Patents by Inventor James R. Keogh

James R. Keogh 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: 20160354201
    Abstract: A transcatheter valve prosthesis includes a stent having a compressed configuration for delivery within a vasculature and an expanded configuration for deployment within a native heart valve and a prosthetic valve component disposed within and secured to the stent. A compartment is coupled to the stent, and a filtered opening into the compartment is configured to permit blood flow there-through and to trap emboli in the blood flow within the compartment.
    Type: Application
    Filed: June 5, 2015
    Publication date: December 8, 2016
    Inventor: James R. Keogh
  • Publication number: 20160302925
    Abstract: A method for valve replacement or valve repair is disclosed comprising the steps of acquiring an anatomical image of a patient, correlating the image to the patient, guiding a valve replacement delivery member or a valve repair delivery member within the patient while tracking the position of the delivery member in the patient, positioning the valve replacement member or valve repair member in a desired position to place a valve or repair valve and removing the delivery member from the patient. In one aspect, a method and device are provided that involve imaging a native root using an interoperative technique, then introducing a device that is easily visualized in a chosen imaging modality.
    Type: Application
    Filed: April 14, 2016
    Publication date: October 20, 2016
    Inventors: James R. Keogh, Timothy R. Ryan, Carol E. Eberhardt, Mark T. Stewart, James R. Skarda, Timothy G. Laske, Alexander J. Hill, Jack D. Lemmon, David E. Francischelli
  • Publication number: 20160157883
    Abstract: A device and method for ablating tissue is disclosed comprising the steps of acquiring an anatomical image of a patient, correlating the image to the patient, guiding an ablating member within the patient while tracking the position of the ablating member in the patient, positioning the ablating member in a desired position to ablate tissue, emitting ablating energy from the ablating member to form an ablated tissue area and removing the ablating member from the patient.
    Type: Application
    Filed: December 2, 2015
    Publication date: June 9, 2016
    Inventors: James B. Hissong, Mark T. Stewart, David E. Francischelli, James R. Keogh, Hotaik Lee, Nadine B. Smith
  • Patent number: 9096839
    Abstract: The present invention provides biological compositions and methods for making the same.
    Type: Grant
    Filed: April 26, 2007
    Date of Patent: August 4, 2015
    Assignee: Arteriocyte Medical Systems, Inc.
    Inventors: Tessy Kanayinkal, Laura A. Yonce, Debra Mullins-Hirte, Trevor C. Huang, Rohit Cariappa, Kenneth E. Merte, James R. Keogh, Kevin D. McIntosh, Brian J. Steffens, Asha S. Nayak, Erick L. Johnson
  • Patent number: 8801706
    Abstract: An ablation catheter including an inner tube having a length, a distal end and a longitudinal axis, a plurality of needles extending from the distal end of the inner tube and biased away from the longitudinal axis, an outer sheath slideably moveable relative to the inner tube to surround at least a portion of the length of the inner tube and its extending needles, and a radio frequency energy source electrically connected to the plurality of needles.
    Type: Grant
    Filed: April 30, 2010
    Date of Patent: August 12, 2014
    Assignee: Medtronic, Inc.
    Inventors: Paul T. Rothstein, Cathleen A. Bergin, Cynthia T. Clague, Michael M. Green, Alexander J. Hill, James R. Keogh, Timothy G. Laske
  • Publication number: 20140221823
    Abstract: A method for valve replacement or valve repair is disclosed comprising the steps of acquiring an anatomical image of a patient, correlating the image to the patient, guiding a valve replacement delivery member or a valve repair delivery member within the patient while tracking the position of the delivery member in the patient, positioning the valve replacement member or valve repair member in a desired position to place a valve or repair valve and removing the delivery member from the patient. In one aspect, a method and device are provided that involve imaging a native root using an interoperative technique, then introducing a device that is easily visualized in a chosen imaging modality.
    Type: Application
    Filed: February 6, 2014
    Publication date: August 7, 2014
    Applicant: Medtronic, Inc.
