Patents Assigned to Edward Lifesciences Corporation
  • Patent number: 11911256
    Abstract: Packaging for prosthetic heart valves including an assembly for stabilizing dry prosthetic tissue implants such as heart valves during storage. The packaging assembly can be used for storing a bioprosthetic heart valve without a liquid preservative solution. The packaging assembly can have a valve holder configured for removably attaching a bioprosthetic heart valve, a storage tray comprising an open end and a cavity, and a retaining member configured for removably attaching the valve holder. The retaining member can be generally planar and have a slot having a closed end and an open outer end. The valve holder can be configured to be retained at the closed end of the slot in the retaining member.
    Type: Grant
    Filed: February 14, 2020
    Date of Patent: February 27, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Gregory G. Liburd, Abhishek Gautam
  • Patent number: 11911265
    Abstract: A system that can be used for suturing implants includes a first automated fixture that can comprise an articulation arm and a target device holder and a second automated fixture configured to operate as a sewing machine to sew material onto the implant. The second automated fixture uses a curved needle to form a stitch without having to release the needle in the process. The second automated fixture can also include a stitch looper that moves in coordination with the curved needle to perform a single-suture or single-thread stitch.
    Type: Grant
    Filed: January 11, 2019
    Date of Patent: February 27, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Chacphet Limsakoune, Nina Robson, Jeanette Jasmine Corona, Michael R. White, Juan Cuevas, David Estelle, Michael Mashni, Oscar Rosales, Mitchell Salgado, Kenny Yin
  • Patent number: 11903830
    Abstract: A prosthetic tricuspid remodeling annuloplasty ring having two free ends that are upturned in the inflow direction to help avoid unnecessary leaflet abrasion. The free ends are desirably separated across a gap that is large enough to reduce the risk of passing sutures through the conductive system of the heart, yet not too large that support of the septal leaflet of the tricuspid annulus is degraded. The tricuspid ring may have four sequential segments looking from the inflow side and extending in a clockwise direction from a free end located adjacent the antero septal commissure after implant. The ring may define an inflow bulge in the first segment and/or an inflow bulge in the fourth segment that help the ring conform to the natural bulges created by the adjacent aorta, thereby reducing stress and the potential for ring dehiscence.
    Type: Grant
    Filed: August 27, 2021
    Date of Patent: February 20, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventor: Alain F. Carpentier
  • Patent number: 11903826
    Abstract: Various features and associated advantages are described for diametrically adjustable support structures, adjustable valve structures, removable/replaceable valve structures, and associated systems and methods. Although some examples are directed toward prosthetic valve that is a conduit having a valve structure, or a “valved conduit” (e.g., used to replace a pulmonary valve and a portion of the corresponding pulmonary artery or an aortic valve and the aortic root), and other examples are directed toward prosthetic valves implanted native valve orifices (e.g., to replace an aortic or mitral valve), the features and advantages of the structures associated with those examples are interchangeable regardless of a particular application for which the examples are described.
    Type: Grant
    Filed: July 9, 2021
    Date of Patent: February 20, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Kyle W. Colavito, Dustin V. Dienno, Paul D. Goodman, Brandon C. Hedberg, Brandon A. Lurie, Devin M. Nelson
  • Patent number: 11896481
    Abstract: Described embodiments are directed toward prosthetic valves having leaflets of a particular shape that improves bending character without requiring a long length valve. In accordance with an embodiment, a prosthetic valve comprises a leaflet frame, a plurality of leaflets that are coupled to the leaflet frame, where each leaflet has a free edge and a base. The base of each leaflet is truncated in which the leaflet in cross section shows a line in an alpha plane onto the leaflet frame.
    Type: Grant
    Filed: June 13, 2019
    Date of Patent: February 13, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: William C. Bruchman, Cody L. Hartman
  • Patent number: 11896485
    Abstract: A delivery system and method for delivering a prosthetic heart valve to the aortic valve annulus via a transaortic approach. The system includes a balloon catheter for delivering a balloon-expandable prosthetic heart valve through an introducer from an approach from outside the patient, through a minimally-invasive opening in the chest cavity through an incision in the aorta, and into the aorta and aortic annulus. The balloon catheter includes a flexible, tapered tip just distal of the balloon to facilitate positioning of the prosthetic heart valve in the proper orientation within the aortic annulus. The prosthetic heart valve may be installed over the existing calcified leaflets, and a pre-dilation valvuloplasty procedure may also be utilized.
