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    • 6. 发明申请
    • MANAGEMENT OF STIMULATION SAFETY LIMITS IN A NEUROSTIMULATION SYSTEM
    • 神经系统中刺激安全限制的管理
    • US20120290039A1
    • 2012-11-15
    • US13470326
    • 2012-05-13
    • Michael A. MoffittSridhar KothandaramanDavid K.L. Peterson
    • Michael A. MoffittSridhar KothandaramanDavid K.L. Peterson
    • A61N1/36
    • A61N1/36142A61N1/36185A61N1/37241
    • A neurostimulation system for management of stimulation safety limits. The system determines a tissue charge injection metric at each electrode, compares the metric to the hard stop charge limit, and prevents the neurostimulator from delivering stimulation energy to the tissue region in accordance based on the comparison. The hard stop limit may be user-programmable or may be automatically modified in response to detection of electrode characteristics. The system may quantitatively notify a user of a value of the injected charge injected into the tissue. The electrodes may be organized into different sets, in which case, the system may directly control tissue charge independently at each of the electrode sets. If current steering is provided, the system may displace the electrical stimulation energy along the tissue region in one direction, while preventing the charge injection value at each of the electrodes from meeting or exceeding the hard stop charge limit.
    • 用于管理刺激安全限值的神经刺激系统。 系统确定每个电极处的组织电荷注入度量,将该度量与硬停止电荷限制进行比较,并且根据比较来防止神经刺激器将刺激能量递送至组织区域。 硬停止极限可以是用户可编程的,或者可以响应于电极特性的检测而被自动修改。 该系统可以定量地向使用者通知注入到组织中的注入电荷的值。 电极可以组织成不同的组,在这种情况下,系统可以在每个电极组中独立地直接控制组织电荷。 如果提供电流转向,则系统可以沿着一个方向沿着组织区域移位电刺激能量,同时防止每个电极处的电荷注入值达到或超过硬停止充电极限。
    • 8. 发明授权
    • Collection of clinical data for graphical representation and analysis
    • 收集用于图形表示和分析的临床数据
    • US09358398B2
    • 2016-06-07
    • US13481497
    • 2012-05-25
    • Michael A. MoffittJohn J. Reinhold
    • Michael A. MoffittJohn J. Reinhold
    • A61B5/05A61N1/372A61N1/36
    • A61N1/37247A61N1/3615A61N1/36185A61N1/37235A61N1/37241G06F19/00
    • A method of treating a patient and an external programmer for use with a neurostimulator. Electrical stimulation energy is serially conveyed into tissue of the patient via different combinations of electrodes implanted within the patient, thereby creating one or more clinical effects for each of the different electrode combinations. An influence of each of the different electrode combinations on the clinical effect(s) is determined. A graphical indication of the one or more clinical effects is generated based on the determined electrode combination influences. A graphical representation of the electrodes is displayed. The graphical indication of the clinical effect(s) is displayed adjacent the graphical electrode representation, such that a user can view an extent to which each of the different electrode combinations influences the clinical effect(s).
    • 一种治疗患者和外部程序员以用于神经刺激器的方法。 通过植入患者体内的电极的不同组合将电刺激能量连续地输送到患者的组织中,从而为每个不同的电极组合产生一个或多个临床效果。 确定每个不同电极组合对临床效果的影响。 基于确定的电极组合影响产生一种或多种临床效果的图形指示。 显示电极的图形表示。 临床效果的图形指示显示在图形电极表示附近,使得用户可以观察每个不同电极组合影响临床效果的程度。
    • 9. 发明授权
    • Neurostimulation system for selectively estimating volume of activation and providing therapy
    • 神经刺激系统,用于选择性地估计活化量并提供治疗
    • US08934979B2
    • 2015-01-13
    • US13336580
    • 2011-12-23
    • Michael A. Moffitt
    • Michael A. Moffitt
    • A61N1/00A61N1/372
    • A61N1/36128A61N1/0534A61N1/36067A61N1/37247G06F19/00G16H40/63
    • An external control device, neurostimulation system, and method of programming a neurostimulator. A volume of tissue activation for each of a first one or more candidate stimulation parameter sets is simulated without conveying electrical stimulation energy into the tissue. One of the first candidate stimulation parameter set(s) is selected based on each simulated volume of tissue activation. Electrical stimulation energy is conveyed into the tissue in accordance with a second one or more candidate stimulation parameter sets, wherein the initial one of the second candidate stimulation parameter set(s) is the selected one of the first candidate stimulation parameter set(s). One of the second candidate stimulation parameter set(s) is selected based on a therapeutic efficacy of the electrical stimulation energy conveyed into the tissue. The neurostimulator is programmed with the selected one of the second candidate stimulation parameter set(s).
    • 外部控制装置,神经刺激系统和神经刺激器编程方法。 模拟第一个或多个候选刺激参数组中的每一个的组织激活的体积,而不将电刺激能量输送到组织中。 基于每个模拟体积的组织激活来选择第一候选刺激参数组之一。 根据第二个一个或多个候选刺激参数组将电刺激能量输送到组织中,其中第二候选刺激参数组中的初始一个是第一候选刺激参数组中选定的一个。 基于传递到组织中的电刺激能量的治疗功效来选择第二候选刺激参数组之一。 所述神经刺激器用所选择的第二候选刺激参数组中的一个编程。