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    • 84. 发明授权
    • Implantable head mounted neurostimulation system for head pain
    • 用于头痛的植入式头部神经刺激系统
    • US09042991B2
    • 2015-05-26
    • US14460139
    • 2014-08-14
    • Syntilla Medical LLC
    • Kenneth Lyle ReedRobert Raymond Bulger
    • A61N1/36A61N1/05
    • A61N1/3787A61N1/0504A61N1/0526A61N1/0529A61N1/0551A61N1/36075A61N1/37211A61N1/37229A61N1/37247A61N1/375
    • An implantable head-mounted unibody peripheral neurostimulation system is provided for implantation in the head for the purpose of treating chronic head pain, including migraine. The system may include an implantable pulse generator (IPG) from which multiple stimulating leads may extend sufficient to allow for adequate stimulation over multiple regions of the head, preferably including the frontal, parietal and occipital regions. A lead may include an extended body, along which may be disposed a plurality of surface metal electrodes, which may be sub-divided into a plurality of electrode arrays. A plurality of internal metal wires may run a portion of its length and connect the IPG's internal circuit to the surface metal electrodes. The IPG may include a rechargeable battery, an antenna, and an application specific integrated circuit. The IPG may be capable of functional connection with an external radiofrequency unit for purposes that may include recharging, diagnostic evaluation, and programming.
    • 为了治疗慢性头痛,包括偏头痛,提供了一种植入式头戴式一体外周神经刺激系统,用于植入头部。 该系统可以包括可植入脉冲发生器(IPG),多个刺激引线可以从该可植入脉冲发生器延伸足以允许对头部的多个区域进行充分刺激,优选地包括额叶,顶叶和枕叶区域。 引线可以包括延伸体,沿着该延伸体可以设置多个表面金属电极,其可以被细分成多个电极阵列。 多个内部金属线可以延伸其长度的一部分并且将IPG的内部电路连接到表面金属电极。 IPG可以包括可充电电池,天线和专用集成电路。 为了包括充电,诊断评估和编程的目的,IPG可能能够与外部射频单元进行功能连接。
    • 85. 发明授权
    • System for transvascularly stimulating autonomic targets
    • 经血管刺激自主神经系统
    • US09031669B2
    • 2015-05-12
    • US13964807
    • 2013-08-12
    • Cardiac Pacemakers, Inc.
    • Yunlong ZhangHaresh G. SachanandaniDan LiBin Mi
    • A61N1/05A61B5/00A61N1/36A61N1/372A61N1/362
    • A61N1/0587A61B5/4035A61B5/6862A61B5/6876A61N1/057A61N1/36114A61N1/36117A61N1/3627A61N1/37211A61N1/37288
    • Various implantable medical device embodiments stimulate an autonomic neural target from within a pulmonary artery, and comprise at least one electrode, a power supply, a neural stimulator connected to the power supply, and an anchor structure. The neural stimulator is configured to generate a neural stimulation signal for delivery to the neural stimulation target through the at least one electrode. The anchor structure is configured to chronically and securely implant the neural stimulator, the power supply and the at least one electrode within the pulmonary artery. The anchor structure, the neural stimulator, the power supply and the at least one electrode are configured to be implanted through a pulmonary valve into the pulmonary artery. In various embodiments, the neural stimulator is configured to be operational to implement a neural stimulation protocol when chronically implanted within the pulmonary artery without a wired connection through the pulmonary valve.
    • 各种可植入医疗装置实施例从肺动脉内刺激自主神经靶标,并且包括至少一个电极,电源,连接到电源的神经刺激器和锚结构。 神经刺激器被配置为产生神经刺激信号,以通过至少一个电极传递到神经刺激靶。 锚结构被配置为长期且牢固地植入神经刺激器,电源和至少一个电极在肺动脉内。 锚结构,神经刺激器,电源和至少一个电极构造成通过肺动脉瓣植入肺动脉。 在各种实施例中,神经刺激器被配置为在长期植入肺动脉内而不通过肺动脉瓣的有线连接的情况下实施神经刺激方案。
    • 90. 发明授权
    • Heuristic safety net for transitioning configurations in a neural stimulation system
    • 用于神经刺激系统中过渡配置的启发式安全网
    • US08868198B2
    • 2014-10-21
    • US13849375
    • 2013-03-22
    • Boston Scientific Neuromodulation Corporation
    • Dongchul LeeChangfang Zhu
    • A61N1/36A61N1/05
    • A61N1/36185A61N1/0551A61N1/36142A61N1/37211A61N1/37247A61N1/37264
    • A system and method using a plurality of electrodes. An immediate virtual multipole is defined, an immediate electrode configuration emulating the immediate virtual multipole is defined, electrical energy is conveyed to the electrodes in accordance with the immediate electrode configuration, a new virtual multipole is defined by changing a parameter of the immediate virtual multipole by a step size, a new electrode configuration that emulates the new virtual multipole is defined, a difference value as a function of the immediate virtual multipole and the new virtual multipole is computed, the different value is compared to a limit value, electrical energy is conveyed to the electrodes in accordance with the new electrode configuration if the difference value does not exceed the limit value, and the absolute value of the step size is decreased to create a new step size if the difference value does exceed the limit value.
    • 一种使用多个电极的系统和方法。 定义立即虚拟多极,定义仿真立即虚拟多极的立即电极配置,根据直接电极配置将电能传送到电极,新的虚拟多极通过将立即虚拟多极的参数改变 定义步长,模拟新的虚拟多极的新电极配置,计算作为立即虚拟多极和新虚拟多极的函数的差值,将不同值与极限值进行比较,传送电能 如果差值不超过极限值,则根据新电极配置到电极,并且如果差值超过极限值,则步长的绝对值减小以产生新的步长。