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    • 2. 发明申请
    • ELECTROKINETIC INFUSION PUMP SYSTEM
    • 电动输液泵系统
    • WO2007035666A3
    • 2007-10-04
    • PCT/US2006036340
    • 2006-09-18
    • LIFESCAN INCKRULEVITCH PETERBENETT WILLIAMROBERTS NEIL EBOHM SEBASTIANSIEH ZARA
    • KRULEVITCH PETERBENETT WILLIAMROBERTS NEIL EBOHM SEBASTIANSIEH ZARA
    • A61M31/00
    • A61M5/14244A61M5/14248A61M5/1452A61M5/16831A61M5/172A61M2005/14513A61M2205/3317A61M2205/3389
    • Various methods and devices are provided for delivering an infusion liquid using an electrokinetic infusion pump. The electrokinetic infusion pump can generally include an infusion housing having an infusion reservoir. The infusion reservoir has an infusion outlet and is capable of containing an infusion liquid. A plunger is movably coupled to the infusion housing and is adapted to be manually displaced relative to the infusion housing to load the infusion reservoir with infusion liquid. A movable partition can be disposed within the infusion housing and has a first surface in communication with an electrokinetic solution and a second surface, isolated from the first surface, in communication with the infusion reservoir. The electrokinetic infusion pump can further include an electrokinetic engine integrated within the plunger and adapted to selectively deliver electric potential across an electrokinetic porous media to cause the electrokinetic solution within the electrokinetic engine to displace the movable partition to effect delivery of at least a portion of the infusion liquid through the infusion outlet.
    • 提供用于使用电动输液泵输送输液的各种方法和装置。 电动输液泵通常可以包括具有输注储器的输液罩。 输注槽具有输液口,并且能够容纳输液。 柱塞可移动地联接到输注壳体,并且适于相对于输注壳体手动移位以用输注液体加载输注储存器。 可移动隔板可以设置在输注外壳内,并且具有与电动溶液连通的第一表面和与第一表面隔离的与输注储存器连通的第二表面。 电动输液泵还可以包括集成在柱塞内的电动发动机,并适于选择性地跨电动多孔介质输送电势,以使电动发动机内的电动溶液移动可动隔板,从而实现至少一部分 输液通过输液口。
    • 3. 发明申请
    • MALFUNCTION DETECTION VIA PRESSURE PULSATION
    • 通过压力脉冲进行故障检测
    • WO2007035563A2
    • 2007-03-29
    • PCT/US2006036164
    • 2006-09-18
    • LIFESCAN INCKRULEVITCH PETERBOHM SEBASTIANZHAO MINGQIANEX DEON
    • KRULEVITCH PETERBOHM SEBASTIANZHAO MINGQIANEX DEON
    • A61M1/00
    • A61M5/14244A61M5/14248A61M5/1452A61M5/16831A61M5/172A61M2005/14513A61M2205/3317A61M2205/3389
    • Systems and methods of detecting occlusions and fluid-loss conditions (e.g., disconnects and/or leakages) in an infusion pump are discussed. For example, electrokinetic infusion pumps may develop an occlusion in the fluid flow path, which can disrupt control of fluid dispersed from the pump. As well, an infusion set disconnect can also result in a fluid-loss that can be disruptive. Such disruptions can be troublesome to systems that control the infusion pump, such as closed loop controllers. Accordingly, systems and methods described herein can be used to detect such occlusions and fluid-loss conditions during infusion pump operation. For example, a position sensor can be used to monitor fluid flow from the infusion pump, with the measurement being compared with an expected value to detect an occlusion or fluid-loss condition. Other algorithms for utilizing the position sensor are also described.
    • 讨论了检测输液泵中的闭塞和液体流失状况(例如,断开和/或泄漏)的系统和方法。 例如,电动输液泵可能在流体流动路径中形成阻塞,这可能破坏从泵分散的流体的控制。 同样,输液器断开连接也会导致液体损失,这可能是破坏性的。 对于控制输液泵的系统而言,这种中断可能会很麻烦,例如闭环控制器。 相应地,本文描述的系统和方法可用于在输注泵操作期间检测这种闭塞和流体损失状况。 例如,可以使用位置传感器来监测来自输液泵的流体流量,将测量值与期望值进行比较以检测堵塞或流体损失状况。 还描述了用于利用位置传感器的其他算法。
    • 10. 发明申请
    • ANALYTE MEASUREMENT AND MANAGEMENT DEVICE AND ASSOCIATED METHODS
    • 分析测量和管理设备及相关方法
    • WO2009137661A1
    • 2009-11-12
    • PCT/US2009/043125
    • 2009-05-07
    • LIFESCAN, INC.SIEH, ZaraHORWITZ, DavidPRICE, DavidKRULEVITCH, PeterSAVAGE, DonnaSHARLTE, Robert
    • SIEH, ZaraHORWITZ, DavidPRICE, DavidKRULEVITCH, PeterSAVAGE, DonnaSHARLTE, Robert
    • A61B5/00A61M5/172
    • A61B5/4839A61B5/14532A61M5/14244A61M5/1723A61M2005/14208G06F19/00
    • A method for measuring and managing an analyte (e.g., blood glucose) in a bodily fluid includes storing a therapeutic administration protocol in a memory module of an analyte measurement and management device and measuring the analyte in the bodily fluid sample using an analyte measurement module of the device. The method also includes calculating, with a processor module of the device, a recommended therapeutic agent dosage (for example, an insulin dosage) and a recommended administration time for user-activated delivery of the dosage by employing the therapeutic administration protocol. The method further includes displaying the recommended therapeutic agent dosage and administration time to a user on a visual display of the device, delivering a therapeutic agent dosage to the user via a user-activated therapeutic agent delivery device, and detecting the user-activated administration of the therapeutic agent using a delivery device communication module of the device. In addition, the method includes communicating the aforementioned detection to the processor module and/or memory module using the delivery device communication module. The method employs analyte measurement, memory, processor, and delivery device modules, as well as a visual display, and user interface that are integrated as a single hand-held unit.
    • 用于测量和管理体液中的分析物(例如,血糖)的方法包括将分析物测量和管理装置的存储器模块中的治疗性给药方案存储在体液样品中,并使用分析物测量模块 装置。 该方法还包括利用该设备的处理器模块,通过使用治疗性给药方案来计算推荐的治疗剂剂量(例如,胰岛素剂量)和用户激活的剂量递送的推荐给药时间。 该方法还包括在设备的视觉显示上向用户显示推荐的治疗剂剂量和给药时间,经由用户激活的治疗剂递送装置向用户递送治疗剂剂量,以及检测用户激活的给药时间 所述治疗剂使用所述装置的递送装置通信模块。 此外,该方法包括使用传送设备通信模块将上述检测传送到处理器模块和/或存储器模块。 该方法采用分析物测量,存储器,处理器和传送设备模块,以及作为单个手持单元集成的可视显示器和用户界面。