Patents Examined by Vy Q Bui
  • Patent number: 8758375
    Abstract: A method for suturing a perforation comprises the steps of: observing an area around the perforation from an inside of a hollow organ by an observation device inserted from a natural opening of a living body; observing the area around the perforation from a body cavity side of the hollow organ by an observation device inserted from the natural opening of the living body; thrusting a needle of a suture unit inserted from the natural opening of the living body into a tissue around the perforation of the hollow organ to make a suture thread puncture the tissue via the needle; and closing the perforation by tightening up the suture thread puncturing the tissue.
    Type: Grant
    Filed: September 28, 2005
    Date of Patent: June 24, 2014
    Assignee: Olympus Medical Systems Corp
    Inventors: Takayasu Mikkaichi, Masayuki Iwasaka
  • Patent number: 8747454
    Abstract: A system for improving cardiac function is provided. A foldable and expandable frame having at least one anchoring formation is attached to an elongate manipulator and placed in a catheter tube while folded. The tube is inserted into a left ventricle of a heart where the frame is ejected from the tube and expands in the left ventricle. Movements of the elongate manipulator cause the anchor to penetrate the heart muscle and the elongate manipulator to release the frame. The installed frame minimizes the effects of an akinetic portion of the heart forming an aneurysmic bulge.
    Type: Grant
    Filed: May 7, 2007
    Date of Patent: June 10, 2014
    Assignee: CardioKinetix, Inc.
    Inventors: Alexander Khairkhahan, Hugh R. Sharkey, Serjan D. Nikolic
  • Patent number: 8747450
    Abstract: A method for assembling a stent graft onto a balloon delivery catheter is disclosed. The method includes the steps of: assembling a graft over a stent with attached security rings and inserting the ends of the graft between the stent and the rings; placing the assembled stent graft on the delivery balloon of the delivery catheter; and crimping the stent graft onto the balloon. The stent may include a plurality of axially aligned belts that include a plurality of mid belts, and first and second end belts, where each of the mid belts includes a plurality of circumferentially spaced struts having first and second ends adjoining first sinusoidal-shaped elements, and each of the first and second end belts includes at least about twice the number of circumferentially spaced struts adjoining second sinusoidal-shaped elements. Also disclosed is a stent graft for use in practicing the method.
    Type: Grant
    Filed: June 27, 2012
    Date of Patent: June 10, 2014
    Assignee: Covidien LP
    Inventors: Michi E. Garrison, Leon V. Rudakov
  • Patent number: 8740973
    Abstract: A medical device that is at least partially formed of a biodegradable polymer. The medical device can be at least partially formed by MEMS technology. The medical device can include one or more micro-structures that are also formed by MEMS technology.
    Type: Grant
    Filed: January 20, 2006
    Date of Patent: June 3, 2014
    Assignee: ICON Medical Corp.
    Inventors: Joseph G. Furst, William G. Brodbeck
  • Patent number: 8709062
    Abstract: Medical devices and methods for making and using medical devices are disclosed. An example medical device may include an elongate shaft including a first tubular member and a second tubular member. A balloon may be coupled to the shaft. A first member may be coupled to the first tubular member and positioned within the balloon. A second member may be coupled to the first tubular member and positioned within the balloon. A medical implant may be coupled to the shaft and positioned adjacent to the balloon.
    Type: Grant
    Filed: September 14, 2012
    Date of Patent: April 29, 2014
    Assignee: Boston Scientific Scimed, Inc.
