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    • 1. 发明授权
    • Electrochemical sensor and method for continuous analyte monitoring
    • 电化学传感器和连续分析物监测方法
    • US07731835B2
    • 2010-06-08
    • US11038970
    • 2005-01-19
    • Harvey B. BuckMatthias Essenpreis
    • Harvey B. BuckMatthias Essenpreis
    • G01N27/327
    • C12Q1/006A61B5/14532A61B5/1486C12Q1/001C12Q1/004
    • Sensors and a method for detecting an analyte are described. Sensors each have a volume of a hydrophilic medium that retains an amount of analyte proportionate to the concentration of analyte in a biological fluid, electrodes and a redox enzyme in contact with medium, and an electron transfer mediator. The fluid contacts sensors and at initially predetermined intervals intermittently applies a potential to electrode sufficient to oxidize the mediator and sensing current through electrode as a function of the duration of the applied potential. The applied mediator oxidizing applied potential is maintained for a period of time sufficient to determine the rate of change of current with time through electrode. The current flow is correlated with the current flow for known concentrations of the analyte in medium.
    • 描述了传感器和检测分析物的方法。 传感器各自具有一定量的亲水介质,其保留与生物流体,电极和与介质接触的氧化还原酶的分析物浓度成比例的分析物和电子转移介体。 液体接触传感器并且以最初预定间隔间歇地将电位施加到足以氧化介体并将感应通过电极的电流作为施加电位的持续时间的函数。 所施加的介体氧化施加电位保持足够长的时间以确定电流随时​​间的变化通过电极的速率。 目前的流量与已知浓度的分析物在介质中的电流相关。
    • 2. 发明授权
    • Small volume biosensor for continuous analyte monitoring
    • 用于连续分析物监测的小体积生物传感器
    • US07045054B1
    • 2006-05-16
    • US10069308
    • 2000-09-19
    • Harvey B. BuckMatthias Essenpreis
    • Harvey B. BuckMatthias Essenpreis
    • G01N27/327
    • C12Q1/006A61B5/14532A61B5/1486C12Q1/001C12Q1/004
    • Sensors (10, 110, 210, 310, 410) and a method for detecting an analyte are described. Sensors (10, 110, 210, 310, 410) each have a volume of a hydrophilic medium (24) that retains an amount of analyte proportionate to the concentration of analyte in a biological fluid, electrodes (12) and a redox enzyme in contact with medium (24), and an electron transfer mediator. The fluid contacts sensors (10, 110, 210, 310, 410) and at initially predetermined intervals intermittently applies a potential to electrode (12) sufficient to oxidize the mediator and sensing current through electrode (12) as a function of the duration of the applied potential. The applied mediator oxidizing applied potential is maintained for a period of time sufficient to determine the rate of change of current with time through electrode (12). The current flow is correlated with the current flow for known concentrations of the analyte in medium (24).
