Patents by Inventor Grace Carlson

Grace Carlson 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: 10119113
    Abstract: Systems and methods are described that are used to separate cells from a wide variety of tissues. In particular, automated systems and methods are described that separate regenerative cells, e.g., stem and/or progenitor cells, from adipose tissue. The systems and methods described herein provide rapid and reliable methods of separating and concentrating regenerative cells suitable for re-infusion into a subject.
    Type: Grant
    Filed: October 12, 2015
    Date of Patent: November 6, 2018
    Assignee: CYTORI THERAPEUTICS, INC.
    Inventors: Marc H. Hedrick, John K. Fraser, Michael J. Schulzki, Bobby Byrnes, Grace Carlson, Ronda Elizabeth Schreiber, Isabella Wulur
  • Publication number: 20160137970
    Abstract: Systems and methods are described that are used to separate cells from a wide variety of tissues. In particular, automated systems and methods are described that separate regenerative cells, e.g., stem and/or progenitor cells, from adipose tissue. The systems and methods described herein provide rapid and reliable methods of separating and concentrating regenerative cells suitable for re-infusion into a subject.
    Type: Application
    Filed: October 12, 2015
    Publication date: May 19, 2016
    Inventors: Marc H. Hedrick, John K. Fraser, Michael J. Schulzki, Bobby Byrnes, Grace Carlson, Ronda Elizabeth Schreiber, Isabella Wulur
  • Publication number: 20150152375
    Abstract: Systems and methods are described that are used to separate cells from a wide variety of tissues. In particular, automated systems and methods are described that separate regenerative cells, e.g., stem and/or progenitor cells, from adipose tissue. The systems and methods described herein provide rapid and reliable methods of separating and concentrating regenerative cells suitable for re-infusion into a subject.
    Type: Application
    Filed: November 10, 2014
    Publication date: June 4, 2015
    Inventors: Marc H. Hedrick, John K. Fraser, Michael J. Schulzki, Bobby Byrnes, Grace Carlson, Ronda Elizabeth Schreiber, Isabella Wulur
  • Patent number: 8883499
    Abstract: Systems and methods are described that are used to separate cells from a wide variety of tissues. In particular, automated systems and methods are described that separate regenerative cells, e.g., stem and/or progenitor cells, from adipose tissue. The systems and methods described herein provide rapid and reliable methods of separating and concentrating regenerative cells suitable for re-infusion into a subject.
    Type: Grant
    Filed: April 20, 2012
    Date of Patent: November 11, 2014
    Assignee: Cytori Therapeutics, Inc.
    Inventors: Marc H. Hedrick, John K. Fraser, Michael J. Schulzki, Bobby Byrnes, Grace Carlson, Ronda Elizabeth Schreiber, Isabella Wulur
  • Publication number: 20120264200
    Abstract: Systems and methods are described that are used to separate cells from a wide variety of tissues. In particular, automated systems and methods are described that separate regenerative cells, e.g., stem and/or progenitor cells, from adipose tissue. The systems and methods described herein provide rapid and reliable methods of separating and concentrating regenerative cells suitable for re-infusion into a subject.
    Type: Application
    Filed: April 20, 2012
    Publication date: October 18, 2012
    Applicant: CYTORI THERAPEUTICS, INC.
    Inventors: Marc H. Hedrick, John K. Fraser, Michael J. Schulzki, Bobby Byrnes, Grace Carlson, Rhonda Elizabeth Schreiber, Isabella Wulur
  • Patent number: 8163276
    Abstract: Systems and methods are described that are used to separate cells from a wide variety of tissues. In particular, automated systems and methods are described that separate regenerative cells, e.g., stem and/or progenitor cells, from adipose tissue. The systems and methods described herein provide rapid and reliable methods of separating and concentrating regenerative cells suitable for re-infusion into a subject.
    Type: Grant
    Filed: September 4, 2009
    Date of Patent: April 24, 2012
    Assignee: Cytori Therapeutics, Inc.
