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    • 5. 发明申请
    • Multilingual user interface for a medical device
    • 用于医疗设备的多语言用户界面
    • US20060178865A1
    • 2006-08-10
    • US11263545
    • 2005-10-31
    • D. Craig EdwardsRobert Stanbary
    • D. Craig EdwardsRobert Stanbary
    • G06F17/20
    • A61N1/39A61N1/3993
    • A medical device includes an audible medium giving user instructions in a first language and a visual medium giving user instructions in a second language. In an embodiment of the invention, the medical device is an external defibrillator with user instructions in an audible medium in a first language and instructions in a visible medium in the second language. In one embodiment, an external defibrillator includes an audio speaker that delivers instructions to the operator in a first language and a visual medium that presents instructions to the operator in a second language. The visual medium may present text instructions in the second language. It may also present pictorial representations of the text instructions in proximity to the text instructions. Alternatively, the visual medium may be a display screen on the external defibrillator. A method for providing a user interface to an operator of a medical device includes providing instructions to the operator audibly in a first language and visually in a second language.
    • 医疗设备包括以第一语言提供用户指令的声音介质和以第二语言给出用户指令的视觉介质。 在本发明的一个实施例中,医疗装置是外部除颤器,其以第一语言的可听媒体中的用户指令和第二语言的可见介质中的指令。 在一个实施例中,外部除颤器包括音频扬声器,其以第一语言向操作者传送指令,以及以第二语言向操作员呈现指令的视觉介质。 可视介质可以呈现第二语言的文本指令。 它也可以在文本指令附近呈现文本指令的图形表示。 或者,视觉介质可以是外部除颤器上的显示屏幕。 用于向医疗设备的操作者提供用户界面的方法包括以第一语言向视听者以第二语言视觉地向操作者提供指令。
    • 6. 发明授权
    • Method and device for controlling peak currents in a medical device
    • 用于控制医疗装置中的峰值电流的方法和装置
    • US06772006B2
    • 2004-08-03
    • US09923780
    • 2001-08-06
    • Daniel W. PirainoD. Craig Edwards
    • Daniel W. PirainoD. Craig Edwards
    • A61N139
    • A61N1/3906A61N1/3943
    • In one embodiment, a method is characterized by measuring a patient parameter associated with a human body; in response to the patient parameter, retrieving a maximum expected device parameter; and setting a limit on an energy source such that during defibrillation of the patient a defibrillation parameter associated with the maximum expected device parameter is within a defined tolerance. In another embodiment, a method is characterized by specifying at least one device parameter limit of a defibrillation unit; and in response to the at least one specified device parameter, determining a prediction confidence level at which the device parameter limit is exceeded for one or more values of a patient parameter. In another embodiment, a method is characterized by specifying a prediction confidence level to which a defibrillation unit device parameter is correlated with one or more values of a patient parameter; and in response to the specified prediction confidence level, determining a defibrillation unit device parameter from one or more values of a patient parameter. In other embodiments, circuitry is used to at least partially effect the foregoing-described methods; the circuitry can include and/or utilize virtually any combination of hardware, software, and/or firmware configured to effect the foregoing-described method, depending upon the design choices of the system designer. In other embodiments, signal bearing media at least partially bear the foregoing-described methods.
    • 在一个实施例中,一种方法的特征在于测量与人体相关联的患者参数; 响应于患者参数,检索最大预期设备参数; 并且对能量源设置限制,使得在患者的除颤期间,与最大预期装置参数相关联的除颤参数在限定的容限内。 在另一个实施例中,一种方法的特征在于规定除颤单元的至少一个设备参数限制; 并且响应于所述至少一个指定的设备参数,确定超过了患者参数的一个或多个值的设备参数限制的预测置信水平。 在另一个实施例中,一种方法的特征在于指定除颤单元装置参数与患者参数的一个或多个值相关联的预测置信水平; 并且响应于指定的预测置信水平,从患者参数的一个或多个值确定除颤单元设备参数。 在其他实施例中,使用电路来至少部分地影响前述方法; 根据系统设计者的设计选择,电路可以包括和/或利用被配置为实现上述方法的硬件,软件和/或固件的任何组合。 在其它实施例中,信号承载介质至少部分地具有上述方法。
    • 9. 发明申请
    • Medical Device Status Information System
    • 医疗器械状态信息系统
    • US20080250166A1
    • 2008-10-09
    • US12139359
    • 2008-06-13
    • D. Craig Edwards
    • D. Craig Edwards
    • G06F3/00G06F13/00
    • A61N1/3931
    • In general, the invention is directed to management of status information from a plurality of external medical devices, such as AEDs. A system may include one or more medical devices associated with one or more docking stations. The medical devices and docking stations may communicate with one another and with a remote unit. A medical device or a docking station in the system may acquire status information and may communicate the status information to the remote unit, which may serve as a central point for collecting and aggregating status information pertaining to medical devices and docking stations in the system. The remote unit may present the status information to a person via an input/output device, may maintain a status log for the devices in the system, and may interrogate the devices in the system for status information.
    • 通常,本发明涉及从多个外部医疗装置(例如AED)管理状态信息。 系统可以包括与一个或多个对接站相关联的一个或多个医疗设备。 医疗设备和对接站可以彼此通信并与远程单元通信。 系统中的医疗设备或对接站可以获取状态信息并且可以将状态信息传送到远程单元,远程单元可以用作收集和聚合与系统中的医疗设备和对接站有关的状态信息的中心点。 远程单元可以经由输入/输出设备向人员呈现状态信息,可以维护系统中的设备的状态日志,并且可以询问系统中的设备的状态信息。