Patents by Inventor Christopher T. Boyle

Christopher T. Boyle 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: 20130334032
    Abstract: Implantable medical grafts fabricated of metallic or pseudometallic films of biocompatible materials having a plurality of microperforations passing through the film in a pattern that imparts fabric-like qualities to the graft or permits the geometric deformation of the graft. The implantable graft is preferably fabricated by vacuum deposition of metallic and/or pseudometallic materials into either single or multi-layered structures with the plurality of microperforations either being formed during deposition or after deposition by selective removal of sections of the deposited film. The implantable medical grafts are suitable for use as endoluminal or surgical grafts and may be used as vascular grafts, stent-grafts, skin grafts, shunts, bone grafts, surgical patches, non-vascular conduits, valvular leaflets, filters, occlusion membranes, artificial sphincters, tendons and ligaments.
    Type: Application
    Filed: June 3, 2013
    Publication date: December 19, 2013
    Inventors: Julio C. Palmaz, Christopher T. Boyle
  • Publication number: 20130287931
    Abstract: The method of making devices is disclosed herein. More particularly, a method of manufacturing a device, comprises: vacuum depositing a device-forming metal onto an unpatterned, exterior surface of a generally cylindrical substrate to form a generally tubular, unpatterned crystalline metal film under at least one vacuum deposition process condition selected from at least one of chamber pressure, deposition pressure, and partial pressure of a process gas, said at least one process condition optimized to substantially eliminate formation of chemical and intra- and intergranular precipitates in the bulk material; and removing the deposited generally tubular, unpatterned crystalline metal film from the generally cylindrical substrate.
    Type: Application
    Filed: March 20, 2013
    Publication date: October 31, 2013
    Inventors: Julio C. PALMAZ, Steven R. BAILEY, Christopher T. BOYLE, Christopher E. BANAS
  • Publication number: 20130274687
    Abstract: The present invention consists of an implantable structural element for in vivo delivery of bioactive active agents to a situs in a body. The implantable structural element may be configured as an implantable prosthesis, such as an endoluminal stent, cardiac valve, osteal implant or the like, which serves a dual function of being prosthetic and a carrier for a bioactive agent. Alternatively, the implantable structural element may simply be an implantable article that serves the single function of acting as a time-release carrier for the bioactive agent.
    Type: Application
    Filed: March 11, 2013
    Publication date: October 17, 2013
    Inventor: Christopher T. Boyle
  • Publication number: 20130242105
    Abstract: Systems and methods are described for automatic video recording of sporting events involving multiple participants.
    Type: Application
    Filed: March 13, 2013
    Publication date: September 19, 2013
    Applicant: H4 ENGINEERING, INC.
    Inventors: Christopher T. Boyle, Scott K. Taylor, Alexander G. Sammons
  • Patent number: 8529616
    Abstract: An implantable expandable medical device in which selected regions of the device are in a martensite phase and selected regions are in an austenite phase. The martensitic regions exhibit pseudoplastic behavior in vivo and may be deformed without recovery under in vivo body conditions. In contrast the austenitic regions exhibit superelastic behavior in vivo and will recover their pre-programmed configuration upon deformation or release of an applied strain.
    Type: Grant
    Filed: June 20, 2005
    Date of Patent: September 10, 2013
    Assignee: Advanced Bio Prosthetic Surfaces, Ltd., a wholly owned subsidary of Palmaz Scientific, Inc.
    Inventors: Christopher T. Boyle, Christopher T. Banas, Denes Marton
  • Publication number: 20130229528
    Abstract: System and methods for pointing a device, such as a camera, at a remote target wherein the pointing of the device is controlled by a combination of location information obtained by global positioning technology and orientation information obtained by line of sight detection of the direction from the device to the target.
    Type: Application
    Filed: March 1, 2013
    Publication date: September 5, 2013
    Applicant: H4 Engineering, Inc.
    Inventors: Scott K. Taylor, Christopher T. Boyle, Alexander G. Sammons, Denes Marton
  • Publication number: 20130230293
    Abstract: The automatic video recording systems disclosed comprise a remote device associated with a recorded subject, is waterproof and shockproof, assists in orienting a recording camera at the subject, senses voice commands, and records sound and the voice of the subject. The apparatus may be built using various degrees of integration of its components. The related methods hereof include automatically adjusting the focus and zoom of the camera depending on the location and velocity of the subject.
    Type: Application
    Filed: March 4, 2013
    Publication date: September 5, 2013
    Applicant: H4 ENGINEERING, INC.
