Patents Assigned to Medtronic Vascular, Inc.
  • Patent number: 11628032
    Abstract: A package includes a tray and a cover configured to seal an open end of the tray when the cover is assembled onto the tray. The tray has a flange extending about a periphery at the open end of the tray. A continuous barrier seal is formed between the flange and the cover when the cover is assembled onto the tray, and a discontinuous sacrificial seal is also formed between the flange and the cover when the cover is assembled onto the tray. The discontinuous sacrificial seal is configured to absorb stress applied to the flange. The continuous barrier seal is disposed closer to an inner periphery of the flange than the discontinuous sacrificial seal. Holes are formed on the corners of the flange, and the holes are spaced apart from the discontinuous sacrificial seal.
    Type: Grant
    Filed: July 29, 2020
    Date of Patent: April 18, 2023
    Assignee: MEDTRONIC VASCULAR, INC.
    Inventors: Thomas Hayden, Joshua Hillas, Martin Bernard Patten
  • Patent number: 11628272
    Abstract: The present disclosure provides a catheter including a plurality of a segments, each segment having a stiffener extending along its length. The plurality of segments are interconnected with connectors such that each of the segments can bend in multiple planes via rotation of the connectors.
    Type: Grant
    Filed: January 8, 2021
    Date of Patent: April 18, 2023
    Assignee: MEDTRONIC VASCULAR, INC.
    Inventors: Ronja F. Pfeiffer, Declan P. Costello, Edmond Sheahan
  • Patent number: 11617630
    Abstract: A method includes hermetically sealing a medical device within a pouch, the pouch including peeling panels that are free from one another. The pouch is placed within a tray and the peeling panels are attached to unloading handles of the tray. The unloading handles are releasably coupled together. The method further includes simultaneously separating the unloading handles and the peeling panels to open the pouch and expose the medical device for removal thereof.
    Type: Grant
    Filed: February 11, 2020
    Date of Patent: April 4, 2023
    Assignee: Medtronic Vascular, Inc.
    Inventor: Jeffrey Barnell
  • Patent number: 11617641
    Abstract: Systems and methods for building a landing zone for an endovascular procedure are described. This procedure is “hybrid” in that it involves both direct access (e.g., sternotomy or partial sternotomy) to the site for installation of the landing zone, as well as endovascular installation of a TAVR or TEVAR device (e.g., stent graft) once the landing zone is installed. The landing zone is installed by wrapping a landing band around a portion of a vessel. The landing band may be selected to be fixed at a diameter so that it inhibits any expansion of the vessel, and also supports a later-installed TAVR or TEVAR device. The TAVR or TEVAR device is then endovascularly delivered to the vessel and deployed therein. The device expands until it contacts the vessel, which is supported from the outside by the landing band, which thus constrains and supports the device from outside.
    Type: Grant
    Filed: June 22, 2021
    Date of Patent: April 4, 2023
    Assignee: Medtronic Vascular, Inc.
    Inventors: Keith Perkins, Mark Stiger, Steven Claessens
  • Patent number: 11617649
    Abstract: Transcatheter delivery systems, delivery catheters and associated methods for percutaneous delivery of prosthetic mitral valves using a retrograde approach are disclosed herein. A heart valve delivery system configured in accordance herewith includes a delivery catheter having an elongated tubular component and an articulation assembly at a distal end thereof. The articulation assembly includes an arm portion coupled to the tubular component by an elbow or hinge portion. In a closed, delivery state, the elbow portion positions the arm portion generally parallel to the tubular component for delivery of the delivery catheter through the vasculature. In an open, deployed state, the elbow portion positions the arm portion in a non-axial direction with respect to a longitudinal axis of the tubular component for orienting and positioning a prosthetic valve device carried by the arm portion, e.g., within the native mitral valve region.
    Type: Grant
    Filed: June 17, 2020
    Date of Patent: April 4, 2023
    Assignee: MEDTRONIC VASCULAR, INC.
