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    • 72. 发明授权
    • Implantable medical devices with piezoelectric anchoring member
    • 具有压电锚固构件的植入式医疗器械
    • US08506495B2
    • 2013-08-13
    • US12774983
    • 2010-05-06
    • Bin MiLance E. JufferKeith R. MaileAbhijeet V. ChavanThomas W. Piaget
    • Bin MiLance E. JufferKeith R. MaileAbhijeet V. ChavanThomas W. Piaget
    • A61B5/02
    • A61N1/36564A61B5/0031A61B5/0215A61N1/37205A61N1/37217A61N1/37288A61N1/375
    • Methods, systems, and apparatus for powering and/or recharging medical devices implanted within the body are described. An illustrative implantable medical device includes a housing having an internal cavity and a flexible anchor assembly that is coupled to the housing. The flexible anchor assembly includes a first electrical conductor, a second electrical conductor, and a piezoelectric layer that is disposed between the first and second electrical conductors and that is configured to displace in response to a physiologic force applied to the flexible anchor assembly and generate a voltage differential between the first and second electrical conductors. The implantable medical device includes power circuitry that converts the voltage differential between the first and second electrical conductors into an operating current for powering one or more components within the implantable medical device and/or for recharging a rechargeable power supply within the device.
    • 描述了植入体内的医疗装置的供电和/或再充电的方法,系统和装置。 示例性可植入医疗装置包括具有内腔的壳体和联接到壳体的柔性锚固组件。 柔性锚固组件包括第一电导体,第二电导体和压电层,其被设置在第一和第二电导体之间,并被配置为响应于施加到柔性锚固组件的生理力而移位并产生 第一和第二电导体之间的电压差。 可植入医疗装置包括电力电路,其将第一和第二电导体之间的电压差转换成用于为可植入医疗装置内的一个或多个部件供电的动作电流和/或用于为装置内的可再充电电源再充电。
    • 76. 发明申请
    • FOLDED ANTENNAS FOR IMPLANTABLE MEDICAL DEVICES
    • 用于可植入医疗器械的折叠天线
    • US20120130450A1
    • 2012-05-24
    • US13302202
    • 2011-11-22
    • Sasidhar VajhaKeith R. MaileDennis E. LarsonDavid A. ChizekJohn M. Edgell
    • Sasidhar VajhaKeith R. MaileDennis E. LarsonDavid A. ChizekJohn M. Edgell
    • A61N1/36
    • A61N1/37229A61B5/0031H01Q1/273H01Q1/36H01Q9/0414Y10T29/49016
    • In an example, an apparatus can include an implantable medical device comprising a housing, an implantable telemetry circuit carried within the housing, a dielectric compartment mechanically coupled to the housing, the dielectric compartment including first and second substantially parallel face portions and a third face portion extending between the first and second face portions, and an implantable telemetry antenna, located at least partially within the dielectric compartment. The implantable telemetry circuit can be electrically coupled to the implantable telemetry antenna and configured to wirelessly transfer information electromagnetically using the implantable telemetry antenna. In an example the implantable telemetry antenna comprises a spiral conductor portion extending along the first, second, and third face portions. In an example the spiral conductor includes a cross section having a lateral width that can be greater than a sidewall height of the cross section
    • 在一个示例中,装置可以包括可植入医疗装置,其包括壳体,在壳体内承载的可植入遥测电路,机械耦合到壳体的电介质隔室,电介质室包括第一和第二基本上平行的面部分,第三面部分 在第一和第二面部之间延伸,以及至少部分地位于电介质隔室内的可植入遥测天线。 可植入遥测电路可以电耦合到可植入遥测天线并且被配置为使用可植入遥测天线以电磁方式无线地传送信息。 在一个示例中,可植入遥测天线包括沿着第一,第二和第三面部分延伸的螺旋导体部分。 在一个示例中,螺旋导体包括具有可以大于横截面的侧壁高度的横向宽度的横截面
    • 78. 发明授权
    • Ultrasonic transducer for a metallic cavity implated medical device
    • 用于金属腔的超声换能器涉及医疗装置
    • US07949396B2
    • 2011-05-24
    • US11780992
    • 2007-07-20
    • Bin MiAbhijeet V. ChavanKeith R. Maile
    • Bin MiAbhijeet V. ChavanKeith R. Maile
    • A61N1/375
    • A61N1/37288A61B5/0028A61N1/37217
    • An implantable medical device comprising a housing and an ultrasonic transducer having a communication frequency coupled to a portion of the housing. The housing resonates at the communication frequency, and a casing is coupled to the housing and disposed over the ultrasonic transducer. The casing is adapted to amplify the deformation of the ultrasonic transducer in a bending mode and transfer the bending moment to the housing. An implantable medical device comprising a housing having an upper portion and a lower portion. A first ultrasonic transducer is coupled to a first connection rod and is coaxial with the first connection rod. The first ultrasonic transducer and first connection rod are interposed between the upper and lower portions such that the first ultrasonic transducer is adapted to vibrate the upper and lower portions simultaneously. A method of optimizing an ultrasonic transducer and a housing of an implantable medical device.
    • 一种可植入医疗装置,包括壳体和具有耦合到壳体的一部分的通信频率的超声换能器。 壳体以通信频率谐振,并且壳体耦合到壳体并且设置在超声换能器上。 壳体适于在弯曲模式下放大超声波换能器的变形,并将弯矩转移到壳体。 一种可植入医疗装置,包括具有上部和下部的壳体。 第一超声换能器联接到第一连接杆并且与第一连接杆同轴。 第一超声波换能器和第一连接杆插入在上部和下部之间,使得第一超声波换能器适于同时振动上部和下部。 一种优化超声换能器和可植入医疗装置的壳体的方法。