Patents Examined by Rosiland Rollins
  • Patent number: 7008420
    Abstract: The high frequency surgical instrument includes the electrical connection portion configured to detachably connect the connection cord designed for an external high frequency power source, to the slider, and the instrument has such a structure in which the contact pin configured to lead the connection cord backward in substantially parallel with the advancing and retreating direction of the slider is provided in substantially parallel with the advancing and retreating direction of the slider while the connection cord is connected to the electric connection portion.
    Type: Grant
    Filed: December 9, 2003
    Date of Patent: March 7, 2006
    Assignee: Olympus Corporation
    Inventor: Tsutomu Okada
  • Patent number: 7004174
    Abstract: Method for carrying out the recovery of an intact volume of tissue wherein a delivery cannula tip is positioned in confronting adjacency with the volume of tissue to be recovered. The electrosurgical generator employed to form an arc at a capture component extending from the tip is configured having a resistance-power profile which permits recovery of the specimen without excessive thermal artifact while providing sufficient power to sustain a cutting arc. For the recovery procedure, a local anesthetic employing a diluent which exhibits a higher resistivity is utilized and the method for deploying the capture component involves an intermittent formation of a cutting arc with capture component actuation interspersed with pauses of duration effective to evacuate any accumulation or pockets of local anesthetic solution encountered by the cutting electrodes.
    Type: Grant
    Filed: September 13, 2002
    Date of Patent: February 28, 2006
    Assignee: Neothermia Corporation
    Inventors: Philip E. Eggers, Michael W. Jopling
  • Patent number: 7004940
    Abstract: A device for thermal ablation therapy having a handle sized and shaped to be held by a user, one or more transducer assembly which, when activated, emits ultrasound energy capable of heating tissue and which is movably mounted relative to said handle element, and moving means, such as one or more rods, for moving the transducer assembly or assemblies, while activated, to any one of a plurality of positions relative to the handle element and relative to tissue to be ablated, whereby ultrasound energy is efficiently delivered to the tissue. The device also includes carrying means, such as a shaft attached at one end to the handle element, which carries the rod or rods and the transducer assembly or assemblies. The rod or rods are engaged with a knob positioned in the handle and when the knob is rotated, the rod or rods are rotated, thereby causing the transducer assembly or assemblies to move relative to the handle, the shaft and the tissue to be ablated.
    Type: Grant
    Filed: October 10, 2002
    Date of Patent: February 28, 2006
    Assignee: Ethicon, Inc.
    Inventors: Thomas P. Ryan, Gennady Kleyman
  • Patent number: 7004938
    Abstract: A RF catheter system includes a catheter with a proximal portion, a distal portion having a distal end and a lumen extending from the proximal portion to the distal portion. Inner and outer coaxially aligned conductors extend within the catheter and are coaxial with the lumen. A deflectable catheter guide is disposed within the catheter lumen and extends proximally within the catheter lumen and terminates distally of the distal end of the catheter to define a biological ablation pathway. A radio-frequency antenna is disposed at the distal portion of the catheter and is in electrical communication with the inner and outer coaxially aligned conductors. The radio-frequency antenna is adaptable to receive and transmit radio-frequency energy for ablating biological tissue along the ablation pathway.
    Type: Grant
    Filed: November 27, 2002
    Date of Patent: February 28, 2006
    Assignee: MedWaves, Inc.
    Inventors: Theodore C. Ormsby, Ming-Fan Law, George L. Leung
  • Patent number: 7004936
    Abstract: A catheter-based system for performing a cryoablation procedure uses a precooler to lower the temperature of a fluid refrigerant to a sub-cool temperature (?40° C.) at a working pressure (400 psi). The sub-cooled fluid is then introduced into a supply line of the catheter. Upon outflow of the primary fluid from the supply line, and into a tip section of the catheter, the fluid refrigerant boils at an outflow pressure of approximately one atmosphere, at a temperature of about ?88° C. In operation, the working pressure is computer controlled to obtain an appropriate outflow pressure for the coldest possible temperature in the tip section.
