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    • 32. 发明申请
    • PERCEPTION CALIBRATION OF NEURAL TISSUE USING FIELD TROLL
    • 使用现场手册对神经组织的认知校准
    • WO2016048967A1
    • 2016-03-31
    • PCT/US2015/051365
    • 2015-09-22
    • BOSTON SCIENTIFIC NEUROMODULATION CORPORATION
    • MOFFITT, Michael A.HERSHEY, Bradley LawrenceZHU, ChangfangPARRAMON, JordiKOTHANDARAMAN, Sridhar
    • A61N1/372A61N1/36
    • A61N1/36132A61N1/0551A61N1/36071A61N1/36185A61N1/37247
    • An example of a system may include an electrode arrangement, a neural modulation generator configured to use electrodes in the electrode arrangement to generate a modulation field, a communication module configured to receive commands, a memory configured to store modulation field parameter data, and a controller configured to control the neural modulation generator to generate the modulation field. The controller may be configured to implement a trolling routine to troll the modulation field through neural tissue positions, and implement a marking routine multiple times as the modulation field is trolled through the neural tissue positions to identify when the modulation field provides patient-perceived modulation. The marking procedure implemented by the controller may receive a marking command that indicates that a modulation intensity achieved the patient-perceived modulation, and store in the memory the modulation field parameter data that affects the modulation intensity in response to receiving the marking command.
    • 系统的示例可以包括电极装置,被配置为在电极装置中使用电极以产生调制场的神经调制发生器,被配置为接收命令的通信模块,被配置为存储调制场参数数据的存储器和控制器 被配置为控制神经调制发生器以产生调制场。 控制器可以被配置为实现拖曳程序以通过神经组织位置来拖动调制场,并且当调制域被牵引穿过神经组织位置时,多次执行标记程序,以识别调制域何时提供患者感知的调制。 由控制器执行的标记过程可以接收指示调制强度达到患者感知调制的标记指令,并且响应于接收到标记命令而将影响调制强度的调制场参数数据存储在存储器中。
    • 34. 发明申请
    • NEUROMODULATION SYSTEM AND METHOD FOR PRODUCING MULTI-PHASIC FIELDS
    • 用于产生多相场的神经调节系统和方法
    • WO2018075791A1
    • 2018-04-26
    • PCT/US2017/057426
    • 2017-10-19
    • BOSTON SCIENTIFIC NEUROMODULATION CORPORATION
    • PARRAMON, JordiZHANG, TianheCARBUNARU, Rafael
    • A61N1/36
    • A61N1/36189A61N1/0551A61N1/36062A61N1/36071A61N1/36146A61N1/36164A61N1/36167A61N1/37247
    • Multi-phasic fields (2206) are to be produced at a neuromodulation site using electrodes. A first phase (2202) is to be directed at a target region in order to inject a first-polarity electrical charge into the target region and a second phase (2204) is to be directed at portions of the neuromodulation site other than the target region in order to inject a second-polarity electrical charge, opposite the first-polarity electrical charge, into those portions of the neuromodulation site to essentially neutralize the first-polarity charge injected at the neuromodulation site while maintaining at least a portion of the first-polarity charge at the target region. In some cases, each electrode used as an anode to produce the first phase is to be used as a cathode to produce the second phase and each electrode used as a cathode to produce the first phase is to be used as an anode to produce the second phase.
