Patents by Inventor Jeffrey A. LaRose

Jeffrey A. LaRose 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: 8512013
    Abstract: A rotary blood pump includes a casing defining a pumping chamber. The pumping chamber has a blood inlet and a tangential blood outlet. One or more motor stators are provided outside of the pumping chamber. A rotatable impeller is within the pumping chamber and is adapted to cause blood entering the pumping chamber to move to the blood outlet. The impeller has one or more magnetic regions. The impeller is radially constrained in rotation by magnetic coupling to one or more motor stators and is axially constrained in rotation by one or more hydrodynamic thrust bearing surfaces on the impeller.
    Type: Grant
    Filed: January 16, 2007
    Date of Patent: August 20, 2013
    Assignee: Heartware, Inc.
    Inventors: Jeffrey A. LaRose, Charles R. Shambaugh
  • Patent number: 8506470
    Abstract: A method of estimating the blood flow rate of a heart ventricle assist device which is positioned externally of, or implanted in, a patient. The assist device comprises a blood pump having a rapidly rotating, electrically powered impeller, and comprises briefly interrupting power to the impeller to cause its rotation to slow. From this, blood viscosity can be estimated, which viscosity is used to obtain real time, estimated blood flow rates and pressure heads. Apparatus for accomplishing this is disclosed.
    Type: Grant
    Filed: February 15, 2011
    Date of Patent: August 13, 2013
    Assignee: Heartware, Inc.
    Inventors: Jeffrey A. LaRose, Udai Singh
  • Patent number: 8419609
    Abstract: An impeller for a blood pump such as a magnetically driven, rotary ventricular assist device for pumping blood of a patient, the impeller being substantially entirely made of an alloy which consists essentially of about 70-80 weight percent of platinum and 20-30 weight percent of cobalt.
    Type: Grant
    Filed: October 5, 2005
    Date of Patent: April 16, 2013
    Assignee: Heartware Inc.
    Inventors: Charles R. Shambaugh, Jr., Kartikeyan Trichi, Jeffrey A. LaRose
  • Publication number: 20120226350
    Abstract: Methods and apparatus for controlling the operation of, and providing power for and to, implantable ventricular assist devices which includes a pump employing a brushless DC motor-driven blood pump, are disclosed. In one embodiment, a control system for driving an implantable blood pump is provided. The digital processor is responsive to data associated with the operation of the pump received at the data transfer pump, and from program data stored in the memory, (i) to determine therefrom, the identity of the pump, (ii) to determine therefrom, electrical characteristics and features of the identified pump, and (iii) to adaptively generate and apply to the data port, control signals for driving the identified pump.
    Type: Application
    Filed: December 8, 2011
    Publication date: September 6, 2012
    Inventors: John Rudser, Jeffrey A. LaRose
  • Patent number: 8152493
    Abstract: A rotary blood pump may include one or more motor stators overlying exterior surfaces of a wall defining a pumping chamber. A rotatable impeller within the pumping chamber may have a hydrodynamic thrust bearing surface adapted to constrain a position of the impeller along an axis of rotation relative to the wall when the impeller is rotating about the axis of rotation. The impeller position may then be constrained without requiring a constant polarity magnetic force to be applied in the axial direction from a fixed position of the housing.
    Type: Grant
    Filed: April 30, 2008
    Date of Patent: April 10, 2012
    Assignee: Hearthware Inc.
    Inventors: Jeffrey A. LaRose, Charles R. Shambaugh, Jr., Daniel G. White, Lisandro Rivera, Kartikeyan Trichi, Palanivelu Thyagarajan, legal representative
  • Publication number: 20120063942
    Abstract: A rotary blood pump includes a casing defining a pumping chamber. The pumping chamber has a blood inlet and a tangential blood outlet. One or more motor stators are provided outside of the pumping chamber. A rotatable impeller is within the pumping chamber and is adapted to cause blood entering the pumping chamber to move to the blood outlet. The impeller has one or more magnetic regions. The impeller is radially constrained in rotation by magnetic coupling to one or more motor stators and is axially constrained in rotation by one or more hydrodynamic thrust bearing surfaces on the impeller.
