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    • 12. 发明授权
    • Medical device synchronization
    • 医疗器械同步
    • US07187979B2
    • 2007-03-06
    • US10424027
    • 2003-04-25
    • Gregory J. HaubrichSteven D. Goedeke
    • Gregory J. HaubrichSteven D. Goedeke
    • A61N1/00
    • A61N1/37229A61N1/025A61N1/372
    • The invention is directed to techniques for synchronizing the internal clocks of two devices, such as an implantable medical device and an external device, with reduced reliance on periodic polling. In one embodiment, the invention is directed to a technique in which one of the devices computes a time drift. The time drift may occur because the internal clock of one device may run more slowly than the internal clock of the other device. One device may poll the other as a function of the time drift. In another embodiment, a system of medical devices synchronizes internal clocks to a time signal generated by a time reference.
    • 本发明涉及用于同步两个设备的内部时钟的技术,诸如可植入医疗设备和外部设备,同时减少对定期轮询的依赖。 在一个实施例中,本发明涉及其中一个装置计算时间漂移的技术。 可能会发生时间漂移,因为一个设备的内部时钟可能比另一个设备的内部时钟运行得更慢。 一个设备可以轮询另一个作为时间漂移的函数。 在另一个实施例中,医疗设备的系统将内部时钟同步到由时间基准产生的时间信号。
    • 13. 发明授权
    • Automatic voice and data recognition for implanted medical device instrument systems
    • 植入医疗器械仪器系统的自动语音和数据识别
    • US07319962B2
    • 2008-01-15
    • US09731178
    • 2000-12-06
    • Steven D. GoedekeDavid L. Thompson
    • Steven D. GoedekeDavid L. Thompson
    • G10L21/00A61N1/08
    • A61N1/37247A61B5/0031A61B5/749G10L2015/223G10L2015/228
    • The voice controlled system of the present invention permits hands-free interactive control of a medical data processing instrument that interfaces with an implanted medical device. In an example embodiment, the system includes a microphone and a speech recognition circuit coupled to the microphone and adapted to recognize an audio signal from the microphone. The audio signal corresponds to one of a subset of commands from a set of commands and each command corresponds to a task to be performed on the implanted medical device. The speech recognition circuit is further adapted to convert the audio signal into a selection code and match the selection code to one of the subset of commands. The system further includes a display device and a processor arrangement coupled to the speech recognition circuit and to the display device. The processor arrangement is configured to receive data indicative of an implanted medical device state and select the subset of commands as a function of the device state. The processor arrangement is also configured to display the device state data and the subset of commands and generate a control signal in response to the selection code match. The system also includes a medical data processing instrument coupled to the processor arrangement that is adapted to, in response to the control signal, execute the one of the subset of commands and to display data generated in response to execution of the one of the subset of commands.
    • 本发明的语音控制系统允许与植入的医疗装置接口的医疗数据处理装置的免提交互式控制。 在示例实施例中,系统包括麦克风和耦合到麦克风的语音识别电路,并适于识别来自麦克风的音频信号。 音频信号对应于来自一组命令的命令子集中的一个,并且每个命令对应于将在植入的医疗装置上执行的任务。 语音识别电路还适用于将音频信号转换成选择码并将选择码与命令子集中的一个进行匹配。 该系统还包括耦合到语音识别电路和显示装置的显示装置和处理器装置。 处理器布置被配置为接收指示植入的医疗设备状态的数据,并且根据设备状态选择命令的子集。 处理器布置还被配置为显示设备状态数据和命令子集,并且响应于选择代码匹配而生成控制信号。 所述系统还包括耦合到所述处理器装置的医疗数据处理装置,所述医疗数据处理装置适于响应于所述控制信号执行所述命令子集中的一个并且显示响应于所述子集 命令。
    • 16. 发明授权
    • Medical management system integrated programming apparatus for communication with an implantable medical device
    • 医疗管理系统集成编程设备,用于与可植入医疗设备进行通信
    • US06477424B1
    • 2002-11-05
    • US09322560
    • 1999-05-28
    • David L. ThompsonSteven D. Goedeke
    • David L. ThompsonSteven D. Goedeke
    • A61N108
    • A61N1/37223A61N1/37217A61N1/37235A61N1/37282G06F19/00G06F19/3418G16H40/40
    • An implantable medical device communication system includes an implantable medical device, a medical information management system, and a module interface apparatus for facilitating communication therebetween. The implantable medical device includes transmitter/receiver circuitry coupled to a device antenna. The medical information management system includes at least a computer processing unit and a display unit. The module interface apparatus includes interface receiver/transmitter circuitry coupled to an interface antenna to communicate with the device transmitter/receiver circuitry via the device antenna. Further, the module interface apparatus includes interface circuitry operable to adapt data (e.g., programming commands) received from the medical information management system for transmittal to the implantable medical device and adapt data received from the implantable medical device (e.g., device data including operational data, physiological parameter data, analyzed data, diagnostic data, etc.) such as to communicate such information to:the medical information management system.
