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    • 2. 发明授权
    • Power supply monitoring for an implantable device
    • 可植入设备的电源监控
    • US08565881B2
    • 2013-10-22
    • US12820841
    • 2010-06-22
    • Randolph K. ArmstrongScott A. ArmstrongD. Michael InmanTimothy L. Scott
    • Randolph K. ArmstrongScott A. ArmstrongD. Michael InmanTimothy L. Scott
    • A61N1/00
    • A61N1/08A61N1/3708A61N1/378
    • A method and an apparatus for projecting an end of service (EOS) and/or an elective replacement indication (ERI) of a component in an implantable device is provided. The method comprises measuring the measured voltage of the energy storage device, and determining whether the measured voltage is less than a transition voltage. When the measured voltage is less than the transition voltage, determining a time period remaining until an end of service of the energy storage device is based upon a function of the measured voltage. When the measured voltage is greater than or equal to the transition voltage, determining a time period remaining until an end of service of the energy storage device is based upon a function of the total charge depleted. The transition voltage is a voltage associated with the transition point of non-linearity in the battery voltage depletion curve.
    • 提供了一种用于在可植入装置中投射组件的服务结束(EOS)和/或选择性替换指示(ERI)的方法和装置。 该方法包括测量能量存储装置的测量电压,以及确定测得的电压是否小于转换电压。 当测量的电压小于转换电压时,确定剩余的能量储存装置的使用时间是基于所测量的电压的函数。 当测量的电压大于或等于转换电压时,确定能量存储装置的使用结束之前剩余的时间是基于耗尽的总电荷的函数。 转换电压是与电池电压耗尽曲线中的非线性转变点相关的电压。
    • 6. 发明授权
    • Implantable defibrillator with stacked transistor subassemblies
    • 具有堆叠晶体管子组件的可植入除颤器
    • US5954751A
    • 1999-09-21
    • US7665
    • 1998-01-15
    • Philip A. ChenXiaohai T. HeScott A. ArmstrongThomas G. Sosebee
    • Philip A. ChenXiaohai T. HeScott A. ArmstrongThomas G. Sosebee
    • A61N1/375H05K1/14H05K1/18A61N1/39
    • A61N1/375A61N1/3758H05K1/141H05K1/181
    • An implantable cardiac defibrillator is provided. The implantable cardiac defibrillator includes a can, a storage cell for powering the defibrillator, and a circuit module disposed in the can for controlling the defibrillator. The circuit module has a first substrate, a first die coupled to the first substrate, a second die, and a second substrate coupled to and disposed between the first die and the second die. The second substrate has a first plurality of conductors to carry electrical signals to and from the first die and a second plurality of conductors to carry electrical signals to and from the second die. The die may be any of a number of types of electronic components, such as power transistors, memory chips, or others. The stacking of the die saves board space, allowing for further miniaturization or incorporation of additional electronic components.
    • 提供可植入的心脏除颤器。 可植入心脏除颤器包括罐,用于为去纤颤器供电的存储单元,以及设置在罐中的用于控制除颤器的电路模块。 电路模块具有第一基板,耦合到第一基板的第一管芯,第二管芯和耦合到第一管芯和第二管芯之间的第二基板。 第二衬底具有第一多个导体,用于将电信号传送到第一管芯和从第一管芯传送电信号,以及第二多个导体,以将电信号传送到第二管芯和从第二管芯传送电信号。 芯片可以是许多类型的电子部件中的任何一种,诸如功率晶体管,存储芯片等。 模具的堆叠可节省电路板空间,从而进一步小型化或并入额外的电子元件。
    • 10. 发明授权
    • Noninvasively adjustable gastric band
    • 非侵入性可调节胃带
    • US07899540B2
    • 2011-03-01
    • US11118980
    • 2005-04-29
    • Steven E. MaschinoSteven M. ParnisScott A. Armstrong
    • Steven E. MaschinoSteven M. ParnisScott A. Armstrong
    • A61N1/36
    • A61F5/0026A61F5/005A61N1/36007
    • A method and apparatus for treatment of an eating disorder includes electrically stimulating the vagus nerve of the lower esophagus, cardia, esophageal/cardia junction, cardia/fundus junction or upper stomach so as to induce afferent action potentials on the vagus nerve. A device comprising a gastric band including stimulation electrodes may be noninvasively adjusted after implantation to provide increased or decreased restriction on the patient's gastrointestinal tract. Each stimulus may be administered as a series of programmed pulses of defined amplitude, duration and period, to evoke a responsive signal to the brain by the target nerve, effective for producing a temporary feeling of satiety in the person. A programmable implantable stimulus generator may be operatively coupled to a nerve electrode. Methods are also provided to identify electrodes nearest to a branch of the vagus nerve to apply an electrical stimulation signal with improved efficiency.
    • 用于治疗进食障碍的方法和装置包括电刺激下食道,贲门,食管/贲门交界处,贲门/眼底结或上胃的迷走神经,以诱导迷走神经的传入动作电位。 包括刺激电极的胃带的装置可以在植入后进行非侵入性调整,以对患者的胃肠道提供增加或减少的限制。 每个刺激可以作为一系列定义的幅度,持续时间和周期的编程脉冲施用,以引起目标神经对脑的响应信号,有效地在人体中产生暂时的饱腹感。 可编程植入式刺激发生器可以可操作地耦合到神经电极。 还提供了用于识别最靠近迷走神经分支的电极以提高效率的电刺激信号的方法。