Patents by Inventor Denes Marton

Denes Marton 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: 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
  • 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
  • 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
  • Patent number: 8083908
    Abstract: A vacuum deposition method for fabricating high-strength nitinol films by sputter depositing nickel and titanium from a heated sputtering target, and controlling the sputter deposition process parameters in order to create high-strength nitinol films that exhibit shape memory and/or superelastic properties without the need for precipitation annealing to attenuate the transition conditions of the deposited material. A vacuum deposited nitinol film having high-strength properties equal to or better than wrought nitinol films and which are characterized by having non-columnar crystal grain structures.
    Type: Grant
    Filed: October 19, 2007
    Date of Patent: December 27, 2011
    Assignee: Advanced Bio Prosthetic Surfaces, Ltd.
    Inventors: Denes Marton, Christopher T. Boyle, Roger W. Wiseman, Christopher E. Banas
  • Publication number: 20100217373
    Abstract: The present invention relates to an implantable endoluminal graft comprised of a microporous thin-film covering having a plurality of openings and a structural support element underlying and physically attached to the microporous thin-film covering, the microporous thin-film covering having shape memory properties.
    Type: Application
    Filed: January 12, 2010
    Publication date: August 26, 2010
    Applicant: Advanced Bio Prosthetic Surfaces, Ltd., a wholly owned subsidiary of Palmaz Scientific, Inc.
    Inventors: Christopher T. Boyle, Denes Marton, Christopher E. Banas
  • Publication number: 20100191317
    Abstract: An implantable endoluminal device that is fabricated from materials that present a blood or body fluid and tissue contact surface that has controlled heterogeneities in material constitution. An endoluminal stent-graft and web-stent that is made of an monolithic material deposited into a monolayer and etched into regions of structural members and web regions subtending interstitial regions between the structural members. An endoluminal graft is also provided which is made of a biocompatible metal or metal-like material. The endoluminal stent-graft is characterized by having controlled heterogeneities in the stent material along the blood flow surface of the stent and the method of fabricating the stent using vacuum deposition methods.
    Type: Application
    Filed: January 5, 2010
    Publication date: July 29, 2010
    Applicant: Advanced Bio Prosthetic Surfaces, Ltd., A Wholly owned subsidiary of Palmaz Scientific, Inc.
    Inventors: Julio C. Palmaz, Christopher T. Boyle, Christopher E. Banas, Roger W. Wiseman, Denes Marton
  • Patent number: 7704274
    Abstract: The present invention relates to an implantable endoluminal graft comprised of a microporous thin-film covering having a plurality of openings and a structural support element underlying and physically attached to the microporous thin-film covering, the microporous thin-film covering having shape memory properties.
    Type: Grant
    Filed: September 26, 2003
    Date of Patent: April 27, 2010
    Assignee: Advanced Bio Prothestic Surfaces, Ltd.
    Inventors: Christopher T. Boyle, Denes Marton, Christopher E. Banas
  • Patent number: 7670690
    Abstract: A vacuum deposition method for fabricating high-strength nitinol films by sputter depositing nickel and titanium from a heated sputtering target, and controlling the sputter deposition process parameters in order to create high-strength nitinol films that exhibit shape memory and/or superelastic properties without the need for precipitation annealing to attenuate the transition conditions of the deposited material. A vacuum deposited nitinol film having high-strength properties equal to or better than wrought nitinol films and which are characterized by having non-columnar crystal grain structures.
    Type: Grant
    Filed: October 19, 2007
    Date of Patent: March 2, 2010
    Assignee: Advanced Bio Prosthetic Surfaces, Ltd.
    Inventors: Denes Marton, Christopher T. Boyle, Roger W. Wiseman, Christopher E. Banas
  • Patent number: 7641680
    Abstract: An implantable endoluminal device that is fabricated from materials that present a blood or body fluid and tissue contact surface that has controlled heterogeneities in material constitution. An endoluminal stent-graft and web-stent that is made of an monolithic material deposited into a monolayer and etched into regions of structural members and web regions subtending interstitial regions between the structural members. An endoluminal graft is also provided which is made of a biocompatible metal or metal-like material. The endoluminal stent-graft is characterized by having controlled heterogeneities in the stent material along the blood flow surface of the stent and the method of fabricating the stent using vacuum deposition methods.
    Type: Grant
    Filed: November 6, 2002
    Date of Patent: January 5, 2010
    Assignee: Advanced Bio Prosthetic Surfaces, Ltd.
    Inventors: Julio C. Palmaz, Christopher T. Boyle, Christopher E. Banas, Roger W. Wiseman, Denes Marton
  • Patent number: 7625594
    Abstract: An implantable endoluminal device which is fabricated from materials which present a blood or body fluid and tissue contact surface which has controlled heterogeneities in material constitution. An endoluminal stent which is made of a material having controlled heterogeneities in the stent material along the blood flow surface of the stent and the method of fabricating the stent using vacuum deposition methods.