    Inventors: Andrew J. Dusbabek, Louis G. Ellis, Christopher R. Larson, Terry V. Brown, Charles L. Euteneuer, Steven P. Mertens, Richard C. Mattison, David J. Blaeser, Linda R. Lorentzen Cornelius, Martin R. Willard, Fernando DiCaprio, Stanley A. Nordin
  • Patent number: 8690906
    Abstract: A blood clot filter is collapsible toward a longitudinal axis into a collapsed configuration for insertion into a blood vessel, and is radially expandable outwardly from the longitudinal axis to an expanded configuration for contact with the inner wall of the blood vessel at two longitudinal spaced locations. A first plurality of spaced, elongate arms, in the expanded configuration, curve outwardly away from the longitudinal axis toward the leading end of the filter to form a first filter basket and to center a hub at the trailing end of the filter within the vessel. A second plurality of spaced elongate legs angle outwardly away from the longitudinal axis toward the leading edge of the filter in the expanded configuration to form a second filter basket opening toward the leading end. The ends of these legs include hooks to bend and straighten in response to withdrawal force.
    Type: Grant
    Filed: March 7, 2012
    Date of Patent: April 8, 2014
    Assignee: C.R. Bard, Inc.
    Inventors: Adrian C. Ravenscroft, Stephen J. Kleshinski
  • Patent number: 8690905
    Abstract: A medical device delivery system comprises an inner tube, a medical device disposed about a portion of the distal region of the inner tube, a medical device sheath disposed about the medical device, a medical device sheath retraction device extending proximally from the medical device sheath and an outer sheath disposed about a portion of the medical device sheath retraction device. The distal end of the outer sheath terminates at least one medical device length proximal of the medical device. The medical device sheath is movable relative to the outer sheath and relative to the inner tube.
    Type: Grant
    Filed: August 31, 2010
    Date of Patent: April 8, 2014
    Assignee: Boston Scientific Scimed, Inc.
    Inventors: Matthew C. Heidner, Thomas J. Holman
  • Patent number: 8685055
    Abstract: Apparatus for permanent placement across an ostium of a left atrial appendage in a patient, which includes a filtering membrane configured to extend across the ostium of the left atrial appendage. The filtering membrane has a permeable structure which allows blood to flow through but substantially inhibits thrombus from passing therethrough. The apparatus also includes a support structure attached to the filtering membrane which retains the filtering membrane in position across the ostium of the left atrial appendage by permanently engaging a portion of the interior wall of the left atrial appendage. The support structure may be radially expandable from a first configuration to a second configuration which engages the ostium or the interior wall of the left atrial appendage. The filtering membrane may define an opening therethrough that is configured to expand from a first size which inhibits the passage of thrombus therethrough to a second size which allows an interventional device, e.g.
    Type: Grant
    Filed: September 4, 2003
    Date of Patent: April 1, 2014
    Assignee: Atritech, Inc.
    Inventors: Robert A VanTassel, Robert G Hauser, Robert Schwartz, David Holmes, Gregg S Sutton, Thomas E Borillo, Jeffrey Welch
  • Patent number: 8685053
    Abstract: A catheter assembly comprises a manifold positioned at a proximal end of the catheter assembly. A tether member has a proximal end region fixedly engaged to a portion of the manifold. A proximal tubular member has a first end region engaged to the manifold. The proximal tubular member is disposed about at least a portion of the tether member. At least a portion of the tether member distal of the manifold is fixedly engaged to at least a portion of the proximal tubular member.
    Type: Grant
    Filed: May 22, 2003
    Date of Patent: April 1, 2014
    Assignee: Boston Scientific Scimed, Inc.
    Inventors: Brian Brown, Jason Hill, John R. Moberg
  • Patent number: 8668728
    Abstract: The invention relates to a system for dilatation of a body passage and delivery of a stent into the body passage of a patient, and related methods of using such a system. The dilatation and stent delivery system may comprise a dilatation catheter having an expandable member on a distal end, and a stent delivery catheter configured to retain a stent and deliver the stent to a body passage. The stent delivery catheter defines a lumen sized to receive the dilatation catheter and permit movement of the dilatation catheter relative to the stent delivery catheter.
    Type: Grant
    Filed: May 13, 2011
    Date of Patent: March 11, 2014
    Assignee: Boston Scientific Scimed, Inc.