    Type: Grant
    Filed: September 12, 2002
    Date of Patent: February 28, 2006
    Assignee: CryoCor, Inc.
    Inventors: Eric Ryba, David J. Lentz, Ravikumar Kudaravalli
  • Patent number: 7001415
    Abstract: A method and apparatus for transmural ablation using an instrument containing two electrodes or cryogenic probes. A clamping force is exerted on the two electrodes or probes such that the tissue of the hollow organ is clamped therebetween. Bipolar RF energy is then applied between the two electrodes, or the probes are cryogenically cooled, thus ablating the tissue therebetween. A monitoring device measures a suitable parameter, such as impedance or temperature, and indicates when the tissue between the electrodes has been fully ablated.
    Type: Grant
    Filed: December 12, 2001
    Date of Patent: February 21, 2006
    Assignee: AtriCure, Inc.
    Inventor: Michael D. Hooven
  • Patent number: 7001382
    Abstract: An electrosurgical coagulating and cutting instrument employing pairs of clamping arms having wrist portions proximal to closing ramps and jaws and configured to close at their wrists first, then their distal tips and lastly, their heels. The instrument includes mechanisms for preventing the advancement of a cutting blade when the jaws are not closed. An actuator for closing the jaws includes an actuator handle and a drive head having teeth formed therein and a pawl mounted in the handle for engaging the teeth, these latter structures forming a ratcheting mechanism. Said mechanism is controllably releaseable.
    Type: Grant
    Filed: January 14, 2002
    Date of Patent: February 21, 2006
    Assignee: ConMed Corporation
    Inventor: David P. Gallo, Sr.
  • Patent number: 7001378
    Abstract: An enhanced method and device are provided to treat atrial fibrillation or inhibit or reduce restenosis following angioplasty or stent placement. A balloon-tipped catheter is disposed in the area treated or opened through balloon angioplasty immediately following angioplasty. The balloon, which can have a dual balloon structure, may be delivered through a guiding catheter and over a guidewire already in place. A fluid such as a perfluorocarbon flows into the balloon to freeze the tissue adjacent the balloon, this cooling being associated with reduction of restenosis. A similar catheter may be used to reduce atrial fibrillation by inserting and inflating the balloon such that an exterior surface of the balloon contacts at least a partial circumference of the portion of the pulmonary vein adjacent the left atrium. In another embodiment, blood perfusion is performed simultaneously.
    Type: Grant
    Filed: March 1, 2002
    Date of Patent: February 21, 2006
    Assignee: Innercool Therapies, Inc.
    Inventors: Steven A. Yon, John D. Dobak, III, Hans W. Kramer, Stephen R. Cooper, Rebecca S. Inderbitzen
  • Patent number: 6994677
    Abstract: A tissue localizing and separating assembly comprises a shaft, having a distal shaft portion, and a tissue separator device extending along the shaft. The tissue separator device has a distal separator part at the distal shaft portion movable between a retracted state, towards the distal shaft portion, and an outwardly extending, operational state, away from the distal shaft portion. A tissue localization assembly has a radially-expandable end. An elongate coupler may be used to dock the tissue localization assembly to the tissue separator device.
    Type: Grant
    Filed: February 25, 2003
    Date of Patent: February 7, 2006
    Assignee: Artemis Medical, Inc.
    Inventors: Eric L. Buehlmann, Lisanne A. Eng, Christine P. Ventura, Robert J. Laird, Frank Ingle
  • Patent number: 6991645
    Abstract: A device and method for providing body cooling. The cooling device applies cooling to blood flowing in a vena cavae that is then distributed throughout the body. The cooling can be assisted by use of thermoregulatory drugs or warming devices to prevent shivering and vasoconstriction.
    Type: Grant
    Filed: May 30, 2002
    Date of Patent: January 31, 2006
    Assignee: Innercool Therapies, Inc.
    Inventor: John D. Dobak, III
  • Patent number: 6991628
    Abstract: Methods and apparatus are provided for forming a vascular graft in vitro by axially distending a blood vessel to induce growth. The apparatus comprises a chamber containing a tissue culture medium, an inlet cannula, an outlet cannula, and a means for moving the inlet cannula, the outlet cannula, or both, to axially stretch a donor blood vessel secured between the inlet cannula and the outlet cannula in a submerged position in the tissue culture medium, wherein the inlet cannula, the outlet cannula, and the donor blood vessel are secured together to form a conduit through which the tissue culture medium can flow.