    Type: Application
    Filed: August 4, 2011
    Publication date: March 15, 2012
    Inventors: Jeffrey A. LaRose, Charles R. Shambaugh
  • Publication number: 20120059212
    Abstract: The present invention is a conduit device designed to be placed within a wall of a heart, such as through a prepared opening or hole in the heart wall. The conduit is hollow and extends to form a sleeve over a portion of the heart pump, such as a VAD, which traverses the heart wall and enters a chamber of the heart. The conduit provides for a simplified and noninvasive approach to removal and/or replacement of the heart pump.
    Type: Application
    Filed: August 5, 2011
    Publication date: March 8, 2012
    Inventors: Jeffrey A. LaRose, Douglas E. Godshall
  • Publication number: 20120035411
    Abstract: A rotary blood pump includes a casing defining a pumping chamber. The pumping chamber has a blood inlet and a tangential blood outlet. One or more motor stators are provided outside of the pumping chamber. A rotatable impeller is within the pumping chamber and is adapted to cause blood entering the pumping chamber to move to the blood outlet. The impeller has one or more magnetic regions. The impeller is radially constrained in rotation by magnetic coupling to one or more motor stators and is axially constrained in rotation by one or more hydrodynamic thrust bearing surfaces on the impeller.
    Type: Application
    Filed: July 12, 2011
    Publication date: February 9, 2012
    Inventors: Jeffrey A. LaRose, Charles R. Shambaugh
  • Publication number: 20120029265
    Abstract: One aspect of an intravascular ventricular assist device is an implantable blood pump where the pump includes a housing defining a bore having an axis, one or more rotors disposed within the bore, each rotor including a plurality of magnetic poles, and one or more stators surrounding the bore for providing a magnetic field within the bore to induce rotation of each of the one or more rotors. Another aspect of the invention includes methods of providing cardiac assistance to a mammalian subject as, for example, a human. Further aspects of the invention include rotor bodies having helical channels formed longitudinally along the length of the body of the rotor where each helical channel is formed between peripheral support surface areas facing radially outwardly and extending generally in circumferential directions around the rotational axis of the rotor.
    Type: Application
    Filed: August 2, 2011
    Publication date: February 2, 2012
    Inventors: Jeffrey A. LaRose, Charles R. Shambaugh, JR., Daniel G. White, Richard A. Marquis, Steven A. White, Kartikeyan Trichi, Palanivelu Thyagarajan
  • Publication number: 20110301403
    Abstract: An axial-flow blood pump for pumping blood includes a substantially cylindrical outer enclosure. A tubular housing concentric with and located within the outer enclosure has at one end an inlet and at an opposite end an outlet. A motor stator is concentric with and located between the outer enclosure and the tubular housing. An impeller is concentric with and located within the tubular housing. The impeller is suspended in operation by a combination of passive magnetic forces between magnets within the impeller or magnetized regions of the impeller and the motor stator and hydrodynamic thrust forces generated as blood flows between the tubular housing and a plurality of hydrodynamic thrust bearing surfaces located on the impeller. A volute may be in fluid-tight connection with the outlet of the tubular housing for receiving blood in the axial direction and directing blood in a direction normal to the axial direction.
