Patents by Inventor John E. Nash

John E. Nash 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: 7666161
    Abstract: A device suitable for removing material from a living being is provided, featuring an infusate pump, and an aspiration pump, both powered by a motor. The aspiration pump and infusate pump preferably feature a helical pumping mechanism, and operate at a high rate of rotation, thereby ensuring adequate pumping performance and flexibility. Additionally, a narrow crossing profile is maintained, ensuring that the device may reach more tortuous regions of the vasculature. In one embodiment, the system comprises a wire-guided mono-rail catheter with a working head mounted on a flexible portion of the catheter that can laterally displace away from the guide wire to facilitate thrombus removal. The working head may be operated to separate and move away from the guide wire to come within a closer proximity of the obstructive material to more effectively remove it from the vessel.
    Type: Grant
    Filed: May 21, 2007
    Date of Patent: February 23, 2010
    Assignee: The Spectranetics Corporation
    Inventors: John E. Nash, Greg Walters, Dennis M. Sauro, Mark Eberhart, William T. Fisher, Douglas G. Evans
  • Publication number: 20090292276
    Abstract: A system and method for opening a lumen in an occluded blood vessel, e.g., a coronary bypass graft, of a living being. The system comprises an atherectomy catheter having a working head, e.g., a rotary impacting impeller, and a debris extraction sub-system. The atherectomy catheter is located within a guide catheter. The working head is arranged to operate on, e.g., impact, the occlusive material in the occluded vessel to open a lumen therein, whereupon some debris may be produced. The debris extraction sub-system introduces an infusate liquid at a first flow rate adjacent the working head and withdraws that liquid and some blood at a second and higher flow rate, through the guide catheter to create a differential flow adjacent the working head, whereupon the debris is withdrawn in the infusate liquid and blood for collection outside the being's body.
    Type: Application
    Filed: May 19, 2009
    Publication date: November 26, 2009
    Inventors: John E. Nash, William T. Fisher, Charles W. Dodson, JR.
  • Patent number: 7594900
    Abstract: Delivery systems for accessing the targeted tissue within the living being and introduction of at least one agent at select locations into the tissues of the heart such as the myocardium and other select tissues. Where appropriate, portions of the system are steerable to properly orient the device. When tissue penetration is utilized, the device may include a feature to control the depth of penetration. removal. The system may utilize some form of mechanical action or application of energy (e.g. electrical, sonic, thermal, optical, pressurized fluid, radio frequency (RF), nuclear) in the process. The agent delivered to the tissue may include one or more of pharmaceuticals, biologically active agents, radiopaque materials, etc.
    Type: Grant
    Filed: April 17, 2002
    Date of Patent: September 29, 2009
    Assignee: Kensey Nash Corporation
    Inventors: John E. Nash, Douglas G. Evans, David M. Hoganson
  • Publication number: 20090234327
    Abstract: A transmyocardial revascularization system including a plurality of inserts formed of a material to elicit a healing response in tissue of the myocardium and deployment instruments and associated components for deploying the inserts into the wall of the myocardium. The inserts are arranged to be disposed within respective lumens or channels in the wall of the myocardium. The inserts can take various forms, e.g., be solid members, tubular members, or porous members, and may be resorbable, partially resorbable or non-resorbable. In some embodiments the inserts are arranged to be left in place within the channels in the wall of the myocardium to result in plural lumens which enable blood to flow therethrough and into contiguous capillaries. The deployment instruments are arranged to pierce the tissue of the myocardium from either the endocardium or the epicardium to insert the inserts into the myocardium, depending on the particular deployment instrument used.
    Type: Application
    Filed: January 14, 2009
    Publication date: September 17, 2009
    Inventors: Douglas G. Evans, John E. Nash
  • Patent number: 7534249
    Abstract: A system and method for opening a lumen in an occluded blood vessel, e.g., a coronary bypass graft, of a living being. The system comprises an atherectomy catheter having a working head, e.g., a rotary impacting impeller, and a debris extraction sub-system. The atherectomy catheter is located within a guide catheter. The working head is arranged to operate on, e.g., impact, the occlusive material in the occluded vessel to open a lumen therein, whereupon some debris may be produced. The debris extraction sub-system introduces an infusate liquid at a first flow rate adjacent the working head and withdraws that liquid and some blood at a second and higher flow rate, through the guide catheter to create a differential flow adjacent the working head, whereupon the debris is withdrawn in the infusate liquid and blood for collection outside the being's body.