    Type: Grant
    Filed: November 22, 2004
    Date of Patent: December 1, 2009
    Assignee: Advanced Bio Prosthetic Surfaces, Ltd.
    Inventors: Julio C. Palmaz, Eugene A. Sprague, Cristina Simon, Denes Marton, Roger W. Wiseman, Christopher E. Banas
  • Patent number: 7491226
    Abstract: An implantable endoluminal device that is fabricated from materials that present a blood or body fluid and tissue contact surface that has controlled heterogeneities in material constitution. An endoluminal stent-graft and web-stent that is made of an monolithic material deposited into a monolayer and etched into regions of structural members and web regions subtending interstitial regions between the structural members. An endoluminal graft is also provided which is made of a biocompatible metal or metal-like material. The endoluminal stent-graft is characterized by having controlled heterogeneities in the stent material along the blood flow surface of the stent and the method of fabricating the stent using vacuum deposition methods.
    Type: Grant
    Filed: November 6, 2002
    Date of Patent: February 17, 2009
    Assignee: Advanced Bio Prosthetic Surfaces, Ltd.
    Inventors: Julio C. Palmaz, Christopher T. Boyle, Christopher E. Banas, Roger W. Wiseman, Denes Marton
  • Publication number: 20080171214
    Abstract: A vacuum deposition method for fabricating high-strength nitinol films by sputter depositing nickel and titanium from a heated sputtering target, and controlling the sputter deposition process parameters in order to create high-strength nitinol films that exhibit shape memory and/or superelastic properties without the need for precipitation annealing to attenuate the transition conditions of the deposited material. A vacuum deposited nitinol film having high-strength properties equal to or better than wrought nitinol films and which are characterized by having non-columnar crystal grain structures.
    Type: Application
    Filed: October 19, 2007
    Publication date: July 17, 2008
    Applicant: Advanced Bio Prosthetic Surfaces, Ltd.
    Inventors: Denes Marton, Christopher T. Boyle, Roger W. Wiseman, Christopher E. Banas
  • Patent number: 7335426
    Abstract: A vacuum deposition method for fabricating high-strength nitinol films by sputter depositing nickel and titanium from a heated sputtering target, and controlling the sputter deposition process parameters in order to create high-strength nitinol films that exhibit shape memory and/or superelastic properties without the need for precipitation annealing to attenuate the transition conditions of the deposited material. A vacuum deposited nitinol film having high-strength properties equal to or better than wrought nitinol films and which are characterized by having non-columnar crystal grain structures.
    Type: Grant
    Filed: August 2, 2002
    Date of Patent: February 26, 2008
    Assignee: Advanced Bio Prosthetic Surfaces, Ltd.
    Inventors: Denes Marton, Christopher T. Boyle, Roger W. Wiseman, Christopher E. Banas
  • Publication number: 20080039932
    Abstract: A vacuum deposition method for fabricating high-strength nitinol films by sputter depositing nickel and titanium from a heated sputtering target, and controlling the sputter deposition process parameters in order to create high-strength nitinol films that exhibit shape memory and/or superelastic properties without the need for precipitation annealing to attenuate the transition conditions of the deposited material. A vacuum deposited nitinol film having high-strength properties equal to or better than wrought nitinol films and which are characterized by having non-columnar crystal grain structures.
    Type: Application
    Filed: October 19, 2007
    Publication date: February 14, 2008
    Applicant: Advanced Bio Prosthetic Surfaces, Ltd.
    Inventors: Denes Marton, Christopher Boyle, Roger Wiseman, Christopher Banas
  • Patent number: 7195641
    Abstract: This invention relates to improvements in prosthetic cardiac and venous valves and implantable medical devices having moveable septa. The inventive prosthetic cardiac and venous valves have metallic or pseudometallic valves coupled to metallic or pseudometallic stents that permit percutaneous delivery of the devices.
    Type: Grant
    Filed: April 11, 2002
    Date of Patent: March 27, 2007
    Assignee: Advanced Bio Prosthetic Surfaces, Ltd.
    Inventors: Julio C. Palmaz, Eugene A. Sprague, Cristina Fuss, Denes Marton, Roger W. Wiseman, Christopher E. Banas, Christopher T. Boyle, Steven R. Bailey
  • Publication number: 20060074479
    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: February 14, 2001
    Publication date: April 6, 2006
    Inventors: Steven Bailey, Christopher Boyle, Denes Marton, Christopher Banas
  • Publication number: 20060020323
    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: Application
    Filed: June 20, 2005
    Publication date: January 26, 2006
    Inventors: Christopher Boyle, Christopher Banas, Denes Marton
  • Publication number: 20060015172
    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.
    Type: Application
    Filed: June 20, 2005
    Publication date: January 19, 2006
    Inventors: Christopher Boyle, Christopher Banas, Denes Marton
  • Publication number: 20050186241
    Abstract: The present invention consists of an 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: September 9, 2004
    Publication date: August 25, 2005
    Inventors: Christopher Boyle, Steven Bailey, Denes Marton, Christopher Banas