    Inventors: Christopher T. Boyle, Scott K. Taylor, Alexander G. Sammons, Denes Marton
  • Publication number: 20130166018
    Abstract: The implantable structural element for in vivo controlled delivery of bioactive active agents to a situs in a body. The implantable structural element may be configured as an implantable prosthesis, such as an endoluminal stent, cardiac valve, osteal implant or the like, which serves a dual function of being prosthetic and a carrier for a bioactive agent. Control over elution of the bioactive agents occurs through a plurality of cantilever-like cover members which prevent drug elution until an endogenous or exogenous stimulus causes the cover members to open and permit drug elution.
    Type: Application
    Filed: August 20, 2012
    Publication date: June 27, 2013
    Applicant: Advanced Bio Prosthetic Surfaces, Ltd., a wholly owned subsidiary of Palmaz Scientific, Inc.
    Inventors: Christopher T. Boyle, Steven R. Bailey, Denes Marton, Christopher E. Banas
  • Patent number: 8460333
    Abstract: A metal balloon catheter having a main tubular body, a metal balloon proximate a distal end of the main tubular body, a central annulus extending along an entire longitudinal aspect of the catheter for accommodating a guidewire therethrough and an inflation annulus adjacent the central annulus which extends along the longitudinal axis of the main tubular body and terminates in fluid flow communication with an inflation chamber of the metal balloon. The metal balloon catheter may be either unitary integral metal catheter in which the main tubular body and the balloon are fabricated of metal, or it may consist of a polymeric main tubular body and a metal balloon.
    Type: Grant
    Filed: October 24, 2003
    Date of Patent: June 11, 2013
    Assignee: Advanced Bio Prosthetic Surfaces, Ltd.
    Inventors: Christopher T. Boyle, Steven R. Bailey, Christopher E. Banas, Julio C. Palmaz
  • Patent number: 8458879
    Abstract: Implantable medical grafts fabricated of metallic or pseudometallic films of biocompatible materials having a plurality of microperforations passing through the film in a pattern that imparts fabric-like qualities to the graft or permits the geometric deformation of the graft. The implantable graft is preferably fabricated by vacuum deposition of metallic and/or pseudometallic materials into either single or multi-layered structures with the plurality of microperforations either being formed during deposition or after deposition by selective removal of sections of the deposited film. The implantable medical grafts are suitable for use as endoluminal or surgical grafts and may be used as vascular grafts, stent-grafts, skin grafts, shunts, bone grafts, surgical patches, non-vascular conduits, valvular leaflets, filters, occlusion membranes, artificial sphincters, tendons and ligaments.
    Type: Grant
    Filed: December 8, 2009
    Date of Patent: June 11, 2013
    Assignee: Advanced Bio Prosthetic Surfaces, Ltd., a wholly owned subsidiary of Palmaz Scientific, Inc.
    Inventors: Julio C. Palmaz, Christopher T. Boyle
  • Publication number: 20130041251
    Abstract: Implantable in vivo sensors used to monitor physical, chemical or electrical parameters within a body. The in vivo sensors are integral with an implantable medical device and are responsive to externally or internally applied energy. Upon application of energy, the sensors undergo a phase change in at least part of the material of the device which is then detected external to the body by conventional techniques such as radiography, ultrasound imaging, magnetic resonance imaging, radio frequency imaging or the like. The in vivo sensors of the present invention may be employed to provide volumetric measurements, flow rate measurements, pressure measurements, electrical measurements, biochemical measurements, temperature, measurements, or measure the degree and type of deposits within the lumen of an endoluminal implant, such as a stent or other type of endoluminal conduit.
    Type: Application
    Filed: August 28, 2012
    Publication date: February 14, 2013
    Applicant: Advanced Bio Prosthetic Surfaces, Ltd., a wholly owned subsidiary of Palmaz Scientific, Inc.
    Inventors: Steven R. Bailey, Christopher T. Boyle, Denes Marton, Christopher E. Banas
  • Patent number: 8372139
    Abstract: Implantable in vivo sensors used to monitor physical, chemical or electrical parameters within a body. The in vivo sensors are integral with an implantable medical device and are responsive to externally or internally applied energy. Upon application of energy, the sensors undergo a phase change in at least part of the material of the device which is then detected external to the body by conventional techniques such as radiography, ultrasound imaging, magnetic resonance imaging, radio frequency imaging or the like. The in vivo sensors of the present invention may be employed to provide volumetric measurements, flow rate measurements, pressure measurements, electrical measurements, biochemical measurements, temperature, measurements, or measure the degree and type of deposits within the lumen of an endoluminal implant, such as a stent or other type of endoluminal conduit.
    Type: Grant
    Filed: February 14, 2001
    Date of Patent: February 12, 2013
    Assignee: Advanced Bio Prosthetic Surfaces, Ltd.
    Inventors: Steven R. Bailey, Christopher T. Boyle, Denes Marton, Christopher E. Banas
  • Publication number: 20130018449
    Abstract: This invention relates to prosthetic cardiac and venous valves and a single catheter device and minimally invasive techniques for percutaneous and transluminal valvuloplasty and prosthetic valve implantation.
