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    • 1. 发明申请
    • USING TELEMETRY COUPLING AS A SURROGATE FOR RECHARGER COUPLING
    • 使用电话联络作为重新耦合的现象
    • US20090259273A1
    • 2009-10-15
    • US12100875
    • 2008-04-10
    • Giselle Suraya FigueiredoJohn W. ForsbergJeffrey T. KeacherAlex C. ToyErik G. Widman
    • Giselle Suraya FigueiredoJohn W. ForsbergJeffrey T. KeacherAlex C. ToyErik G. Widman
    • A61N1/375
    • A61N1/37252A61N1/378A61N1/3787
    • Techniques for using telemetry signal strength for positioning a primary recharge coil of a recharging unit at a location proximate to an Implantable Medical Device (IMD) in preparation to recharge a rechargeable power source of the IMD are disclosed. An antenna of the recharging unit is positioned proximate to the IMD, a telemetry session is initiated between the two devices, and a value indicative of the telemetry signal strength is obtained. Using a known correspondence between telemetry signal strength and recharge coupling efficiency for the IMD/recharging unit pair, the telemetry signal strength value is used to determine whether adequate recharge coupling may be achieved between the pair of devices. If so, a recharge session may be established. Otherwise, the antenna is repositioned and the process is repeated. The correspondence between telemetry signal strength and recharge coupling efficiency for the device pair may be developed empirically or using modeling.
    • 公开了使用遥测信号强度来定位靠近可植入医疗设备(IMD)的位置处的充电单元的主充电线圈以准备为IMD的可再充电电源充电的技术。 充电单元的天线位于IMD附近,在两个装置之间开始遥测会话,并且获得表示遥测信号强度的值。 使用遥测信号强度和IMD /再充电单元对的再充电耦合效率之间的已知对应关系,使用遥测信号强度值来确定在一对装置之间是否可以实现足够的再充电耦合。 如果是这样,可以建立充值会话。 否则,重新定位天线,并重复该过程。 遥测信号强度与装置对的再充电耦合效率之间的对应关系可以用经验或建模来开发。
    • 2. 发明授权
    • Using telemetry coupling as a surrogate for recharger coupling
    • 使用遥测耦合作为充电器耦合的代理
    • US08509909B2
    • 2013-08-13
    • US12100875
    • 2008-04-10
    • Giselle Suraya FigueiredoJohn W. ForsbergJeffrey T. KeacherAlex C. ToyErik G. Widman
    • Giselle Suraya FigueiredoJohn W. ForsbergJeffrey T. KeacherAlex C. ToyErik G. Widman
    • A61N1/372A61N1/378
    • A61N1/37252A61N1/378A61N1/3787
    • Telemetry signal strength is used for positioning a primary recharge coil of a recharging unit at a location proximate to an Implantable Medical Device (IMD) in preparation to recharge a rechargeable power source of the IMD. An antenna of the recharging unit is positioned proximate to the IMD, a telemetry session is initiated between the two devices, and a value indicative of the telemetry signal strength is obtained. Using a known correspondence between telemetry signal strength and recharge coupling efficiency for the IMD/recharging unit pair, the telemetry signal strength value is used to determine whether adequate recharge coupling may be achieved between the pair of devices. If so, a recharge session may be established. Otherwise, the antenna is repositioned and the process is repeated. The correspondence between telemetry signal strength and recharge coupling efficiency for the device pair may be developed empirically or using modeling.
    • 遥测信号强度用于在靠近可植入医疗设备(IMD)的位置处定位充电单元的主充电线圈,以准备为IMD的可再充电电源充电。 充电单元的天线位于IMD附近,在两个装置之间开始遥测会话,并且获得表示遥测信号强度的值。 使用遥测信号强度和IMD /再充电单元对的再充电耦合效率之间的已知对应关系,使用遥测信号强度值来确定在一对装置之间是否可以实现足够的再充电耦合。 如果是这样,可以建立充值会话。 否则,重新定位天线,并重复该过程。 遥测信号强度与装置对的再充电耦合效率之间的对应关系可以用经验或建模来开发。
    • 10. 发明授权
    • Neurostimulator programmer with internal antenna
    • 具有内部天线的神经刺激器编程器
    • US07561921B2
    • 2009-07-14
    • US10693015
    • 2003-10-24
    • William C. PhillipsAlex C. ToyCharles R. Lewis, Jr.Mark E. SchommerJohn W. ForsbergDavid P. Olson
    • William C. PhillipsAlex C. ToyCharles R. Lewis, Jr.Mark E. SchommerJohn W. ForsbergDavid P. Olson
    • A61N1/37
    • A61N1/37229A61N1/37235A61N1/37247Y10S128/903Y10S128/904
    • In general, the invention is directed to a patient programmer for an implantable medical device. The patient programmer may include one or more of a variety of features that may enhance performance, support mobility and compactness, or promote patient convenience. For example, the patient programmer may include an internal antenna for RF telemetry with the implantable medical device. The internal antenna may have a loop-like structure that defines a central aperture. A battery bay may extend at least partially into the antenna aperture from the patient programmer housing. One or more batteries may be mounted in the battery bay within the antenna aperture. In some cases, the batteries may contribute favorably to the RF load presented to the internal antenna. In particular, the batteries may present an additional load to the internal antenna, enhancing immunity to electrical and electromagnetic interference during telemetry sessions with the implantable medical device.
    • 通常,本发明涉及可植入医疗装置的患者编程器。 患者程序员可以包括可以增强性能,支持移动性和紧凑性或促进患者便利性的多种特征中的一种或多种。 例如,患者编程器可以包括用于与可植入医疗装置进行RF遥测的内部天线。 内部天线可以具有限定中心孔径的环状结构。 电池舱可以至少部分地延伸到患者编程器壳体的天线孔中。 一个或多个电池可以安装在天线孔内的电池槽中。 在某些情况下,电池可能有助于提供给内部天线的RF负载。 特别地,电池可以向内部天线施加额外的负载,在与可植入医疗装置的遥测会话期间增强对电和电磁干扰的免疫力。