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    • 31. 发明授权
    • System and method for avoiding, reversing, and managing neurological accommodation to electrical stimulation
    • 用于避免,逆转和管理神经系统适应电刺激的系统和方法
    • US08155750B2
    • 2012-04-10
    • US12509340
    • 2009-07-24
    • Kristen JaaxCourtney LaneMichael MoffittAndrew DiGioreMark PierreKerry BradleyGregory Baldwin
    • Kristen JaaxCourtney LaneMichael MoffittAndrew DiGioreMark PierreKerry BradleyGregory Baldwin
    • A61N1/00
    • A61N1/37235A61N1/36132A61N1/36146A61N1/37264
    • A method and programmer for programming a neurostimulation device are provided. The method comprises varying a first stimulation parameter under user control, automatically varying a second stimulation parameter, generating a plurality of stimulation parameter sets from the varied first and second stimulation parameters, outputting a pulsed electrical waveform from the neurostimulation device between a plurality of electrodes in accordance with the stimulation parameter sets, such that neural tissue is stimulated without undergoing neurological accommodation that would otherwise occur if the second stimulation parameter were not varied, and programming the neurostimulation device with a new set of stimulation parameters based on a result of the neural tissue stimulation The programmer comprises a user interface capable of receiving an input from a user, a processor configured for performing the previous steps, and output circuitry configured for transmitting the stimulation parameter sets and the new stimulation parameter set to the neurostimulation device.
    • 提供了一种用于编程神经刺激装置的方法和编程器。 该方法包括在用户控制下改变第一刺激参数,自动改变第二刺激参数,从变化的第一和第二刺激参数产生多个刺激参数集合,从神经刺激装置在多个电极之间输出脉冲电波形 根据刺激参数集,使得神经组织被刺激而不经历如果第二刺激参数没有变化否则会发生神经学调节,并且基于神经组织的结果用新的一组刺激参数来编程神经刺激装置 刺激编程器包括能够接收来自用户的输入,被配置为执行前述步骤的处理器的用户界面以及被配置为将刺激参数集和新刺激参数集发送到神经刺激装置的输出电路。
    • 32. 发明申请
    • METHODS, SYSTEMS, AND DEVICES FOR DEEP BRAIN STIMULATION USING HELICAL MOVEMENT OF THE CENTROID OF STIMULATION
    • 使用刺激性心脏运动的深层脑刺激的方法,系统和装置
    • US20120046710A1
    • 2012-02-23
    • US13198035
    • 2011-08-04
    • Andrew DiGioreDavid Karl Lee Peterson
    • Andrew DiGioreDavid Karl Lee Peterson
    • A61N1/36
    • A61N1/0534A61N1/36185
    • A method of treating a target region in the brain includes a) contacting tissue to be stimulated with a lead of a stimulation device, the stimulation device comprising a pulse generator coupled to the lead, the lead having a plurality of segmented electrodes disposed at a distal end of the lead, the stimulation device being configured and arranged to stimulate a target region using a positionable centroid of stimulation; b) providing stimulation current to at least one of the segmented electrodes of the lead to generate a centroid of stimulation at a location and stimulate tissue around the location of the centroid of stimulation; c) repositioning the centroid of stimulation to a next location along a helical path by altering the provision of stimulation current to the plurality of electrodes and stimulating tissue around the location of the repositioned centroid of stimulation; and d) repeating c) for each location along the helical path. The method may optionally include collecting data associated with each of the locations of the centroid of stimulation; and displaying at least a portion of the collected data.
    • 治疗脑中靶区域的方法包括:a)使刺激装置的引导部分接触被刺激的组织,所述刺激装置包括连接到所述引线的脉冲发生器,所述引线具有设置在远端的多个分段电极 所述刺激装置被配置和布置成使用可定位的刺激重心来刺激目标区域; b)向引线的至少一个分段电极提供刺激电流,以在位置处产生刺激的质心并刺激刺激质心位置周围的组织; c)通过改变对所述多个电极的刺激电流的提供并刺激所述重新定位的刺激质心的周围的组织来重新定位刺激的质心到沿着螺旋路径的下一个位置; 和d)重复c)沿着螺旋路径的每个位置。 该方法可以可选地包括收集与刺激质心的每个位置相关联的数据; 并显示所收集的数据的至少一部分。
    • 36. 发明申请
    • MOLDABLE CHARGER WITH CURABLE MATERIAL FOR CHARGING AN IMPLANTABLE PULSE GENERATOR
    • 带可固化材料的可充电充电器,用于充电可植入脉冲发生器
    • US20100331918A1
    • 2010-12-30
    • US12495575
    • 2009-06-30
    • Andrew DiGioreBrett SchleicherGreg Baldwin
    • Andrew DiGioreBrett SchleicherGreg Baldwin
    • A61N1/02
    • A61N1/3787A61N1/3605
    • Electrical energy is transcutaneously transmitted from an external charger to an implanted medical device. The external charger includes a charging head comprising a flexible material that is selectively shaped to conform to the surface of a patient to enhance charge efficiency and patient comfort. The flexible material is curable to become inflexible and embody a fixed shape and may comprise, for example, a thermoplastic for being re-shaped and re-cured multiple times, or a thermoset plastic that maintains a permanent shape and cannot be re-cured to form another shape. The charging head may also include one or more sensors for determining the shape of a charging coil in the charging head, which cause the charge of the coil to be adjusted based on the coil shape.
    • 电能从外部充电器经皮传输到植入式医疗装置。 外部充电器包括充电头,该充电头包括柔性材料,该柔性材料选择性地成形为符合患者的表面以增强充电效率和患者舒适度。 柔性材料是可固化的以变得不灵活并且体现固定的形状,并且可以包括例如用于重新形状和再固化多次的热塑性塑料,或者保持永久形状并且不能再固化的热固性塑料 形成另一种形状。 充电头还可以包括用于确定充电头中的充电线圈的形状的一个或多个传感器,这导致基于线圈形状来调节线圈的充电。