    Inventors: James R. Keogh, Timothy R. Ryan, Carol E. Eberhardt, Mark T. Stewart, James R. Skarda, Timothy G. Laske, Alexander J. Hill, Jack D. Lemmon, David E. Francischelli
  • Patent number: 8623010
    Abstract: An instrument including an elongated shaft and a non-conductive handle is disclosed. The shaft defines a proximal section and a distal section. The distal section forms an electrically conductive tip. Further, the shaft is adapted to be transitionable from a straight state to a first bent state. The shaft is capable of independently maintaining the distinct shapes associated with the straight state and the first bent state. The handle is rigidly coupled to the proximal section of the shaft. The instrument is useful for epicardial pacing and/or mapping of the heart for temporary pacing on a beating heart, for optimizing the placement of ventricular leads for the treatment of patients with congestive heart failure and ventricular dysynchrony and/or for use in surgical ablation procedures.
    Type: Grant
    Filed: June 9, 2009
    Date of Patent: January 7, 2014
    Assignee: Medtronic, Inc.
    Inventors: Jon M. Ocel, Roderick E. Briscoe, David E. Francischelli, Scott E. Jahns, James R. Keogh, Katherine S. Jolly, Matthew D. Bonner
  • Publication number: 20130184727
    Abstract: Embodiments of the invention provide a vessel support system and a method of vessel harvesting. The system can include a cutting device, a catheter adapted to be inserted into a section of the vessel in order to support the vessel as the cutting device is advanced over the vessel, and a cannula adapted to be coupled to the vessel and adapted to receive the catheter as the catheter is inserted into the section of the vessel. The method can include orienting a cutting device coaxially with the cannula and the catheter and advancing the cutting device over the cannula, the catheter, and the section of the vessel in order to core out the section of the vessel and a portion of the surrounding tissue.
    Type: Application
    Filed: October 16, 2007
    Publication date: July 18, 2013
    Applicant: SCOTTSDALE MEDICAL DEVICES, INC.
    Inventors: Cynthia T. Clague, Michael J. Hobday, Raymond W. Usher, Roderick E. Briscoe, Katherine S. Jolly, Ana R. Menk, Christopher P. Olig, Eric A. Meyer, Steven C. Christian, Thomas P. Daigle, Robert H. Reetz, Jeffrey D. Sandstrom, James R. Keogh, Matthew D. Bonner, Scott E. Jahns, Philip J. Haarstad
  • Patent number: 8480696
    Abstract: The invention provides a system and method for harvesting a vessel section. The system comprises a vessel support member, a handle, and a tubular cutting device. The vessel support member is introduced into the vessel section to be harvested. The tubular cutting device may comprise an outer tubular member or an outer and an inner tubular member. The outer tubular member carries at least one cutting element. The tubular member or members are advanced over the vessel section and vessel support member to core out the vessel section and tissue adjoining the vessel section.
    Type: Grant
    Filed: June 16, 2005
    Date of Patent: July 9, 2013
    Assignee: Medtronic, Inc.
    Inventors: Cynthia T. Clague, Michael J. Hobday, Raymond W. Usher, Roderick E. Briscoe, Katherine S. Jolly, Ana R. Buhr, Christopher P. Olig, Eric A. Meyer, Steven C. Christian, Tom P. Daigle, Robert H. Reetz, Jeffrey D. Sandstrom, James R. Keogh, Matthew D. Bonner, Scott E. Jahns
  • Patent number: 8454634
    Abstract: A device for temporarily sealing an opening in a blood vessel is provided. The device comprises a cutting mechanism for creating an opening in a blood vessel and a seal for sealing the opening in the blood vessel. The seal is delivered through an inner lumen of a tool body coupled to the cutting mechanism. Methods for using the device to construct an anastomosis between two vessels are also provided.
    Type: Grant
    Filed: November 28, 2006
    Date of Patent: June 4, 2013
    Assignee: Medtronic, Inc.
    Inventors: Scott E. Jahns, James R. Keogh, Paul A. Pignato, Christopher P. Olig, Karen P. Montpetit, Cynthia T. Clague, Raymond W. Usher, Philip J. Haarstad, Gary W. Guenst
  • Publication number: 20130072786
    Abstract: A device and method for valve replacement or valve repair is disclosed comprising the steps of acquiring an anatomical image of a patient, correlating the image to the patient, guiding a valve replacement delivery member or a valve repair delivery member within the patient while tracking the position of the delivery member in the patient, positioning the valve replacement member or valve repair member in a desired position to replace a valve or repair valve and removing the delivery member from the patient.
