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    • 2. 发明申请
    • THERAPY PROGRAM MODIFICATION
    • 治疗方案修改
    • WO2009134477A1
    • 2009-11-05
    • PCT/US2009/031801
    • 2009-01-23
    • MEDTRONIC, INC.RONDONI, John, C.GERBER, Martin, T.
    • RONDONI, John, C.GERBER, Martin, T.
    • A61N1/08A61N1/36A61N1/34
    • A61N1/36071A61N1/08A61N1/36007
    • A therapy program may be generated based on an algorithmic model of a baseline therapy field, which may represent a therapy field resulting from therapy delivery via the first therapy system based on a first therapy program. A second therapy program that controls therapy delivery by a second therapy system may be generated based on the baseline therapy field model. For example, therapy parameter values of the second therapy program may be selected to maintain at least one field characteristic of the baseline therapy field model. In some examples, the second therapy system may result from a hardware modification to the first therapy system. In other examples, the first and second therapy systems may be associated with different patients. For example, the baseline therapy field model may be an efficacious therapy field for a patient class, and a second therapy program may be generated for a patient in the class.
    • 可以基于基线治疗领域的算法模型来产生治疗程序,其可以代表由基于第一治疗程序的经由第一治疗系统的治疗递送产生的治疗领域。 可以基于基线治疗场模型来产生控制第二疗法系统治疗传递的第二疗法程序。 例如,可以选择第二治疗程序的治疗参数值以保持基线治疗场模型的至少一个场特征。 在一些示例中,第二治疗系统可能由对第一治疗系统的硬件修改而产生。 在其他实施例中,第一和第二治疗系统可以与不同的患者相关联。 例如,基线治疗场模型可以是患者类别的有效治疗领域,并且可以为该类别中的患者生成第二治疗程序。
    • 4. 发明申请
    • TREE-BASED ELECTRICAL STIMULATOR PROGRAMMING
    • 基于树的电刺激编程
    • WO2007127460A2
    • 2007-11-08
    • PCT/US2007/010398
    • 2007-04-30
    • MEDTRONIC, INC.GERBER, Martin, T.RONDONI, John, C.
    • GERBER, Martin, T.RONDONI, John, C.
    • A61N1/36071A61N1/37247G06F19/00
    • The disclosure describes an implantable stimulation system that guides programming with a therapeutic tree. All possible stimulation parameters are arranged on the therapeutic tree, with each level of the therapeutic tree containing a different stimulation parameter type. Each level includes nodes that are connected to nodes of adjacent levels. A program path is created by moving through nodes of lower levels. The stimulation parameter types are arranged so that coarse adjustments occur at higher levels of the tree and fine adjustments occur at lower levels of the tree. The nodes of the program path define the stimulation parameters of the delivered stimulation therapy. Performance feedback may be used by the system to evaluate nodes of the therapeutic tree and define the program path. The performance feedback may include beneficial effects, adverse effects, and system performance related to the stimulation therapy. Additionally, one or more sensors may provide the performance feedback.
    • 本公开描述了一种用治疗树指导编程的可植入刺激系统。 所有可能的刺激参数被布置在治疗树上,治疗树的每个水平含有不同的刺激参数类型。 每个级别包括连接到相邻级别的节点的节点。 通过移动较低级别的节点创建程序路径。 刺激参数类型被布置为使得在较高级别的树上进行粗调,并且在较低级别处发生精细调整。 节目路径的节点定义了递送的刺激疗法的刺激参数。 系统可以使用性能反馈来评估治疗树的节点并定义程序路径。 性能反馈可以包括与刺激疗法相关的有益效果,不利影响和系统性能。 另外,一个或多个传感器可以提供性能反馈。
    • 7. 发明申请
    • PATIENT-INDIVIDUALIZED EFFICACY RATING
    • 患者个性化效能评分
    • WO2007130173A1
    • 2007-11-15
    • PCT/US2007/001940
    • 2007-01-25
    • MEDTRONIC, INC.GERBER, Martin, T.RONDONI, John, C.
    • GERBER, Martin, T.RONDONI, John, C.
    • A61N1/372G06F19/00
    • A61N1/37247G16H50/50
    • The disclosure is directed to techniques for providing a patient- individualized efficacy rating. Different stimulation parameters impact efficacy. For example, efficacy may be a function of parameters such as electrode combination, stimulation amplitude, pulse width, and pulse rate. Efficacy may vary from patient-to-patient. For example, efficacy may vary according to age, gender, physiology, disease state, activity level, or activity profile. Comparable stimulation programs may provide' different efficacy levels for different patients, according to patient characteristics or desires. Patients may rank efficacy parameters differently. The efficacy parameters may include desirable therapeutic effects and undesirable side effects. For one patient, optimization of a particular efficacy parameter may be the paramount concern. Other patients may be willing to compromise the outcome of the same parameter in favor of better outcomes with other efficacy parameters. A patient-individualized efficacy rating permits a patient and clinician to customize efficacy evaluation according to the patient's condition or needs.
