Patents by Inventor John Gainor

John Gainor 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: 11833343
    Abstract: Diffusion and infusion resistant implantable devices and methods for reducing pulsatile pressure are provided. The implantable device includes a balloon implantable within a blood vessel of a patient, e.g., the pulmonary artery. The balloon is injected with a fluid mixture comprising a constituent fluid(s) and a diffusion-resistant gas to provide optimal balloon volume and limit fluid diffusion throughout multiple cardiac cycles. The fluid mixture may be pressurized such that the balloon is transitionable between an expanded state and a collapsed state responsive to pressure fluctuations in the blood vessel.
    Type: Grant
    Filed: October 7, 2021
    Date of Patent: December 5, 2023
    Assignee: Aria CV, Inc.
    Inventors: Karl Vollmers, Lynn Zwiers, John Gainor, John Scandurra
  • Patent number: 11331105
    Abstract: A device for reducing pulsatile pressure within a vessel to treat heart disease, such as pulmonary hypertension, includes a compliant body structured to expand and contract upon changes in pressure within the vessel, a reservoir structured for holding a fluid therein, and a conduit extending between and fluidly coupling the reservoir and the compliant body, wherein the device includes a graphene-polymer composite designed to resist diffusion of the fluid through the device.
    Type: Grant
    Filed: October 17, 2017
    Date of Patent: May 17, 2022
    Assignee: Aria CV, Inc.
    Inventors: John Gainor, Karl Vollmers, John Scandurra, Lucas Harder, Piramiah Elayaperumal
  • Publication number: 20220023614
    Abstract: Diffusion and infusion resistant implantable devices and methods for reducing pulsatile pressure are provided. The implantable device includes a balloon implantable within a blood vessel of a patient, e.g., the pulmonary artery. The balloon is injected with a fluid mixture comprising a constituent fluid(s) and a diffusion-resistant gas to provide optimal balloon volume and limit fluid diffusion throughout multiple cardiac cycles. The fluid mixture may be pressurized such that the balloon is transitionable between an expanded state and a collapsed state responsive to pressure fluctuations in the blood vessel.
    Type: Application
    Filed: October 7, 2021
    Publication date: January 27, 2022
    Applicant: Aria CV, Inc.
    Inventors: Karl VOLLMERS, Lynn ZWIERS, John GAINOR, John SCANDURRA
  • Publication number: 20210402159
    Abstract: An implantable device for reducing pulsatile pressure within a blood vessel is described herein, for example to treat pulmonary hypertension. The implantable device may include a fluid reservoir, a compliant member (e.g., a balloon), and a conduit coupled to the fluid reservoir and the compliant member. Advanced designs for anchoring the compliant member in the blood vessel are described. In addition, enhanced reservoir, conduit, and balloon designs, as well as methods for implanting/using the same, are provided.
    Type: Application
    Filed: June 23, 2021
    Publication date: December 30, 2021
    Applicant: Aria CV, Inc.
    Inventors: Lucas HARDER, Lynn ZWIERS, Karl VOLLMERS, John SCANDURRA, John GAINOR, Hendrik de Hoog, Marc Knutson, Katherine SOOJIAN, Miles WING
  • Patent number: 11141581
    Abstract: Diffusion and infusion resistant implantable devices and methods for reducing pulsatile pressure are provided. The implantable device includes a balloon implantable within a blood vessel of a patient, e.g., the pulmonary artery. The balloon is injected with a fluid mixture comprising a constituent fluid(s) and a diffusion-resistant gas to provide optimal balloon volume and limit fluid diffusion throughout multiple cardiac cycles. The fluid mixture may be pressurized such that the balloon is transitionable between an expanded state and a collapsed state responsive to pressure fluctuations in the blood vessel.
    Type: Grant
    Filed: September 3, 2020
    Date of Patent: October 12, 2021
    Assignee: Aria CV, Inc.
    Inventors: Karl Vollmers, Lynn Zwiers, John Gainor, John Scandurra
  • Publication number: 20210069396
    Abstract: Diffusion and infusion resistant implantable devices and methods for reducing pulsatile pressure are provided. The implantable device includes a balloon implantable within a blood vessel of a patient, e.g., the pulmonary artery. The balloon is injected with a fluid mixture comprising a constituent fluid(s) and a diffusion-resistant gas to provide optimal balloon volume and limit fluid diffusion throughout multiple cardiac cycles. The fluid mixture may be pressurized such that the balloon is transitionable between an expanded state and a collapsed state responsive to pressure fluctuations in the blood vessel.
    Type: Application
    Filed: September 3, 2020
    Publication date: March 11, 2021
    Applicant: Aria CV, Inc.
    Inventors: Karl VOLLMERS, Lynn ZWIERS, John GAINOR, John SCANDURRA
  • Publication number: 20200046369
    Abstract: A device for reducing pulsatile pressure within a vessel to treat heart disease, such as pulmonary hypertension, includes a compliant body structured to expand and contract upon changes in pressure within the vessel, a reservoir structured for holding a fluid therein, and a conduit extending between and fluidly coupling the reservoir and the compliant body, wherein the device includes a graphene-polymer composite designed to resist diffusion of the fluid through the device.