    Inventors: Barry O'Connell, Patrick Griffin, Michael Bateman, William Haynes
  • Patent number: 11617857
    Abstract: A catheter is disclosed that allows selective direction of a surgical tool into multiple blood vessels of a patient. The catheter includes a catheter body that has a main exit port and a side exit port. An internal balloon is provided within the catheter body. The internal balloon is inflatable, and can be located at or near a distal portion of the side exit port. When deflated, the internal balloon allows the surgical tool to advance past the side exit port and out the main exit port. When inflated, the internal balloon directs the surgical tool to advance out the side exit port instead of the main exit port.
    Type: Grant
    Filed: January 30, 2020
    Date of Patent: April 4, 2023
    Assignee: Medtronic Vascular, Inc.
    Inventor: Claudio Silvestro
  • Patent number: 11617651
    Abstract: The present disclosure relates to numerous delivery devices and methods for transcatheter prosthetic heart valve loading, deployment and delivery utilizing at least one suture. Disclosed delivery devices utilize improved suture routing methods and configurations that reduce suture tangling and also provide the ability to adjust the prosthetic heart valve expansion and contraction prior to the final release of the prosthetic heart valve from the delivery device.
    Type: Grant
    Filed: August 19, 2020
    Date of Patent: April 4, 2023
    Assignee: MEDTRONIC VASCULAR, INC.
    Inventor: Paul Rothstein
  • Patent number: 11612505
    Abstract: A stent graft delivery system and method of assembling the same is disclosed. The stent graft delivery system includes a stent graft cover configured to maintain a stent graft in a constricted configuration, and is configured to slide relative to the stent graft to enable the stent graft to expand radially outwardly. The stent graft cover extends along a first central axis. A tapered tip defining an opening therethrough is configured to track along a guidewire. The opening extends along a second central axis that is offset from the first central axis. This provides a delivery system with an opening in a leading edge that is not center relative to the outer stent graft cover.
    Type: Grant
    Filed: April 30, 2020
    Date of Patent: March 28, 2023
    Assignee: Medtronic Vascular, Inc.
    Inventors: Robert J. Murray, III, Manthan Patel
  • Patent number: 11589862
    Abstract: A prosthesis fastener applier includes a handle, a plurality of input controls, and a fastener delivery shaft. The handle contains a motor and a control circuit. The input controls are connected to the handle and communicatively connected to the control circuit. The fastener delivery shaft includes a fastener cartridge and a driver shaft. The fastener cartridge includes a plurality of internal threads configured to receive a plurality of helical fasteners in stacked relationship. The driver shaft is operatively connected to the motor, disposed within the fastener cartridge, and configured to pass through respective inner diameters of the helical fasteners. The control circuit is configured to control the motor in response to signals from one or more of the input controls to rotate the driver shaft to cause one or more of the helical fasteners to be advanced axially relative to the fastener cartridge.
    Type: Grant
    Filed: October 24, 2019
    Date of Patent: February 28, 2023
    Assignee: Medtronic Vascular, Inc.
    Inventors: Lee Bolduc, Joshua Stafford
  • Patent number: 11584558
    Abstract: An example technique of forming a package includes retaining a package precursor in a support. The package precursor includes a shrink-formable composition and defines an interior volume configured to enclose a component, such as a medical supply. The package may be formed by at least directing a flow of heated medium from a nozzle toward at least one region of the package precursor to cause the at least one region to shrink faster than an adjacent region of the package precursor. In some examples, an example system for shrink-forming a package includes the support and the nozzle.
    Type: Grant
    Filed: December 12, 2018
    Date of Patent: February 21, 2023
    Assignee: Medtronic Vascular, Inc.
    Inventors: James T. Buccellato, Jeffrey B. Barnell
  • Patent number: 11583401
    Abstract: An example medical system includes a medical device configured to join the edges of the leaflets together, an elongate body configured to be navigated through vasculature to a heart valve of patient, and a plurality of tissue engagement devices extending from a distal end of the elongate body, each tissue engagement device comprising at least one clamp configured to capture leaflets of the heart valve.
    Type: Grant
    Filed: December 11, 2019
    Date of Patent: February 21, 2023
    Assignee: MEDTRONIC VASCULAR, INC.
