Patents Represented by Attorney Shay Glenn LLP
  • Patent number: 7959627
    Abstract: Apparatus for treating abnormal mucosa in an alimentary tract are provided. The apparatus include an ablation structure configured to be removably coupled to an endoscope and a deflection mechanism adapted to move the ablation structure with respect to the endoscope and toward a tissue surface.
    Type: Grant
    Filed: November 23, 2005
    Date of Patent: June 14, 2011
    Assignee: BARRX Medical, Inc.
    Inventors: David S. Utley, Robert Garabedian, Michael P. Wallace
  • Patent number: 7949382
    Abstract: One aspect of the invention provides a glucose monitor having a plurality of tissue piercing elements, each tissue piercing element having a distal opening, a proximal opening and interior space extending between the distal and proximal openings; a sensing area in fluid communication with the proximal openings of the tissue piercing elements; sensing fluid extending from the sensing area into substantially the entire interior space of the tissue piercing elements; and a glucose sensor adapted to detect a concentration of glucose in the sensing fluid within the sensing area.
    Type: Grant
    Filed: July 27, 2010
    Date of Patent: May 24, 2011
    Assignee: ArKal Medical, Inc.
    Inventor: Arvind N. Jina
  • Patent number: 7942874
    Abstract: The invention is concerned with cauterizing and resecting tissue. A pair of electrodes are placed on opposed tissue surfaces, and radio frequency power is applied through the electrodes to cauterizing a tissue mass therebetween. After cauterization has been effected, the tissue may be resected along a plane within the cauterized region with minimum or no bleeding. The tissue mass may then be removed.
    Type: Grant
    Filed: May 10, 2006
    Date of Patent: May 17, 2011
    Assignee: Aragon Surgical, Inc.
    Inventors: Joseph Eder, Camran Nezhat, Benjamin Theodore Nordell, II
  • Patent number: 7945333
    Abstract: A biostimulator system comprises one or more implantable devices and an external programmer configured for communicating with the implantable device or devices via bidirectional communication pathways comprising a receiving pathway that decodes information encoded on stimulation pulses generated by ones of the implantable device or devices and conducted through body tissue to the external programmer.
    Type: Grant
    Filed: October 13, 2006
    Date of Patent: May 17, 2011
    Assignee: Nanostim, Inc.
    Inventor: Peter M. Jacobson
  • Patent number: 7938830
    Abstract: A device for modifying tissue in a spine may include: a shaft having a proximal portion and a distal portion, the distal portion having dimensions which allow it to be passed into an epidural space of the spine and between target and non-target tissues; at least one distal force application member extending from the distal portion of the shaft and configured to facilitate application of at least one of anchoring force and tensioning force to the shaft; at least one movable tissue modifying member coupled with the shaft at or near its distal portion; at least one drive member coupled with the at least one tissue modifying member to activate the at least one tissue modifying member; and at least one power transmission member coupled with the at least one drive member to deliver power to the at least one drive member.
    Type: Grant
    Filed: April 17, 2006
    Date of Patent: May 10, 2011
    Assignee: Baxano, Inc.
    Inventors: Vahid Saadat, Jeffery L. Bleich, Kenneth Michlitsch, John E. Ashley
  • Patent number: 7937148
    Abstract: A leadless cardiac pacemaker comprises a housing, a plurality of electrodes coupled to an outer surface of the housing, and a pulse delivery system hermetically contained with the housing and electrically coupled to the electrode plurality, the pulse delivery system configured for sourcing energy internal to the housing, generating and delivering electrical pulses to the electrode plurality. The pacemaker further comprises an activity sensor hermetically contained within the housing and adapted to sense activity and a processor hermetically contained within the housing and communicatively coupled to the pulse delivery system, the activity sensor, and the electrode plurality, the processor configured to control electrical pulse delivery at least partly based on the sensed activity.
    Type: Grant
    Filed: October 13, 2006
    Date of Patent: May 3, 2011
    Assignee: Nanostim, Inc.
