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    • 3. 发明授权
    • Automated external defibrillator operator interface
    • 自动外部除颤器操作界面
    • US5792190A
    • 1998-08-11
    • US971762
    • 1997-11-17
    • Kenneth F. OlsonByron L. GilmanKatherine H. AndersonKarl J. F. Kroll
    • Kenneth F. OlsonByron L. GilmanKatherine H. AndersonKarl J. F. Kroll
    • A61N1/08A61N1/39
    • A61N1/39A61N1/3931A61N2001/083
    • A portable automated external defibrillator (AED) configured for use with a packaged pair of defibrillator electrodes of the type electrically coupled to one another within the package and having lead wires extending from the package and an electrical connector on the ends of the lead wires. The AED includes a case with an electrode compartment configured to hold the packaged electrodes, and an openable lid for enclosing the compartment. Electrode terminals configured for electrical interconnection to the electrical connector of the electrodes, a speaker and an LED display are positioned within the electrode compartment. An operator-actuated rescue switch and a rescue LED display are positioned on the outside of the case. A high voltage circuit generates defibrillation pulses and applies the pulses to the electrode terminals. The operation of the AED is controlled by a digital control system. Rescue mode operation of the AED is initiated when the lid is opened. The digital control system then generates voice prompts and/or visual displays informing the operator: 1) when the electrodes are not properly connected to the electrode terminals, 2) when to place the electrodes on the patient, 3) when the electrodes are not properly positioned on the patient, 4) when the patient's cardiac rhythm is being analyzed, 5) when an nonshockable rhythm is identified, 6) when the high voltage circuit is being charged, and 7) when a shockable rhythm is identified and the rescue switch can be actuated.
    • 一种便携式自动外部去纤颤器(AED),其被配置为与在所述包装内彼此电耦合的一对组合的除颤器电极一起使用,并且具有从所述包装件延伸的引线和所述引线端部上的电连接器。 AED包括具有构造成保持封装电极的电极室的壳体和用于封闭隔室的可打开盖。 配置用于电连接到电极的电连接器的电极端子,扬声器和LED显示器位于电极室内。 操作员操纵的救援开关和救援LED显示器位于外壳的外侧。 高电压电路产生除颤脉冲并将脉冲施加到电极端子。 AED的操作由数字控制系统控制。 盖子打开时启动AED的救援模式操作。 数字控制系统然后产生语音提示和/或视觉显示,通知操作者:1)当电极未正确连接到电极端子时,2)何时将电极放置在患者身上,3)当电极不正确时 4)当患者的心律被分析时,5)当识别出不舒服的节奏时,6)当高压电路正在充电时,以及7)当确定可震荡的节奏时,救援开关可以 被启动。
    • 7. 发明授权
    • Defibrillator battery with dual cell stack configuration
    • 除颤器电池具有双电池组配置
    • US6038473A
    • 2000-03-14
    • US57133
    • 1998-04-08
    • Kenneth F. OlsonByron L. GilmanGary B. Stendahl
    • Kenneth F. OlsonByron L. GilmanGary B. Stendahl
    • A61N1/39H02J7/00H02J15/00
    • A61N1/3975A61N1/3931H02J7/0024
    • A defibrillator battery pack comprises a housing having a first set of battery cells having an upper set and a lower set of cells and a second set of battery cells connected in parallel with one of the upper or the lower sets of the first set of battery cells. The first set of battery cells is used for charging a capacitor bank of a defibrillator. The second set of battery cells cannot be used for charging and is only used for developing a nominal 5 volts to drive a microprocessor and other circuitry components of an electrical control system of the defibrillator. This arrangement increases the life of the battery pack in the lower voltage range, which is advantageous for operating the microprocessor. This arrangement also maintains the intelligence of the electrical control system because the battery cells supplying power to the microprocessor will always fail after, and not before, failure of the battery cells supplying power for charging the capacitor bank.
    • 除颤器电池组包括具有第一组电池单元的外壳,所述第一组电池具有上部组和下部电池单元,以及第二组电池单元,其与第一组电池单元的上部或下部组中的一个并联连接 。 第一组电池用于对除颤器的电容器组进行充电。 第二组电池不能用于充电,并且仅用于开发标称5伏以驱动除颤器的电气控制系统的微处理器和其它电路部件。 这种布置在较低电压范围内增加了电池组的寿命,这对于操作微处理器是有利的。 这种布置还保持电气控制系统的智能,因为向电池组提供电力的电池单元的故障之后(而不是之前)向微处理器供电的电池单元将总是失败。
    • 8. 发明授权
    • Defibrillation system for pediatric patients
    • 儿科患者除颤系统
    • US6125298A
    • 2000-09-26
    • US295980
    • 1999-04-21
    • Kenneth F. OlsonByron L. Gilman
    • Kenneth F. OlsonByron L. Gilman
    • A61N1/39
    • A61N1/3925A61N1/39
    • An automatic external defibrillator (AED) includes a device for scaling the stored energy communicated to the patient responsive to a known patient weight. An electrode set, for use with an automatic external defibrillator (AED), the AED includes a plurality of electrodes for making electrical contact with a skin surface of a patient. Each electrode of the plurality of electrodes is electrically connectable to a electrical connector for communicating a stored energy to a patient. The electrodes system further includes a device for scaling the stored energy communicated to the patient responsive to a known patient weight. A method of defibrillating the heart of a human patient using an AED includes the steps of:adherably placing at least two electrodes on the skin surface of the patient, the electrodes being spaced apart to define a desired energy path therebetween;scaling the dischargeable defibrillating energy responsive to a known patient body weight; anddischarging defibrillating energy across the energy path, the discharge generating an energy vector, the vector being passable through the heart of the patient.
    • 自动外部除颤器(AED)包括用于响应于已知的患者体重来调节与患者通信的存储能量的装置。 一种用于自动外部除颤器(AED)的电极组件,所述AED包括用于与患者的皮肤表面电接触的多个电极。 多个电极中的每个电极可电连接到用于将储存的能量传递给患者的电连接器。 电极系统还包括用于响应于已知的患者体重来调节与患者通信的存储能量的装置。 使用AED对人类患者的心脏进行除颤的方法包括以下步骤:将至少两个电极放置在患者的皮肤表面上,电极间隔开以在其间限定期望的能量路径; 响应于已知的患者体重来缩放可放出的除颤能量; 并且通过能量路径放出除颤能量,所述放电产生能量矢量,所述矢量可通过患者的心脏通过。