    • 本公开涉及用于提供患者个体化功效评级的技术。 不同刺激参数影响疗效。 例如,功效可以是诸如电极组合,刺激幅度,脉冲宽度和脉率之类的参数的函数。 疗效可能因患者而异。 例如,功效可以根据年龄,性别,生理,疾病状态,活动水平或活动情况而变化。 可比较的刺激方案可以根据患者的特征或欲望为不同的患者提供不同的功效水平。 患者可以不同地对功效参数进行排序。 功效参数可以包括期望的治疗效果和不期望的副作用。 对于一个患者,特定功效参数的优化可能是至关重要的。 其他患者可能愿意危及相同参数的结果,有利于其他功效参数的更好结局。 患者个性化的功效评级允许患者和临床医生根据患者的状况或需要定制功效评估。
    • 8. 发明申请
    • TREE-BASED ELECTRICAL STIMULATOR PROGRAMMING FOR PAIN THERAPY
    • 用于疼痛治疗的基于TREE的电刺激器编程
    • WO2007127455A2
    • 2007-11-08
    • PCT/US2007/010381
    • 2007-04-30
    • MEDTRONIC, INC.GERBER, Martin, T.RONDONI, John, C.
    • GERBER, Martin, T.RONDONI, John, C.
    • A61N1/36071A61N1/37247G06F19/00
    • The disclosure describes an implantable stimulation system that guides programming with a therapeutic tree. All possible stimulation parameters are arranged on the therapeutic tree, with each level of the therapeutic tree containing a different stimulation parameter type. Each level includes nodes that are connected to nodes of adjacent levels. A program path is created by moving through nodes of lower levels. The stimulation parameter types are arranged so that coarse adjustments occur at higher levels of the tree and fine adjustments occur at lower levels of the tree. The nodes of the program path define the stimulation parameters of the delivered stimulation therapy. The user may provide information such as efficacy input and/or medication dosage information to the system for identifying the most efficacious program path in treating pain of the patient. Additionally or alternatively, efficacy feedback may be received from physiological parameter sensors.
    • 本公开描述了一种用治疗树引导编程的可植入刺激系统。 所有可能的刺激参数被布置在治疗树上,治疗树的每个水平含有不同的刺激参数类型。 每个级别包括连接到相邻级别的节点的节点。 通过移动较低级别的节点创建程序路径。 刺激参数类型被布置为使得在较高级别的树上进行粗调,并且在较低级别处发生精细调整。 程序路径的节点定义了递送的刺激疗法的刺激参数。 用户可以向系统提供诸如功效输入和/或药物剂量信息的信息,以识别治疗患者疼痛的最有效的程序路径。 附加地或替代地,可以从生理参数传感器接收功效反馈。
    • 10. 发明申请
    • THERAPY PROGRAM MODIFICATION
    • 治疗方案修改
    • WO2009134478A1
    • 2009-11-05
    • PCT/US2009/031806
    • 2009-01-23
    • MEDTRONIC, INC.RONDONI, John, C.GERBER, Martin, T.
    • RONDONI, John, C.GERBER, Martin, T.
    • A61N1/37A61N1/372A61N1/34A61N1/36
    • A61N1/37A61N1/36071A61N1/37247G06F19/00
    • A therapy program may be modified based on information indicative of a change in a therapy field, which may represent a region of a patient's tissue to which therapy is delivered. Upon receiving information indicative of a therapy field change, an algorithmic model of a present therapy field may be generated and compared to an algorithmic model of a baseline therapy field, which indicates a therapy field that provides efficacious therapy to the patient. If a characteristic of the present therapy field differs from the baseline therapy field model, the current therapy program may be modified. In another example, upon receiving information indicative of a therapy field change, the current therapy program may be modified, and an algorithmic model of a therapy field based on the modified therapy program may be compared to a baseline therapy field model to determine whether the modified therapy program is a suitable alternative.
    • 可以基于指示治疗领域的变化的信息来修改治疗程序,其可以代表递送治疗的患者组织的区域。 在接收到指示治疗场变化​​的信息时,可以产生当前治疗领域的算法模型,并将其与基线治疗领域的算法模型进行比较,其指示向患者提供有效治疗的治疗领域。 如果本治疗领域的特征与基线治疗场模型不同,则可以修改当前的治疗程序。 在另一示例中,当接收到指示治疗场变化​​的信息时,可以修改当前治疗程序,并且可以将基于修改的治疗程序的治疗领域的算法模型与基线治疗场模型进行比较,以确定是否修改 治疗方案是一种合适的替代方案。