Patents by Inventor Scott J. Wolf

Scott J. Wolf 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: 20130144203
    Abstract: Disclosed is a conduit that provides a bypass around an occlusion or stenosis in a coronary artery. The conduit is a tube adapted to be positioned in the heart wall to provide a passage for blood to flow between a heart chamber and a coronary artery, at a site distal to the occlusion or stenosis. The conduit has a section of blood vessel attached to its interior lumen which preferably includes at least one naturally occurring one-way valve positioned therein. The valve prevents the backflow of blood from the coronary artery into the heart chamber.
    Type: Application
    Filed: June 12, 2012
    Publication date: June 6, 2013
    Inventors: Peter J. Wilk, David Y. Phelps, Scott J. Wolf
  • Publication number: 20120323227
    Abstract: Methods and devices for treating nasal airways are provided. Such devices and methods may improve airflow through an internal and/or external nasal valve, and comprise the use of mechanical re-shaping, energy application and other treatments to modify the shape, structure, and/or air flow characteristics of an internal nasal valve, an external nasal valve or other nasal airways.
    Type: Application
    Filed: June 13, 2012
    Publication date: December 20, 2012
    Applicant: AERIN MEDICAL, INC.
    Inventors: Scott J. Wolf, Andrew Frazier
  • Publication number: 20120323232
    Abstract: Methods and devices for treating nasal airways are provided. Such devices and methods may improve airflow through an internal and/or external nasal valve, and comprise the use of mechanical re-shaping, energy application and other treatments to modify the shape, structure, and/or air flow characteristics of an internal nasal valve, an external nasal valve or other nasal airways.
    Type: Application
    Filed: June 13, 2012
    Publication date: December 20, 2012
    Applicant: AERIN MEDICAL, INC.
    Inventors: Scott J. Wolf, Andrew Frazier
  • Patent number: 8216174
    Abstract: Disclosed is a conduit that provides a bypass around an occlusion or stenosis in a coronary artery. The conduit is a tube adapted to be positioned in the heart wall to provide a passage for blood to flow between a heart chamber and a coronary artery, at a site distal to the occlusion or stenosis. The conduit has a section of blood vessel attached to its interior lumen which preferably includes at least one naturally occurring one-way valve positioned therein. The valve prevents the backflow of blood from the coronary artery into the heart chamber.
    Type: Grant
    Filed: April 30, 2010
    Date of Patent: July 10, 2012
    Assignee: JenaValve Technology, Inc.
    Inventors: Peter J. Wilk, David Y. Phelps, Scott J. Wolf
  • Publication number: 20100210991
    Abstract: Disclosed is a conduit that provides a bypass around an occlusion or stenosis in a coronary artery. The conduit is a tube adapted to be positioned in the heart wall to provide a passage for blood to flow between a heart chamber and a coronary artery, at a site distal to the occlusion or stenosis. The conduit has a section of blood vessel attached to its interior lumen which preferably includes at least one naturally occurring one-way valve positioned therein. The valve prevents the backflow of blood from the coronary artery into the heart chamber.
    Type: Application
    Filed: April 30, 2010
    Publication date: August 19, 2010
    Inventors: Peter J. Wilk, David Y. Phelps, Scott J. Wolf
  • Patent number: 7736327
    Abstract: Disclosed is a conduit that provides a bypass around an occlusion or stenosis in a coronary artery. The conduit is a tube adapted to be positioned in the heart wall to provide a passage for blood to flow between a heart chamber and a coronary artery, at a site distal to the occlusion or stenosis. The conduit has a section of blood vessel attached to its interior lumen which preferably includes at least one naturally occurring one-way valve positioned therein. The valve prevents the backflow of blood from the coronary artery into the heart chamber.
    Type: Grant
    Filed: May 9, 2008
    Date of Patent: June 15, 2010
    Assignee: JenaValve Technology, Inc.