    Type: Grant
    Filed: November 1, 2018
    Date of Patent: February 13, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Mark M. Dehdashtian, Teodoro S. Jimenez
  • Patent number: 11890187
    Abstract: Methods, apparatus, and systems used to deliver a prosthetic heart valve to a deficient valve are provided. For example, a support member is positioned to at least partially surround the native leaflets of a valve. A locking member is used to couple both ends of the support member, forming a support band. An expandable prosthetic heart valve is delivered into the native heart valve and expanded while the expandable prosthetic valve is at least partially within the support band, thereby causing one or more of the native leaflets of the native heart valve to be frictionally secured between the support band and the expanded prosthetic heart valve.
    Type: Grant
    Filed: February 7, 2020
    Date of Patent: February 6, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Oded Meiri, Tamir S. Levi, Ofir Witzman
  • Patent number: 11890194
    Abstract: A catheter system including a wire, a translatable catheter, and first and second tethers is introduced into a body of a subject. The translatable catheter has a curved portion proximate a distal end of the translatable catheter. The first tether is coupled to the wire, and passes proximally through the translatable catheter. The second tether is attached to the curved portion. The catheter system is positioned such that the wire is disposed at a first location in the body. While the wire remains at the first location, the translatable catheter is translated away from the wire by manipulating the first tether and the second tether. Other embodiments are also described.
    Type: Grant
    Filed: May 28, 2020
    Date of Patent: February 6, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Jonathan Goodwin, Michael W. Sutherland, Morgan House, Richard J. Morrill, Matt Guimond, Christopher C. Lee, Kate E. Cutuli, Nareak Douk
  • Patent number: 11890189
    Abstract: In one embodiment, a delivery apparatus handle, such as for a mechanical heart valve frame can comprise an actuation knob with a toggle mechanism that can toggle the actuation knob from a first state in which the actuation knob is operable to cause the linear or rotational movement of multiple elements or sets of elements, such as tubes that are attached to, e.g., a mechanical heart valve frame to cause expansion or collapsing of the frame, to a second state in which only a single element or set of elements is moved, allowing for additional operations, such as, e.g., locking the frame and/or releasing it from the delivery apparatus.
    Type: Grant
    Filed: April 12, 2021
    Date of Patent: February 6, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Oren Cohen, Ofir Witzman
  • Patent number: 11890193
    Abstract: A first anchor is anchored inside a coronary sinus of a heart of a subject. A second anchor can be driven into a tricuspid annulus of the heart. A distal portion of the second anchor can be disposed adjacent and parallel to a center portion of the second anchor. The second anchor can be seated against a surface of the annulus, for example, such that (i) the distal portion is disposed perpendicular to the center portion, (ii) the center portion extends through the annulus, and (iii) a proximal portion of the second anchor is disposed in the atrium. A distance between the first and second anchors can be reduced by applying tension to a tensioning member coupled to the first anchor and the proximal portion of the second anchor. Other embodiments are also described.
    Type: Grant
    Filed: October 28, 2020
    Date of Patent: February 6, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Michael W. Sutherland, Steven D. Cahalane
  • Patent number: 11883294
    Abstract: An anchoring system and related methods are provided for treatment of dilated hearts and of functional valve regurgitation, the system comprising one or more self-expandable or manually expandable anchors and associated devices for fixating a valve splint within the heart. For example, a spade-shaped assembly may be configured to be deployed in a right ventricle of the heart and to stabilize a puncturing instrument to puncture the septum. Various puncturing instruments may also be part of the anchoring system, including one or more of a flexible needle having a multiplicity of slits disposed along the length of the needle, a trocar catheter with a retractable head, and a catheter needle having a blunt introducer to protect nearby tissue within the heart during advancing a guidewire. A cutter catheter and puncture location catheter may also be part of the system and be used during treatment.