    Inventors: F. Anthony Headley, Peter Shank, Emily Rusk, John Damarati, Michael Abi-Kheirs
  • Patent number: 8663241
    Abstract: A full-thickness resection system is disclosed. In an embodiment for the resection system, the system may include a flexible shaft, a flexible guide member disposed within the flexible shaft, a stapling mechanism disposed around the flexible guide member, and a grasper. The stapling mechanism has an elongated portion that is at least partially disposed within the flexible shaft. The stapling mechanism includes a stapling arm and an anvil arm. The stapling arm has a longitudinal axis and includes a stapling head having a longitudinal axis. The anvil includes an anvil head. The stapling arm and anvil arm extend from the elongated portion of the stapling mechanism and are moveable with respect to each other between a tissue receiving position and a stapling position. The grasper extends through the flexible shaft and is adapted to grasp a portion of a tissue that is to be excised from an organ in the patient's body.
    Type: Grant
    Filed: January 17, 2003
    Date of Patent: March 4, 2014
    Assignee: Boston Scientific Scimed, Inc.
    Inventors: Ronald D. Adams, Roy H. Sullivan, Gerhard F. Buess, Marc O. Schurr
  • Patent number: 8652153
    Abstract: An intervertebral disc repair system comprises an implant and a delivery tool configured to deploy the implant at least partially in a vertebral body of a patient. The implant includes an anchor member and an adjustable suture assembly coupled thereto. The delivery tool includes a proximal handle, an outer tubular member extending distally from the handle, a needle cannula slidably received within the outer tubular member having a sharpened tip for penetrating tissue (e.g., the vertebral body), an inner pusher member slidably received within the needle cannula, and an actuating mechanism coupled to the handle for selectively retracting the needle cannula relative to the outer tubular member and the inner pusher member. At least the anchor member of the implant is releasably received within the needle cannula.
    Type: Grant
    Filed: August 10, 2010
    Date of Patent: February 18, 2014
    Assignee: Anulex Technologies, Inc.
    Inventors: Dale Brady, Lawrence W. Wales, Ishmael Bentley
  • Patent number: 8647362
    Abstract: A deflecting method and deflecting apparatus allows the distal end of device, for example an endoscopic medical device, to be remotely and adjustably deflected from a straight configuration to a deflected configuration. Manipulating a proximal handle causes the deflection, controls actuation of an end effector assembly on the distal end, and straightens the deflecting apparatus back to its original configuration.
    Type: Grant
    Filed: October 10, 2003
    Date of Patent: February 11, 2014
    Assignee: Boston Scientific Scimed, Inc.
    Inventor: John A. Griego
  • Patent number: 8647352
    Abstract: A compression ring to grip and compress body structure such as diverticulum, hemorrhoids, and tissue adjacent a hole. A resilient ring-shaped body defines a compression channel, and one or more axially rigid elongated spikes extend from the body into the channel. The body defines a first axial segment surrounding the compression channel and a second axial segment surrounding the compression channel, with the spike being engaged only with the second axial segment. The first axial segment more tightly compresses the body structure than the second axial segment.
    Type: Grant
    Filed: November 21, 2011
    Date of Patent: February 11, 2014
    Assignee: Insightra Medical, Inc.
    Inventors: Wayne A. Noda, Stephen Graham Bell
  • Patent number: 8628555
    Abstract: An apparatus and method for ejecting fluid from a fluid delivery system. The fluid delivery system has a pneumatic assembly that when triggered injects gas into a hydraulic assembly, which in turn ejects fluid through an external interface. An electronic interface displays various measurements, for example, how much fluid has been ejected and if the hydraulic system is closed the pressure of the system. The pneumatic assembly can also be depressurized such that fluid can reenter the hydraulic assembly through the external interface.
    Type: Grant
    Filed: February 23, 2012
    Date of Patent: January 14, 2014
    Assignee: Boston Scientific Scimed, Inc.