    Type: Application
    Filed: October 17, 2017
    Publication date: February 13, 2020
    Applicant: Aria CV, Inc.
    Inventors: John GAINOR, Karl VOLLMERS, John SCANDURRA, Lucas HARDER, Piramiah ELAYAPERUMAL
  • Patent number: 10022221
    Abstract: A stentless support structure capable of being at least partly assembled in situ. The support structure comprises a braided tube that is very flexible and, when elongated, becomes very long and very small in diameter, thereby being capable of placement within a small diameter catheter. The support structure is preferably constructed of one or more thin strands of a super-elastic or shape memory material such as Nitinol. When released from the catheter, the support structure folds itself into a longitudinally compact configuration. The support structure thus gains significant strength as the number of folds increase. This radial strength obviates the need for a support stent. The support structure may include attachment points for a prosthetic valve.
    Type: Grant
    Filed: July 1, 2015
    Date of Patent: July 17, 2018
    Assignee: HLT, Inc.
    Inventors: John Gainor, Gary A. Thill, Robert Foster Wilson, Christopher M. Banick
  • Patent number: 9801711
    Abstract: A device and method for controlling commissural tip deflection of a prosthetic valve, thereby both preventing failure due to repeated movement and/or uneven loading of the commissural points and also improving coaptation of the valve leaflets, including connecting reinforcing material between the commissural points so a spring-like span is created across the points. The spanning material may be in the form of a ring that is lashed, sewn or otherwise connected to the commissural points. The reinforcing material may form curved segments between the commissural points that extend outwardly to form sinuses behind the leaflets of the prosthetic valve. The reinforcing material may also extend in an upstream direction to avoid interfering with blood flowing out of the prosthetic valve.
    Type: Grant
    Filed: March 10, 2014
    Date of Patent: October 31, 2017
    Assignee: HLT, Inc.
    Inventor: John Gainor
  • Publication number: 20160220358
    Abstract: An expandable delivery tool for aiding the deployment of a prosthesis device within a patient. The delivery tool has a generally elongated shape with a selectively expandable distal end region that flares outward in diameter. Once advanced percutaneously within a patient's vessel, the delivery device can help locate a target area, assist in deploying a prosthesis at a desired position and further expand the prosthesis after deployment.
    Type: Application
    Filed: April 11, 2016
    Publication date: August 4, 2016
    Applicant: HLT, Inc.
    Inventors: Robert Foster Wilson, John Gainor
  • Publication number: 20160095702
    Abstract: A stentless support structure capable of being at least partly assembled in situ. The support structure comprises a braided tube that is very flexible and, when elongated, becomes very long and very small in diameter, thereby being capable of placement within a small diameter catheter. The support structure is preferably constructed of one or more thin strands of a super-elastic or shape memory material such as Nitinol. When released from the catheter, the support structure folds itself into a longitudinally compact configuration. The support structure thus gains significant strength as the number of folds increase. This radial strength obviates the need for a support stent. The support structure may include attachment points for a prosthetic valve.
    Type: Application
    Filed: July 1, 2015
    Publication date: April 7, 2016
    Applicant: HLT, INC.
    Inventors: John Gainor, Gary A. Thill, Robert Foster Wilson, Christopher M. Banick
  • Patent number: 9271831
    Abstract: A stentless support structure capable of being at least partly assembled in situ. The support structure comprises a braided tube that is very flexible and, when elongated, becomes very long and very small in diameter, thereby being capable of placement within a small diameter catheter. The support structure is preferably constructed of one or more thin strands of a super-elastic or shape memory material such as Nitinol. When released from the catheter, the support structure folds itself into a longitudinally compact configuration. The support structure thus gains significant strength as the number of folds increase. This radial strength obviates the need for a support stent. The support structure may include attachment points for a prosthetic valve.
    Type: Grant
    Filed: July 27, 2011
    Date of Patent: March 1, 2016
    Assignee: HLT, Inc.
    Inventors: Gary A. Thill, Robert Foster Wilson, John Gainor, Christopher M. Banick
  • Patent number: 9180002
    Abstract: A stentless support structure capable of being at least partly assembled in situ. The support structure comprises a braided tube that is very flexible and, when elongated, becomes very long and very small in diameter, thereby being capable of placement within a small diameter catheter. The support structure is preferably constructed of one or more thin strands of a super-elastic or shape memory material such as Nitinol. When released from the catheter, the support structure folds itself into a longitudinally compact configuration. The support structure thus gains significant strength as the number of folds increase. This radial strength obviates the need for a support stent. The support structure may include attachment points for a prosthetic valve.
    Type: Grant
    Filed: April 27, 2012
    Date of Patent: November 10, 2015
    Assignee: HLT, Inc.
