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    • 2. 发明授权
    • Closed-loop therapy adjustment
    • 闭环治疗调整
    • US08903486B2
    • 2014-12-02
    • US12966827
    • 2010-12-13
    • Duane L. BourgetKeith A. Miesel
    • Duane L. BourgetKeith A. Miesel
    • A61N1/00A61N1/372A61N1/36
    • A61N1/37247A61N1/36014A61N1/36071A61N1/37252
    • Techniques for detecting a value of a sensed patient parameter, and automatically delivering therapy to a patient according to therapy information previously associated with the detected value, are described. In exemplary embodiments, a medical device receives a therapy adjustment from the patient. In response to the adjustment, the medical device associates a sensed value of a patient parameter with therapy information determined based on the adjustment. Whenever the parameter value is subsequently detected, the medical device delivers therapy according to the associated therapy information. In this manner, the medical device may “learn” to automatically adjust therapy in the manner desired by the patient as the sensed parameter of the patient changes. Exemplary patient parameters that may be sensed for performance of the described techniques include posture, activity, heart rate, electromyography (EMG), an electroencephalogram (EEG), an electrocardiogram (ECG), temperature, respiration rate, and pH.
    • 描述了用于检测感测到的患者参数的值并根据先前与检测值相关联的治疗信息自动地向患者递送治疗的技术。 在示例性实施例中,医疗设备从患者接收治疗调节。 响应于调整,医疗设备将感测到的患者参数值与基于调整确定的治疗信息相关联。 每当随后检测到参数值时,医疗装置根据相关联的治疗信息递送治疗。 以这种方式,当患者的感测参数改变时,医疗设备可以“学习”以患者期望的方式自动调整治疗。 可以感测用于执行所述技术的示例性患者参数包括姿势,活动,心率,肌电图(EMG),脑电图(EEG),心电图(ECG),温度,呼吸速率和pH。
    • 6. 发明申请
    • Waveforms for Remote Electrical Stimulation Therapy
    • 用于远程电刺激治疗的波形
    • US20120197356A1
    • 2012-08-02
    • US13355122
    • 2012-01-20
    • Xuan WeiDuane L. Bourget
    • Xuan WeiDuane L. Bourget
    • A61N1/36
    • A61N1/36171A61N1/36189
    • Electrical stimulation systems and methods are configured to deliver remote electrical stimulation to a patient. Stimulation waveforms are employed that are designed to penetrate tissue within a patient to transmit the electrical stimulation from an origination site to a remote delivery site. The waveforms are defined by a series of pulses, which are characterized by a number of parameters, including pulse width, pulse frequency, constant voltage or constant current amplitude, and electrode polarity (anode or cathode). The waveforms include an envelope electrical stimulation pulse train including charge balanced pulses modulated by a high frequency carrier signal configured to deeply penetrate patient tissue to carry the electrical pulse train from an origination site to a remote delivery site.
    • 电刺激系统和方法被配置为向患者传送远程电刺激。 采用刺激波形,其被设计为穿透患者体内的组织,以将电刺激从始发部位传输到远程递送部位。 波形由一系列脉冲定义,脉冲的特征在于包括脉冲宽度,脉冲频率,恒定电压或恒定电流幅度以及电极极性(阳极或阴极)的多个参数。 这些波形包括包络电刺激脉冲串,其包括被高频载波信号调制的电荷平衡脉冲,该高频载波信号被配置为深入穿透患者组织,以将电脉冲串从始发部位运送到远程传送部位。
    • 10. 发明授权
    • Patient programmer for implantable medical device with audio locator signal
    • 具有音频定位信号的可植入医疗设备的患者程序员
    • US06647299B2
    • 2003-11-11
    • US09960095
    • 2001-09-21
    • Duane L. Bourget
    • Duane L. Bourget
    • A61N137
    • A61N1/08Y10S128/903
    • A system and method of locating the desired telemetry location for an implantable medical device includes a programmer having a patient interface to allow activation of the programmer, a bi-directional communications link between the programmer and the implantable device, an automatic gain control for determining the gain setting for a received signal from the implantable device, and an audio transducer for emitting audio signals to the patient. The bi-directional communications link enables the programmer to locate the desired telemetry location for the implantable device, the automatic gain control provides for optimum telemetry communication between the programmer and the implantable device, and the audio transducer generates audio signals indicative of the telemetry communication between the programmer and the implantable device.
    • 定位用于可植入医疗设备的所需遥测位置的系统和方法包括具有患者接口以允许编程器激活的编程器,编程器和可植入装置之间的双向通信链路,用于确定 用于来自可植入装置的接收信号的增益设置,以及用于向患者发射音频信号的音频换能器。 双向通信链路使得编程器能够定位用于可植入装置的期望的遥测位置,自动增益控制提供编程器和可植入装置之间的最佳遥测通信,并且音频传感器产生指示在可植入装置之间的遥测通信的音频信号 编程器和可植入装置。