    Inventors: Marc H. Hedrick, John K. Fraser, Michael J. Schulzki, Bobby Byrnes, Grace Carlson, Ronda Schreiber, Isabella Wulur
  • Publication number: 20100136668
    Abstract: Systems and methods are described that are used to separate cells from a wide variety of tissues. In particular, automated systems and methods are described that separate regenerative cells, e.g., stem and/or progenitor cells, from adipose tissue. The systems and methods described herein provide rapid and reliable methods of separating and concentrating regenerative cells suitable for re-infusion into a subject.
    Type: Application
    Filed: September 4, 2009
    Publication date: June 3, 2010
    Inventors: Marc H. Hedrick, John K. Fraser, Michael J. Schulzki, Bobby Byrnes, Grace Carlson, Ronda Elizabeth Schreiber, Isabella Wulur
  • Patent number: 7585670
    Abstract: Systems and methods are described that are used to separate cells from a wide variety of tissues. In particular, automated systems and methods are described that separate regenerative cells, e.g., stem and/or progenitor cells, from adipose tissue. The systems and methods described herein provide rapid and reliable methods of separating and concentrating regenerative cells suitable for re-infusion into a subject.
    Type: Grant
    Filed: July 2, 2004
    Date of Patent: September 8, 2009
    Assignee: Cytori Therapeutics, Inc.
    Inventors: Marc H. Hedrick, John K. Fraser, Michael J. Schulzki, Bobby Byrnes, Grace Carlson, Ronda Elizabeth Schreiber, Isabella Wulur
  • Patent number: 7514075
    Abstract: Systems and methods are described that are used to separate cells from a wide variety of tissues. In particular, automated systems and methods are described that separate regenerative cells, e.g., stem and/or progenitor cells, from adipose tissue. The systems and methods described herein provide rapid and reliable methods of separating and concentrating regenerative cells suitable for re-infusion into a subject.
    Type: Grant
    Filed: June 25, 2004
    Date of Patent: April 7, 2009
    Assignee: Cytori Therapeutics, Inc.
    Inventors: Marc H. Hedrick, John K. Fraser, Michael J. Schulzki, Bobby Byrnes, Grace Carlson, Robert K. Shanahan
  • Publication number: 20070238917
    Abstract: An organ manipulator including at least one suction member or adhesive disc mounted to a joint providing freedom of movement of the at least one suction member or adhesive disk relative to its support. A method for retracting and suspending an organ in a retracted position using suction (or adhesive force) so that the organ is free to move normally (e.g., to beat or undergo other limited-amplitude motion) in at least the vertical direction during both steps.
    Type: Application
    Filed: April 23, 2007
    Publication date: October 11, 2007
    Inventors: Steven Peng, Larry Voss, David Hancock, Grace Carlson, John Davis, Albert Chin, Jaime Vargas
  • Publication number: 20060122622
    Abstract: The present invention relates in certain embodiments to medical devices for treating osteoplasty procedures such as vertebral compression fractures. More particularly, embodiments of the invention relate to instruments and methods for controllably restoring vertebral body height by controlling the geometry of fill material introduced into cancellous bone. An exemplary system utilizes Rf energy in combination a conductive bone fill material for polymerizing the surface of the inflow plume to control the geometry of the fill material and the application of force caused by inflows of fill material. In another embodiment, method of treating bone includes injecting a volume of fill material into a bone and selectively modifying a viscosity of a selected portion of the bone filler to control the direction of flow of the fill material within the bone.
    Type: Application
    Filed: June 24, 2005
    Publication date: June 8, 2006
    Inventors: Csaba Truckai, John Shadduck, Robert Luzzi, Grace Carlson, C. Rappleye
  • Publication number: 20060122614
    Abstract: The present invention relates in certain embodiments to medical devices for treating osteoplasty procedures such as vertebral compression fractures. More particularly, embodiments of the invention relate to instruments and methods for controllably restoring vertebral body height by controlling the geometry of fill material introduced into cancellous bone. An exemplary system utilizes Rf energy in combination a conductive bone fill material for polymerizing the surface of the inflow plume to control the geometry of the fill material and the application of force caused by inflows of fill material. In another embodiment, method of treating bone includes injecting a volume of fill material into a bone and selectively modifying a viscosity of a selected portion of the bone filler to control the direction of flow of the fill material within the bone.