    Inventors: Peter J. Wilk, David Y. Phelps, Scott J. Wolf
  • Patent number: 7704222
    Abstract: Disclosed is a conduit that provides a bypass around an occlusion or stenosis in a coronary artery. The conduit is a tube adapted to be positioned in the heart wall to provide a passage for blood to flow between a heart chamber and a coronary artery, at a site distal to the occlusion or stenosis. The conduit has a section of blood vessel attached to its interior lumen which preferably includes at least one naturally occurring one-way valve positioned therein. The valve prevents the backflow of blood from the coronary artery into the heart chamber.
    Type: Grant
    Filed: August 30, 2004
    Date of Patent: April 27, 2010
    Assignee: JenaValve Technology, Inc.
    Inventors: Peter J. Wilk, David Y. Phelps, Scott J. Wolf
  • Patent number: 7608102
    Abstract: A mitral valve therapy device and method treats dilated cardiomyopathy. The device is configured to be placed in the coronary sinus of a heart adjacent to the mitral valve annulus. The device includes a force distributor that distributes an applied force along a pericardial wall of the coronary sinus, and a force applier that applies the applied force to one or more discrete portions of a wall of the coronary sinus adjacent to the mitral valve annulus to reshape the mitral valve annulus in a localized manner.
    Type: Grant
    Filed: March 29, 2004
    Date of Patent: October 27, 2009
    Assignee: Cardiac Dimensions, Inc.
    Inventors: John M. Adams, David G. Reuter, Mark L. Mathis, Scott J. Wolf
  • Publication number: 20080262602
    Abstract: Disclosed is a conduit that provides a bypass around an occlusion or stenosis in a coronary artery. The conduit is a tube adapted to be positioned in the heart wall to provide a passage for blood to flow between a heart chamber and a coronary artery, at a site distal to the occlusion or stenosis. The conduit has a section of blood vessel attached to its interior lumen which preferably includes at least one naturally occurring one-way valve positioned therein. The valve prevents the backflow of blood from the coronary artery into the heart chamber.
    Type: Application
    Filed: May 9, 2008
    Publication date: October 23, 2008
    Inventors: Peter J. Wilk, David Y. Phelps, Scott J. Wolf
  • Patent number: 7011095
    Abstract: Disclosed is a conduit that provides a bypass around a stenosis or occlusion in a coronary artery. The conduit is adapted to be positioned in the myocardium to provide a passage for blood to flow from a heart chamber to a coronary artery, at a site distal to the blockage or stenosis in the coronary artery. The conduit has a one-way valve positioned therein to prevent the backflow of blood from the coronary artery into the heart chamber.
    Type: Grant
    Filed: June 18, 2003
    Date of Patent: March 14, 2006
    Assignee: Percardia, Inc.
    Inventors: Scott J. Wolf, Peter J. Wilk, Nancy M. Briefs
  • Patent number: 7004958
    Abstract: A mitral valve staple device treats mitral regurgitation of a heart. The device includes first and second leg portions, each leg portion terminating in a tissue piercing end, and a connection portion extending between the first and second leg portions. The connection portion has an initial stressed and distorted configuration to separate the first and second leg portion by a first distance when the tissue piercing ends pierce the mitral valve annulus and a final unstressed and undistorted configuration after the tissue piercing ends pierce the mitral valve annulus to separate the first and second leg portions by a second distance which is shorter than the first distance. The device is deployed within the heart transvenously through a catheter positioned in the coronary sinus adjacent the mitral valve annulus. A tool forces the mitral valve staple device through the wall of the catheter for deployment in the heart.
    Type: Grant
    Filed: March 6, 2002
    Date of Patent: February 28, 2006
    Assignee: Cardiac Dimensions, Inc.
    Inventors: John M. Adams, Scott J. Wolf
  • Patent number: 6953481
    Abstract: A conduit is provided to provide a bypass around a blockage in the coronary artery. The conduit is adapted to be positioned in the myocardium or heart wall to provide a passage for blood to flow between a chamber of the heart such as the left ventricle and the coronary artery, distal to the blockage. The stent is self-expanding or uses a balloon to expand the stent in the heart wall. Various attachment means are provided to anchor the stent and prevent its migration.