    Type: Grant
    Filed: May 16, 2022
    Date of Patent: January 30, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Arie Tylis, Nikolai Gurovich, Eran Goldberg, Boaz Manash, Dan Rottenberg, Hagar Adika, Tal Regev, Dikla Kersh, Danny M. Garmahi, Hernan Altman, Amir Blumenfeld
  • Patent number: 11883611
    Abstract: A handle shaft is disposed at a proximal end of a catheter. A wire extends from a distal part of the catheter, proximally through the catheter to the handle shaft. A knob is disposed outside of the handle shaft. A threaded mechanism provides operative coupling between the knob and the handle shaft such that (i) rotation of the knob with respect to the handle shaft alters tension in the wire via the threaded mechanism functioning as a linear actuator; and (ii) non-rotational axial movement of the knob with respect to the handle shaft alters tension in the wire without the threaded mechanism functioning as a linear actuator. Other embodiments are also described.
    Type: Grant
    Filed: June 25, 2021
    Date of Patent: January 30, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventor: Morgan House
  • Patent number: 11883281
    Abstract: A prosthetic heart valve includes an annular frame that has an inflow end and an outflow end and is radially compressible and expandable between a radially compressed configuration and a radially expanded configuration. The prosthetic heart valve further includes a leaflet structure positioned within the frame and secured thereto, and an outer sealing member mounted outside of the frame and adapted to seal against surrounding tissue when the prosthetic heart valve is implanted within a native heart valve annulus of a patient. The sealing member can include a mesh layer and pile layer comprising a plurality of pile yarns extending outwardly from the mesh layer.
    Type: Grant
    Filed: March 30, 2022
    Date of Patent: January 30, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Lien Huong Thi Hoang, Son V. Nguyen, Hien Tran Ngo, Vivian Tran, Russell T. Joseph, Dinesh L. Sirimanne, Kevin D. Rupp, Diana Nguyen-Thien-Nhon
  • Patent number: 11883285
    Abstract: Embodiments of the present disclosure provide an introducer device and methods for introducing a medical device into a patient's vasculature. In one embodiment, a method of using an introducer device including a housing, a hemostatic seal mounted within the housing, and a tube extending into the housing and movable longitudinally relative to the hemostatic seal between a proximal position and a distal position, includes moving the tube to the distal position such that the distal end of the tube extends through the hemostatic seal. The method further includes inserting a distal end portion of the medical device through the tube and into the patient's vasculature without contacting the hemostatic seal.
    Type: Grant
    Filed: August 26, 2020
    Date of Patent: January 30, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Philippe Marchand, David M. Taylor, Robert Milich, David J. Evans, Christopher Chia, Ronaldo C. Cayabyab, Robert Bowes
  • Patent number: 11883295
    Abstract: A dynamic, adjustable annuloplasty ring sizer can include an adjustable ring replica, which can be adjusted through a range of sizes corresponding to available prosthetic annuloplasty repair ring sizes. Actuation of an adjustment trigger on a handle portion of the ring sizer can displace tension wires that extend through a malleable shaft and through a plurality of articulating segments that form the ring replica. Displacement of the tension wires causes flexion of the joints between adjacent articulating segments, thereby reducing the overall size of the ring replica. Releasing the tension wires can allow an elastic extension wire to act on the ring replica, enlarging the ring replica to its maximum, at-rest size. In this manner, the appropriate size of annuloplasty ring prosthesis can be determined with a single device, without requiring a plurality of static ring sizers that require individual insertion and placement for the conventional trial-and-error sizing methods.
    Type: Grant
    Filed: July 22, 2020
    Date of Patent: January 30, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventor: Brian S. Conklin
  • Patent number: 11883288
    Abstract: The expandable sheath and methods of use disclosed herein are used to deliver a prosthetic device through a patient's vasculature. The sheath is constructed to be expandable in the circumferential direction, while maintaining sufficient stiffness in the longitudinal direction to withstand pushing and resist kinking. The sheath includes a plurality of curved arms extending outwardly from a longitudinally extending spine. The curved arms move away from the longitudinal axis of the sheath when pushed radially outwardly by a passing prosthetic device, and move back toward the longitudinal axis once the prosthetic device has passed.