    • 使用电极将在神经调节位点产生多阶段场(2206)。 第一阶段(2202)将被引导到目标区域以便将第一极性电荷注入到目标区域中,并且第二阶段(2204)将被指引到除了目标区域之外的神经调节位点的部分 为了将与第一极性电荷相反的第二极性电荷注入神经调节位点的那些部分中以基本中和在神经调节位点处注入的第一极性电荷,同时保持第一极性的至少一部分 在目标区域收费。 在一些情况下,将用作阳极以产生第一相的每个电极用作阴极以产生第二相,并且将用作阴极以产生第一相的每个电极用作阳极以产生第二相 相。
    • 36. 发明申请
    • SUB-PERCEPTION MODULATION RESPONSIVE TO PATIENT INPUT
    • 对患者输入的子感觉调节
    • WO2016048976A1
    • 2016-03-31
    • PCT/US2015/051378
    • 2015-09-22
    • BOSTON SCIENTIFIC NEUROMODULATION CORPORATION
    • PARRAMON, JordiHERSHEY, Bradley LawrenceMOFFITT, Michael A.ZHU, Changfang
    • A61N1/36A61N1/05A61N1/372
    • A61N1/36132A61N1/0551A61N1/36071A61N1/36139A61N1/36142A61N1/37247
    • An example of a system may include electrodes on at least one lead configured to be operationally positioned for use in modulating neural tissue. The neural tissue may include at least one of dorsal horn tissue, dorsal root tissue or dorsal column tissue. The system may include an implantable device including a neural modulation device and a controller. The neural modulation device may be configured to use at least some of the electrodes to generate a modulation field to deliver sub-perception modulation to the neural tissue. The sub-perception modulation may have an intensity below a patient-perception threshold. The patient-perception threshold may be a boundary below which a patient does not sense generation of the modulation field. The controller may be configured to control the neural modulation device to generate the modulation field, and automatically adjust the modulation field in response to a patient input.
    • 系统的示例可以包括至少一个引线上的电极,其被配置为可操作地定位以用于调节神经组织。 神经组织可以包括背角组织,背根组织或背侧组织中的至少一个。 该系统可以包括包括神经调制装置和控制器的可植入装置。 神经调制装置可以被配置为使用至少一些电极来产生调制场,以将子感知调制传递给神经组织。 子感知调制可能具有低于患者感知阈值的强度。 患者感知阈值可以是边界,在该边界下,患者不会感测到调制场的产生。 控制器可以被配置为控制神经调制装置以产生调制场,并且响应于患者输入自动调整调制场。
    • 38. 发明申请
    • SYSTEMS FOR ADJUSTING THE COMPLIANCE VOLTAGE IN A NEUROMODULATION DEVICE
    • 用于调节神经修正装置中的合格电压的系统
    • WO2015031136A1
    • 2015-03-05
    • PCT/US2014/051941
    • 2014-08-20
    • BOSTON SCIENTIFIC NEUROMODULATION CORPORATION
    • SHI, Jess WeiqianPARRAMON, JordiMARNFELDT, Goran N.
    • A61N1/36A61N1/05
    • A61N1/36153A61N1/0534A61N1/36125A61N1/36128A61N1/36139A61N1/36178
    • A therapeutic neuromodulation system configured for providing therapy to a patient. The therapeutic neuromodulation system comprises a plurality of electrical terminals configured for being respectively coupled to a plurality of electrodes implanted within tissue, analog output circuitry configured for delivering therapeutic electrical energy between the plurality of electrical terminals in accordance with a set of modulation parameters that includes a defined current value, a voltage regulator configured for supplying an adjustable compliance voltage to the analog output circuitry, and control/processing circuitry configured for automatically performing a compliance voltage calibration process at a compliance voltage adjustment interval by periodically computing an adjusted compliance voltage value as a function of a compliance voltage margin. The control/processing circuitry may also be configured for automatically adjusting at least one of the compliance voltage adjustment interval and the compliance voltage margin during the compliance voltage calibration process.
    • 被配置为向患者提供治疗的治疗性神经调节系统。 治疗性神经调节系统包括被配置为分别耦合到植入组织内的多个电极的多个电端子,模拟输出电路被配置为根据一组调制参数在多个电端子之间递送治疗电能,所述调制参数包括 定义的电流值,被配置为向模拟输出电路提供可调整的顺应性电压的电压调节器,以及被配置为通过周期性地将调整的顺应性电压值周期性地计算为顺应性电压调整间隔来自动执行遵从电压校准过程的控制/处理电路, 符合电压裕度的功能。 控制/处理电路还可以被配置为在顺应性电压校准过程期间自动调整顺应性电压调节间隔和顺应性电压裕度中的至少一个。