    Type: Application
    Filed: August 14, 2012
    Publication date: March 21, 2013
    Applicant: MEDTRONIC, INC.
    Inventors: James R. Keogh, Timothy R. Ryan, Carol E. Eberhardt, Mark T. Stewart, James R. Skarda, Timothy G. Laske, Alexander J. Hill, Jack D. Lemmon, David E. Francischelli
  • Patent number: 8273072
    Abstract: Apparatus and methods for injecting biological agents into tissue. Devices are provided having elongate shafts and distal injection heads for transversely driving needles into tissue and injecting medical agents into the tissue through the needles. A longitudinal force directed along the shaft can be translated to a needle driving force transverse to the shaft. Some devices provide controllably variable needle penetration depth. Devices include mechanical needle drivers utilizing four link pantographs, rack and pinions, and drive yokes for driving a first needle bearing body toward a second tissue contacting body. Other devices include inflatable members for driving and retracting needles. Still other devices include magnets for biasing the needles in extended and/or retracted positions. The invention includes minimally invasive methods for epicardially injecting cardiocyte precursor cells into infarct myocardial tissue.
    Type: Grant
    Filed: November 18, 2009
    Date of Patent: September 25, 2012
    Assignee: Medtronic, Inc.
    Inventors: Scott E. Jahns, Gary S. Oehme, Matthew D. Bonner, James R. Keogh
  • Patent number: 8241274
    Abstract: A device and method for valve replacement or valve repair is disclosed comprising the steps of acquiring an anatomical image of a patient, correlating the image to the patient, guiding a valve replacement delivery member or a valve repair delivery member within the patient while tracking the position of the delivery member in the patient, positioning the valve replacement member or valve repair member in a desired position to place a valve or repair valve and removing the delivery member from the patient. In one aspect of the invention, a delivery system is provided for percutaneous delivery of a heart valve to a predetermined position in the heart of a patient, where the delivery system itself includes features that allow it to be accurately positioned in the heart. In another aspect of the invention, a delivery system is provided for percutaneous repair of a heart valve in the heart of a patient, where the repair system itself includes features that allow it to be accurately positioned in the heart.
    Type: Grant
    Filed: September 30, 2009
    Date of Patent: August 14, 2012
    Assignee: Medtronic, Inc.
    Inventors: James R. Keogh, Timothy R. Ryan, Carol E. Eberhardt, Mark T. Stewart, James R. Skarda, Timothy G. Laske, Alexander J. Hill, Jack D. Lemmon, David E. Francischelli
  • Patent number: 8221402
    Abstract: A device and method for ablating tissue is disclosed comprising the steps of acquiring an anatomical image of a patient, correlating the image to the patient, guiding an ablating member within the patient while tracking the position of the ablating member in the patient, positioning the ablating member in a desired position to ablate tissue, emitting ablating energy from the ablating member to form an ablated tissue area and removing the ablating member from the patient.
    Type: Grant
    Filed: December 9, 2005
    Date of Patent: July 17, 2012
    Assignee: Medtronic, Inc.
    Inventors: David E. Francischelli, James B. Hissong, James R. Keogh, James R. Skarda, Mark T. Stewart
  • Patent number: 8162933
    Abstract: An ablation apparatus including a maneuvering mechanism, a conductive element attached to the apparatus, a sensor attached to the apparatus and an output device in communication with the sensor is provided. The sensor senses vibration during the ablation procedure and sends a signal to the output device to reduce power to the conductive element.
    Type: Grant
    Filed: March 3, 2004
    Date of Patent: April 24, 2012
    Assignee: Medtronic, Inc.
    Inventors: David E. Francischelli, Scott E. Jahns, James R. Keogh
  • Publication number: 20120022605
    Abstract: A system for performing a cardiac medical procedure can included a cardiac medical device, a steerable catheter device, a cardiac stimulator, and a controller. The cardiac stimulator can be configured to adjust beating of a heart by electrically stimulating the heart. The controller can be configured to control electrical stimulation provided by the cardiac stimulator to adjust the beating of the heart to a first condition and to adjust the beating of the heart to a second condition.
