  • Patent number: 8992860
    Abstract: The present invention relates to systems and methods for minimizing or eliminating diffusion effects. Diffused regions of a segmented flow of multiple, miscible fluid species may be vented off to a waste channel, and non-diffused regions of fluid may be preferentially pulled off the channel that contains the segmented flow. Multiple fluid samples that are not contaminated via diffusion may be collected for analysis and measurement in a single channel. The systems and methods for minimizing or eliminating diffusion effects may be used to minimize or eliminate diffusion effects in a microfluidic system for monitoring the amplification of DNA molecules and the dissociation behavior of the DNA molecules.
    Type: Grant
    Filed: April 14, 2014
    Date of Patent: March 31, 2015
    Assignee: Canon U.S. Life Sciences, Inc.
    Inventors: Brian Murphy, Scott Corey, Alex Flamm, Ben Lane, Conrad Laskowski, Chad Schneider
  • Publication number: 20140358083
    Abstract: Provided is an auto-injector for a syringe suitable for the injected delivery of drug to a patient. The auto-injector comprises a cassette unit arranged for receipt of a syringe. The cassette unit and/or syringe is movable from a rest position, in which the syringe needle tip is within the drive unit housing to a use position, in which the needle tip protrudes from a needle delivery aperture thereof. The auto-injector comprises a drive unit arranged for docking receipt of the cassette unit at a docking position and a drive arrangement. The drive unit is arranged for initial receipt of the cassette unit at an intermediate pre-docking position and for subsequent transport of the cassette unit to the docking position. In embodiments, the drive unit is arranged such that transport of the cassette unit to the docking position is permitted only following verification of an identifier at the intermediate pre-docking position.
    Type: Application
    Filed: June 4, 2012
    Publication date: December 4, 2014
    Applicant: UCB Pharma SA
    Inventors: Martin John McLoughlin, Darrell P. Morgan, Kevin Richard Lozeau, Agnete Enga, Eric Freitag, Daniel Formosa, Brian Lipford, Jake Cowperthwaite, Alex Flamm, Conrad Laskowski
  • Publication number: 20140220584
    Abstract: The present invention relates to systems and methods for minimizing or eliminating diffusion effects. Diffused regions of a segmented flow of multiple, miscible fluid species may be vented off to a waste channel, and non-diffused regions of fluid may be preferentially pulled off the channel that contains the segmented flow. Multiple fluid samples that are not contaminated via diffusion may be collected for analysis and measurement in a single channel. The systems and methods for minimizing or eliminating diffusion effects may be used to minimize or eliminate diffusion effects in a microfluidic system for monitoring the amplification of DNA molecules and the dissociation behavior of the DNA molecules.
    Type: Application
    Filed: April 14, 2014
    Publication date: August 7, 2014
    Applicant: Canon U.S. Life Sciences, Inc.
    Inventors: Brian Murphy, Scott Corey, Alex Flamm, Ben Lane, Conrad Laskowski, Chad Schneider
  • Patent number: 8709356
    Abstract: The present invention relates to systems and methods for minimizing or eliminating diffusion effects. Diffused regions of a segmented flow of multiple, miscible fluid species may be vented off to a waste channel, and non-diffused regions of fluid may be preferentially pulled off the channel that contains the segmented flow. Multiple fluid samples that are not contaminated via diffusion may be collected for analysis and measurement in a single channel. The systems and methods for minimizing or eliminating diffusion effects may be used to minimize or eliminate diffusion effects in a microfluidic system for monitoring the amplification of DNA molecules and the dissociation behavior of the DNA molecules.
    Type: Grant
    Filed: April 12, 2010
    Date of Patent: April 29, 2014
    Assignee: Canon U.S. Life Sciences, Inc.
    Inventors: Brian Murphy, Scott Corey, Alex Flamm, Ben Lane, Conrad Laskowski, Chad Schneider
  • Publication number: 20120058519
    Abstract: In one aspect, the present invention provides methods, devices, and systems for ensuring that multiple components of a mixture are fully mixed in a continuous flow microfluidic system while ensuring that mixing between segments flowing through the chip is minimized. In some embodiments, the present invention includes mixing fluids in a droplet maintained at the tip of a pipette before the mixture is introduced to the microfluidic device. In another aspect, the present invention provides methods, devices, and systems for creating segments that move through a microfluidic chip with minimal mixing between segments. The microfluidic chip may have an interface chip and a reaction chip. In some embodiments, the present invention includes creating segments that flow through an interface chip and a reaction chip, wherein the interface chip and a reaction chip have separate flow control mechanisms and produce minimal mixing between segments.
    Type: Application
    Filed: August 31, 2011
    Publication date: March 8, 2012
    Applicant: Canon U.S. Life Sciences, Inc.