    Type: Grant
    Filed: August 29, 2003
    Date of Patent: January 31, 2006
    Assignee: Georgia Tech Research Corporation
    Inventors: Raymond P. Vito, Jack C. Griffis, III
  • Patent number: 6986783
    Abstract: A method for preventing or reducing the development of delayed brain damage in a patient, comprises applying headwear (1) to the patient's head and circulating a fluid coolant through conduits (3) or passages in the headwear to cool the brain and thermostatically controlling the coolant temperature within a predetermined range to maintain the brain at a temperature sufficiently below normal for an extended period sufficient to prevent the death of neurons, glial or other cells that would otherwise die as a consequence of direct injury to the brain or other injury to the patient likely to cause injury to the brain.
    Type: Grant
    Filed: April 21, 2003
    Date of Patent: January 17, 2006
    Assignee: Auckland Uniservices Limited
    Inventors: Alistair Gunn, Bernard Maurice Gunn, Alistair Jan Gunn, Derek Ivan Gunn, Christopher Bernard Gunn, Diana Katrina Coldham, Tania R. Gunn
  • Patent number: 6984232
    Abstract: An ablation catheter having a catheter shaft and a virtual electrode, the virtual electrode comprising portholes through an outer peripheral wall of the catheter shaft and a metal electrode, the catheter being used for treatment of cardiac arrhythmia, for example, atrial fibrillation, by electrically isolating a vessel, such as a pulmonary vein, from a chamber, such as the left atrium. The catheter shaft includes a proximal portion and a distal portion. The distal portion includes an active region, which is either a looped structure transverse to the longitudinal axis of the catheter shaft, or a linear structure that extends parallel to the longitudinal axis of the catheter shaft. During use, the active region is directed into contact with, for example, the wall of a pulmonary vein. Upon energization, the virtual electrode creates a continuous lesion on an inner wall of the pulmonary vein, thereby electrically isolating the pulmonary vein from the left atrium.
    Type: Grant
    Filed: January 17, 2003
    Date of Patent: January 10, 2006
    Assignee: St. Jude Medical, Daig Division, Inc.
    Inventors: Guy P. Vanney, Jeremy D. Dando, Joshua L. Dudney
  • Patent number: 6984233
    Abstract: A method and apparatus for transmural ablation using an instrument containing two electrodes or cryogenic probes. A clamping force is exerted on the two electrodes or probes such that the tissue of the hollow organ is clamped therebetween. Bipolar RF energy is then applied between the two electrodes, or the probes are cryogenically cooled, thus ablating the tissue therebetween. A monitoring device measures a suitable parameter, such as impedance or temperature, and indicates when the tissue between the electrodes has been fully ablated.
    Type: Grant
    Filed: August 27, 2004
    Date of Patent: January 10, 2006
    Assignee: AtriCure, Inc.
    Inventor: Michael D. Hooven
  • Patent number: 6972018
    Abstract: An apparatus for sterilizing a female patient in a transcervical procedure comprises an elongated catheter with a piezoelectric ultrasound transducer at its distal end. The catheter is inserted transcervically into the uterus and guided to the intramural region of a fallopian tube. The transducer is inserted into the intramural region in direct contact with the surrounding tissue. The transducer produces a radially dispersing acoustical wave front, heating the adjacent tissue and forming a thermal lesion therein. A fibrous tissue forms during the healing process, sealing the fallopian tube. An embodiment of the apparatus includes a movable thermal sensor for monitoring the tissue temperature at multiple locations along the lesion. Another embodiment of the apparatus includes a spring that centers the distal end of the catheter at the opening of the fallopian tube and provides a tactile means to determine that the catheter and transducer have been correctly positioned.
    Type: Grant
    Filed: June 28, 2002
    Date of Patent: December 6, 2005
    Assignee: Gynecare a division of Ethicon, Inc.