    Type: Application
    Filed: August 2, 2005
    Publication date: June 8, 2006
    Inventors: Csaba Truckai, John Shadduck, Robert Luzzi, Grace Carlson
  • Publication number: 20060122623
    Abstract: The present invention relates in certain embodiments to medical devices for treating osteoplasty procedures such as vertebral compression fractures. More particularly, embodiments of the invention relate to instruments and methods for controllably restoring vertebral body height by controlling the geometry of fill material introduced into cancellous bone. An exemplary system utilizes Rf energy in combination a conductive bone fill material for polymerizing the surface of the inflow plume to control the geometry of the fill material and the application of force caused by inflows of fill material. In another embodiment, method of treating bone includes injecting a volume of fill material into a bone and selectively modifying a viscosity of a selected portion of the bone filler to control the direction of flow of the fill material within the bone.
    Type: Application
    Filed: June 24, 2005
    Publication date: June 8, 2006
    Inventors: Csaba Truckai, John Shadduck, Robert Luzzi, Grace Carlson, C. Rappleye
  • Publication number: 20060122624
    Abstract: The present invention relates in certain embodiments to medical devices for treating osteoplasty procedures such as vertebral compression fractures. More particularly, embodiments of the invention relate to instruments and methods for controllably restoring vertebral body height by controlling the geometry of fill material introduced into cancellous bone. An exemplary system utilizes Rf energy in combination a conductive bone fill material for polymerizing the surface of the inflow plume to control the geometry of the fill material and the application of force caused by inflows of fill material. In another embodiment, method of treating bone includes injecting a volume of fill material into a bone and selectively modifying a viscosity of a selected portion of the bone filler to control the direction of flow of the fill material within the bone.
    Type: Application
    Filed: August 2, 2005
    Publication date: June 8, 2006
    Inventors: Csaba Truckai, John Shadduck, Robert Luzzi, Grace Carlson
  • Publication number: 20050260175
    Abstract: Systems and methods are described that are used to separate cells from a wide variety of tissues. In particular, automated systems and methods are described that separate regenerative cells, e.g., stem and/or progenitor cells, from adipose tissue. The systems and methods described herein provide rapid and reliable methods of separating and concentrating regenerative cells suitable for re-infusion into a subject.
    Type: Application
    Filed: July 2, 2004
    Publication date: November 24, 2005
    Inventors: Marc Hedrick, John Fraser, Michael Schulzki, Bobby Byrnes, Grace Carlson, Ronda Schreiber, Isabella Wulur
  • Publication number: 20050084961
    Abstract: Systems and methods are described that are used to separate cells from a wide variety of tissues. In particular, automated systems and methods are described that separate regenerative cells, e.g., stem and/or progenitor cells, from adipose tissue. The systems and methods described herein provide rapid and reliable methods of separating and concentrating regenerative cells suitable for re-infusion into a subject.
    Type: Application
    Filed: June 25, 2004
    Publication date: April 21, 2005
    Inventors: Marc Hedrick, John Fraser, Michael Schulzki, Bobby Byrnes, Grace Carlson
  • Patent number: 6849044
    Abstract: An organ-stabilizing element is covered with a layer of textile material such as cloth to enhance slip-free engagement with an organ such as a beating heart during surgery thereon. The organ-stabilizing element is supported on a stacked structure of successive ball elements and rings that can be selectively flexible or rigid in response to tensioning of a flexible cable within a central bore of the structure.
    Type: Grant
    Filed: January 15, 2002
    Date of Patent: February 1, 2005
    Inventors: Larry Voss, Steven Peng, David Hancock, Grace Carlson
  • Patent number: 6375611
    Abstract: An organ-stabilizing element is covered with a layer of textile material such as cloth enhance slip-free engagement with an organ such as a beating heart during surgery thereon. The organ-stabilizing element is supported on a stacked structure of successive ball elements and rings that can be selectively flexible or rigid in response to tensioning of a flexible cable within a central bore of the structure.
    Type: Grant
    Filed: January 7, 2000
    Date of Patent: April 23, 2002
    Assignee: Origin Medsystems, Inc.
    Inventors: Larry Voss, Steven Peng, David Hancock, Grace Carlson