Patents Examined by Lindsey Bachman
  • Patent number: 8382774
    Abstract: A surgical instrument for applying sutures to tissue includes a needle deployment mechanism and a catch mechanism. In some embodiments, the needle deployment mechanism employs a linear path. Alternatively, it can employ a curved needle. The surgical instrument may include a rotatable head, a bend, and/or a malleable elongated body member formable into various shapes.
    Type: Grant
    Filed: April 4, 2006
    Date of Patent: February 26, 2013
    Assignee: Boston Scientific Scimed, Inc.
    Inventors: Juergen A. Kortenbach, Barry N. Gellman, Erin Bird
  • Patent number: 8366723
    Abstract: The stabilization of the dermal area around a follicular unit of hair for harvesting comprises the introduction of a small volume of fluid into the dermal area around a target follicular unit in order to stabilize the dermal area and initiate a limited time period during which the harvesting of the target follicular unit can occur.
    Type: Grant
    Filed: September 18, 2008
    Date of Patent: February 5, 2013
    Assignee: Rassman Licensing, LLC
    Inventors: William R. Rassman, Jae P. Pak
  • Patent number: 8366724
    Abstract: A device for removing hair includes a housing and a shaving head fixedly positioned in the housing. The shaving head includes generally disk-like depilator assemblies mounted on a shaft. Each of the assemblies includes a disk includes sloping regions on faces of the disk between lobes of the disk, pressure-transferring protrusions, and a rotation-transferring protrusion elements on the faces, a spacer disposed on the faces to prevent an accumulation of debris and/or to allow for periodic tilting of the disk so as to force the pressure transferring portion to press a pincer of an adjacent disc. A recess in one of the faces accommodates a one rotation-transferring protrusion of another adjacent disk to transfer a rotational force therebetween. Pincers are disposed between the lobes at the sloping portions and tilt about an axis according to contact with the pressure-transferring protrusions of the adjacent disk.
    Type: Grant
    Filed: March 19, 2009
    Date of Patent: February 5, 2013
    Assignee: Epilady 2000 LLC
    Inventor: Yehuda Poran
  • Patent number: 8343173
    Abstract: Devices, systems and methods facilitate positioning of a cardiac valve annulus treatment device, thus enhancing treatment of the annulus. Methods generally involve advancing an anchor delivery device through vasculature of the patient to a location in the heart for treating the valve annulus, contacting the anchor delivery device with a length of the valve annulus, delivering a plurality of coupled anchors from the anchor delivery device to secure the anchors to the annulus, and drawing the anchors together to circumferentially tighten the valve annulus. Devices generally include an elongate catheter having at least one tensioning member and at least one tensioning actuator for deforming a distal portion of the catheter to help it conform to a valve annulus. The catheter device may be used to navigate a subannular space below a mitral valve to facilitate positioning of an anchor delivery device.
    Type: Grant
    Filed: June 4, 2008
    Date of Patent: January 1, 2013
    Assignee: Guided Delivery Systems Inc.
    Inventors: Niel F. Starksen, John To, Mariel Fabro, Michael F. Wei, Rodolfo A. Morales
  • Patent number: 8323307
    Abstract: A balloon catheter is provided that may be used to dilate hardened regions of a stenosis. The balloon catheter is provided with dilation elements that extend along a surface of a balloon. The dilation elements may comprise a coil and dilation wire. The coil and wire may be configured in various ways such that inflation of the balloon creates a concentration of forces along the dilating wires which are thereafter transmitted to stenosed regions of a vessel wall. The force exerted by the dilation elements against the stenosed region is sufficient to fracture plaque from the vessel wall.