    Type: Grant
    Filed: December 7, 2020
    Date of Patent: January 30, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: David Maimon, Eran Goldberg, Liron Tayeb
  • Patent number: 11883282
    Abstract: A prosthetic heart valve configured to replace a native heart valve and having a support frame configured to be reshaped into an expanded form in order to receive and/or support an expandable prosthetic heart valve therein is disclosed, together with methods of using same. The prosthetic heart valve may be configured to have a generally rigid and/or expansion-resistant configuration when initially implanted to replace a native valve (or other prosthetic heart valve), but to assume a generally expanded form when subjected to an outward force such as that provided by a dilation balloon or other mechanical expander.
    Type: Grant
    Filed: November 25, 2019
    Date of Patent: January 30, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Visith Chung, Da-Yu Chang, Brian S. Conklin, Grace Myong Kim, Louis A. Campbell, Donald E. Bobo, Jr., Myron Howanec, Jr., David S. Lin, Peng Norasing, Francis M. Tran, Mark Van Nest, Thomas Chien, Harvey H. Chen, Isidro L. Guerrero, Derrick Johnson, Paul A. Schmidt, Cindy Woo
  • Patent number: 11883287
    Abstract: Devices, systems and methods are described herein to provide improved steerability for delivering a prosthesis to a body location, for example, for delivering a replacement mitral valve to a native mitral valve location. The steerable delivery system can contain a steerable rail configured for multi-plane bending to direct a distal end of the delivery system.
    Type: Grant
    Filed: October 15, 2020
    Date of Patent: January 30, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Alexander H. Cooper, David Robert Landon, Kevin M. Stewart, Garrett Dallas Johnson, Glen T. Rabito, Tarannum Ishaq Gutierrez, Hiroshi Okabe, Ramon Aguilar, Jr., Jesse Robert Edwards, Taylor Jacob Scheinblum, Patrick Chow, Julio Cesar Sanchez, Hieu Minh Luong
  • Publication number: 20240024099
    Abstract: Embodiments of a radially collapsible and expandable prosthetic heart valve are disclosed. A prosthetic heart valve includes a valve structure and a frame. The valve structure includes a plurality of leaflets, and the leaflets are configured to move from an open configuration to a closed configuration. The valve structure is coupled to the frame. The frame includes an inflow end, an outflow end, a longitudinal axis extending from the inflow end to the outflow end, and a plurality of struts forming a plurality of rows of cells. Each row of cells extends in a circumferential direction perpendicular to the longitudinal axis. Adjacent cells in a row of cell are coupled together at a junction of the struts defining the adjacent cells, and at least one junction in one row of cells has a shape that is different than at least one other junction of the one row of cells.
    Type: Application
    Filed: August 16, 2023
    Publication date: January 25, 2024
    Applicant: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Tamir S. Levi, Son V. Nguyen, Netanel Benichou, David Maimon, Ziv Yohanan, Nikolai Gurovich, Bella Felsen, Larisa Dadonkina, Ron Sharoni, Elena Sherman
  • Patent number: 11877925
    Abstract: Systems and methods usable in delivering a docking device to a native valve of a patient's heart. A distal region of a delivery catheter can be positioned in an atrium of the heart and a distal tip can be positioned at or near a commissure of the native valve. The docking device can be located within the delivery catheter. A pusher, such as a pusher wire or tube, of a pusher tool can be advanced distally through the delivery catheter, wherein the pusher can push the docking device along within the delivery catheter. The docking device can be connected to the pusher tool by a line, such as a suture. A member of the pusher tool can be rotatable to change the amount of the suture extending from the pusher tool.
    Type: Grant
    Filed: September 29, 2020
    Date of Patent: January 23, 2024
    Assignee: EDWARDS LIFESCIENCES CORPORATION
    Inventors: Boaz Manash, Yoav Rozen, Eitan Atias