    Inventor: Peter M. Jacobson
  • Patent number: 7931693
    Abstract: Method and apparatus for treatment of morbid obesity by placement of a series of flow reduction elements in the small intestine to induce satiety are disclosed. The flow reduction elements restrict the movement of partially digested food and reduce the flow rate through the small intestine which causes the emptying of the stomach and the duodenum to occur slower. The flow reduction elements are attached to an elongated tube and are constructed from various shapes and configurations. The flow reduction elements may be inflated with fluid or may be constructed from self-expandable materials. The device is anchored in the antrum of the stomach with an anchoring member. The transoral gastric device can be inserted with a delivery catheter through the working lumen of an endoscope or alongside an endoscope and may be removed with the aid of an endoscope if desired.
    Type: Grant
    Filed: November 30, 2004
    Date of Patent: April 26, 2011
    Assignee: Endosphere, Inc.
    Inventor: Kenneth F. Binmoeller
  • Patent number: 7930035
    Abstract: A neurological control system for modulating activity of any component or structure comprising the entirety or portion of the nervous system, or any structure interfaced thereto, generally referred to herein as a “nervous system component.” The neurological control system generates neural modulation signals delivered to a nervous system component through one or more neuromodulators to control neurological state and prevent neurological signs and symptoms. Such treatment parameters may be derived from a neural response to previously delivered neural modulation signals sensed by one or more sensors, each configured to sense a particular characteristic indicative of a neurological or psychiatric condition.
    Type: Grant
    Filed: May 2, 2007
    Date of Patent: April 19, 2011
    Assignee: NeuroVista Corporation
    Inventor: Daniel John DiLorenzo
  • Patent number: 7918849
    Abstract: Methods are provided for access to a compressed space in the spinal anatomy. These methods may be used for selective surgical removal of tissue, e.g., for enlargement of diseased spinal structures, such as impinged lateral recesses and pathologically narrowed neural foramen. In one variation, tissue may be ablated, resected, removed, or otherwise remodeled by standard small endoscopic tools delivered into the epidural space. In one variation, a tissue abrasion device is provided. A cannulated probe may be placed through the neural foramina of the spine and used to position a guidewire around the anterior border of a facet joint. Once properly positioned, a medical practitioner may use the guidewire with an abrasion device to enlarge the lateral recess and neural foramina. A nerve stimulator may be provided to reduce a risk of inadvertent neural abrasion.
    Type: Grant
    Filed: October 15, 2005
    Date of Patent: April 5, 2011
    Assignee: Baxano, Inc.
    Inventors: Jeffery L. Bleich, Steven A. Spisak
  • Patent number: 7914468
    Abstract: A system for detecting non-verbal acoustic energy generated by a subject is provided. The system includes a sensor mountable on or in a body region of the subject, the sensor being capable of sensing the non-verbal acoustic energy; and a processing unit being capable of processing the non-verbal acoustic energy sensed by the sensor and deriving an activity related signature therefrom, thereby enabling identification of a specific activity associated with the non-verbal acoustic energy.
    Type: Grant
    Filed: September 21, 2005
    Date of Patent: March 29, 2011
    Assignee: SVIP 4 LLC
    Inventors: Tadmor Shalon, Tidhar Shalon
  • Patent number: 7913698
    Abstract: This invention relates to the treatment of a patient's lung, for example, a lung exhibiting chronic obstructive pulmonary disease (COPD) and in particular to methods and devices for affecting lung volume reduction, preferably for achieving acute or immediate lung volume reduction following treatment. The lung volume reduction is effected by delivering a condensable vapor at a temperature above body temperature to the desired regions of the patient's lung to damage tissue therein. Blood flow and air flow to the damaged tissue region is essentially terminated, rendering the target region non-functional. Alternative energy sources may be used to effect the thermal damage to the lung tissue.
    Type: Grant
    Filed: November 16, 2005
    Date of Patent: March 29, 2011
    Assignee: Uptake Medical Corp.
