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    • 31. 发明申请
    • Methods and Systems for Attenuating the Tolerance Response to a Drug
    • 减轻药物耐受反应的方法和系统
    • US20090030403A1
    • 2009-01-29
    • US11829821
    • 2007-07-27
    • Kent W. Leyde
    • Kent W. Leyde
    • G06F19/00
    • G06F19/3456Y02A90/22Y02A90/26
    • Methods are provided for modulating a drug response comprising determining that a patient has an elevated or reduced susceptibility for a neurological event; outputting a signal that indicates to the patient to administer an acute dosage of a pharmacological agent that is sufficient to modulate the patient's susceptibility for the neurological event, wherein the drug response is modulated. Systems are also provided for treating epilepsy comprising an electrode array configured to receive a signal from a patient; a processing assembly configured to receive and process the signal to determine the patient's susceptibility for a neurological event; an output assembly configured to produce an output that indicates to the patient to administer an acute dosage of a pharmacological agent that is sufficient to reduce the patient's susceptibility for the neurological event, wherein the drug response to the pharmacological agent is attenuated.
    • 提供了用于调节药物应答的方法,包括确定患者对神经性事件的易感性升高或降低; 输出指示给患者的信号,以施用足以调节患者对神经系统事件的敏感性的药物的急性剂量,其中调节药物反应。 还提供了用于治疗癫痫的系统,其包括构造成从患者接收信号的电极阵列; 配置成接收和处理信号以确定患者对神经性事件的易感性的处理组件; 输出组件,其被配置为产生输出,其向患者指示施用足以降低患者对神经系统事件的易感性的急性剂量的药理学试剂,其中对药理学试剂的药物反应减弱。
    • 33. 发明授权
    • Common mode signal and circuit fault detection in differential signal
detectors
    • 差分信号检测器中的共模信号和电路故障检测
    • US5650750A
    • 1997-07-22
    • US398377
    • 1995-03-03
    • Kent W. LeydeThomas D. LysterDaniel J. Powers
    • Kent W. LeydeThomas D. LysterDaniel J. Powers
    • H03F3/45
    • H03F3/45479H03F2200/261
    • The present invention is an apparatus and method for detecting differential mode signals in an environment where differential mode signals co-exist, and might be corrupted by, common mode signals. The most basic apparatus of the present invention essentially comprises first and second input leads through which both differential mode and common mode signals are input; a first amplifier block having a gain that is substantially one; and at least an inverting node and a non-inverting node connected to the first and second input leads. The output of the amplifier block is fed back to the input of the non-inverting node of the amplifier block in a manner to increase differential mode impedance while maintaining a low common mode impedance. Various embodiments of the basic presently claimed circuitry provides for additional methods of monitoring the level of common-mode signal introduced to the apparatus and other fault detection functions.
    • 本发明是一种用于在差分模式信号共存并可能被共模信号损坏的环境中检测差模信号的装置和方法。 本发明最基本的装置基本上包括输入差模和共模信号的第一和第二输入引线; 第一放大器块,其具有实质上一个的增益; 以及至少连接到第一和第二输入引线的反相节点和非反相节点。 放大器模块的输出以增加差分模式阻抗的方式反馈到放大器模块的非反相节点的输入,同时保持低共模阻抗。 基本的当前要求保护的电路的各种实施例提供监视引入到该装置的共模信号的电平和其他故障检测功能的附加方法。
    • 37. 发明授权
    • Battery system and method of determining battery condition
    • 电池系统及确定电池状况的方法
    • US06693431B1
    • 2004-02-17
    • US09141707
    • 1998-08-28
    • Kent W. LeydeDaniel J. Powers
    • Kent W. LeydeDaniel J. Powers
    • G01N27416
    • A61N1/3975G01R31/3606G01R31/3648H02J7/0013
    • A battery system including a main battery cell having a first capacity; a sense battery cell connected in series with the main battery cell, the sense battery cell having a second capacity less than the first capacity; and a battery capacity indicator monitoring a parameter of the sense battery cell. A method of determining a battery condition in a battery operated device, the method including providing a battery system, the battery system comprising a main battery cell having a first capacity and a sense battery cell, the sense battery cell having a second capacity less than the first capacity, the main battery cell and the sense battery cell being coupled in series; monitoring a parameter of the sense battery cell; and determining a condition of the main battery cell from the monitored sense battery cell parameter.
