发明名称 Implantable electroacupuncture system and method for reducing hypertension
摘要 An implantable electroacupuncture device (IEAD) treats hypertension through application of stimulation pulses applied at at least one of acupoints PC5, PC6, LI4, ST36, ST37, LI11, LR3, and GB34. The IEAD comprises an implantable, coin-sized, self-contained, leadless electroacupuncture device having at least two electrodes attached to an outside surface of its housing. The device generates stimulation pulses in accordance with a specified stimulation regimen. Power management circuitry within the device allows a primary battery, having a high internal impedance, to be used to power the device. The stimulation regimen generates stimulation pulses during a stimulation session of duration T3 minutes applied every T4 minutes. The duty cycle, or ratio T3/T4, is very low, no greater than 0.05. The low duty cycle and careful power management allow the IEAD to perform its intended function for several years.
申请公布号 US8965511(B2) 申请公布日期 2015.02.24
申请号 US201213598582 申请日期 2012.08.29
申请人 Valencia Technologies Corporation 发明人 Greiner Jeffrey H.;Peterson David K. L.;Thenuwara Chuladatta
分类号 A61N1/00;A61H39/00;A61N1/375 主分类号 A61N1/00
代理机构 代理人 Gold Bryant R.
主权项 1. An Implantable ElectroAcupuncture System (IEAS) for treating hypertension comprising (a) at least one external component, and (b) a small, leadless, thin implantable component having a maximum linear dimension in a first plane of less than 25 mm, and a maximum linear dimension in a second plane orthogonal to the first plane of no more than 2.5 mm, a. wherein the at least one external component comprises a magnetic field generator; and b. wherein the small, leadless, thin implantable component comprises a housing made of a bottom part and a top part that are welded together to create an hermetically-sealed, thin, closed container, the top part and bottom part having respective top and bottom planar surfaces that are substantially parallel to each other and spaced apart by no more than 2.5 mm,at least one feed-through terminal that passes through a portion of a wall of the top part or bottom part, and which allows electrical connection to be made between the inside of the closed container and a location on the outside of the closed container,self-contained electronic circuitry inside of the closed container that, when enabled, generates stimulation pulses during a stimulation session, the stimulation session having a duration of T3 minutes, where T3 is at least 10 minutes, and wherein the electronic circuitry generates a new stimulation session at a rate of once every T4 minutes, where the ratio of T3/T4 is no greater than 0.05, wherein the stimulation pulses are coupled to the at least one feed-through terminal,a sensor on the inside of the closed container adapted to sense the presence or absence of a magnetic field,a power source inside of the closed container that provides operating power for the electronic circuitry, anda symmetrical electrode configuration integrated into an outside surface of at least one of the top or bottom surfaces of the hermetically sealed container, the symmetrical electrode configuration comprising a symmetrical electrode configuration having a central electrode surrounded by an annular electrode, the central electrode having a surface area of at least 12.6 mm2, and the spacing between the closest edges of the central electrode and annular electrode being at least 5 mm, at least one of the central electrode or the annular electrode being electrically connected to the at least one feed-through terminal, wherein a strong electric field gradient line is created in body tissue, when the implantable component of the IEAS is implanted in body tissue and the electronic circuitry is enabled, that extends perpendicularly out from the central electrode on which the electrode configuration resides, thereby directing the stimulation pulses contained in the stimulation sessions to a desired target tissue location located along the strong electric field gradient line, which desired target tissue location resides below the implantable component; and c. wherein the at least one external component modulates a magnetic field which, when sensed by the sensor inside of the hermetically-sealed closed container, conveys information to the electronic circuitry inside of the closed container that controls when and how long the stimulation sessions are applied through the symmetrical electrode configuration.
地址 Valencia CA US