    Inventors: Robert L. Barry, Brian Cran, Dean Corcoran, Sheldon K. Lee
  • Patent number: 7896910
    Abstract: Modular therapy apparatus for treatment of at least a portion of an animate body comprises a first modular member and a second modular member. The first modular member comprises a heat transfer device adapted to transfer heat between the device and the at least a portion of an animate body. The second modular member forms a pouch having a perimeter and is adapted to receive the first modular member. The second modular member comprises a front side and a back side. The front side has a hook portion, which forms the hook portion of a hook and loop fastener. The back side has a loop portion, which forms the loop portion of the hook and loop fastener. The second modular member can be wrapped around the at least a portion of an animate body and the hook and loop portions fastened to one another to secure the second modular member with the first modular member positioned therein to the at least a portion of the animate body.
    Type: Grant
    Filed: May 17, 2004
    Date of Patent: March 1, 2011
    Assignee: CoolSystems, Inc.
    Inventors: Tamara Lynn Schirrmacher, David Selby Maltz
  • Patent number: 7896797
    Abstract: Larmor Precession makes specific predictions about bound ion dynamics, based upon specific combinations of AC and DC magnetic fields. Especially significant is the fact that the external magnetic field environment determines the overall qualities of resonances or particular changes in bio-effects. Given a target with a particular gyromagnetic ratio, Larmor Precession makes predictions that are determined solely by a magnetic field environment itself. An embodiment according to the present invention comprises specific combinations of AC and DC magnetic fields configured to produce specific bio-effects.
    Type: Grant
    Filed: April 14, 2008
    Date of Patent: March 1, 2011
    Assignee: Ivivi Health Sciences, LLC
    Inventors: Arthur A. Pilla, Andre' DiMino, David J. Muehsam
  • Patent number: 7897086
    Abstract: This invention is directed to a partitioning device for separating a chamber of a patient's heart into a productive portion and a non-productive portion. The device is particularly suitable for treating patients with congestive heart failure. The partitioning device has a frame-reinforced, expandable membrane which separates the productive and non-productive portions of the heart chamber. Elements of the frame include ribs that are secured to the expandable membrane, to form an integrated structure that may be unilaminar or bilaminar in form. The proximal ends of the ribs of the frame have tissue-penetrating elements about the periphery thereof which are configured to penetrate tissue lining the heart wall at an angle approximately perpendicular to a longitudinal axis of the partitioning device. The partitioning device has a hub with a non-traumatic distal end to engage the ventricular wall.
    Type: Grant
    Filed: September 24, 2007
    Date of Patent: March 1, 2011
    Assignee: CardioKinetix, Inc.
    Inventors: Alexander Khairkhahan, Serjan D. Nikolic
  • Patent number: 7892145
    Abstract: The improved jump ropes devices described herein generally include a source of rhythmic sound, a sensor for determining the motion of the jump rope, and a visual output (e.g., feedback) for indicating how well a user is moving or jumping in time to the rhythmic component of the sound. The device may also include a controller for receiving input from the source of rhythmic sound and the sensor, and controlling the visual output. Methods of using the devices are also described.
    Type: Grant
    Filed: March 2, 2009
    Date of Patent: February 22, 2011
    Assignee: HopeLab Foundation, Inc.
    Inventors: Bryson Lovett, Patricia L. Christen, Frederick P. Dillon, IV, Nicole Lee Guthrie, Ellen Louise LaPointe, Lalita Kikuyo Suzuki, Richard L. Tate, II, Mark A. Wallace, Elizabeth Ji-Eun Song, Daniel E. Cawley
  • Patent number: 7887582
    Abstract: A tissue shaping device adapted to be deployed in a lumen to modify the shape of target tissue adjacent to the lumen. In one embodiment the device includes first and second anchors; a connector disposed between the first and second anchors; and a focal deflector disposed between the first and second anchors and may be adapted to extend away from the lumen axis and toward the target tissue and/or away from the lumen axis and away from the target tissue when the device is deployed in the lumen. The invention is also a method of modifying target tissue shape. The method includes the steps of providing a tissue shaping device comprising proximal and distal anchors, a connector disposed between the proximal and distal anchors, and a focal deflector; placing the tissue shaping device in a lumen adjacent the target tissue; applying a shaping force from the focal deflector against a lumen wall to modify the shape of the target tissue; and expanding the proximal and distal anchors to anchor the device in the lumen.
