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    • 4. 发明申请
    • METHOD AND APPARATUS FOR TREATING AN ANEURYSM
    • 用于治疗神经的方法和装置
    • WO9953854A3
    • 2000-02-10
    • PCT/US9908869
    • 1999-04-22
    • CARDIOSYNOPSIS INCEDWARDS STUART DLAX RONALD G
    • EDWARDS STUART DLAX RONALD G
    • A61B18/14A61B17/39
    • A61B18/1492A61B2018/00214A61B2018/0022A61B2018/00404A61B2018/00416A61B2018/1861
    • Embodiments of this invention provide for an apparatus for treating an aneurysm in a vessel. The apparatus includes an insertion member adapted to be inserted into a lumen of the vessel. A first electrode device is coupled to the insertion member and applies electrical energy to an interior surface of the vessel to shrink the aneurysm at an interior surface that is part of a surface that circumscribes a cross section of the vessel. The electrode can be positioned at the end of an arm extending radially from the insertion member having the possibility of rotating around and being displaces along the longitudinal axis of the insertion member. The electrode can consist of a plurality of electrodes placed on the outer surface of an elastic inflatable balloon, having inside another inelastic inflatable balloon. The device makes use of thermocouples, pressure sensors and electrolyte.
    • 本发明的实施例提供一种用于治疗血管中的动脉瘤的装置。 该装置包括适于插入容器内腔的插入构件。 第一电极装置联接到插入构件并且将电能施加到容器的内表面,以在作为限制容器的横截面的表面的一部分的内表面收缩动脉瘤。 电极可以定位在从插入构件径向延伸的臂的端部,该插入构件具有围绕插入构件的纵向轴线旋转的可能性。 电极可以由放置在弹性充气气囊的外表面上的多个电极组成,具有另一个非弹性的可充气气囊。 该设备利用热电偶,压力传感器和电解质。
    • 9. 发明申请
    • METHOD AND APPARATUS FOR ABLATING TURBINATES
    • 拆卸涡轮机的方法和装置
    • WO9743971A3
    • 1998-04-02
    • PCT/US9707818
    • 1997-05-06
    • SOMNUS MEDICAL TECH INCEDWARDS STUART D
    • EDWARDS STUART D
    • A61B18/14A61N1/06A61N5/04A61B17/39
    • A61B18/1485A61B2018/00261A61B2018/00761A61B2018/00886A61N1/06A61N5/04
    • A method and apparatus are provided for ablating at least a portion of a nasal concha. By ablating at least a portion of a nasal concha, the size of the nasal concha is reduced. The three nasal concha in the body (inferior, middle and superior nasal concha) form at least a portion of the three nasal meatus (inferior, middle and superior nasal meatus) in the body. By reducing the size of a nasal concha, obstruction of a nasal meatus is reduced or eliminated. As a result, air flow through the nasal meatus is improved. The apparatus includes a catheter with at least one energy delivery device for delivering ablative energy. The method includes positioning the catheter through a nostril of a patient into a nasal meatus adjacent a surface of a nasal concha and delivering sufficient ablative energy from the at least one energy delivery device to the nasal concha to ablate at least a portion of the nasal concha. The energy delivered can be RF, microwave, ultrasound, or laser radiation. The energy is delivered either by probes exiting the catheter and entering the core of the concha, without ablating the surface of the nasal concha, or by other non intruding means. Parameters relevant to the process are tissue impedance, temperature, and amount of energy. An expandable member, inflated by an electrolyte cools the operation site, and allows through its pores the outflow of the electrolyte which can have bioactive, chemoactive or radioactive properties.