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    • 2. 发明申请
    • METHOD AND APPARATUS FOR RAPID FILTER ANALYSIS OF FLUID SAMPLES
    • 流体样品快速过滤分析方法与装置
    • US20110220818A1
    • 2011-09-15
    • US13130586
    • 2009-11-20
    • Sjoerd StallingaStefano Cattaneo
    • Sjoerd StallingaStefano Cattaneo
    • G01N15/06
    • G01N15/0625G01N1/2205
    • An apparatus (10) for analyzing a fluid (18) of volume V comprises—a filter (12) having a filter surface (14) or area A, the filter being capable of allowing the fluid to flow through the filter surface, the fluid's volumetric flow density, averaged over the filter surface, being jmean; and—a scanner for scanning the filter surface with a scan rate B; wherein the area A substantially coincides with an optimum area Aopt defined as Formula (I). The sum of a filtering time and a scanning time may thereby be minimized. In another aspect, an apparatus (10) comprises—a set of at least two filters, each filter in the set of filters having a filter surface of area A and being capable of allowing the fluid to flow through the filter surface, the area A having a different value for each of the filters; and—a mechanism for selecting one (12) of the filters and placing the selected filter (12) in an operating position; and—a scanner for scanning the filter surface face (14) of the selected filter (12).
    • 用于分析体积V的流体(18)的装置(10)包括具有过滤器表面(14)或区域A的过滤器(12),所述过滤器能够允许流体流过过滤器表面, 过滤表面平均的体积流量密度为jmean; 以及用于以扫描速率B扫描过滤器表面的扫描器; 其中区域A基本上与定义为式(I)的最佳区域Aopt一致。 因此可以将滤波时间和扫描时间之和最小化。 在另一方面,一种装置(10)包括一组至少两个过滤器,该组过滤器中的每个过滤器具有区域A的过滤器表面,并且能够允许流体流过过滤器表面,区域A 每个过滤器具有不同的值; 以及用于选择一个(12)所述过滤器并将所选择的过滤器(12)放置在操作位置中的机构; 以及用于扫描所选择的过滤器(12)的过滤器表面(14)的扫描仪。
    • 5. 发明授权
    • Method and apparatus for rapid filter analysis of fluid samples
    • 用于流体样品快速过滤分析的方法和装置
    • US08991270B2
    • 2015-03-31
    • US13130586
    • 2009-11-20
    • Sjoerd StallingaStefano Cattaneo
    • Sjoerd StallingaStefano Cattaneo
    • G01N15/06G01N1/22
    • G01N15/0625G01N1/2205
    • An apparatus for analyzing a fluid of volume V includes a filter having a filter surface or area A, the filter being capable of allowing the fluid to flow through the filter surface. The fluid's volumetric flow density, averaged over the filter surface, is jmean. The apparatus further includes a scanner for scanning the filter surface with a scan rate B. The area A is optimized based on the volume V, the scan rate B and the volumetric flow density jmean to minimize the sum of filtering time and scanning time. Instead of one filter, at least two filters may be used each having a different area A. The apparatus also includes a mechanism for selecting one of the filters and placing the selected filter in an operating position, where the scanner scans the filter surface face of the selected filter.
    • 用于分析体积V的流体的装置包括具有过滤器表面或区域A的过滤器,该过滤器能够允许流体流过过滤器表面。 在过滤器表面上平均的流体的体积流量密度是jmean。 该装置还包括用于以扫描速率B扫描过滤器表面的扫描器。基于体积V,扫描速率B和体积流密度jmean来优化区域A以使过滤时间和扫描时间的总和最小化。 代替一个过滤器,可以使用每个具有不同区域A的至少两个过滤器。该设备还包括用于选择过滤器之一并将所选择的过滤器置于操作位置的机构,其中扫描仪扫描过滤表面 所选过滤器。
    • 6. 发明申请
    • MICROFLUIDIC DEVICE AND METHOD
    • 微流体装置和方法
    • US20110020141A1
    • 2011-01-27
    • US12933889
    • 2009-03-25
    • Hans Van ZonMurray Fulton GilliesCristian Bogdan CrausStefano Cattaneo
    • Hans Van ZonMurray Fulton GilliesCristian Bogdan CrausStefano Cattaneo
    • H02K44/00
    • H02K44/04B01L3/50273B01L2400/0415B01L2400/043B03C1/023B03C1/286F04B19/006
    • The present invention relates to a microfluidic device and a corresponding method for pumping of high conductivity liquids comprising: —a microfluidic channel (26; 80; 101) for containing an electrically conductive liquid, in particular a liquid having a high conductivity, —at least two electric field electrodes (21, 22; 71, 72; 91, 92) for generating electric fields, —at least one magnetic field electrode (21, 22; 75, 76; 93, 94) for generating a magnetic field in a direction substantially perpendicular to said electric fields, —a voltage source (23; 74; 95) for providing electric potentials to said at least two electric field electrodes (21, 22; 71, 72; 91, 92) for generating said electric fields, —a current source (23; 78, 79; 96, 97) for providing an electric current to said at least two magnetic field electrodes (21, 22; 75, 76; 93, 94) for generating said magnetic field, wherein said voltage source (23; 74; 95) and said current source (23; 78, 79; 96, 97) are adapted to simultaneously provide said electric potential and electric current, respectively, to said electrodes to obtain a Lorentz force acting on the high conductivity liquid in the direction (27; 81; 99) of said microfluidic channel (26; 80; 101).
    • 本发明涉及一种用于泵送高电导率液体的微流体装置和相应的方法,包括: - 微流体通道(26; 80; 101),用于容纳导电液体,特别是具有高导电性的液体,至少 用于产生电场的两个电场电极(21,22; 71,72; 91,92), - 至少一个磁场电极(21,22; 75,76; 93,94),用于在方向上产生磁场 大致垂直于所述电场的电压源,用于向所述至少两个用于产生所述电场的至少两个电场电极(21,22; 71,72; 91,92)提供电位的电压源(23; 74; 95) 用于向所述至少两个磁场电极(21,22; 75,76; 93,94)提供电流以产生所述磁场的电流源(23; 78,79; 96,97),其中所述电压源 (23; 74; 95)和所述电流源(23; 78,79; 96,97)适配 同时向所述电极提供所述电位和电流,以获得在方向(27; 27)上作用在高电导率液体上的洛伦兹力。 81; 99)的所述微流体通道(26; 80; 101)。