Patents by Inventor Gregory M. Hyde

Gregory M. Hyde 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: 7927370
    Abstract: An apparatus including a tether, and an aptation device coupled to the tether at a position corresponding to a location to contact cusps of an atrioventricular valve during systole, wherein the tether and aptation device are suitable for percutaneous delivery to a patient. An apparatus including a support annulus comprising a length corresponding to a circumference of one of an interior portion of an atrium and an atrioventricular valve annulus; and an aptation device coupled to the support annulus corresponding to a location to contact cusps of an atrioventricular valve during at least one of systole when the support annulus is seated in one of an atrium and an atrioventricular valve annulus, wherein the support annulus and aptation device are suitable for percutaneous delivery to a patient. Also, a method of introducing an aptation device to contact cusps or leaflets of an atrioventricular valve.
    Type: Grant
    Filed: February 5, 2008
    Date of Patent: April 19, 2011
    Assignee: Advanced Cardiovascular Systems, Inc.
    Inventors: William E. Webler, James D. Breeding, Brad D. Bisson, Firas Mourtada, Gregory M. Hyde, Stephanie A. Szobota, Gabriel Asongwe, Jeffrey T. Ellis
  • Publication number: 20110087147
    Abstract: Methods and devices are disclosed that enable safe, rapid and relatively short and straight access to the cerebral arteries for the introduction of interventional devices to treat acute ischemic stroke. In addition, the disclosed methods and devices provide means to securely close the access site to the cerebral arteries to avoid the potentially devastating consequences of a transcervical hematoma.
    Type: Application
    Filed: December 13, 2010
    Publication date: April 14, 2011
    Inventors: Michi E. Garrison, Tony M. Chou, Gregory M. Hyde
  • Publication number: 20110034986
    Abstract: Systems and methods are adapted for treating the carotid artery. The systems include interventional catheters and blood vessel access devices that are adapted for transcervical insertion into the carotid artery. Embodiments of the systems and methods can be used in combination with embolic protection systems including blood flow reversal mechanisms, arterial filters, and arterial occlusion devices.
    Type: Application
    Filed: July 12, 2010
    Publication date: February 10, 2011
    Inventors: Tony M. Chou, Michi E. Garrison, Gregory M. Hyde, Richard Renati, Alan Schaer
  • Publication number: 20110004147
    Abstract: A retrograde flow system is configured for treating an artery. The system includes an arterial access device adapted to be introduced into an artery and receive blood flow from the artery. A shunt fluidly is connected to the arterial access device, wherein the shunt provides a pathway for blood to flow from the arterial access device to a return site. A flow control assembly is coupled to the shunt and is adapted to regulate blood flow through the shunt between at least a first blood flow state and at least a second blood flow state. A shut-off valve assembly automatically blocks fluid flow through the shunt in response to injection of the fluid into the arterial access device.
    Type: Application
    Filed: June 3, 2010
    Publication date: January 6, 2011
    Inventors: Richard J. Renati, Michi E. Garrison, Alan K. Schaer, Gregory M. Hyde
  • Publication number: 20100280431
    Abstract: Interventional procedures on the carotid arteries are performed through a transcervical access while retrograde blood flow is established from the internal carotid artery to a venous or external location. A system for use in accessing and treating a carotid artery includes an arterial access device, a shunt fluidly connected to the arterial access device, and a flow control assembly coupled to the shunt and adapted to regulate blood flow through the shunt between at least a first blood flow state and at least a second blood flow state. The flow control assembly includes one or more components that interact with the blood flow through the shunt.
    Type: Application
    Filed: July 13, 2010
    Publication date: November 4, 2010
    Inventors: Enrique Criado, Tony M. Chou, Michi E. Garrison, Gregory M. Hyde, Alan Schaer, Richard Renati
  • Publication number: 20100228269
    Abstract: A clip-based vascular closure devices is configured to be pre-applied to a blood vessel prior to insertion of a vascular access device (such as a procedural sheath) through an incision, puncture, penetration or other passage through the blood vessel. In an embodiment, the disclosed closure device is applied in a carotid artery via a transcervical access such as by forming an incision in the patient's neck to in order to access the blood vessel or other body lumen.