    Type: Grant
    Filed: February 12, 2008
    Date of Patent: December 4, 2012
    Assignee: Cook Medical Technologies LLC
    Inventor: Michael W. Hardert
  • Patent number: 8323334
    Abstract: The methods, devices, and systems are provided for performing endovascular repair of atrioventricular and other cardiac valves in the heart. Regurgitation of an atrioventricular valve, particularly a mitral valve, can be repaired by modifying a tissue structure selected from the valve leaflets, the valve annulus, the valve chordae, and the papillary muscles. These structures may be modified by suturing, stapling, snaring, or shortening, using interventional tools which are introduced to a heart chamber. Preferably, the tissue structures will be temporarily modified prior to permanent modification. For example, opposed valve leaflets may be temporarily grasped and held into position prior to permanent attachment.
    Type: Grant
    Filed: January 28, 2009
    Date of Patent: December 4, 2012
    Assignee: Evalve, Inc.
    Inventors: Mark E. Deem, Hanson S. Gifford, III, Martin S. Dieck, James I-Lin Fann, Frederick G. St. Goar
  • Patent number: 8317819
    Abstract: A collapsible medical device for use, e.g., as a vascular filter. The device includes a mandrel having a distal end and a stop spaced proximally of the distal end. A proximal length of the mandrel extends proximally of the stop and a distal length of the mandrel extends distally of the stop. A functional element (e.g., a vascular filter) has a radially expandable body and includes a proximal slider and a distal slider. The proximal and distal sliders are slidable along the mandrel independently of one another such that the distance between the proximal slider and distal slider can be varied to effect different configurations of the functional element. In one method of using such a device, the functional element is urged distally to a treatment site by urging the mandrel distally.
    Type: Grant
    Filed: November 23, 2009
    Date of Patent: November 27, 2012
    Assignee: Covidien LP
    Inventor: Richard S. Kusleika
  • Patent number: 8287559
    Abstract: A surgical clip (5) is provided for clipping a tubular structure (9) in vivo to ligate the tubular structure. The clip comprises first and second clip portions (6, 7). A hinge portion (8) is provided connecting the clip portions together and to enable the clip portions to be hinged together from an open clip condition to a closed clip condition thereby to ligate a tubular structure placed between the clip portions. A lock is provided for locking the clip portions together in the closed clip condition. In the closed clip condition the clip has a substantially smooth external profile, for example including blunt ends (21), so as to reduce the possibility of the clip (in use) eroding surrounding tissue structures.
    Type: Grant
    Filed: January 21, 2004
    Date of Patent: October 16, 2012
    Assignee: UCL Business PLC
    Inventors: Stephen George Edward Barker, Simon John Hollingsworth
  • Patent number: 8287583
    Abstract: The present invention provides devices and methods for fabricating and deploying an implantable device within the body. The invention is particularly suitable for delivering and deploying a stent, graft or stent graft device within a vessel or tubular structure within the body, particularly where the implant site involves two or more interconnecting vessels. The delivery and deployment system utilizes a plurality of strings which are releasably attached to the luminal ends of the implantable device.
    Type: Grant
    Filed: September 30, 2005
    Date of Patent: October 16, 2012
    Assignee: Taheri LaDuca LLC
    Inventors: Robert LaDuca, Paul LaDuca
  • Patent number: 8257427
    Abstract: An expandable stent comprising a tubular body made up of a plurality of separated tubular elements (1) arranged along a common longitudinal axis. Each tubular element (1) comprises a plurality of rhombic-shaped closed cell elements (2) joined by circumferentially extending linking members (3). The closed cell elements (2) are expandable to allow the tubular elements, and hence the stent itself, to expand. In the direction of the longitudinal axis of the stent, the extremities of each of the closed cell elements has an enlarged loop (30) with waisted portions (33) which allow the tubular elements to interlock to create a stable structure, at least when in the unexpanded condition.
    Type: Grant
    Filed: June 10, 2009
    Date of Patent: September 4, 2012
    Assignee: J.W. Medical Systems, Ltd.