    Type: Application
    Filed: August 17, 2011
    Publication date: December 8, 2011
    Inventors: Jeffrey A. LaRose, Charles R. Shambaugh, JR., Kartikeyan Trichi, Richard A. Marquis, Daniel G. White
  • Patent number: 8007254
    Abstract: An axial-flow blood pump for pumping blood includes a substantially cylindrical outer enclosure. A tubular housing concentric with and located within the outer enclosure has at one end an inlet and at an opposite end an outlet. A motor stator is concentric with and located between the outer enclosure and the tubular housing. An impeller is concentric with and located within the tubular housing. The impeller is suspended in operation by a combination of passive magnetic forces between magnets within the impeller or magnetized regions of the impeller and the motor stator and hydrodynamic thrust forces generated as blood flows between the tubular housing and a plurality of hydrodynamic thrust bearing surfaces located on the impeller. A volute may be in fluid-tight connection with the outlet of the tubular housing for receiving blood in the axial direction and directing blood in a direction normal to the axial direction.
    Type: Grant
    Filed: June 2, 2006
    Date of Patent: August 30, 2011
    Assignee: Heartware, Inc.
    Inventors: Jeffrey A. LaRose, Charles R. Shambaugh, Jr., Kartikeyan Trichi, Richard A. Marquis, Daniel G. White
  • Patent number: 7997854
    Abstract: A rotary blood pump includes a casing defining a pumping chamber. The pumping chamber has a blood inlet and a tangential blood outlet. One or more motor stators are provided outside of the pumping chamber. A rotatable impeller is within the pumping chamber and is adapted to cause blood entering the pumping chamber to move to the blood outlet. The impeller has one or more magnetic regions. The impeller is radially constrained in rotation by magnetic coupling to one or more motor stators and is axially constrained in rotation by one or more hydrodynamic thrust bearing surfaces on the impeller.
    Type: Grant
    Filed: January 16, 2007
    Date of Patent: August 16, 2011
    Assignee: Heartware, Inc.
    Inventors: Jeffrey A. LaRose, Charles R. Shambaugh
  • Patent number: 7976271
    Abstract: A rotary blood pump includes a casing defining a pumping chamber. The pumping chamber has a blood inlet and a tangential blood outlet. One or more motor stators are provided outside of the pumping chamber. A rotatable impeller is within the pumping chamber and is adapted to cause blood entering the pumping chamber to move to the blood outlet. The impeller has one or more magnetic regions. The impeller is radially constrained in rotation by magnetic coupling to one or more motor stators and is axially constrained in rotation by one or more hydrodynamic thrust bearing surfaces on the impeller.
    Type: Grant
    Filed: January 16, 2007
    Date of Patent: July 12, 2011
    Assignee: Heartware, Inc.
    Inventors: Jeffrey A. LaRose, Charles R. Shambaugh
  • Patent number: 7972122
    Abstract: A blood pump comprises a pump housing; a plurality of rotors positioned in said housing, each rotor comprising an impeller having a hydrodynamic surface for pumping blood; and a motor including a plurality of magnetic poles carried by each impeller, having motor stators, each including electrically conductive coils located adjacent to or within the housing. At least one of the rotors is adopted to rotate clockwise, and at least one of rotors is adopted to rotate counterclockwise. By this means, stator or stationary blades between the rotors may not be needed.
    Type: Grant
    Filed: April 29, 2005
    Date of Patent: July 5, 2011
    Assignee: Heartware, Inc.
    Inventors: Jeffrey A. LaRose, Charles R. Shambaugh, Jr.
  • Publication number: 20110137108
    Abstract: A method of estimating the blood flow rate of a heart ventricle assist device which is positioned externally of, or implanted in, a patient. The assist device comprises a blood pump having a rapidly rotating, electrically powered impeller, and comprises briefly interrupting power to the impeller to cause its rotation to slow. From this, blood viscosity can be estimated, which viscosity is used to obtain real time, estimated blood flow rates and pressure heads. Apparatus for accomplishing this is disclosed.
    Type: Application
    Filed: February 15, 2011
    Publication date: June 9, 2011
    Inventors: Jeffrey A. LaRose, Udai Singh
  • Patent number: 7887479
    Abstract: A method of estimating the blood flow rate of a heart ventricle assist device which is positioned externally of, or implanted in, a patient. The assist device comprises a blood pump having a rapidly rotating, electrically powered impeller, and comprises briefly interrupting power to the impeller to cause its rotation to slow. From this, blood viscosity can be estimated, which viscosity is used to obtain real time, estimated blood flow rates and pressure heads. Apparatus for accomplishing this is disclosed.