    • 描述了传感器(10,110,210,310,410)和检测分析物的方法。 传感器(10,110,210,310,410)各自具有体积的亲水介质(24),其保留与生物流体中的分析物浓度成比例的分析物的量,电极(12)和接触中的氧化还原酶 与介质(24)和电子转移介体。 流体接触传感器(10,110,210,310,410)并且以最初预定间隔间歇地向电极(12)施加足以氧化介体并且感测通过电极(12)的电流的电位,作为所述电极 应用潜力。 所施加的介体氧化施加电位被保持足以确定电流随时​​间的变化的速率通过电极(12)的时间。 当前流量与介质(24)中已知浓度的分析物的当前流量相关。
    • 7. 发明授权
    • Method for investigating a scattering medium with intensity-modulated
light
    • 用强度调制光调查散射介质的方法
    • US5713352A
    • 1998-02-03
    • US572641
    • 1995-12-14
    • Matthias EssenpreisHans-Peter HaarDirk BoeckerAlexander Knuettel
    • Matthias EssenpreisHans-Peter HaarDirk BoeckerAlexander Knuettel
    • G01N33/483A61B5/145A61B5/1455G01N21/27G01N21/41G01N21/49A61B5/00
    • G01N21/49
    • The invention concerns a method for investigating a scattering medium, especially a biological matrix, with intensity-modulated light. In order, in such a frequency-domain measuring procedure, to reduce the expenditure on electronics without restricting accuracy of measurement, a method is proposed, in which, in order to investigate a scattering medium, especially a biological matrix, with intensity-modulated light, a high-frequency modulation signal is generated by a frequency generator (18), the intensity of a light emitter (10) is modulated with a modulation signal and the light from the light emitter (10) is radiated into the medium, the modulation signal includes frequency chirps during which the modulation frequency is tuned from an initial frequency to a final frequency, the modulation signal is delivered from the frequency generator (18) via at least two different signal paths (23A, 24) to a signal mixer (31), so that during a frequency chirp the input signals of the signal mixer (31) differ by a differential frequency whose magnitude is a function of the difference between the signal transit times over the at least two signal paths (23A, 24) and of the rate of change of the modulation frequency, wherein at least one of the signal paths includes a light path section (20A) passing through the medium as a measurement signal path (23A), and the output signal of the signal mixer (31) is further processed to produce information relating to the scattering medium (FIG. 2).
    • 本发明涉及用强度调制光来研究散射介质,特别是生物基质的方法。 为了在这样的频域测量过程中,为了减少电子设备的开销而不限制测量精度,提出了一种方法,其中为了研究具有强度调制光的散射介质,特别是生物矩阵 ,由频率发生器(18)产生高频调制信号,用调制信号调制发光体(10)的强度,将来自发光体(10)的光照射到介质中,调制 信号包括调制频率从初始频率调谐到最终频率的频率啁啾,调制信号经由至少两个不同的信号路径(23A,24)从频率发生器(18)传送到信号混合器(31 ),使得在频率啁啾期间,信号混合器(31)的输入信号相差一个差分频率,其幅度是在at信号传输时间之间的差值的函数 至少两个信号路径(23A,24)和调制频率的变化率,其中信号路径中的至少一个包括通过介质作为测量信号路径(23A)的光路部分(20A),以及 信号混合器(31)的输出信号被进一步处理以产生与散射介质有关的信息(图3)。 2)。
    • 9. 发明申请
    • Device for supporting a patient with a chronic or a non-chronic disease and method for operating the device
    • 用于支持患有慢性或非慢性疾病的患者的装置和用于操作该装置的方法
    • US20130211849A1
    • 2013-08-15
    • US13586409
    • 2012-08-15
    • Matthias EssenpreisDirk VoelkelStefan Weinert
    • Matthias EssenpreisDirk VoelkelStefan Weinert
    • G06F19/00
    • G16H40/20G16H40/63
    • A device and method are disclosed for supporting a patient with a disease, comprising a display facility, a user interface, a processor, and a user interface, and with an application module comprising program instructions, which are configured, on executing by the processor to bring about the following: providing medical protocols for diagnostic and/or therapeutic purposes, collecting time information concerning a future event which is a trigger for at least one medical protocol, selecting one of the medical protocols which indicates a group of cohesive protocol events which are spaced apart chronologically over a protocol period in accordance with a protocol regime, monitoring a chronological interval between a current date and the future event, and issuing a user start notice concerning the beginning of the medical protocol at a time which from a chronological point of view lies at least by the protocol period before the future event.
    • 公开了一种用于支持具有疾病的患者的装置和方法,包括显示设施,用户界面,处理器和用户界面,以及包括程序指令的应用模块,所述应用模块被配置为在由处理器执行时 提供以下内容:提供用于诊断和/或治疗目的的医疗协议,收集关于未来事件的时间信息,该事件是至少一个医疗协议的触发器,选择指示一组内聚协议事件的医疗协议之一 按照协议制度在协议周期上按时间顺序隔开,监视当前日期与未来事件之间的时间间隔,并且从按时间顺序的时间点发出关于医疗协议开始的用户启动通知 至少在未来事件发生前的协议期限内。