    Type: Grant
    Filed: September 18, 2003
    Date of Patent: May 19, 2009
    Assignee: Kensey Nash Corporation
    Inventors: John E. Nash, William T. Fisher, Charles W. Dodson, Jr.
  • Patent number: 7476234
    Abstract: A transmyocardial revascularization system including a plurality of inserts formed of a material to elicit a healing response in tissue of the myocardium and deployment instruments and associated components for deploying the inserts into the wall of the myocardium. The inserts are arranged to be disposed within respective lumens or channels in the wall of the myocardium. The inserts can take various forms, e.g., be solid members, tubular members, or porous members, and may be resorbable, partially resorbable or non-resorbable. In some embodiments the inserts are arranged to be left in place within the channels in the wall of the myocardium to result in plural lumens which enable blood to flow therethrough and into contiguous capillaries. The deployment instruments are arranged to pierce the tissue of the myocardium from either the endocardium or the epicardium to insert the inserts into the myocardium, depending on the particular deployment instrument used.
    Type: Grant
    Filed: March 9, 2005
    Date of Patent: January 13, 2009
    Assignee: Kensey Nash Corporation
    Inventors: Douglas G. Evans, John E. Nash
  • Patent number: 7419482
    Abstract: A method of vascularizing cardiac tissue using an instrument through the vascular system to an entry situs located at or adjacent the cardiac tissue is provided including providing a flowable agent comprising microspheres or microparticles having a particulate size range of 1 micron to 1 mm, introducing the agent through the instrument, imparting a particle moving force through the instrument that is generated externally to cause the microspheres or microparticles to pass directly through contiguous tissue to target cardiac tissue, the particle-moving force imparting a high pressure on the agent of several thousand psi, the microspheres or microparticles passing through the contiguous tissue without any mechanical means, whereupon the microspheres or microparticles directly enter the target cardiac tissue, forming channels in the wall of the myocardium at spaced locations and in communication with the interior of the heart, and introducing the flowable agent in the channels.
    Type: Grant
    Filed: January 23, 2004
    Date of Patent: September 2, 2008
    Assignee: Kensey Nash Corporation
    Inventors: John E. Nash, Douglas G. Evans, David M. Hoganson
  • Patent number: 7367982
    Abstract: A method for opening a lumen in an occluded blood vessel, e.g., a coronary bypass graft, of a living being. The method entails using an instrument to deploy the stent at occlusive material within the blood vessel to open the lumen, whereupon some debris may be produced. Operating a debris extraction system for removing debris during deployment of the stent.
    Type: Grant
    Filed: November 1, 2004
    Date of Patent: May 6, 2008
    Assignee: Kensey Nash Corporation
    Inventors: John E. Nash, William T. Fisher, Charles W. Dodson, Jr.
  • Publication number: 20080097298
    Abstract: In an embodiment, the invention provides a catheter suitable for use in performing a procedure within a vessel, lumen or organ of a living having a distal end which is steerable, such as upon the application of compression. The catheter may be of the over the wire type, or alternatively may be a rapid exchange catheter. The catheter may provide for a rotating element which may be used to open a clogged vessel, or alternatively to provide information about adjacent tissues, such as may be generated by imaging or guiding arrangements using tissue detection systems known in the art, e.g., ultrasound, optical coherence reflectometry, etc. For rapid exchange catheters having a rotating element, there is provided an offset drive assembly to allow the rotary force to be directed from alongside the guidewire to a location coaxial to and over the guidewire.
    Type: Application
    Filed: August 18, 2006
    Publication date: April 24, 2008
    Inventors: William T. Fisher, David E. Yaeger, John E. Nash, Douglas G. Evans
  • Publication number: 20080082049
    Abstract: A guide wire exchange system including an elongate, flexible, guide wire exchange catheter capable exchanging one guide wire for another in a safe, efficient, and secured manner, where a primary guide wire, after having been advanced through the body, is to be replaced with a secondary guide wire that is to be securely advanced through the body to the target site by the advancement of the exchange catheter over the path, of the primary wire. The exchange catheter may include a securement element in order to releasably secure at least one guide wire to the exchange catheter at or near the distal end of the exchange catheter. Once secured, both the exchange catheter and the secured guide wire(s) may be advanced or retracted in a synchronous manner, without the possibility of divergence at the distal ends of the secured components as they are being manipulated by an operator.