    • 一种电池系统,包括具有第一容量的主电池单元; 感测电池单元,与所述主电池单元串联连接,所述感测电池单元具有小于所述第一容量的第二容量; 以及监视感测电池单元的参数的电池容量指示器。 一种确定电池供电装置中的电池状况的方法,所述方法包括提供电池系统,所述电池系统包括具有第一容量的主电池单元和感测电池单元,所述感测电池单元具有小于 第一容量,主电池单元和感测电池单元串联耦合; 监测感测电池单元的参数; 以及从所监视的感测电池单元参数确定所述主电池单元的状态。
    • 39. 发明授权
    • Percutaneous electrical therapy system with sharp point protection
    • 经皮电疗治疗系统具有尖锐保护
    • US06539264B1
    • 2003-03-25
    • US09451547
    • 1999-12-01
    • Jon M. BishayPaul LeonardKent W. Leyde
    • Jon M. BishayPaul LeonardKent W. Leyde
    • A61N104
    • A61N1/0551A61N1/0502A61N1/36017A61N1/36021A61N1/375
    • A percutaneous electrical therapy system includes sharp point protection. In one embodiment, the system includes a control unit; an electrode assembly adapted to deliver electrical therapy to a patient, where the electrode assembly has an electrode electrically connectable to the control unit, the electrode having a sharp point at a distal end adapted to be inserted into the patient's tissue; and a sharp point protection assembly operable with the electrode assembly for reducing the risk of unintended exposure to the electrode's point. The system can also include an electrode assembly and sharp point protection assembly for a percutaneous electrical therapy system, as described above, apart from the control unit. In another embodiment, a method of performing percutaneous electrical therapy can include providing an electrode assembly having an electrode, the electrode having a sharp point at a distal end; inserting the sharp point of the electrode into a patient's tissue without exposing the sharp point to anyone but the patient; and applying an electrical signal to the electrode from a control unit.
    • 经皮电疗系统包括尖锐点保护。 在一个实施例中,系统包括控制单元; 电极组件,其适于将电疗法递送到患者,其中所述电极组件具有可电连接到所述控制单元的电极,所述电极在适于插入患者组织的远端具有尖锐点; 以及可与电极组件一起操作的尖锐点保护组件,用于减少意外暴露于电极点的风险。 除了控制单元之外,系统还可以包括用于经皮电疗系统的电极组件和尖锐点保护组件,如上所述。 在另一个实施例中,执行经皮电疗法的方法可以包括提供具有电极的电极组件,所述电极在远端具有尖锐点; 将电极的尖锐点插入病人的组织中,而不会将尖锐点暴露于除病人之外的任何人; 以及从控制单元向电极施加电信号。
    • 40. 发明授权
    • Housing for an implantable medical device
    • 可植入医疗器械的外壳
    • US09259591B2
    • 2016-02-16
    • US12343386
    • 2008-12-23
    • David BrownChristopher GenauKent W. LeydeShan GawJeffrey Stewart
    • David BrownChristopher GenauKent W. LeydeShan GawJeffrey Stewart
    • A61N1/378A61N1/375A61N1/372
    • A61N1/3787A61N1/37223A61N1/375A61N1/3758
    • An implantable medical device having a concave ceramic housing component; a concave metal housing component attached to the ceramic housing component to form a hermetically sealed enclosure; and an electronic trans-housing magnetic flux component disposed within the enclosure. Another aspect of the invention provides an implantable medical device having a ceramic housing component; a metal housing component; a circumferential sealing member attached to a periphery of the ceramic housing component and to a periphery of the metal housing component to form a hermetically sealed enclosure; and an electronic trans-housing magnetic flux component disposed within the enclosure. Still another aspect of the invention provides an implantable medical device with a first metal housing component; a second metal housing component, the second metal housing component forming an opening; a ceramic housing component disposed in the opening, the first metal housing component, the second metal housing component and the ceramic housing component cooperating to form a hermetically sealed enclosure; and an electronic trans-housing magnetic flux component disposed within the enclosure.
    • 一种具有凹形陶瓷壳体部件的可植入医疗装置; 连接到陶瓷壳体部件的凹入金属壳体部件以形成密封的外壳; 以及设置在所述外壳内的电子跨壳体磁通部件。 本发明的另一方面提供一种具有陶瓷壳体部件的可植入医疗装置; 金属外壳部件; 周向密封构件,其附接到陶瓷壳体部件的周边和金属壳体部件的周边,以形成密封的外壳; 以及设置在所述外壳内的电子跨壳体磁通部件。 本发明的另一方面提供一种具有第一金属壳体部件的可植入医疗装置; 第二金属壳体部件,所述第二金属壳体部件形成开口; 设置在所述开口中的陶瓷壳体部件,所述第一金属壳体部件,所述第二金属壳体部件和所述陶瓷壳体部件协作以形成气密密封的壳体; 以及设置在所述外壳内的电子跨壳体磁通部件。