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    • 15. 发明申请
    • DEVICE AND METHOD FOR SELF-REFERENCED CONFIDENCE TEST
    • 自我信心测试的设备和方法
    • US20120079897A1
    • 2012-04-05
    • US12895361
    • 2010-09-30
    • Sam KavusiChristoph Lang
    • Sam KavusiChristoph Lang
    • G01N33/00
    • G01N33/48707
    • A system and method of providing a confidence test in one embodiment includes determining a first quality metric based upon a first and a second test environment wherein the second test environment is different from the first test environment, exposing a sample to a plurality of test sites, establishing the first test environment at a first of the plurality of test sites, establishing the second test environment at a second test site, obtaining a first detection signal associated with the first of the plurality of test sites exposed to the sample and at the first test environment, obtaining a second detection signal associated with the second of the plurality of test sites exposed to the sample and at the second test environment, determining a second quality metric based upon the first detection signal and the second detection signal, and comparing the second quality metric with the first quality metric.
    • 在一个实施例中提供置信度测试的系统和方法包括基于第一和第二测试环境确定第一质量度量,其中第二测试环境与第一测试环境不同,将样本暴露于多个测试位置, 在所述多个测试点中的第一测试场所建立所述第一测试环境,在第二测试位置建立所述第二测试环境,获得与暴露于所述样品的所述多个测试点中的第一测试位点相关联的第一检测信号,以及在所述第一测试 获得与所述多个测试站点中的第二个暴露于所述样本并在所述第二测试环境相关联的第二检测信号,基于所述第一检测信号和所述第二检测信号确定第二质量度量,以及将所述第二质量 度量与第一个质量度量。
    • 17. 发明申请
    • BIOMARKER MONITORING DEVICE AND METHOD
    • 生物标记监测装置和方法
    • US20120197534A1
    • 2012-08-02
    • US13017391
    • 2011-01-31
    • Sam KavusiChristoph Lang
    • Sam KavusiChristoph Lang
    • G06F19/00
    • G06F19/28G16H10/40G16H15/00G16H50/30
    • A biomarker monitoring method and system in one embodiment includes a communications network, a portable wellness device configured to form a communication link with the communications network, the portable wellness device including a detector configured to detect at least one biomarker in a biologic sample, a first memory, a plurality of program instructions stored in the first memory, and a processing circuit operably connected to the first memory and configured to execute the program instructions to generate wellness data based upon detection of the at least one biomarker in the biologic sample, and a remote user interface operably connected to the communications network and configured to render the wellness data.
    • 在一个实施方案中的生物标志物监测方法和系统包括通信网络,配置为与通信网络形成通信链路的便携式健康设备,便携式健康设备包括被配置成检测生物样品中的至少一种生物标志物的检测器, 存储器,存储在第一存储器中的多个程序指令以及可操作地连接到第一存储器并且被配置为执行程序指令以基于生物样本中的至少一个生物标志物的检测来生成健康数据的处理电路,以及 远程用户界面可操作地连接到通信网络并且被配置为呈现健康数据。
    • 18. 发明申请
    • Array with Extended Dynamic Range and Associated Method
    • 具有扩展动态范围和关联方法的阵列
    • US20110195853A1
    • 2011-08-11
    • US12701712
    • 2010-02-08
    • Sam KavusiMichaela LaupheimerChristoph Lang
    • Sam KavusiMichaela LaupheimerChristoph Lang
    • C40B30/04
    • G01N33/54306G01N33/558
    • A system and method of quantitating the concentration of a molecule of interest in one embodiment includes establishing a plurality of test environments at a plurality of test sites, each of the plurality of test environments associated with one of a plurality of response curves, each of the plurality of response curves different from the other of the plurality of response curves, storing a combined response curve resulting from a summation of the plurality of response curves, exposing the plurality of test sites to a sample having a concentration of a molecule of interest, obtaining a plurality of quantitation signals, each of the plurality of quantitation signals associated with one of the plurality of test sites, associating a summation of the plurality of quantitation signals with the stored combined response curve, and generating a signal related to the concentration of the molecule of interest based upon the association.
    • 在一个实施方案中定量感兴趣的分子的浓度的系统和方法包括在多个测试位置建立多个测试环境,所述多个测试环境中的每一个与多个响应曲线之一相关联,每个测试环境 多个响应曲线不同于多个响应曲线中的另一个响应曲线,存储由多个响应曲线的总和产生的组合响应曲线,将多个测试位置暴露于具有感兴趣分子浓度的样本,获得 多个定量信号,所述多个定量信号中的每一个与所述多个测试点之一相关联,将所述多个定量信号的总和与所存储的组合响应曲线相关联,并产生与所述分子的浓度相关的信号 基于协会的兴趣。
    • 19. 发明申请
    • SUCCESSIVE SAMPLING DEVICE AND ASSOCIATED METHOD
    • 成功采样设备及相关方法
    • US20110177962A1
    • 2011-07-21
    • US12688193
    • 2010-01-15
    • Sam KavusiDaniel RoserChristoph LangAmirAli Haj Hossein Talasaz
    • Sam KavusiDaniel RoserChristoph LangAmirAli Haj Hossein Talasaz
    • C40B30/04C40B60/12
    • G01N33/54366B01L3/5027C12Q1/6816G01N33/54393C12Q2565/501
    • A method of determining a number of a solution constituent includes introducing a first number of solution constituents to a first test location, establishing a first binding environment for the introduced first number of solution constituents, creating a first residual number of solution constituents by binding a first plurality of solution constituents, establishing a second binding environment for the first residual number of solution constituents, creating a second residual number of solution constituents by binding a second plurality of solution constituents from the first residual number of solution constituents, obtaining a first signal associated with the bound first plurality of solution constituents, obtaining a second signal associated with the bound second plurality of solution constituents, and determining a second number of a constituent of interest based upon the obtained first signal and the obtained second signal.
    • 确定溶液成分的数量的方法包括将第一数量的溶液成分引入到第一测试位置,为所引入的第一数量的溶液成分建立第一结合环境,通过将第一数量的溶液成分结合到第一残留数量的溶液成分 多个溶液成分,为第一剩余数量的溶液组分建立第二结合环境,通过将第二多个溶液组分与第一剩余数量的溶液组分结合而产生第二剩余数量的溶液组分,获得与 绑定的第一多个解决方案组成部分,获得与绑定的第二多个解决方案组成部分相关联的第二信号,以及基于获得的第一信号和获得的第二信号来确定感兴趣的组成部分的第二数量。