    Inventors: Ivor T. Knight, Scott Corey, Ben Lane, Conrad Laskowski, Alex Flamm, Brian Murphy
  • Publication number: 20120058571
    Abstract: In one aspect, the present invention provides methods, devices, and systems for ensuring that multiple components of a mixture are fully mixed in a continuous flow microfluidic system while ensuring that mixing between segments flowing through the chip is minimized. In some embodiments, the present invention includes mixing fluids in a droplet maintained at the tip of a pipette before the mixture is introduced to the microfluidic device. In another aspect, the present invention provides a pipette tip having a ratio of an outside diameter to an inside diameter that provides sufficient surface area for a droplet comprising up to the entire volume of the liquid to suspend from the pipette tip intact. In yet another aspect, the present invention provides methods, devices, and systems for delivering a reaction mixture to a microfluidic chip comprising a docking receptacle, an access tube and a reservoir.
    Type: Application
    Filed: August 31, 2011
    Publication date: March 8, 2012
    Applicant: Canon U.S. Life Sciences, Inc.
    Inventors: Ivor T. Knight, Scott Corey, Ben Lane, Conrad Laskowski, Alex Flamm, Brian Murphy
  • Publication number: 20120052560
    Abstract: The present invention relates generally to systems and methods for the rapid serial processing of multiple nucleic acid assays. More particularly, the present invention provides for the real time processing of nucleic acid during polymerase chain reaction (PCR) and thermal melt applications. According to an aspect of the invention, a system for the rapid serial processing of multiple nucleic acid assays is provided. In one embodiment, the system includes, but is not limited to: a microfluidic cartridge having microfluidic (flow-through) channels, a fluorescence imaging system, a temperature measurement and control system; a pressure measurement and control system for applying variable pneumatic pressures to the microfluidic cartridge; a storage device for holding multiple reagents (e.g.
    Type: Application
    Filed: August 31, 2011
    Publication date: March 1, 2012
    Applicant: CANON U.S. LIFE SCIENCES, INC.
    Inventors: Ivor T. Knight, Kenton C. Hasson, Johnathan S. Coursey, Hongye Liang, Sami Kanderian, Gregory H. Owen, Weidong Cao, Ying-Xin Wang, Scott Corey, Ben Lane, Conrad Laskowski, Alex Flamm, Brian Murphy, Eric Schneider, Takayoshi Hanagata, Hiroshi Inoue, Shulin Zeng, Brian Bean, Franklin Regan
  • Publication number: 20110091877
    Abstract: The present invention relates to systems and methods for minimizing or eliminating diffusion effects. Diffused regions of a segmented flow of multiple, miscible fluid species may be vented off to a waste channel, and non-diffused regions of fluid may be preferentially pulled off the channel that contains the segmented flow. Multiple fluid samples that are not contaminated via diffusion may be collected for analysis and measurement in a single channel. The systems and methods for minimizing or eliminating diffusion effects may be used to minimize or eliminate diffusion effects in a microfluidic system for monitoring the amplification of DNA molecules and the dissociation behavior of the DNA molecules.
    Type: Application
    Filed: April 12, 2010
    Publication date: April 21, 2011
    Applicant: Canon U.S. Life Sciences, Inc.
    Inventors: Brian Murphy, Scott Corey, Alex Flamm, Ben Lane, Conrad Laskowski, Chad Schneider
  • Patent number: D673291
    Type: Grant
    Filed: February 23, 2011
    Date of Patent: December 25, 2012
    Assignee: Canon U.S. Life Sciences, Inc.
    Inventors: Ivor Knight, Scott Corey, Ben Lane, Conrad Laskowski, Alex Flamm, Brian Murphy
  • Patent number: D679827
    Type: Grant
    Filed: February 23, 2011
    Date of Patent: April 9, 2013
    Assignee: Canon U.S. Life Sciences, Inc.
    Inventors: Alex Flamm, Conrad Laskowski, Brian Murphy, Jeremy Savage
  • Patent number: D686310
    Type: Grant
    Filed: February 23, 2011
    Date of Patent: July 16, 2013
    Assignee: Canon U.S. Life Sciences, Inc.
    Inventors: Conrad Laskowski, Eric Schneider, Jeremy Savage, Hongye Liang, Kenton Hasson
  • Patent number: D686334
    Type: Grant
    Filed: February 23, 2011
    Date of Patent: July 16, 2013
    Assignee: Canon U.S. Life Sciences, Inc.
    Inventors: Eric Schneider, Alex Flamm, Brian Murphy, Chad Schneider, Charly Mar, Ben Lane, Jeremy Savage, Conrad Laskowski