    Type: Grant
    Filed: June 23, 2004
    Date of Patent: October 11, 2005
    Assignee: Percardia, Inc.
    Inventors: David Y. Phelps, Greg R. Furnish, Todd A. Hall, Mark Griffin, Scott J. Wolf, Peter J. Wilk, Jay Schmelter, Simon Furnish
  • Patent number: 6949122
    Abstract: A mitral valve therapy device and method treats dilated cardiomyopathy. The device is configured to be placed in the coronary sinus of a heart adjacent to the mitral valve annulus. The device includes a force distributor that distributes an applied force along a pericardial wall of the coronary sinus, and a force applier that applies the applied force to one or more discrete portions of a wall of the coronary sinus adjacent to the mitral valve annulus to reshape the mitral valve annulus in a localized manner.
    Type: Grant
    Filed: November 1, 2001
    Date of Patent: September 27, 2005
    Assignee: Cardiac Dimensions, Inc.
    Inventors: John M. Adams, David G. Reuter, Mark L. Mathis, Scott J. Wolf
  • Patent number: 6949080
    Abstract: A stent suitable for implantation in myocardial tissue to enhance perfusion therein may include a tubular member having first and second ends and a lumen. The first end of the stent may be configured to pierce myocardial tissue and the lumen may be configured to be placed in flow communication with a coronary vessel. The stent may further include a means for retaining the tubular member within the myocardial tissue. A method for implanting the stent may include positioning the first end of the stent at a desired implantation site and applying force to the second end of the stent to implant the stent within the myocardial tissue. The method may further include engaging the means for retaining with the myocardial tissue to retain the stent in position.
    Type: Grant
    Filed: August 15, 2002
    Date of Patent: September 27, 2005
    Assignee: Percardia, Inc.
    Inventors: Scott J. Wolf, Greg R. Furnish, Todd A. Hall, David Y. Phelps, Peter J. Wilk, Nancy Briefs, William Santamore, Daniel Burkhoff, Simon Furnish, Stephen Evans, Roger D. Kamm, Richard Renati, Gerald Melsky, Eun Bo Shim
  • Patent number: 6881199
    Abstract: A method of flowing blood from a heart chamber to a coronary vessel includes providing a conduit with a first end and second end, providing the conduit within a heart wall such that the first end of the conduit is open towards the heart chamber and the second end is open towards the blood vessel, and during diastole, restricting a flow of blood from the coronary vessel to the heart chamber via the natural valve.
    Type: Grant
    Filed: April 10, 2001
    Date of Patent: April 19, 2005
    Assignee: Percardia, Inc.
    Inventors: Peter J. Wilk, David Y. Phelps, Scott J. Wolf
  • Publication number: 20040249452
    Abstract: A mitral valve therapy device and method treats dilated cardiomyopathy. The device is configured to be placed in the coronary sinus of a heart adjacent to the mitral valve annulus. The device includes a force distributor that distributes an applied force along a pericardial wall of the coronary sinus, and a force applier that applies the applied force to one or more discrete portions of a wall of the coronary sinus adjacent to the mitral valve annulus to reshape the mitral valve annulus in a localized manner.
    Type: Application
    Filed: March 29, 2004
    Publication date: December 9, 2004
    Inventors: John M. Adams, David G. Reuter, Mark L. Mathis, Scott J. Wolf
  • Publication number: 20040186507
    Abstract: Described herein are various methods and apparatuses for delivering stents and other devices into the myocardium of a patient. One preferred stent delivery system provides access to the insertion site in the myocardium by advancing a delivery catheter through a blockage in a coronary artery, or around the blockage through a coronary vein or through a channel or tunnel formed around the blockage. In one embodiment, once the distal end of the delivery catheter is adjacent the myocardium, an angled bend is created in the catheter by actuating expandable steering guides mounted to the catheter which cooperate with the walls of the blood vessel to cause the catheter to turn. Then, a guidewire is advanced through the delivery catheter and into the myocardium. In another embodiment, a tip-deflecting pull wire extends from the distal end of the delivery catheter which may be actuated to turn towards and then inserted into the myocardium.
