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    • 5. 发明申请
    • IMPLANTED CARDIAC DEVICE FOR DEFIBRILLATION
    • 用于定位的植入式心脏装置
    • US20090149902A1
    • 2009-06-11
    • US12281260
    • 2007-03-01
    • Uday N. KumarJohn Warren WhiteJoseph Allen KnightKit Yee Au-Yeung
    • Uday N. KumarJohn Warren WhiteJoseph Allen KnightKit Yee Au-Yeung
    • A61N1/39A61N1/362
    • A61N1/37A61N1/0587A61N1/375A61N1/3756A61N1/3962A61N1/3968
    • An implantable medical device for delivering electrical cardiac therapy includes a first implantable housing containing a battery. There is also a second implantable housing separate from the first implantable housing and containing at least one of: electronic circuitry adapted to evaluate and initiate electrical cardiac therapy, a storage capacitor and an electrode structure comprising a sensing electrode, a pacing electrode and a therapy electrode. The electronic circuit, the storage capacitor or the electrode structure are electrically connected to the battery. Alternatively, there is an implantable medical device for delivering electrical cardiac therapy having an implantable structure containing the following electrically connected components: a battery, electronic circuitry adapted to evaluate and initiate electrical cardiac therapy, a storage capacitor and an electrode structure comprising a sensing electrode, a pacing electrode and a therapy electrode. A method of providing electrical cardiac therapy is also provided.
    • 用于递送电心脏治疗的可植入医疗装置包括容纳电池的第一可植入壳体。 还存在与第一可植入壳体分离的第二可植入壳体并且包含以下中的至少一个:适于评估和启动电心脏治疗的电子电路,存储电容器和包括感测电极,起搏电极和治疗电极的电极结构 。 电子电路,存储电容器或电极结构电连接到电池。 或者,存在用于递送具有包含以下电连接部件的可植入结构的电心电疗法的可植入医疗装置:电池,适于评估和启动电心脏治疗的电子电路,存储电容器和包括感测电极的电极结构, 起搏电极和治疗电极。 还提供了提供电心脏治疗的方法。
    • 9. 发明申请
    • DEVICE FEATURES AND DESIGN ELEMENTS FOR LONG-TERM ADHESION
    • 长期粘合的设备特点和设计要素
    • US20110279963A1
    • 2011-11-17
    • US13106750
    • 2011-05-12
    • Uday N. KumarPeter H. LivingstonMark J. DayShena H. ParkWilliam F. WillisWilliam H. Righter
    • Uday N. KumarPeter H. LivingstonMark J. DayShena H. ParkWilliam F. WillisWilliam H. Righter
    • G06F1/16B31B1/62H05K7/00
    • A61B5/6832A61B5/0408A61B5/04085A61B5/04087A61B5/0478A61B5/6833A61B2560/0406A61B2560/0468Y10T156/10
    • An electronic device for long-term adhesion to a mammal includes a housing with an electronic component. There is a first wing and a second wing, each being integrally formed with the housing. An electrode is positioned on a bottom surface of each of the wings, the electrodes electrically connected to the electronic component. An adhesive layer is provided for adhesion to a surface of the mammal. The adhesive layer is coated on a portion of the bottom surfaces of the wings. The adhesive layer is not coated on the electrode or on a bottom surface of the housing. A method of applying an electronic device to a mammal includes removing a first adhesive cover from a first wing of the electronic device to expose an electrode and an adhesive coated on a bottom surface of the first wing. There is a step of placing the exposed electrode into contact with the mammal by adhering the adhesive coated bottom of the first wing to the mammal. There is a step of removing a second adhesive cover from the second wing of the electronic device to expose an adhesive coated on a bottom surface of the second wing and another exposed electrode. There is a step of placing the another exposed electrode into contact with the mammal by adhering the adhesive coated bottom of the second wing to the mammal. After performing the removing and the placing steps, the housing is unattached to the mammal, but is held in position on the mammal using the adhesive coated bottoms of the first and the second wings.
    • 用于长期粘附到哺乳动物的电子设备包括具有电子部件的壳体。 存在第一翼和第二翼,每个翼与壳体一体形成。 电极位于每个翼的底表面上,电极电连接到电子部件。 提供粘合层用于粘附到哺乳动物的表面。 粘合剂层涂覆在翼的底表面的一部分上。 粘合剂层未涂覆在电极或壳体的底表面上。 将电子设备应用于哺乳动物的方法包括从电子设备的第一翼移除第一粘合剂盖以暴露涂覆在第一翼的底表面上的电极和粘合剂。 通过将第一翼的粘合剂涂覆的底部粘附到哺乳动物,存在将暴露的电极与哺乳动物接触的步骤。 从电子设备的第二翼移除第二粘合剂盖以暴露涂覆在第二翼的底表面上的粘合剂和另一暴露的电极的步骤。 通过将第二翼的粘合剂涂覆的底部粘附到哺乳动物,存在将另一暴露的电极与哺乳动物接触的步骤。 在执行去除和放置步骤之后,壳体不附着于哺乳动物,而是使用第一和第二翼的粘合剂涂覆的底部在哺乳动物上保持就位。
    • 10. 发明授权
    • Non-invasive cardiac monitor and methods of using continuously recorded cardiac data
    • 非侵入性心脏监测器和使用连续记录的心脏数据的方法
    • US08160682B2
    • 2012-04-17
    • US11703311
    • 2007-02-06
    • Uday N. KumarJoseph A. KnightKit Yee Au-YeungJohn Warren White
    • Uday N. KumarJoseph A. KnightKit Yee Au-YeungJohn Warren White
    • A61B5/0432
    • A61B5/02438A61B5/0006A61B5/0408A61B5/0432A61B5/04325A61B5/411A61B5/6833A61B2560/0412A61B2560/0468G06F19/00G16H10/60G16H15/00G16H40/63
    • One embodiment of the invention is a cardiac monitor having a housing; a plurality of electrodes within and extending from the housing; a state machine within the housing configured to digitialize and store in memory signals from the plurality of electrodes; a sealing surface and an adhesive on the sealing surface configured to form a watertight perimeter around the plurality of electrodes when the housing is affixed to a mammal. Another embodiment of the invention provides a continuous cardiac monitor having a housing; a surface on the housing adapted to be sealably engaged to a mammal; an adhesive on the surface that is adapted to remain affixed to the mammal for at least 7 days; at least two electrodes within the housing positioned to detect a cardiac information of the mammal while the surface is sealably engaged to the mammal; an electronic memory within the housing wherein, the electronic memory is sized to store at least 24 hours of continuous cardiac information; and wiring within the housing connecting the electronic memory to the electrodes.
    • 本发明的一个实施例是具有外壳的心脏监护仪; 在所述壳体内并从所述壳体延伸的多个电极; 所述壳体内的状态机被配置为对来自所述多个电极的存储器信号进行数字化和存储; 所述密封表面和所述密封表面上的粘合剂被构造成当所述壳体固定到哺乳动物时在所述多个电极周围形成水密周界。 本发明的另一个实施例提供一种具有壳体的连续心脏监测器; 适于与哺乳动物密封地接合的壳体上的表面; 表面上的粘合剂适于保持固定在哺乳动物上至少7天; 所述壳体内的至少两个电极定位成在所述表面与所述哺乳动物密封地接合时检测哺乳动物的心脏信息; 所述壳体内的电子存储器,其中,所述电子存储器的尺寸设置为存储至少24小时的连续心脏信息; 以及在将电子存储器连接到电极的壳体内的布线。