    Inventors: Michael Gloss, Caitlin Dorff, Fatemeh Fatemi Far, Emily Grimm, Matthew E. Genovese, Olivia Metcalf, Karan Punga, Eric Pierce
  • Patent number: 11576775
    Abstract: A delivery device for percutaneously delivering a stented prosthetic heart includes a sheath, a handle, and adjustment device including a fine adjustment mechanism, and an outer stability shaft. The sheath defines a lumen and is configured to compressively constrain the stented prosthetic heart valve. The handle is coupled to the proximal portion of the sheath and includes an actuator mechanism coupled to a proximal portion of the sheath that is configured to selectively move the sheath relative to the housing to release the stented prosthetic heat valve. The adjustment device is coupled to the handle and includes an adjustment lumen through which the sheath and the handle slidably extend. The outer stability shaft is coupled to the adjustment device. The fine adjustment mechanism is configured to selectively move the handle and the sheath relative to the adjustment device and the outer stability shaft.
    Type: Grant
    Filed: July 31, 2020
    Date of Patent: February 14, 2023
    Assignee: Medtronic Vascular, Inc.
    Inventor: Jeffrey Sandstrom
  • Patent number: 11559663
    Abstract: A catheter may include an elongate body extending from a proximal end to a distal end and defining a lumen; a push member mechanically coupled to the proximal end of the elongate body; and a slidable push grip disposed about an outer perimeter of the push member. The slidable push grip is controllably engageable with the push member. When the slidable push grip is in an engaged state with the push member, the slidable push grip transmits an axial force to the push member to enable the push member to transmit the axial force to the elongate body. When the slidable push grip is in a disengaged state with the push member, the slidable push grip is movable axially in at least one direction along a length of the push member while transmitting substantially no axial force to the push member.
    Type: Grant
    Filed: June 5, 2019
    Date of Patent: January 24, 2023
    Assignee: MEDTRONIC VASCULAR, INC.
    Inventors: James Hannon, Joanna Cunniffe, Mick Donegan, David Gannon, Maria Larkin, Francis Denis McEvoy, Conor McNamara, Barry O'Connell
  • Patent number: 11559397
    Abstract: In some examples, a delivery device includes a handle that includes a control member, an elongate body, a plurality of arms extending from a distal portion of the elongate body to a distal collar configured to releasably couple to an annuloplasty device. The plurality of arms is operatively coupled to the control member and configured to position the annuloplasty device at a target site in a patient. The delivery device further comprises a plurality of anchors configured to secure the annuloplasty device to tissue at the target site, each respective anchor of the plurality of anchors deployable from a respective arm of the plurality of arms.
    Type: Grant
    Filed: December 11, 2019
    Date of Patent: January 24, 2023
    Assignee: Medtronic Vascular, Inc.
    Inventors: Olivia Metcalf, Matthew E. Genovese, Caitlin Dorff, Emily Grimm, Fatemeh Fatemi Far, Karan Punga
  • Patent number: 11559416
    Abstract: A crimper includes a first arm that includes a first crimper die that defines a first tapered channel. The crimper also includes a second arm coupled to the first arm at a pivot connection. The second arm includes a second crimper die that defines a second tapered channel. The pivot connection enables the first arm and the second arm to rotate about the pivot connection from an open state to a closed state. The first arm and second arm rotate at an angle relative to one another to allow loading of the expandable medical device into the first tapered channel or the second tapered channel and to allow positioning of the expandable medical device relative to a delivery device. When transitioning, the first tapered channel and the second tapered channel form a chamber that is configured to crimp the expandable medical device from the uncompressed state to the compressed state.
    Type: Grant
    Filed: November 11, 2020
    Date of Patent: January 24, 2023
    Assignee: Medtronic Vascular, Inc.
    Inventor: Brian Castelli
  • Patent number: 11547834
    Abstract: A guide extension catheter includes a push member and a distal shaft coupled to and extending distally from the push member. The distal shaft includes a shaft wall and a passageway. The shaft wall includes a helically-shaped proximal end and a distal end. The helically-shaped proximal end coils helically about a first central longitudinal axis of the passageway of the distal shaft. The helically-shaped proximal end of the shaft wall defines a helically-shaped entry port of the distal shaft. The distal shaft may include a helically-shaped collar coupled to the helically-shaped proximal end of the distal shaft, the collar defining the helically-shaped entry port of the distal shaft.