    Type: Application
    Filed: February 26, 2010
    Publication date: September 9, 2010
    Inventors: Michi E. Garrison, Richard J. Renati, Alan K. Schaer, Gregory M. Hyde
  • Publication number: 20100217276
    Abstract: Methods and devices are disclosed that enable safe, rapid and relatively short and straight access to the cerebral arteries for the introduction of interventional devices to treat acute ischemic stroke. In addition, the disclosed methods and devices provide means to securely close the access site to the cerebral arteries to avoid the potentially devastating consequences of a transcervical hematoma.
    Type: Application
    Filed: December 22, 2009
    Publication date: August 26, 2010
    Inventors: Michi E. Garrison, Tony M. Chou, Gregory M. Hyde
  • Publication number: 20100185216
    Abstract: A suture-based vessel closure device can perform the dilation of an arteriotomy puncture and does not require previous dilation of the arteriotomy puncture by a separate device or by a procedural sheath dilator. The suture-based vessel closure device can place one or more sutures across the vessel access site such that, when the suture ends are tied off after sheath removal, the stitch or stitches provide hemostasis to the access site.
    Type: Application
    Filed: December 8, 2009
    Publication date: July 22, 2010
    Inventors: Michi E. Garrison, Gregory M. Hyde, Richard Renati, Alan Schaer, Tony M. Chou
  • Publication number: 20100042118
    Abstract: A suture-based vessel closure device can perform the dilation of an arteriotomy puncture and does not require previous dilation of the arteriotomy puncture by a separate device or by a procedural sheath dilator. The suture-based vessel closure device can place one or more sutures across the vessel access site such that, when the suture ends are tied off after sheath removal, the stitch or stitches provide hemostasis to the access site.
    Type: Application
    Filed: August 12, 2009
    Publication date: February 18, 2010
    Inventors: Michi E. Garrison, Gregory M. Hyde, Richard Renati, Alan Schaer, Tony M. Chou
  • Publication number: 20090254166
    Abstract: An interventional catheter is adapted for treating a blood vessel. In an embodiment, the catheter includes an elongate shaft sized for insertion in a blood vessel and a stent positioned on a distal region of the elongate shaft. An expandable dilation member is coupled to a distal region of the elongate shaft. The expandable dilation member is adapted to expand outward. A stent containment member is positioned over the elongate shaft and the stent to contain the stent in a collapsed state.
    Type: Application
    Filed: February 5, 2009
    Publication date: October 8, 2009
    Inventors: Tony M. Chou, Michi E. Garrison, Gregory M. Hyde, Richard Renati, Alan Schaer
  • Publication number: 20090024072
    Abstract: Interventional procedures on the carotid arteries are performed through a transcervical access while retrograde blood flow is established from the internal carotid artery to a venous or external location. A system for use in accessing and treating a carotid artery includes an arterial access device, a shunt fluidly connected to the arterial access device, and a flow control assembly coupled to the shunt and adapted to regulate blood flow through the shunt between at least a first blood flow state and at least a second blood flow state. The flow control assembly includes one or more components that interact with the blood flow through the shunt.
    Type: Application
    Filed: July 18, 2008
    Publication date: January 22, 2009
    Inventors: Enrique Criado, Tony M. Chou, Michi E. Garrison, Gregory M. Hyde, Alan Schaer, Richard Renati
  • Patent number: 7404824
    Abstract: An apparatus including a tether, and an aptation device coupled to the tether at a position corresponding to a location to contact cusps of an atrioventricular valve during systole, wherein the tether and aptation device are suitable for percutaneous delivery to a patient. An apparatus including a support annulus comprising a length corresponding to a circumference of one of an interior portion of an atrium and an atrioventricular valve annulus; and an aptation device coupled to the support annulus corresponding to a location to contact cusps of an atrioventricular valve during at least one of systole when the support annulus is seated in one of an atrium and an atrioventricular valve annulus, wherein the support annulus and aptation device are suitable for percutaneous delivery to a patient. Also, a method of introducing an aptation device to contact cusps or leaflets of an atrioventricular valve.
    Type: Grant
    Filed: November 12, 2003
    Date of Patent: July 29, 2008
    Assignee: Advanced Cardiovascular Systems, Inc.