    Inventors: Stephen J. Perry, Michele B. Carter, David R. Conti, Thomas F. Janecek, Bryan D. Knodel, Anthony Scott Hollars, Peter Crowley, Donald C. Hovey, William Lucas Churchill, John B. Golden, Yam Chin, Mark L. Adams, Carleton E. Yee, Otto E. Anderhub
  • Patent number: 8623075
    Abstract: A delivery system for use with a prosthetic heart valve having a stent frame to which a valve structure is attached includes a shaft assembly including a distal end, an intermediate portion, and a first coupling structure disposed near the distal end and configured to be coupled to a distal end of the prosthetic heart valve via a first tether. A sheath assembly defines a lumen sized to slidably receive the shaft assembly. The delivery system is configured to transition from a loaded state in which the sheath assembly encompasses the prosthetic heart valve to a deployed state in which the sheath assembly is withdrawn from the prosthetic heart valve. The first coupling structure is configured to be manipulated in a first direction to provide a controlled expansion or contraction of the distal end of the prosthetic heart valve.
    Type: Grant
    Filed: April 21, 2011
    Date of Patent: January 7, 2014
    Assignee: Medtronic, Inc.
    Inventors: Robert J. Murray, III, Charles Tabor, Andrew Crisman, Adam Shipley
  • Patent number: 8617189
    Abstract: Apparatus for reconfiguring tissue, the apparatus comprising a shaft having a distal end and a proximal end; at least one effector mechanism movably mounted to the distal end of the shaft, each effector mechanism comprising at least one gripping element for gripping tissue to that effector mechanism, the at least one effector mechanism being configured to capture the gripped tissue against said shaft, at least one actuating mechanism mounted to the proximal end of the shaft, and at least one connection mechanism connecting the at least one actuating mechanism to the at least one effector mechanism, whereby a user may utilize the at least one actuating mechanism to actuate the at least one effector mechanism so as to reconfigure tissue.
    Type: Grant
    Filed: February 18, 2011
    Date of Patent: December 31, 2013
    Inventors: John R. Liddicoat, William E. Cohn
  • Patent number: 8613754
    Abstract: A filter to be placed in a flow of blood through a vessel. The filter includes a hub disposed along a longitudinal axis and a plurality of anchor members extending from the hub. Each anchor member includes either a cranial extension or a caudal extension at a distal end thereof. At least one anchor member distal end is spaced from the hub at each of a first, second, and third distance along the longitudinal axis. The filter also includes a plurality of locator members extending from the hub, the locator members alternatingly interposed between the anchor members.
    Type: Grant
    Filed: July 29, 2010
    Date of Patent: December 24, 2013
    Assignee: C. R. Bard, Inc.
    Inventors: Andrzej J. Chanduszko, Michael Adam Randall
  • Patent number: 8608772
    Abstract: A vasoocclusive coil is reinforced with a stretch resistant member to improve safety during retraction of the coil. The stretch resistant member is fixedly attached at one end to the vasoocclusive coil, and the other end of the stretch resistant member is detachably mounted to an elongated pusher member to allow for placement and release of the vasoocclusive coil within the patient's vasculature.
    Type: Grant
    Filed: April 12, 2012
    Date of Patent: December 17, 2013
    Assignee: Micrus Corporation
    Inventors: Peter Wilson, Eric Leopold, Rupesh K. Desai
  • Patent number: 8608791
    Abstract: A catheter for delivering luminal prostheses comprises a catheter body having an expandable member near a distal end. The prosthesis has a side hole, and a guidewire extends beneath a proximal portion of the prosthesis and over the exterior of the expandable member. A distal end of the guidewire is retracted proximally from the closest point on the side opening to reduce possible interference with catheter advancement.
    Type: Grant
    Filed: March 9, 2011
    Date of Patent: December 17, 2013
    Assignee: Trireme Medical, Inc.
    Inventors: Tanhum Feld, Eitan Konstantino