    Type: Grant
    Filed: July 21, 2020
    Date of Patent: January 10, 2023
    Assignee: MEDTRONIC VASCULAR, INC.
    Inventors: Colm Connolly, Patrick Griffin
  • Patent number: 11547562
    Abstract: A balloon catheter includes a balloon coupled to a shaft. The shaft includes a proximal perfusion portion disposed proximal of the balloon and a distal perfusion portion disposed distal of the balloon. The proximal and distal perfusion portions each are formed by a respective plurality of wire members woven together to form a respective proximal and distal braided shafts. The plurality of wire members are woven together such that a plurality of perfusion openings are formed between the wire members. The plurality of perfusion openings extend from an outer surface of the respective proximal or distal braided shaft to a lumen of the respective proximal or distal braided shaft. A perfusion lumen extends between the proximal perfusion portion and the distal perfusion portion.
    Type: Grant
    Filed: November 15, 2020
    Date of Patent: January 10, 2023
    Assignee: Medtronic Vascular, Inc.
    Inventor: Michael Krivoruchko
  • Patent number: 11540917
    Abstract: A system for fracturing a frame of a deployed prosthesis with ultrasonic vibration includes a shaft, a tip assembly, an ultrasonic electric generator, and an ultrasonic transducer. The shaft includes a proximal portion and a distal portion. The tip assembly is coupled to the distal portion of the shaft. The tip assembly includes a cutting edge. The ultrasonic transducer is electrically coupled to the ultrasonic generator. Ultrasonic vibration generated by the ultrasonic transducer is translated to the tip assembly. The cutting edge of the tip assembly is configured to focus the vibration of the tip assembly onto a frame of a deployed prosthesis to fracture the frame of the prosthesis. The ultrasonic transducer may be coupled to the proximal portion or the distal portion of the shaft.
    Type: Grant
    Filed: May 2, 2019
    Date of Patent: January 3, 2023
    Assignee: Medtronic Vascular, Inc.
    Inventors: Matthew Genovese, Christopher Storment
  • Patent number: 11541208
    Abstract: In some examples, a catheter may include an elongate body and a push assembly. The elongate body may include an inner liner defining an entry port into a lumen defined by the elongate body, and an outer jacket. The push assembly may an anchor member positioned at a distal end of an elongate member. Distal to a proximal end of the elongate body, a first portion of the push assembly, comprising the anchor member, may be positioned between a portion of the inner liner and a portion of the outer jacket. The anchor member may extend only partially around an outer perimeter of the inner liner when the catheter is assembled. Proximal to the proximal end of the elongate body, a second portion of the push assembly, proximal to the first portion, may be positioned outside of the outer jacket and the inner liner.
    Type: Grant
    Filed: June 5, 2019
    Date of Patent: January 3, 2023
    Assignee: MEDTRONIC VASCULAR, INC.
    Inventors: Francis Denis McEvoy, Colm Connolly, Barry O'Connell, Shane Cooney, Joanna Cunniffe, James Hannon, Maria Larkin
  • Patent number: 11534285
    Abstract: A prosthetic assembly configured for endovascular placement within an aortic arch and method of use thereof. The prosthetic assembly includes a proximal aortic stent-graft prosthesis configured to be positioned within a proximal portion of the aortic arch adjacent to the brachiocephalic artery, a distal aortic stent-graft prosthesis configured to be positioned within a distal portion of the aortic arch adjacent to the left subclavian artery, a first branch stent-graft prosthesis configured to be positioned within the brachiocephalic artery and a second branch stent-graft prosthesis configured to be positioned in one of the left common carotid and the left subclavian artery. When deployed, a proximal end of the first branch stent-graft prosthesis is disposed within a lumen of the proximal aortic stent-graft prosthesis to proximally displace the ostium of the brachiocephalic artery.
    Type: Grant
    Filed: May 28, 2020
    Date of Patent: December 27, 2022
    Assignee: MEDTRONIC VASCULAR, INC.
    Inventors: Keith Perkins, Dennis Brooks, Mark Stiger