    Type: Grant
    Filed: May 5, 2004
    Date of Patent: February 15, 2011
    Assignee: Cardiac Dimensions, Inc.
    Inventors: Mark L. Mathis, David Reuter, Lucas Gordon, Cruz Beeson, Garrett Beget, Frederick Stewart
  • Patent number: 7887538
    Abstract: A method for modifying tissue in a patient may involve one or more of the following steps: advancing at least a distal portion of at least one elongate, at least partially flexible tissue modification device into a patient and between one or more target tissues and one or more non-target tissues; positioning at least one tissue modifying member of the tissue modification device adjacent the target tissue such that the tissue modifying member(s) face the target tissue and do not face the non-target tissue; applying an anchoring force to the tissue modification device at or near the distal portion or a proximal portion of the device; applying a tensioning force to the tissue modification device at or near an opposite end of the device relative to the end to which anchoring force is applied, while maintaining the anchoring force, to urge the tissue modifying member(s) against the target tissue; and modifying the target tissue, using the tissue modifying member(s), while preventing the tissue modifying member(s)
    Type: Grant
    Filed: March 13, 2006
    Date of Patent: February 15, 2011
    Assignee: Baxano, Inc.
    Inventors: Jeffery L. Bleich, Vahid Saadat, Steven A. Spisak, John E. Ashley
  • Patent number: 7887477
    Abstract: A porous membrane is inserted into a ventricle of a heart. The porous membrane creates a relatively hemostatic volume in which a thrombus can grow. Blood can still pass through fenestrations of the membrane into and out of the hemostatic volume. The fenestrations reduce pressures that act on the membrane, and so reduce stresses within the membrane. The flow characteristics through the hemostatic volume promote growth of the thrombus from a base of the hemostatic volume. The thrombus grows to slightly larger than the original size of the hemostatic volume so as to provide support for the membrane. Any remaining stresses within the membrane are thereby substantially eliminated. The thrombus shrinks over an ensuing period of time, with the membrane merely acting as a barrier to which an outer wall of the myocardium retracts. The function of the membrane is then complete, and may be absorbed.
    Type: Grant
    Filed: November 22, 2002
    Date of Patent: February 15, 2011
    Assignee: CardioKinetix, Inc.
    Inventors: Serjan D. Nikolic, Hugh R. Sharkey
  • Patent number: 7875159
    Abstract: An electrokinetic pump achieves high and low flow rates without producing significant gaseous byproducts and without significant evolution of the pump fluid. A first feature of the pump is that the electrodes in the pump are capacitive with a capacitance of at least 10?4 Farads/cm2. A second feature of the pump is that it is configured to maximize the potential across the porous dielectric material. The pump can have either or both features.
    Type: Grant
    Filed: March 9, 2007
    Date of Patent: January 25, 2011
    Assignee: Eksigent Technologies, LLC
    Inventors: Deon S. Anex, Phillip H. Paul, David W. Neyer
  • Patent number: 7867263
    Abstract: A system for performing surgical repair of the spine includes a distractor and a permanently implanted bone plate system. A surgical repair methodology is also disclosed that employs an implanted bone plate system with a substantially void internal volume which is attached to adjacent vertebrae subsequent to the distraction and/or adjustment of curvature of the vertebrae and prior to the excision of disc and/or end plate tissue through the bone plate. The device further facilitates the subsequent delivery of an interbody repair device for the purpose of either fusion or dynamic stabilization, such as by disc arthroplasty. The plate may be permanently implanted, such as when a fusion between the attached vertebral bodies is desired, but it need not be permanently implanted.
    Type: Grant
    Filed: September 13, 2007
    Date of Patent: January 11, 2011
    Assignee: TransCorp, Inc.
    Inventors: David Lowry, Desmond O'Farrell, Scott Tuinstra, Roger Veldman