    • 可植入医疗装置通信系统包括可植入医疗装置,医疗信息管理系统和用于促进其之间的通信的模块接口装置。 可植入医疗设备包括耦合到设备天线的发射器/接收器电路。 医疗信息管理系统至少包括计算机处理单元和显示单元。 模块接口装置包括耦合到接口天线的接口接收机/发射机电路,以经由设备天线与设备发射机/接收机电路进行通信。 此外,模块接口装置包括接口电路,其可操作以适配从医疗信息管理系统接收的数据(例如,编程命令),用于传送到可植入医疗设备并适应从可植入医疗设备接收的数据(例如,包括操作数据的设备数据 ,生理参数数据,分析数据,诊断数据等),以将这些信息传达到:医疗信息管理系统。
    • 17. 发明申请
    • PROTECTING AN IMPLANTABLE MEDICAL DEVICE FROM EFFECTS CAUSED BY AN INTERFERING RADIATION FIELD
    • 由干扰辐射场引起的影响保护可植入医疗器械
    • US20120109261A1
    • 2012-05-03
    • US13098164
    • 2011-04-29
    • Christopher C. StancerSteven D. GoedekeMichael E. Nowak
    • Christopher C. StancerSteven D. GoedekeMichael E. Nowak
    • A61N1/36
    • A61N1/375A61N1/025A61N1/3718A61N1/37211A61N1/3754H01P1/20
    • Techniques are described for protecting an implantable medical device (IMD) from effects caused by interfering radiated fields. An IMD incorporating these techniques may include a telemetry conduction path that includes a first end electrically coupled to a telemetry antenna and a second end electrically coupled to a telemetry circuit disposed within a housing of the IMD. The IMD may further include a stub filter electrically coupled to the telemetry conduction path and configured to attenuate an interfering signal induced in the telemetry conduction path. The stub filter may include a dielectric and a conductor disposed within the dielectric. The conductor may include a first end electrically coupled to the telemetry conduction path and a second end configured in an open circuit configuration. The conductor may have an electrical length approximately equal to one-quarter wavelength of the interfering signal when propagating through the stub filter.
    • 描述了用于保护植入式医疗装置(IMD)免受由干扰辐射场引起的影响的技术。 包含这些技术的IMD可以包括遥测传导路径,其包括电耦合到遥测天线的第一端和电耦合到设置在IMD的壳体内的遥测电路的第二端。 IMD还可以包括电耦合到遥测传导路径并被配置为衰减在遥测传导路径中感应的干扰信号的短截线滤波器。 短截线过滤器可以包括电介质和设置在电介质内的导体。 导体可以包括电耦合到遥测传导路径的第一端和以开路结构配置的第二端。 当通过短截线过滤器传播时,导体可以具有大约等于干扰信号的四分之一波长的电长度。