    Inventors: Erik Andersen, Ning Wen
  • Patent number: 8252006
    Abstract: A gastric reduction apparatus endoscopically draws stomach walls into apposition. The apparatus includes an applicator body having a proximal end and a distal end. The applicator body also includes a suction slot shaped and dimensioned for housing a corkscrew anchor. A firing mechanism is associated with the corkscrew anchor for rotation of the corkscrew anchor in a manner causing the corkscrew anchor to penetrate and engage tissue brought adjacent the suction slot. A method for gastric reduction is achieved by introducing a gastric reduction apparatus as disclosed above within the stomach of an individual, applying the corkscrew anchor to a stomach wall and drawing stomach walls together to create a cavity within the stomach.
    Type: Grant
    Filed: August 5, 2005
    Date of Patent: August 28, 2012
    Assignee: Ethicon Endo-Surgery, Inc.
    Inventors: Mark S. Ortiz, David B. Griffith
  • Patent number: 8246651
    Abstract: The present invention provides a method of capturing thrombi in a blood vessel, which includes delivering a removable filter in a collapsed state within the blood vessel and deploying the filter to an expanded state within the blood vessel. The filter includes a plurality of primary struts and a plurality of secondary struts emanating from a hub and extending arcuately along a longitudinal axis and linearly radially. Each primary strut has an arcuate segment including first and second curved portions. Each secondary strut includes first and second arcs. The primary struts terminate with an anchoring hook. Each primary strut crosses another primary strut along the longitudinal axis in the collapsed state such that the arcuate segments occupy a first diameter and the anchoring hooks occupy a second diameter, the first diameter being greater than the second diameter for filter retrieval or delivery.
    Type: Grant
    Filed: March 4, 2010
    Date of Patent: August 21, 2012
    Assignee: Cook Medical Technologies LLC
    Inventors: Per Hendriksen, Allan G. Hemmingsen, Arne Molgaard-Nielsen, Thomas A. Osborne, Rolf Gunther
  • Patent number: 8246647
    Abstract: An internal nasal prosthesis of unitary construction. The prosthesis has three distinct segments, an arched medial segment and two lateral appendages on each end of the medial segment. Each appendage of this prosthesis is the mirror image of the other and is inclined at a compound angle, relative to said arched medial segment, so that each of said appendage is inclined, at an angle, into the plane of the page, of at least about 30 degrees, and at an angle, relative to the horizontal plane of the medial section, of about 90 degrees.
    Type: Grant
    Filed: November 14, 2008
    Date of Patent: August 21, 2012
    Inventor: Abraham Wien
  • Patent number: 8236026
    Abstract: A clip for engaging tissue includes a generally annular-shaped body defining a plane and disposed about a central axis extending normal to the plane. The body includes alternating inner and outer curved regions, defining a zigzag pattern about a periphery of the clip. The body is biased towards a planar configuration lying in the plane and deflectable towards a transverse configuration extending out of the plane. Tines extend from the inner curved regions, the tines being oriented towards the central axis in the planar configuration, and parallel to the central axis in the transverse configuration. The tines may include primary tines and secondary tines that are shorter than the primary tines. The primary tines may be disposed on opposing inner curved regions and oriented towards one another such that they overlap in the planar configuration.
    Type: Grant
    Filed: March 27, 2006
    Date of Patent: August 7, 2012
    Assignee: Integrated Vascular Systems, Inc.
    Inventors: Michael T. Carley, Richard S. Ginn, Javier Sagastegui, Ronald J. Jabba, William N. Aldrich, W. Martin Belef
  • Patent number: 8221454
    Abstract: An apparatus and method of repairing a tear in body tissue includes inserting a needle containing a retaining head from a first insertion position on a first outer surface of the body tissue, through the tear and to a second outer surface of the body tissue. The retaining head is ejected from the insertion needle and grasps the second outer surface in an engaged position. An anchor coupled to the retaining head by a flexible member is advanced from a second insertion position on the first outer surface of the body tissue to a position at least through a portion of the tear. The flexible member extends a distance along the first outer surface of the body tissue from the first insertion position to the second insertion position.