    Type: Application
    Filed: July 24, 2003
    Publication date: September 23, 2004
    Applicant: Percardia, Inc.
    Inventors: Todd A. Hall, Greg R. Furnish, Simon M. Furnish, Scott J. Wolf, Peter J. Wilk, David Y. Phelps, Vincent Pompili
  • Publication number: 20040147869
    Abstract: Left ventricular conduits and related methods are disclosed for achieving bypass of a partially or completely occluded coronary artery. More broadly, conduits for allowing communication of bodily fluids from one portion of a patient's body to another and related methods are disclosed, including conduits for forming a blood flow path from a chamber of the heart to a vessel or from one vessel to another. In other embodiments, the conduits achieve a coronary artery bypass by allowing blood communication between the left ventricle and the coronary artery or between a proximal portion of the coronary artery and a distal portion of the coronary artery. The conduits may be placed completely through the heart wall or extend only partially therein. Conduits may take on a variety of configurations for allowing the control of blood flow therethrough, including curved or tapered shapes.
    Type: Application
    Filed: October 9, 2003
    Publication date: July 29, 2004
    Applicant: Percardia, Inc.
    Inventors: Scott J. Wolf, Greg R. Furnish, Todd A. Hall, David Y. Phelps, Peter J. Wilk, Nancy A. Briefs, William Santamore, Daniel Burkhoff, Simon Furnish, Stephen Evans, Roger D. Kamm, Richard Renad, Gerald Melsky, Eun Bo Shim
  • Publication number: 20040133240
    Abstract: A system for treating cardiac valve dysfunction includes a lead with electrodes in electrical communication with muscle tissue proximate to a cardiac valve to be treated. Electrical energy is delivered to the lead electrodes to stimulate contraction of the muscle tissue and thereby constrict the cardiac valve. The lead may be received within a blood vessel in the patient. Detection circuitry may detect a physiological signal in the patient for controlling the timing of delivery of electrical energy. The lead may have one or more undulations. The lead may also be combined with a prosthesis to provide a combined electromechanical cardiac valve therapy. The lead can be attached to the prosthesis or formed integrally with the prosthesis. One embodiment implanted in the coronary sinus is used to treat dilated cardiomyopathy of the mitral valve.
    Type: Application
    Filed: January 7, 2003
    Publication date: July 8, 2004
    Applicant: Cardiac Dimensions, Inc.
    Inventors: John M. Adams, Scott J. Wolf, David Reuter, Mark Mathis
  • Publication number: 20040118415
    Abstract: Described herein are various methods and apparatuses for delivering stents or conduits and other devices into the myocardium of a patient. One preferred stent delivery system provides access to the insertion site in the myocardium by advancing a delivery catheter through a blockage in a coronary artery, or around the blockage through a coronary vein or through a channel or tunnel formed around the blockage. In one embodiment, once the distal end of the delivery catheter is adjacent the myocardium, an angled bend is created in the catheter by actuating expandable steering guides mounted to the catheter which cooperate with the walls of the blood vessel to cause the catheter to turn. Then, a guidewire is advanced through the delivery catheter and into the myocardium. In another embodiment, a tip-deflecting pull wire extends from the distal end of the delivery catheter which may be actuated to turn towards and then inserted into the myocardium.
    Type: Application
    Filed: December 5, 2003
    Publication date: June 24, 2004
    Inventors: Todd A. Hall, Greg R. Furnish, Simon M. Furnish, Scott J. Wolf, Peter J. Wilk, David Y. Phelps, Vincent Pompili