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    • 5. 发明申请
    • Implanted medical device telemetry using integrated thin film bulk acoustic resonator filtering
    • 使用集成薄膜体声波谐振器滤波的植入式医疗设备遥测
    • US20020045920A1
    • 2002-04-18
    • US10007538
    • 2001-11-09
    • Medtronic, Inc.
    • David L. Thompson
    • A61N001/02
    • A61N1/08A61N1/025A61N1/37A61N1/37211A61N1/37229
    • A telemetry receiver for an implantable medical device (IMD) such as a cardiac pacemaker has an RF antenna coupled to a telemetry circuit that includes an out-of-band rejection filter comprising a thin film bulk acoustic resonator filter. The telemetry circuit includes an amplifier coupled to the thin film bulk acoustic resonator filter and a demodulator coupled to the amplifier. The filter, amplifier and demodulator are all fabricated on a common integrated circuit die. A multichannel telemetry receiver for an IMD has a plurality of thin film bulk acoustic resonator bandpass filters defining individual channels. Identification of a preferred data transmission channel for communication of programming data to the IMD is determined by obtaining samples of the signals being passed by each of a plurality of thin film bulk acoustic resonator bandpass filters that define individual channels and evaluating the samples to determine the noise level for each channel.
    • 用于诸如心脏起搏器的可植入医疗装置(IMD)的遥测接收器具有耦合到遥测电路的RF天线,所述遥测电路包括包括薄膜体声波谐振器滤波器的带外抑制滤波器。 遥测电路包括耦合到薄膜体声波谐振器滤波器的放大器和耦合到放大器的解调器。 滤波器,放大器和解调器全部在公共集成电路管芯上制造。 用于IMD的多通道遥测接收器具有限定各个通道的多个薄膜体声波谐振器带通滤波器。 通过获得定义各个通道的多个薄膜体声波谐振器带通滤波器中的每一个通过的信号的样本来确定用于将编程数据传送到IMD的优选数据传输通道的识别,并评估样本以确定噪声 每个频道的级别。
    • 7. 发明申请
    • System of implantable devices for monitoring and/or affecting body parameters
    • 用于监测和/或影响身体参数的可植入装置的系统
    • US20010001125A1
    • 2001-05-10
    • US09754225
    • 2001-01-03
    • Joseph H. SchulmanCarla M. Mann
    • A61N001/02
    • A61N1/3787A61B5/0031A61B5/053A61B5/07A61B5/145A61B5/14532A61B2560/0219A61B2562/08A61F2/72A61F2002/5058A61F2002/704A61F2002/705A61N1/37205A61N1/37211A61N1/37252A61N1/37288Y10S128/903
    • A system for monitoring and/or affecting parameters of a patient's body and more particularly to such a system comprised of a system control unit (SCU) and one or more other devices, preferably battery-powered, implanted in the patient's body, i.e., within the envelope defined by the patient's skin. Each such implanted device is configured to be monitored and/or controlled by the SCU via a wireless communication channel. In accordance with the invention, the SCU comprises a programmable unit capable of (1) transmitting commands to at least some of a plurality of implanted devices and (2) receiving data signal from at least some of those implanted devices. In accordance with a preferred embodiment, the system operates in closed loop fashion whereby the commands transmitted by the SCU are dependent, in part, on the content of the data signals received by the SCU. In accordance with the invention, a preferred SCU is similarly implemented as a device capable of being implanted beneath a patient's skin, preferably having an axial dimension of less than 60 mm and a lateral dimension of less than 6 mm. Wireless communication between the SCU and the implanted devices is preferably implemented via a modulated sound signal, AC magnetic field, RF signal, or electric conduction.