    Type: Application
    Filed: July 12, 2006
    Publication date: April 3, 2008
    Inventors: Douglas G. Evans, John E. Nash, Steven J. Link
  • Patent number: 7316678
    Abstract: An intra-luminal device for the extraction of occlusive or partially occlusive material is disclosed. Said device comprises a novel catheter extension which minimizes cavitation of extracted fluids and also allows the better navigation of tortuous lumens or vasculature.
    Type: Grant
    Filed: March 28, 2003
    Date of Patent: January 8, 2008
    Assignee: Kensey Nash Corporation
    Inventors: John E. Nash, Gregory Walters
  • Patent number: 7264624
    Abstract: A system and method of use for effecting the bypass or other anastomosis, connection, or port in a portion of a native blood vessel, duct, lumen or other tubular organ within the body of a living being. The system includes a connector assembly and a deployment instrument for carrying the device to the desired position within the vessel, duct, lumen or tubular organ. The system includes a piercer-dilator instrument to form an opening in the wall of the vessel, duct, lumen or tubular organ into which a connector assembly may be deployed by the deployment instrument. The connector assembly may be at least partially formed of a resorbable material and includes movable members for securing it to the tissue of the vessel, duct, lumen or tubular organ contiguous with the opening. Other components may be included in the device for expediting the procedure, with or without the use of sutures.
    Type: Grant
    Filed: July 11, 2005
    Date of Patent: September 4, 2007
    Assignee: Kensey Nash Corporation
    Inventors: John E Nash, Douglas G Evans, David M Hoganson
  • Patent number: 7226425
    Abstract: An apparatus for modulating the pressure of a fluid such as a gas within the expandable portion of a guide wire catheter. The apparatus features a means for controllably gripping and releasing the open, proximal end of a tubular guide wire, means for introducing a fluid to a desired pressure and volume into the expandable portion of the tubular guide wire through the open end, and, while maintaining the pressure and volume of fluid in the tubular guide wire, a means for sealing the open end of said tubular guide wire to seal the fluid in the tubular guide wire. In a preferred embodiment, the apparatus also features a deflation tool for re-opening the sealed tubular guide wire and letting the fluid out. In a particularly preferred embodiment, the pressure and volume of fluid in the tubular guide wire is maintained by utilizing an apparatus to crimp the end of the tubular guide wire, effectively sealing the inside bore of the tubular guide wire.
    Type: Grant
    Filed: September 20, 2005
    Date of Patent: June 5, 2007
    Assignee: Kensey Nash Corporation
    Inventors: Mark Eberhart, William T. Fisher, John E. Nash, Dennis M. Sauro
  • Patent number: 7048696
    Abstract: An apparatus for modulating the pressure of a fluid such as a gas within the expandable portion of a guide wire catheter. A preferred embodiment apparatus features a means for controllably gripping and releasing the open, proximal end of a tubular guide wire, means for introducing a fluid to a desired pressure and volume into the expandable portion of the tubular guide wire through the open end, and, while maintaining the pressure and volume of fluid in the tubular guide wire, a means for introducing a sealing member into the open end of said tubular guide wire to seal the fluid in the tubular guide wire. In a particularly preferred embodiment, the apparatus also features a deflation tool for piercing the seal and letting the fluid out. Using this apparatus, the tubular guide wire can be re-sealed and re-opened as necessary.
    Type: Grant
    Filed: June 2, 2005
    Date of Patent: May 23, 2006
    Assignee: Kensey Nash Corporation
    Inventors: Mark Eberhart, William T. Fisher, John E. Nash, Dennis M. Sauro
  • Patent number: 7004914
    Abstract: An apparatus for modulating the pressure of a fluid such as a gas within the expandable portion of a guide wire catheter. In one embodiment, the pressure and volume of fluid in the tubular guide wire is maintained by utilizing an apparatus to crimp the end of the tubular guide wire, effectively sealing the inside bore of the tubular guide wire. Here, a deflation tool might be employed to sever the crimp from the rest of the tubular guide wire, unsealing the bore of the tubular guide wire. Using this apparatus, the tubular guide wire can be re-sealed and re-opened as necessary.