    Type: Grant
    Filed: May 24, 2005
    Date of Patent: February 15, 2011
    Assignee: Heartware, Inc.
    Inventors: Jeffrey A. LaRose, Udai Singh
  • Patent number: 7699586
    Abstract: A blood pump comprises a pump housing; a rotor positioned in the housing and comprising an impeller having a hydrodynamic surface for pumping blood; and a motor including a plurality of magnets carried by the impeller, plus a rotor stator, including an electrically conductive coil located adjacent to or within the housing. The impeller comprises radially outwardly extending, bladelike projections that define generally longitudinally extending spaces between the projections. The shape of the projections and the spaces therebetween tend to drive blood in the spaces in an axial direction as the impeller is rotated. The spaces collectively have a total width along most of their lengths at the radial periphery of the rotor, that is substantially equal to or less than the collective width of the projections along most of their lengths at the radial periphery. Thus, the bladelike projections are thicker, achieving significant advantages.
    Type: Grant
    Filed: December 3, 2004
    Date of Patent: April 20, 2010
    Assignee: Heartware, Inc.
    Inventors: Jeffrey A. LaRose, Charles R. Shambaugh, Jr.
  • Publication number: 20100069847
    Abstract: An axial-flow blood pump for pumping blood includes a substantially cylindrical outer enclosure. A tubular housing concentric with and located within the outer enclosure has at one end an inlet and at an opposite end an outlet. A motor stator is concentric with and located between the outer enclosure and the tubular housing. An impeller is concentric with and located within the tubular housing. The impeller is suspended in operation by a combination of passive magnetic forces between magnets within the impeller or magnetized regions of the impeller and the motor stator and hydrodynamic thrust forces generated as blood flows between the tubular housing and a plurality of hydrodynamic thrust bearing surfaces located on the impeller. A volute may be in fluid-tight connection with the outlet of the tubular housing for receiving blood in the axial direction and directing blood in a direction normal to the axial direction.
    Type: Application
    Filed: June 2, 2006
    Publication date: March 18, 2010
    Inventors: Jeffrey A. LaRose, Charles R. Shambaugh, JR., Richard A. Marquis, Daniel G. White, Kartikeyan Trichi, Palanivelu Thyagarajan
  • Patent number: 7591777
    Abstract: A method of estimating the blood flow rate of a heart ventricle assist device which is positioned externally of, or implanted in, a patient. The assist device comprises a blood pump having a rapidly rotating, electrically powered impeller, and comprises briefly interrupting power to the impeller to cause its rotation to slow. From this, blood viscosity can be estimated, which viscosity is used to obtain real time, estimated blood flow rates and pressure heads.
    Type: Grant
    Filed: May 25, 2004
    Date of Patent: September 22, 2009
    Assignee: Heartware Inc.
    Inventor: Jeffrey A. LaRose
  • Publication number: 20090234447
    Abstract: A rotary blood pump may include one or more motor stators overlying exterior surfaces of a wall defining a pumping chamber. A rotatable impeller within the pumping chamber may have a hydrodynamic thrust bearing surface adapted to constrain a position of the impeller along an axis of rotation relative to the wall when the impeller is rotating about the axis of rotation. The impeller position may then be constrained without requiring a constant polarity magnetic force to be applied in the axial direction from a fixed position of the housing.
    Type: Application
    Filed: April 30, 2008
    Publication date: September 17, 2009
    Inventors: Jeffrey A. LaRose, Charles R. Shambaugh, JR., Daniel G. White, Lisandro Rivera, Kartikeyan Trichi, Palanivelu Thyagarajan