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    • 1. 发明授权
    • Recovery of alumina values from alunite ore
    • 从铝酸钙矿石回收氧化铝值
    • US4618480A
    • 1986-10-21
    • US641020
    • 1984-08-15
    • Wayne W. HazenDavid L. ThompsonJames E. ReynoldsNicholas J. LombardoPaul B. QueneauJohn P. Hager
    • Wayne W. HazenDavid L. ThompsonJames E. ReynoldsNicholas J. LombardoPaul B. QueneauJohn P. Hager
    • C01D5/00C01F7/06C01F7/47
    • C01F7/0686C01D5/008C01F7/47
    • A novel process for the recovery of alumina and potassium sulfate from alunite is provided comprising leaching the alunite with potassium hydroxide to which no sodium materials have been added, said leach solution being saturated with potassium sulfate. Aluminum values are solubilized into the leachate, and potassium and sulfur values are rendered soluble, but remain in the residue. The leachate is desilicated if necessary, preferably with lime, and aluminum trihydroxide is precipitated therefrom, followed by calcining to alumina product. The residue is leached to solubilize potassium sulfate in a secondary leach and the potassium sulfate product crystallized therefrom. Potassium hydroxide is regenerated from a portion of the potassium sulfate secondary leachate by several methods.Novel procedures for regenerating alkali metal hydroxides from the corresponding sulfates are also provided including routes involving formates and carbonates as intermediates and pyrohydrolysis.
    • 提供了一种从铝酸钠中回收氧化铝和硫酸钾的新方法,包括用不含钠物质的氢氧化钾浸出铝酸钠,所​​述浸出溶液用硫酸钾饱和。 铝的值被溶解到浸出液中,钾和硫的值变得可溶,但残留在残留物中。 必要时,优选用石灰将渗滤液脱气,并从其中沉淀出氢氧化铝,然后煅烧成氧化铝产品。 将残余物浸出以在二次浸出中溶解硫酸钾,并从其中结晶出硫酸钾产物。 通过几种方法从一部分硫酸钾二次浸出液中再生氢氧化钾。 还提供了从相应的硫酸盐再生碱金属氢氧化物的新方法,包括涉及甲酸盐和碳酸盐作为中间体和热解水解的途径。
    • 3. 发明授权
    • Implantable nerve wrap for nerve stimulation configured for far field radiative powering
    • 用于神经刺激的植入式神经包被配置用于远场辐射动力
    • US08989867B2
    • 2015-03-24
    • US13434119
    • 2012-03-29
    • Eric Y. ChowMilton M. MorrisDavid L. Thompson
    • Eric Y. ChowMilton M. MorrisDavid L. Thompson
    • A61N1/00A61N1/378A61N1/36
    • A61N1/3787A61N1/0551A61N1/0556A61N1/3605A61N1/37211A61N1/37223
    • A particular implantable device may include an antenna configured to receive a far field radiative signal. The implantable device may also include a voltage rectifier configured to rectify the far field radiative signal received by the antenna to provide a rectified voltage signal. The implantable device may further include a charge storage element operative to receive the rectified voltage signal and to store charge responsive to the rectified voltage signal. The implantable device may also include a stimulation module powered by the charge storage element. The stimulation module may be operative to generate an electrical stimulation signal to stimulate a target nerve of a patient. The implantable medical device may further include a nerve wrap configured to house the voltage rectifier, the charge storage element, and the stimulation module. The nerve wrap may include one or more electrodes operative to deliver the electrical stimulation signal to the target nerve.
    • 特定的可植入装置可以包括被配置为接收远场辐射信号的天线。 可植入装置还可以包括电压整流器,其被配置为对由天线接收的远场辐射信号进行整流以提供整流的电压信号。 可植入装置还可以包括电荷存储元件,其可操作以接收经整流的电压信号并且响应于整流电压信号来存储电荷。 可植入装置还可以包括由电荷存储元件供电的刺激模块。 刺激模块可操作以产生电刺激信号以刺激患者的目标神经。 可植入医疗装置还可以包括构造成容纳电压整流器,电荷存储元件和刺激模块的神经包裹物。 神经包裹可以包括一个或多个电极,其可操作以将电刺激信号递送到目标神经。
    • 6. 发明申请
    • CLOSED LOOP MEDICAMENT PUMP
    • 闭合循环药泵
    • US20090012504A1
    • 2009-01-08
    • US12233630
    • 2008-09-19
    • David L. Thompson
    • David L. Thompson
    • A61M5/142
    • A61B5/4839A61B5/0002A61B5/0028A61B5/14532
    • A device to determine the level of a substance of interest in a patient's body and provide a therapeutic amount of medicament is disclosed. The level of a substance of interest in the patient's body is determined by iontopheretically sampling the patients' blood and then analyzing the resulting sample to determine the level of the substance of interest. The information about the level of a substance of interest is transmitted to an implanted drug pump in the patient's body. The preferred method of transmitting information about the level of a substance of interest determined by the sensor is transmitted to an implanted drug pump in the patient's body is via a so called “body bus”. The “body bus” is a telemetry system where the patient's own body provides the interconnection between the iontopheretic device and the implanted drug pump.