    • 一种用于监测和/或影响患者身体的参数的系统,更具体地涉及由系统控制单元(SCU)和一个或多个其它装置(优选由电池供电的)组成的系统,其被植入患者体内,即,在 由病人皮肤定义的信封。 每个这样的植入装置被配置为经由无线通信信道由SCU监视和/或控制。 根据本发明,SCU包括能够(1)向多个植入装置中的至少一些发送命令的可编程单元,以及(2)从至少某些植入装置接收数据信号。 根据优选实施例,系统以闭环方式操作,由此由SCU发送的命令部分地取决于由SCU接收的数据信号的内容。 根据本发明,优选的SCU类似地实施为能够植入患者皮肤下方的装置,优选具有小于60mm的轴向尺寸和小于6mm的横向尺寸。 优选地,经由调制声音信号,AC磁场,RF信号或电传导来实现SCU与植入装置之间的无线通信。
    • 8. 发明申请
    • Overmold for a modular implantable medical device
    • 用于模块化可植入医疗设备的包覆模型
    • US20040176814A1
    • 2004-09-09
    • US10730873
    • 2003-12-09
    • Ruchika SinghalDarren A. JanzigCarl D. WahlstrandRobert M. SkimePaulette C. Olson
    • A61N001/02
    • A61N1/375A61N1/3605A61N1/3754A61N1/3758
    • A modular implantable medical device permits implantable medical devices to have a smaller profile in order to better fit into locations within the human body. A modular implantable medical device separates various functional components of the implantable medical device into a set of interconnected modules. This distributed architecture of a modular implantable medical device may permit the device footprint to be distributed over a larger area while making the profile smaller, and may permit the overall shape of the implantable medical device to better match the body location into which it is to be implanted. An overmold integrates the modules of a modular implantable medical device into a single structure. In some embodiments the overmold is flexible and provides a biocompatible interface from the component modules and the patient, while restraining potentially harmful intermodule motion.
    • 模块化可植入医疗装置允许植入式医疗装置具有更小的外形,以便更好地适应人体内的位置。 模块化可植入医疗装置将可植入医疗装置的各种功能部件分离成一组互连的模块。 模块化可植入医疗设备的这种分布式架构可以允许设备占地面积分布在更大的区域上,同时使轮廓更小,并且可以允许可植入医疗设备的整体形状更好地匹配将要被植入的医疗设备的身体位置 植入。 包覆模具将模块化可植入医疗设备的模块集成到单个结构中。 在一些实施方案中,包覆成型是柔性的并且提供来自组件模块和患者的生物相容性界面,同时限制潜在有害的模块间运动。
    • 9. 发明申请
    • Shielded permanent magnet activator for implanted cardiac devices
    • 用于植入心脏装置的屏蔽永磁激活器
    • US20020091413A1
    • 2002-07-11
    • US09757143
    • 2001-01-09
    • Armando M. CappaJ. Kelly FoxPaul A. LevineMatthew WhitlockJames B. Hamilton
    • A61N001/02
    • A61N1/08Y10S206/818
    • A method and assembly for selectively actuating features of implanted medical devices with a magneto-static field. The method includes selectively exposing the implanted device to a static magnetic field source, selectively shielding the magnetic field source, and distancing the shielded magnetic field source from the medical device. One version of the assembly includes a permanent magnet and a displaceable shield assembly that shields the magnetic field generated by the magnet in one configuration and is displaceable to a second configuration wherein the magnetic field is at least partially exposed. In another version, the assembly is an electromagnet that can be selectively activated and deactivated. The electromagnet generates minimal magnet field when it is off.
    • 一种用于利用磁静电场选择性地致动植入式医疗装置的特征的方法和组件。 该方法包括将植入的装置选择性地暴露于静态磁场源,选择性地屏蔽磁场源,并将屏蔽的磁场源与医疗装置隔离。 组件的一个版本包括永磁体和可移位的屏蔽组件,其可以以一种构造屏蔽由磁体产生的磁场,并且可移位到第二配置,其中磁场至少部分地暴露。 在另一个版本中,组件是可以选择性地激活和去激活的电磁体。 当电磁铁关闭时,电磁铁产生最小的磁场。