    Inventors: Gary A. Thill, Robert Foster Wilson, John Gainor, Christopher M. Banick
  • Patent number: 9089423
    Abstract: A stentless support structure capable of being at least partly assembled in situ. The support structure comprises a braided tube that is very flexible and, when elongated, becomes very long and very small in diameter, thereby being capable of placement within a small diameter catheter. The support structure is preferably constructed of one or more thin strands of a super-elastic or shape memory material such as Nitinol. When released from the catheter, the support structure folds itself into a longitudinally compact configuration. The support structure thus gains significant strength as the number of folds increase. This radial strength obviates the need for a support stent. The support structure may include attachment points for a prosthetic valve.
    Type: Grant
    Filed: May 10, 2011
    Date of Patent: July 28, 2015
    Assignee: HLT, Inc.
    Inventors: John Gainor, Gary A. Thill, Robert Foster Wilson, Christopher M. Banick
  • Patent number: 8974523
    Abstract: A stentless support structure capable of being at least partly assembled in situ. The support structure comprises a braided tube that is very flexible and, when elongated, becomes very long and very small in diameter, thereby being capable of placement within a small diameter catheter. The support structure is preferably constructed of one or more thin strands of a super-elastic or shape memory material such as Nitinol. When released from the catheter, the support structure folds itself into a longitudinally compact configuration. The support structure thus gains significant strength as the number of folds increase. This radial strength obviates the need for a support stent. The support structure may include attachment points for a prosthetic valve.
    Type: Grant
    Filed: May 30, 2006
    Date of Patent: March 10, 2015
    Assignee: HLT, Inc.
    Inventors: Gary A. Thill, Robert Foster Wilson, John Gainor, Christopher M. Banick
  • Publication number: 20140194980
    Abstract: A device and method for controlling commissural tip deflection of a prosthetic valve, thereby both preventing failure due to repeated movement and/or uneven loading of the commissural points and also improving coaptation of the valve leaflets, including connecting reinforcing material between the commissural points so a spring-like span is created across the points. The spanning material may be in the form of a ring that is lashed, sewn or otherwise connected to the commissural points. The reinforcing material may form curved segments between the commissural points that extend outwardly to form sinuses behind the leaflets of the prosthetic valve. The reinforcing material may also extend in an upstream direction to avoid interfering with blood flowing out of the prosthetic valve.
    Type: Application
    Filed: March 10, 2014
    Publication date: July 10, 2014
    Applicant: HLT, Inc.
    Inventor: John Gainor
  • Patent number: 8696737
    Abstract: A device and method for controlling commissural tip deflection of a prosthetic valve, thereby both preventing failure due to repeated movement and/or uneven loading of the commissural points and also improving coaptation of the valve leaflets, including connecting reinforcing material between the commissural points so a spring-like span is created across the points. The spanning material may be in the form of a ring that is lashed, sewn or otherwise connected to the commissural points. The reinforcing material may form curved segments between the commissural points that extend outwardly to form sinuses behind the leaflets of the prosthetic valve. The reinforcing material may also extend in an upstream direction to avoid interfering with blood flowing out of the prosthetic valve.
    Type: Grant
    Filed: August 11, 2011
    Date of Patent: April 15, 2014
    Assignee: HLT, Inc.
    Inventor: John Gainor
  • Patent number: 8663312
    Abstract: An intravascular cuff acts as a lining between a native vessel and an intravascular prosthetic device. During deployment, the ends of the cuff curl back upon themselves and are capable of trapping native tissue, such as valve leaflet tissue, between the ends. The cuff creates a seal between the vessel and the prosthetic, thereby preventing leakage around the prosthetic. The cuff also traps any embolic material dislodged from the vessel during expansion of the prosthetic.
    Type: Grant
    Filed: May 26, 2006
    Date of Patent: March 4, 2014
    Assignee: HLT, Inc.
    Inventors: Robert Foster Wilson, John Gainor
  • Publication number: 20130144383
    Abstract: A stentless support structure capable of being at least partly assembled in situ. The support structure comprises a braided tube that is very flexible and, when elongated, becomes very long and very small in diameter, thereby being capable of placement within a small diameter catheter. The support structure is preferably constructed of one or more thin strands of a super-elastic or shape memory material such as Nitinol. When released from the catheter, the support structure folds itself into a longitudinally compact configuration. The support structure thus gains significant strength as the number of folds increase. This radial strength obviates the need for a support stent. The support structure may include attachment points for a prosthetic valve.
    Type: Application
    Filed: October 12, 2012
    Publication date: June 6, 2013
    Inventors: Gary A. Thill, Robert Foster Wilson, John Gainor, Christopher M. Banick
  • Publication number: 20120209370
    Abstract: A stentless support structure capable of being at least partly assembled in situ. The support structure comprises a braided tube that is very flexible and, when elongated, becomes very long and very small in diameter, thereby being capable of placement within a small diameter catheter. The support structure is preferably constructed of one or more thin strands of a super-elastic or shape memory material such as Nitinol. When released from the catheter, the support structure folds itself into a longitudinally compact configuration. The support structure thus gains significant strength as the number of folds increase. This radial strength obviates the need for a support stent. The support structure may include attachment points for a prosthetic valve.
    Type: Application
    Filed: April 27, 2012
    Publication date: August 16, 2012
    Inventors: Gary A. Thill, Robert Foster Wilson, John Gainor, Christopher M. Banick