    • 公开了一种用于确定患者体内感兴趣物质的水平并提供治疗量的药物的装置。 通过对患者血液进行离子电离法取样,然后分析所得样品以确定感兴趣物质的水平来确定患者体内感兴趣物质的水平。 关于感兴趣物质的水平的信息被传送到患者体内的植入药物泵。 传送关于感兴趣物质确定的物质的水平的信息的优选方法通过所谓的“身体总线”传送到患者体内的植入药物泵。 “身体总线”是一种遥测系统,其中病人自己的身体提供了离子电影装置和植入的药物泵之间的互连。
    • 7. 发明授权
    • Automatic voice and data recognition for implanted medical device instrument systems
    • 植入医疗器械仪器系统的自动语音和数据识别
    • US07319962B2
    • 2008-01-15
    • US09731178
    • 2000-12-06
    • Steven D. GoedekeDavid L. Thompson
    • Steven D. GoedekeDavid L. Thompson
    • G10L21/00A61N1/08
    • A61N1/37247A61B5/0031A61B5/749G10L2015/223G10L2015/228
    • The voice controlled system of the present invention permits hands-free interactive control of a medical data processing instrument that interfaces with an implanted medical device. In an example embodiment, the system includes a microphone and a speech recognition circuit coupled to the microphone and adapted to recognize an audio signal from the microphone. The audio signal corresponds to one of a subset of commands from a set of commands and each command corresponds to a task to be performed on the implanted medical device. The speech recognition circuit is further adapted to convert the audio signal into a selection code and match the selection code to one of the subset of commands. The system further includes a display device and a processor arrangement coupled to the speech recognition circuit and to the display device. The processor arrangement is configured to receive data indicative of an implanted medical device state and select the subset of commands as a function of the device state. The processor arrangement is also configured to display the device state data and the subset of commands and generate a control signal in response to the selection code match. The system also includes a medical data processing instrument coupled to the processor arrangement that is adapted to, in response to the control signal, execute the one of the subset of commands and to display data generated in response to execution of the one of the subset of commands.
    • 本发明的语音控制系统允许与植入的医疗装置接口的医疗数据处理装置的免提交互式控制。 在示例实施例中,系统包括麦克风和耦合到麦克风的语音识别电路,并适于识别来自麦克风的音频信号。 音频信号对应于来自一组命令的命令子集中的一个,并且每个命令对应于将在植入的医疗装置上执行的任务。 语音识别电路还适用于将音频信号转换成选择码并将选择码与命令子集中的一个进行匹配。 该系统还包括耦合到语音识别电路和显示装置的显示装置和处理器装置。 处理器布置被配置为接收指示植入的医疗设备状态的数据,并且根据设备状态选择命令的子集。 处理器布置还被配置为显示设备状态数据和命令子集,并且响应于选择代码匹配而生成控制信号。 所述系统还包括耦合到所述处理器装置的医疗数据处理装置,所述医疗数据处理装置适于响应于所述控制信号执行所述命令子集中的一个并且显示响应于所述子集 命令。
    • 9. 发明授权
    • Non-contact EKG
    • 非接触式EKG
    • US06728576B2
    • 2004-04-27
    • US10004045
    • 2001-10-31
    • David L. ThompsonSuzanne L. Wilson
    • David L. ThompsonSuzanne L. Wilson
    • A61N1372
    • A61N1/37235A61N1/37211A61N1/37252A61N1/37282
    • A non-tissue contacting electrode system senses physiologic signals from a patient during implant and/or followup of an implantable medical device (IMD) via an external programmer or other monitoring instrument. These sensing systems are electrically connected to the circuitry of the external device and detect cardiac depolarization waveforms displayable as electrocardiographic tracings on the instrument screen when the programming head is positioned above an implanted pacemaker (or other implanted device) so equipped with a non-tissue contacting electrode system. The structure and system provide an enhanced capability for detecting and gathering physiological signals from a patient with minimally invasive patient contact.
    • 非组织接触电极系统通过外部编程器或其他监测仪器在植入和/或后续植入式医疗装置(IMD)期间感测来自患者的生理信号。 这些感测系统电连接到外部设备的电路,并且当编程头位于植入式起搏器(或其他植入装置)上方时,检测可以作为仪器屏幕上的心电图追踪显示的心脏去极化波形,如此配备非组织接触 电极系统。 该结构和系统提供了用于从具有微创患者接触的患者检测和收集生理信号的增强的能力。