    Type: Application
    Filed: July 11, 2012
    Publication date: January 17, 2013
    Applicant: ABPS Venture One, Ltd.
    Inventors: Steven R. Bailey, Christopher T. Boyle
  • Patent number: 8348990
    Abstract: An implantable expandable medical device in which selected regions of the device are in a martensite phase and selected regions are in an austenite phase. The martensitic regions exhibit pseudoplastic behavior in vivo and may be deformed without recovery under in vivo body conditions. In contrast the austenitic regions exhibit superelastic behavior in vivo and will recover their pre-programmed configuration upon deformation or release of an applied strain.
    Type: Grant
    Filed: June 20, 2005
    Date of Patent: January 8, 2013
    Assignee: Advanced Bio Prosthetic Surfaces, Ltd.
    Inventors: Christopher T. Boyle, Christopher E. Banas, Denes Marton
  • Publication number: 20120310158
    Abstract: A metal balloon catheter having a main tubular body, a metal balloon proximate a distal end of the main tubular body, a central annulus extending along an entire longitudinal aspect of the catheter for accommodating a guidewire therethrough and an inflation annulus adjacent the central annulus which extends along the longitudinal axis of the main tubular body and terminates in fluid flow communication with an inflation chamber of the metal balloon. The metal balloon catheter may be either unitary integral metal catheter in which the main tubular body and the balloon are fabricated of metal, or it may consist of a polymeric main tubular body and a metal balloon.
    Type: Application
    Filed: August 16, 2012
    Publication date: December 6, 2012
    Applicant: Advanced Bio Prosthetic Surfaces, Ltd., a wholly owned subsidiary of Palmaz Scientific, Inc.
    Inventors: Christopher T. Boyle, Steven R. Bailey, Christopher E. Banas, Julio C. Palmaz
  • Publication number: 20120221098
    Abstract: The present invention consists of an implantable structural element for in vivo delivery of bioactive active agents to a situs in a body. The implantable structural element may be configured as an implantable prosthesis, such as an endoluminal stent, cardiac valve, osteal implant or the like, which serves a dual function of being prosthetic and a carrier for a bioactive agent. Alternatively, the implantable structural element may simply be an implantable article that serves the single function of acting as a time-release carrier for the bioactive agent.
    Type: Application
    Filed: March 5, 2012
    Publication date: August 30, 2012
    Applicant: Advanced Bio Prosthetic Surfaces, Ltd., a wholly owned subsidiary of Palmaz Scientific, Inc.
    Inventor: Christopher T. Boyle
  • Patent number: 8252044
    Abstract: The disclosure of the invention provides an implantable structural element for in vivo delivery of bioactive agents to a situs in a body. The implantable structural element may be configured as an implantable prosthesis, such as an endoluminal stent, cardiac valve, osteal implant or the like, which serves a dual function of being prosthetic and a carrier for a bioactive agent. Alternatively, the implantable structural element may simply be an implantable article that serves the single function of acting as a time-release carrier for the bioactive agent.
    Type: Grant
    Filed: November 17, 2000
    Date of Patent: August 28, 2012
    Assignee: Advanced Bio Prosthestic Surfaces, Ltd.
    Inventor: Christopher T. Boyle
  • Patent number: 8221493
    Abstract: This invention relates to prosthetic cardiac and venous valves and a single catheter device and minimally invasive techniques for percutaneous and transluminal valvuloplasty and prosthetic valve implantation.
    Type: Grant
    Filed: February 5, 2008
    Date of Patent: July 17, 2012
    Assignee: ABPS Venture One, Ltd.
    Inventors: Christopher T. Boyle, Steven R. Bailey
  • Patent number: 8128690
    Abstract: The present invention consists of an implantable structural element for in vivo delivery of bioactive active agents to a situs in a body. The implantable structural element may be configured as an implantable prosthesis, such as an endoluminal stent, cardiac valve, osteal implant or the like, which serves a dual function of being prosthetic and a carrier for a bioactive agent. Alternatively, the implantable structural element may simply be an implantable article that serves the single function of acting as a time-release carrier for the bioactive agent.
    Type: Grant
    Filed: July 15, 2010
    Date of Patent: March 6, 2012
    Assignee: Advanced Bio Prosthetic Surfaces, Ltd.
    Inventor: Christopher T. Boyle
  • Patent number: D684210
    Type: Grant
    Filed: March 5, 2012
    Date of Patent: June 11, 2013
    Assignee: H4 Engineering, Inc.
    Inventors: Christopher T. Boyle, Scott Taylor, Alexander G. Sammons, John T. O'Callaghan, Christian Elder