    Type: Grant
    Filed: October 3, 2002
    Date of Patent: February 28, 2006
    Assignee: Kensey Nash Corporation
    Inventors: Mark Eberhart, William T. Fisher, John E. Nash, Dennis M. Sauro
  • Patent number: 6955681
    Abstract: A transmyocardial revascularization system including a plurality of inserts formed of a material to elicit a healing response in tissue of the myocardium and deployment instruments and associated components for deploying the inserts into the wall of the myocardium. The inserts are arranged to be disposed within respective lumens or channels in the wall of the myocardium. The inserts can take various forms, e.g., be solid members, tubular members, or porous members, and may be resorbable, partially resorbable or non-resorbable. In some embodiments the inserts are arranged to be left in place within the channels in the wall of the myocardium to result in plural lumens which enable blood to flow therethrough and into contiguous capillaries. The deployment instruments are arranged to pierce the tissue of the myocardium from either the endocardium or the epicardium to insert the inserts into the myocardium, depending on the particular deployment instrument used.
    Type: Grant
    Filed: November 21, 2002
    Date of Patent: October 18, 2005
    Assignee: Kensey Nash Corporation
    Inventors: Douglas G. Evans, John E. Nash
  • Patent number: 6936056
    Abstract: A system and method for opening a lumen in an occluded blood vessel, e.g., a coronary bypass graft, of a living being. The system comprises an atherectomy catheter having a working head, e.g., a rotary impacting impeller, and a debris extraction sub-system. The atherectomy catheter is located within a guide catheter. The working head is arranged to operate on, e.g., impact, the occlusive material in the occluded vessel to open a lumen therein, whereupon some debris may be produced. The debris extraction sub-system introduces an infusate liquid at a first flow rate adjacent the working head and withdraws that liquid and some blood at a second and higher flow rate, through the guide catheter to create a differential flow adjacent the working head, whereupon the debris is withdrawn in the infusate liquid and blood for collection outside the being's body.
    Type: Grant
    Filed: January 31, 2003
    Date of Patent: August 30, 2005
    Assignee: Kensey Nash Corporation
    Inventors: John E. Nash, William T. Fisher, Charles W. Dodson, Jr., John Michael Henderson, Joseph W. Kaufmann
  • Patent number: 6926707
    Abstract: A tubular instrument including a hollow wall portion and a connector arranged to be used with a guide-wire. The guide-wire has a distal end portion and a proximal end portion, the distal end portion of the guide-wire is arranged to be extended to some interior position within the body of a living being, with the proximal end portion of the guide-wire being located outside the being's body. The connector is located at the distal end of the instrument and is arranged to be readily manipulated by a twisting action to connect the instrument onto the guide-wire for sliding movement therealong.
    Type: Grant
    Filed: January 28, 2003
    Date of Patent: August 9, 2005
    Assignee: Kensey Nash Corporation
    Inventors: John E. Nash, William T. Fisher, H. Michael Cunningham, Gregory Walters
  • Patent number: 6923820
    Abstract: A system and method of use for effecting the bypass or other anastomosis, connection, or port in a portion of a native blood vessel, duct, lumen or other tubular organ within the body of a living being. The system includes a connector assembly and a deployment instrument for carrying the device to the desired position within the vessel, duct, lumen or tubular organ. The system includes a piercer-dilator instrument to form an opening in the wall of the vessel, duct, lumen or tubular organ into which a connector assembly may be deployed by the deployment instrument. The connector assembly may be at least partially formed of a resorbable material and includes movable members for securing it to the tissue of the vessel, duct, lumen or tubular organ contiguous with the opening. Other components may be included in the device for expediting the procedure, with or without the use of sutures.
    Type: Grant
    Filed: February 19, 2002
    Date of Patent: August 2, 2005
    Assignee: Kensey Nash Corporation
    Inventors: John E. Nash, Douglas G. Evans, David M. Hoganson
  • Patent number: 6905505
    Abstract: A system and method for opening a lumen in an occluded blood vessel, e.g., a coronary bypass graft, of a living being. The system comprises an atherectomy catheter having a working head, e.g., a rotary impacting impeller, and a debris extraction sub-system. The atherectomy catheter is located within a guide catheter. The working head is arranged to operate on, e.g., impact, the occlusive material in the occluded vessel to open a lumen therein, whereupon some debris may be produced. The debris extraction sub-system introduces an infusate liquid at a first flow rate adjacent the working head and withdraws that liquid and some blood at a second and higher flow rate, through the guide catheter to create a differential flow adjacent the working head, whereupon the debris is withdrawn in the infusate liquid and blood for collection outside the being's body.
    Type: Grant
    Filed: April 12, 2002
    Date of Patent: June 14, 2005
    Assignee: Kensey Nash Corporation
    Inventors: John E. Nash, William T. Fisher, Charles W. Dodson, Jr.