    Inventors: Thomas P. Ryan, John S. Crombie
  • Patent number: 6969388
    Abstract: An electrode catheter is introduced into a hollow anatomical structure, such as a vein, and is positioned at a treatment site within the structure. Tumescent fluid is injected into the tissue surrounding the treatment site to produce tumescence of the surrounding tissue which then compresses the vein. The solution may include an anesthetic, and may further include a vasoconstrictive drug that shrinks blood vessels. The tumescent swelling in the surrounding tissue causes the hollow anatomical structure to become compressed, thereby exsanguinating the treatment site. Energy is applied by an electrode catheter in apposition with the vein wall to create a heating effect. The heating effect causes the hollow anatomical structure to become molded and durably assume the compressed dimensions caused by the tumescent technique. The electrode catheter can be moved within the structure so as to apply energy to a large section of the hollow anatomic structure.
    Type: Grant
    Filed: April 23, 2001
    Date of Patent: November 29, 2005
    Assignee: VNUS Medical Technologies, Inc.
    Inventors: Mitchel P. Goldman, Robert A. Weiss, James G. Chandler
  • Patent number: 6969385
    Abstract: The present invention is a wrist mechanism and a method for making robotic devices in which the transmission of motion, force and/or torque around a revolute joint can be accomplished without coupling. This construction allows mounting the actuators on the base or lower elements of a mechanism, so that only linkage elements move the end-effector. Thus reducing inertia of the moving elements and increasing performance of the device. The decoupled motion of the end-effector or links is achieved by routing their transmission cables around idler pulleys placed parallel to the joint rotation axis on an optimal position such any stretch on the transmission cable is minimized. In particular, this construction can be use for robotic surgical tools that have two independently driven jaws, decoupled and orthogonal from its articulating wrist. This device may be used in grasping, cutting, suturing or alike operations.
    Type: Grant
    Filed: March 6, 2003
    Date of Patent: November 29, 2005
    Inventor: Manuel Ricardo Moreyra
  • Patent number: 6962581
    Abstract: An improved foot controller of a microsurgical system, and a method of operating the foot controller, are disclosed. The method involves using a computer to modulate a detent of the foot controller from the beginning of the detent to the end of the detent.
    Type: Grant
    Filed: December 3, 2002
    Date of Patent: November 8, 2005
    Assignee: Alcon, Inc.
    Inventor: David A. Thoe
  • Patent number: 6960207
    Abstract: An ablation catheter used for treatment of, for example, atrial fibrillation by electrically isolating a vessel, such as a pulmonary vein, from a chamber, such as the left atrium. The ablation catheter has a virtual electrode and a catheter shaft. The virtual electrode comprises a porous conductor. The catheter shaft includes a proximal portion and a distal portion. The distal portion includes an active region, which is either a looped structure transverse to the longitudinal axis of the catheter shaft, or a linear structure that extends parallel to the longitudinal axis of the catheter shaft. During use, the active region is directed into contact with, for example, the wall of a pulmonary vein and, upon energization, the virtual electrode creates a continuous lesion at or near the ostium of the pulmonary vein, thereby electrically isolating the pulmonary vein from the left atrium.
    Type: Grant
    Filed: June 27, 2003
    Date of Patent: November 1, 2005
    Assignee: St Jude Medical, Daig Division, Inc.
    Inventors: Guy P. Vanney, Jeremy D. Dando
  • Patent number: 6960172
    Abstract: A surgical biopsy apparatus for cutting tissue comprising a housing having a longitudinal axis, first and second members movable from a retracted position to an extended position with respect to the housing, a third member slidably positioned and extendable with respect to the first member, a fourth member slidably positioned and extendable with respect to the second member, and an electrocautery cutting wire slidable with respect to the third and fourth members to surround a region of tissue positioned between the third and fourth members to cut the tissue.
    Type: Grant
    Filed: August 15, 2003
    Date of Patent: November 1, 2005
    Assignee: Rex Medical, L.P.
    Inventors: James F. McGuckin, Jr., Peter W. J. Hinchliffe, Stephan A. Defonzo