    Type: Application
    Filed: July 14, 2011
    Publication date: January 26, 2012
    Applicant: Medtronic, Inc.
    Inventors: Scott E. JAHNS, Michael R.S. Hill, James R. Keogh
  • Patent number: 8036741
    Abstract: A method of performing a medical procedure, such as surgery, is provided. A nerve is stimulated in order to adjust the beating of the heart to a first condition, such as a stopped or slowed condition. The medical procedure is performed on the heart or another organ. The stimulation of the nerve is stopped in order to adjust the beating of the heart to a second condition, such as a beating condition. The heart itself may also be stimulated to a beating condition, such as by pacing. The stimulation of the nerve may be continued in order to allow the medical procedure to be continued. A sensor to sense a characteristic of a fluid or tissue, such as an impending contraction, may be also used during the medical procedure. Systems and devices for performing the medical procedure are also provided.
    Type: Grant
    Filed: September 11, 2009
    Date of Patent: October 11, 2011
    Assignee: Medtronic, Inc.
    Inventors: Scott E. Jahns, Michael R. S. Hill, James R. Keogh
  • Patent number: 7976543
    Abstract: Methods and apparatus employed in surgery involving making precise incisions in vessels of the body, particularly cardiac blood vessels in coronary revascularization procedures conducted on the stopped or beating heart are disclosed. Such incisions are created by applying an elongated electrosurgical cutting electrode to the outer surface of the vessel wall in substantially parallel alignment with the body vessel axis, the elongated electrosurgical cutting electrode having a predetermined cutting electrode length exceeding the cutting electrode width. RF energy is applied between the electrosurgical cutting electrode and the ground electrode at an energy level and for a duration sufficient to cut an elongated slit through the vessel wall where the elongated electrosurgical cutting electrode is applied to the surface of the vessel wall.
    Type: Grant
    Filed: January 26, 2007
    Date of Patent: July 12, 2011
    Assignee: Medtronic, Inc.
    Inventors: Cynthia T. Clague, Philip J. Haarstad, Scott E. Jahns, James R. Keogh, Christopher P. Olig, Raymond W. Usher
  • Patent number: 7967816
    Abstract: An electrosurgical instrument including an elongated shaft and a non-conductive handle. The shaft defines a proximal section, a distal section, and an internal lumen extending from the proximal section. The distal section forms an electrically conductive tip and defines at least one passage for distributing fluid. Further, the shaft is adapted to be transitionable from a straight state to a first bent state. The shaft is capable of independently maintaining the distinct shapes associated with the straight state and the first bent state. The handle is rigidly coupled to the proximal section of the shaft. With this in mind, an exterior surface of the shaft distal the handle and proximal the distal section is electrically non-conductive. In one preferred embodiment, the shaft is comprised of an elongated electrode body surrounded by an electrical insulator.
    Type: Grant
    Filed: January 25, 2002
    Date of Patent: June 28, 2011
    Assignee: Medtronic, Inc.
    Inventors: Jon Ocel, Roderick Briscoe, David Francischelli, Scott Jahns, James R. Keogh
  • Publication number: 20110152904
    Abstract: Embodiments of the invention provide a cutting device and method of vessel harvesting. The cutting device can include at least one tubular member, a cutting element, and a centering member. The cutting device can include at least one tubular member with a flexible section and a cutting element. The method of vessel harvesting can include spacing a cutting element of the cutting device from the vessel as the cutting element is advanced over the vessel.
    Type: Application
    Filed: October 16, 2007
    Publication date: June 23, 2011
    Applicant: SCOTTSDALE MEDICAL DEVICES, INC.
    Inventors: Cynthia T. Clague, Michael J. Hobday, Raymond W. Usher, Roderick E. Briscoe, Katherine S. Jolly, Rebecca Buhr, Christopher P. Olig, Eric A. Meyer, Steven C. Christian, Thomas P. Daigle, Robert H. Reetz, Jeffrey D. Sandstrom, James R. Keogh, Matthew D. Bonner, Scott E. Jahns, Philip J. Haarstad