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    • 1. 发明授权
    • Sampling-assay interface system
    • 取样分析界面系统
    • US5833923A
    • 1998-11-10
    • US577107
    • 1995-12-22
    • Joseph A. McClintockMary Ann ChildsGregory K. ShipmanWilliam P. TrainorErick GrayDavid Bernstein
    • Joseph A. McClintockMary Ann ChildsGregory K. ShipmanWilliam P. TrainorErick GrayDavid Bernstein
    • G01N21/03G01N21/76
    • G01N21/76G01N21/03
    • A system and method for performing an assay for target analytes includes a sampling-device holder interface and a quantifier. The sampling device has a sampling portion and a reading portion containing a chemiluminescent reagent. The interface has a sampling-device holder and a light detector. The holder has a housing having an enclosure with a channel and a base plate with an opening. The base plate and the enclosure houses a slidable tray. The tray has a compartment adapted to seat the sampling device and an opening extending through the compartment. The reading portion is aligned with the tray opening. When the tray is closed, the tray opening is also aligned with the base plate opening, exposing the reading portion. Once the sampling portion is exposed to a sample suspected of containing the target analyte, at least one carrier liquid is introduced, if needed, to the sampling portion to transport any target analyte to the reading portion by dispersion. To measure the emitted light, the sampling device is seated into the tray. The tray is then inserted into housing. The light detector, which is connected in close proximity to the reading portion, outputs a signal. This signal is then converted to quantifiable data indicative of the target analyte quantity, using for instance, an ammeter.
    • 用于对目标分析物进行测定的系统和方法包括采样设备保持器接口和定量器。 采样装置具有采样部分和含有化学发光试剂的读取部分。 该接口具有取样装置支架和光检测器。 保持器具有壳体,其具有带通道的外壳和具有开口的基板。 基板和外壳容纳可滑动的托盘。 托盘具有适于安置取样装置的隔室和延伸穿过隔间的开口。 阅读部分与托盘开口对齐。 当托盘关闭时,托盘开口也与基板开口对准,露出读取部分。 一旦采样部分暴露于怀疑含有目标分析物的样品,如果需要,将至少一种载体液体引入采样部分,以通过分散体将任何目标分析物输送到读取部分。 为了测量发出的光线,采样装置就位于托盘中。 然后将托盘插入外壳。 连接在阅读部分附近的光检测器输出信号。 然后,使用例如电流表将该信号转换成指示目标分析物量的可量化数据。
    • 3. 发明授权
    • Nasal air filtration device
    • US10987527B1
    • 2021-04-27
    • US16239636
    • 2019-01-04
    • Erick Gray
    • Erick Gray
    • A62B23/06A62B7/10A62B18/02
    • A nasal air filtration device for filtering air inhaled by a user is disclosed. The nasal air filtration device includes a pair of nostril tubes including a filter at one end and an ionic plate at other end. Each of the nostril tubes includes a cup having a plurality of openings. The nasal air filtration device includes a base tube coupled to the nostril tubes. The base tube includes an exhaust channel. The base tube includes a first housing having a battery and a second housing having a fan. In order to filter the air inhaled by a user, the nostril tubes are placed inside nostrils of the user. When the user inhales, the fan is operated to draw the air into the base tube, and the air is made to pass through the filter and the ionic plate provided at the nostril tubes into the nostrils via the openings. When the user exhales, the air is released into the atmosphere through the exhaust channel via the nostril tubes.
    • 5. 发明授权
    • Rapid self-contained assay format
    • 快速自给自足的检测方式
    • US5824268A
    • 1998-10-20
    • US950331
    • 1997-10-14
    • David BernsteinMary Ann ChildsWilliam TrainorMajorie WierErick Gray
    • David BernsteinMary Ann ChildsWilliam TrainorMajorie WierErick Gray
    • G01N30/02G01N33/538G01N33/543G01N33/558
    • G01N33/538G01N33/54386G01N33/558G01N30/02Y10S435/97
    • A test strip, a device incorporating the test strip and a method for use of the test strip within the device detecting an analyte in a solution or bodily fluid are disclosed. The test strip was three zones, a reaction zone coated with a substance that binds the analyte, a sample zone with a region for addition of the sample of solution or fluid, and a detection region zone with a region coated with detection reagent. An absorbent pad underlies the reaction zone. The reaction zone is a small membrane and is physically in contact on its upper surface with both the sample zone and the detection zone. The test strip is incorporated into a device which includes a sample collection/transferring device, a housing for holding the test strip, and a container for holding solvent solutions at both outer ends of the test strip such that the solvent solutions can come into contact with the outer ends of the test strip when pressure is applied to the ends. The method involves placing a sample onto the strip using the sample collection/transferring device, causing solvent solutions to come into contact with the sample and detection membranes, and observing the test results. The resulting orthogonal buffer flow is an improvement over current methods because it reduces the number of steps and the time required for performance of a sequential assay.
    • 公开了一种测试条,包含测试条的装置以及在装置内使用测试条的方法,其中检测溶液或体液中的分析物。 测试条是三个区域,涂覆有结合分析物的物质的反应区域,具有用于添加溶液或流体样品的区域的样品区域以及涂覆有检测试剂的区域的检测区域区域。 吸收垫位于反应区的正下方。 反应区是一个小膜,并在其上表面物理接触,同时具有样品区和检测区。 测试条被结合到包括样品收集/转移装置,用于保持测试条的壳体和用于在测试条的两个外端保持溶剂溶液的容器的装置中,使得溶剂溶液可以与 当压力施加到端部时,测试条的外端。 该方法包括使用样品收集/转移装置将样品放置在条上,使溶剂溶液与样品和检测膜接触,并观察测试结果。 所得到的正交缓冲液流是对现有方法的改进,因为它减少了进行顺序测定所需的步骤数和时间。