    Type: Grant
    Filed: October 27, 2009
    Date of Patent: July 17, 2012
    Assignee: Biomet Sports Medicine, LLC
    Inventor: Cory Schaffhausen
  • Patent number: 8221445
    Abstract: A membrane applied to the ostium of an atrial appendage for blocking blood from entering the atrial appendage which can form blood clots therein is disclosed. The membrane also prevents blood clots in the atrial appendage from escaping therefrom and entering the blood stream which can result in a blocked blood vessel, leading to strokes and heart attacks. The membranes are percutaneously installed in patients experiencing atrial fibrillations and other heart conditions where thrombosis may form in the atrial appendages. A variety of means for securing the membranes in place are disclosed. The membranes may be held in place over the ostium of the atrial appendage or fill the inside of the atrial appendage. The means for holding the membranes in place over the ostium of the atrial appendages include prongs, stents, anchors with tethers or springs, disks with tethers or springs, umbrellas, spiral springs filling the atrial appendages, and adhesives.
    Type: Grant
    Filed: September 24, 2004
    Date of Patent: July 17, 2012
    Assignee: Atritech, Inc.
    Inventors: Robert A van Tassel, Robert G Hauser
  • Patent number: 8197493
    Abstract: Systems, methods, and devices for the treatment of acute ischemic stroke that provide immediate blood flow restoration to a vessel occluded by a clot and, after reestablishing blood flow, address the clot itself. Immediate blood flow restoration advantageously can facilitate natural lysis of the clot and also can reduce or obviate the concern for distal embolization due to fragmentation of the clot. Several embodiments of the invention provide for progressive, or modular, treatment based upon the nature of the clot. For example, the progressive treatment can comprise a three-step progressive treatment process that includes immediate restoration of blood flow, in-situ clot management, and/or clot removal depending on the particular circumstances of the treatment. The in-situ clot management can include, for example, lysis and maceration. The progressive, or modular, treatment can be provided by a system or kit of one or more treatment devices.
    Type: Grant
    Filed: December 29, 2010
    Date of Patent: June 12, 2012
    Assignee: MindFrame, Inc.
    Inventors: David A. Ferrera, Andrew H. Cragg, John Fulkerson, Joshua Benjamin
  • Patent number: 8162963
    Abstract: Anastomosis devices, tools and methods of performing angled sutureless anastomosis. Devices provided are adapted to be oriented at an acute angle to a host vessel or organ, thereby orienting a graft to be anastomosed to the host by the same angle. The device maintains the angular orientation as it is compressed to join the graft and host.
    Type: Grant
    Filed: June 17, 2004
    Date of Patent: April 24, 2012
    Assignee: Maquet Cardiovascular LLC
    Inventor: Ryan C. Abbott
  • Patent number: 8157805
    Abstract: An encapsulation device for repair of articular cartilage defects includes a body for disposition adjacent a bone in an area of the cartilage defect, and elongated leg structure extending from the body and for disposition in the bone in the area of the cartilage defect. The leg structure is provided with a length which is a plurality of magnitudes greater than a thickness of the body, and is of a generally conical configuration.
    Type: Grant
    Filed: March 30, 2004
    Date of Patent: April 17, 2012
    Assignee: Tyco Healthcare Group LP
    Inventors: Paul Re, Mark A. Johanson, Peter F. Marshall
  • Patent number: 8137374
    Abstract: Methods of using a medical device having catheter with one or more expandable constricting/occluding members for preventing distal embolization during extracranial or intracranial carotid procedures or vertebral artery procedures by augmenting collateral cerebral circulation by coarctation of the aorta to enhance reversal of blood flow in an internal carotid artery, an external carotid artery, and/or a common carotid artery toward the subclavian artery are disclosed. An interventional catheter can also be advanced into a left cerebral artery and a procedure performed on a lesion in the left cerebral artery.
    Type: Grant
    Filed: December 16, 2009
    Date of Patent: March 20, 2012
    Assignee: CoAxia, Inc.
    Inventor: Denise R. Barbut