    Inventors: William E. Webler, James D. Breeding, Brad D. Bisson, Firas Mourtada, Gregory M. Hyde, Stephanie A. Szobota, Gabriel Asongwe, Jeffrey T. Ellis
  • Publication number: 20080125860
    Abstract: An apparatus including a tether, and an aptation device coupled to the tether at a position corresponding to a location to contact cusps of an atrioventricular valve during systole, wherein the tether and aptation device are suitable for percutaneous delivery to a patient. An apparatus including a support annulus comprising a length corresponding to a circumference of one of an interior portion of an atrium and an atrioventricular valve annulus; and an aptation device coupled to the support annulus corresponding to a location to contact cusps of an atrioventricular valve during at least one of systole when the support annulus is seated in one of an atrium and an atrioventricular valve annulus, wherein the support annulus and aptation device are suitable for percutaneous delivery to a patient. Also, a method of introducing an aptation device to contact cusps or leaflets of an atrioventricular valve.
    Type: Application
    Filed: February 5, 2008
    Publication date: May 29, 2008
    Inventors: William E. Webler, James D. Breeding, Brad D. Bisson, Firas Mourtada, Gregory M. Hyde, Stephanie A. Szobota, Gabriel Asongwe, Jeffrey T. Ellis
  • Publication number: 20080125861
    Abstract: An apparatus including a tether, and an aptation device coupled to the tether at a position corresponding to a location to contact cusps of an atrioventricular valve during systole, wherein the tether and aptation device are suitable for percutaneous delivery to a patient. An apparatus including a support annulus comprising a length corresponding to a circumference of one of an interior portion of an atrium and an atrioventricular valve annulus; and an aptation device coupled to the support annulus corresponding to a location to contact cusps of an atrioventricular valve during at least one of systole when the support annulus is seated in one of an atrium and an atrioventricular valve annulus, wherein the support annulus and aptation device are suitable for percutaneous delivery to a patient. Also, a method of introducing an aptation device to contact cusps or leaflets of an atrioventricular valve.
    Type: Application
    Filed: February 5, 2008
    Publication date: May 29, 2008
    Inventors: William E. Webler, James D. Breeding, Brad D. Bisson, Firas Mourtada, Gregory M. Hyde, Stephanie A. Szobota, Gabriel Asongwe, Jeffrey T. Ellis
  • Patent number: 5755765
    Abstract: Intravenous cardiac leads having at least one electrode intended to be implanted within the coronary veins are disclosed. Also disclosed are structures and techniques for advancing such leads through the atrium and coronary sinus into the coronary veins.
    Type: Grant
    Filed: January 24, 1997
    Date of Patent: May 26, 1998
    Assignee: Cardiac Pacemakers, Inc.
    Inventors: Gregory M. Hyde, Stuart R. Chastain, Bruce A. Tockman, Randy W. Westlund, Ronald W. Heil, Jr., David M. Flynn, Randall M. Peterfeso
  • Patent number: 5549551
    Abstract: A dilatation catheter having a balloon with an inflated length than can be adjusted according to the length of stenosis to be dilated. In one embodiment an exterior sheath having an expandable distal tip is employed about a elongated balloon which can be longitudinally adjusted so as to expose a length of balloon which provides a working balloon length required to dilate the stenosis. In another embodiment, the balloon has independently inflatable chambers. In yet another embodiment, the balloon has longitudinal tubular sections which expand sequentially higher pressures. Other means are also described.
    Type: Grant
    Filed: December 22, 1994
    Date of Patent: August 27, 1996
    Assignee: Advanced Cardiovascular Systems, Inc.
    Inventors: James C. Peacock, III, Gregory M. Hyde, Wilfred J. Samson, Michael Clayman
  • Patent number: 5318527
    Abstract: A system for removing an in-place intravascular device such as a catheter or guidewire from a patient's body lumen such as from a coronary artery and advancing a catheter or other similar device through the vascular system until its distal end is located at a desired location within the vascular system. The system includes an exchange catheter, which may be a dilatation catheter, having a flexible strand forming a loop at the distal end of the catheter which is adapted to be disposed about the guidewire or catheter which is in-place within the patient. The loop is tightened about the elongated intraluminal in-place device to be removed so that the catheter can be advanced over the in-place device until the distal end of the catheter is at a desired location within the patient's vasculature. The catheter may be used to perform a diagnostic or therapeutic procedure such as an angioplasty or a replacement device may be advanced through an inner lumen and out the distal end of the catheter.
    Type: Grant
    Filed: December 22, 1992
    Date of Patent: June 7, 1994
    Assignee: Advanced Cardiovascular Systems, Inc.
    Inventors: Gregory M. Hyde, Jon A. Becker, Kee S. Lee