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    • 7. 发明申请
    • PATIENT MONITORING DEVICE WITH MULTI-ANTENNA RECEIVER
    • 具有多天线接收器的患者监护装置
    • WO2004066834A1
    • 2004-08-12
    • PCT/US2004/002172
    • 2004-01-27
    • MEDTRONIC, INC.
    • GOEDEKE, Steven, D.
    • A61B5/00
    • A61B5/0031A61B2560/0456A61M2205/3507
    • A patient monitoring device incorporates a receiver capable of single-antenna or multi-antenna operation. Multi-antenna operation permits the monitoring device to take advantage of spatial diversity for improved communication with an implantable medical device in the presence of fading. However, the small size of many patient monitoring devices can make the incorporation of multiple antennas difficult. To permit spatial diversity operation, a base station includes at least a second antenna that can be coupled to the patient monitoring device. Alternatively, the base station may have one or more high quality antennas that are used by patient monitoring device instead of the antenna in the patient monitoring device when the patient monitoring device is coupled to the base station.
    • 患者监测装置包括能够进行单天线或多天线操作的接收机。 多天线操作允许监控设备利用空间分集来改善与存在衰落的可植入医疗设备的通信。 然而,许多患者监测装置的小尺寸可以使多个天线的并入变得困难。 为了允许空间分集操作,基站包括可耦合到患者监视设备的至少第二天线。 或者,当患者监视设备耦合到基站时,基站可以具有由患者监视设备代替病人监视设备中的天线使用的一个或多个高质量天线。
    • 9. 发明申请
    • METHOD AND APPARATUS FOR AUTOMATIC IMPLANTABLE MEDICAL LEAD RECOGNITION AND CONFIGURATION
    • 方法和装置用于自动可植入医疗领域的识别和配置
    • WO2003008037A2
    • 2003-01-30
    • PCT/US2002/023294
    • 2002-07-10
    • MEDTRONIC,INC.
    • THOMPSON, David, L.GOEDEKE, Steven, D.HAUBRICH, Gordon, J.COBIAN, RyanBONDE, EricSOMMER, John, L.WERDER, Jonathan, C.NERISON, NelsBLAHA, Eric, V.
    • A61N1/00
    • A61N1/37252A61B5/0031A61B2560/0219A61N1/025A61N1/05A61N1/37223A61N1/3752A61N2001/0585
    • An automated identification and configuration system for use with an implantable medical device (IMD) is disclosed. The system includes a first communication circuit that is attached to, or otherwise carried by, a detachable component associated with the IMD such as a medical lead. The communication circuit stores data such as model numbers, serial numbers, technical data, and/or calibration information that describes the additional component. This information may be transferred by the first communications circuit to a second communications circuit that is external to the additional component. This transferred data can be used to automatically configure the internal circuitry and connection functions of the IMD to properly interface with, and support, the additional component. For example, the data can be used to automatically adjust amplifier gains or other sensor circuitry, or to configure a connector block to properly couple to the component. The data may further be entered into a patient record on an external programmer, or may be transferred to a central storage location to be generally accessible to health care providers. In one embodiment, the first communication circuit is a passive RF transponder. This first communication circuit may include a receiver as well as a transmitter to allow the circuit to programmably receive data at the time of component manufacture.
    • 公开了一种用于可植入医疗装置(IMD)的自动识别和配置系统。 该系统包括第一通信电路,其连接到与IMD相关联的可拆卸部件(例如医疗引线)或由其携带。 通信电路存储诸如型号,序列号,技术数据和/或描述附加组件的校准信息的数据。 该信息可以由第一通信电路传送到附加组件外部的第二通信电路。 该传输的数据可用于自动配置IMD的内部电路和连接功能,以正确地连接和支持附加组件。 例如,数据可用于自动调整放大器增益或其他传感器电路,或配置连接器块以正确耦合到组件。 数据可以进一步输入到外部编程器上的病人记录中,或者可以被传送到中央存储位置,以便卫生保健提供者通常可访问。 在一个实施例中,第一通信电路是无源RF应答器。 该第一通信电路可以包括接收器以及发射器,以允许电路在组件制造时可编程地接收数据。
    • 10. 发明申请
    • WORLDWIDE PATIENT LOCATION AND DATA TELEMETRY SYSTEM FOR IMPLANTABLE MEDICAL DEVICES
    • 全球患者位置和可移植医疗设备的数据远程系统
    • WO1997000708A1
    • 1997-01-09
    • PCT/US1996010325
    • 1996-06-13
    • MEDTRONIC, INC.
    • MEDTRONIC, INC.DUFFIN, Edwin, G.THOMPSON, David, L.GOEDEKE, Steven, D.HAUBRICH, Gregory, J.
    • A61N01/372
    • A61N1/37282A61B5/1112G06F19/00G06F19/3418
    • A system for communicating with a medical device (10) implanted in an ambulatory patient and for locating the patient in order to selectively monitor device function, alter device operating parameters and modes and provide emergency assistance to and communications with a patient (10). The implanted device (10) includes a telemetry transceiver for communicating data and operating instructions between the implanted device and an external patient communications control device (20) that is either worn by or located in proximity of the patient within the implanted device transceiving range. The control device preferably includes a communication link with a remote medical support network (50), a global positioning satellite (80) receiver for receiving positioning data identifying the global position of the control device, and a patient activated link for permitting patient initiated personal communication with the medical support network (50). A system controller (24) in the control device (20) controls data and voice communications for selectively transmitting patient initiated personal communications and global positioning data to the medical support network (50), and for receiving and initiating re-programming of the implanted device operating modes and parameters in response to instructions received from the medical support network (50). The communications link between the medical support network and the patient communications control device may comprise a worldwide satellite network, hard-wired telephone network, a cellular telephone network (82) or other personal communications system.
    • 一种用于与植入在步行病人中的医疗装置(10)进行通信并用于定位患者以便选择性地监测装置功能,改变装置操作参数和模式以及向患者(10)提供紧急援助并与患者(10)进行通信的系统。 植入装置(10)包括遥测收发器,用于在植入装置和外部患者通信控制装置(20)之间传送数据和操作指令,外部患者通信控制装置(20)在植入装置收发范围内由患者佩戴或位于患者附近。 控制装置优选地包括与远程医疗支持网络(50)的通信链路,用于接收识别控制设备的全局位置的定位数据的全球定位卫星(80)接收器,以及用于允许患者发起的个人通信的患者激活的链路 与医疗支持网络(50)。 控制装置(20)中的系统控制器(24)控制数据和语音通信,用于选择性地将患者发起的个人通信和全球定位数据发送到医疗支持网络(50),并且用于接收和启动植入设备的重新编程 操作模式和参数,以响应从医疗支持网络(50)接收的指令。 医疗支持网络和患者通信控制设备之间的通信链路可以包括全球卫星网络,硬连线电话网络,蜂窝电话网络(82)或其他个人通信系统。