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    • 1. 发明授权
    • System for transcutaneous energy transfer to an implantable medical device with mating elements
    • 用于经皮能量转移到具有配合元件的可植入医疗装置的系统
    • US07848814B2
    • 2010-12-07
    • US11590431
    • 2006-10-31
    • Nathan A. TorgersonJohn E. KastKevin J. KellyTodd P. Goblish
    • Nathan A. TorgersonJohn E. KastKevin J. KellyTodd P. Goblish
    • A61N1/378A61N1/40
    • A61N1/37229A61N1/3787
    • System for transcutaneous energy transfer to an implantable medical device adapted to be implanted under a cutaneous boundary having a housing having a first surface adapted to face the cutaneous boundary, the first surface of the housing of the implantable medical device having a first mating element, therapeutic componentry and a secondary coil operatively coupled to the therapeutic componentry. An external power source has housing having a first surface adapted to be placed closest to the cutaneous boundary, the first surface of the housing of the external power source having a second mating element and a primary coil capable of inductively energizing the secondary coil when externally placed in proximity of the secondary coil. The first mating element and the second mating element are configured to tactilely align the external power source with the implantable medical device.
    • 用于经皮能量转移到适于被植入在皮肤边界下的可植入医疗装置的系统,其具有壳体,所述壳体具有适于面对皮肤边界的第一表面,所述可植入医疗装置的壳体的第一表面具有第一配合元件, 组件和可操作地耦合到治疗组件的次级线圈。 外部电源具有壳体,其具有适于被放置成最接近皮肤边界的第一表面,外部电源的壳体的第一表面具有第二配合元件和能够在外部放置时对次级线圈感应地激励的初级线圈 在次级线圈附近。 第一配合元件和第二配合元件构造成将外部电源与可植入医疗设备触觉对准。
    • 2. 发明申请
    • System for transcutaneous energy transfer to an implantable medical device with mating elements
    • 用于经皮能量转移到具有配合元件的可植入医疗装置的系统
    • US20070255350A1
    • 2007-11-01
    • US11590431
    • 2006-10-31
    • Nathan A. TorgersonJohn E. KastKevin J. KellyTodd P. Goblish
    • Nathan A. TorgersonJohn E. KastKevin J. KellyTodd P. Goblish
    • A61N1/00
    • A61N1/37229A61N1/3787
    • System for transcutaneous energy transfer to an implantable medical device adapted to be implanted under a cutaneous boundary having a housing having a first surface adapted to face the cutaneous boundary, the first surface of the housing of the implantable medical device having a first mating element, therapeutic componentry and a secondary coil operatively coupled to the therapeutic componentry. An external power source has housing having a first surface adapted to be placed closest to the cutaneous boundary, the first surface of the housing of the external power source having a second mating element and a primary coil capable of inductively energizing the secondary coil when externally placed in proximity of the secondary coil. The first mating element and the second mating element are configured to tactilely align the external power source with the implantable medical device.
    • 用于经皮能量转移到适于被植入在皮肤边界下的可植入医疗装置的系统,其具有壳体,所述壳体具有适于面对皮肤边界的第一表面,所述可植入医疗装置的壳体的第一表面具有第一配合元件, 组件和可操作地耦合到治疗组件的次级线圈。 外部电源具有壳体,其具有适于被放置成最接近皮肤边界的第一表面,外部电源的壳体的第一表面具有第二配合元件和能够在外部放置时感应地激励次级线圈的初级线圈 在次级线圈附近。 第一配合元件和第二配合元件构造成将外部电源与可植入医疗设备触觉对准。
    • 4. 发明授权
    • Device and method for determining and communicating the remaining life of a battery in an implantable neurological tissue stimulating device
    • 用于确定和传达可植入神经组织刺激装置中的电池的剩余寿命的装置和方法
    • US06820019B1
    • 2004-11-16
    • US09364967
    • 1999-07-31
    • Kevin J. KellyNathan A. Torgerson
    • Kevin J. KellyNathan A. Torgerson
    • A61N139
    • A61N1/3708
    • The invention is a device and method for determining the current status and remaining life of a power source in an implantable neurological tissue stimulator. The invention contemplates a method, performed in a system without human intervention, that includes the steps of assessing the power source voltage of the power source in an IPG, determining, using the power source voltage, where in the power source life cycle the power source is, and taking action in response to the determination of where in the power source life cycle the power source is. The invention also includes a device that embodies the method described above. The device, which is partially resident in an IPG and partially resident in an external device such as a programmer measures the power source voltage in the IPG, using the power source voltage determines where in the power source life cycle the power source is and takes appropriate action in response to the determination of where in the power source life cycle the power source is. A processor, either on the IPG or in the programmer is the preferred structure for determining where in the power source life cycle the power source is and for directing the appropriate action in response to the determination of where in the power source life cycle the power source is.
    • 本发明是用于确定可植入神经组织刺激器中的电源的当前状态和剩余寿命的装置和方法。 本发明考虑了一种在没有人为干预的系统中执行的方法,其包括以下步骤:评估IPG中的电源的电源电压,使用电源电压确定电源生命周期中的电源 并且采取行动来响应电源生命周期中电源的确定位置。 本发明还包括体现上述方法的装置。 部分驻留在IPG中并且部分驻留在诸如编程器的外部设备中的设备使用电源电压来测量IPG中的电源电压,从而确定电源在电源的寿命周期中并且适当地 响应于确定电源的电源生命周期中的哪个位置的动作。 在IPG或编程器中的处理器是用于确定电源在电源生命周期中的哪里的优选结构,并且响应于确定电源生命周期中的哪个电源来引导适当的动作 是的
    • 9. 发明申请
    • OPERATIONAL ELECTRODE IMPEDANCE MEASUREMENT FOR AN IMPLANTABLE MEDICAL STIMULATOR
    • 可植入医用刺激仪的手术电极阻抗测量
    • US20080051847A1
    • 2008-02-28
    • US11846142
    • 2007-08-28
    • Kevin J. Kelly
    • Kevin J. Kelly
    • A61N1/08
    • A61N1/36128A61N1/3605A61N1/37229A61N1/37247A61N2001/083H04R11/02H04R25/456H04R25/604
    • Controller, system and method for an implantable medical device having a plurality of electrodes, said implantable device being capable of delivering a therapeutic stimulation to a patient. An electrode interface is operatively coupled between a plurality of electrodes and a control module. The control module uses an electrode interface to obtain a plurality of measurements of impedance values for a plurality of selected pairs of individual ones of the plurality of electrodes. A user interface displays an indicia, indicative of operability of a group of at least one of said plurality of electrodes, based on a comparison of said plurality of measurements to a predetermined range, said indicia being a qualitative representation of operability of said group of at least one of said plurality of electrodes.
    • 用于具有多个电极的可植入医疗装置的控制器,系统和方法,所述可植入装置能够向患者输送治疗刺激。 电极接口可操作地耦合在多个电极和控制模块之间。 所述控制模块使用电极接口来获得所述多个电极中的多个选定对中的多个所选对的多个测量值。 基于所述多个测量值与预定范围的比较,用户界面显示指示所述多个电极中的至少一个电极的组的可操作性的标记,所述标记是所述组中的所述组的可操作性的定性表示 所述多个电极中的至少一个。