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    • 32. 发明申请
    • FLUID PROCESSING AND CONTROL
    • US20170252742A1
    • 2017-09-07
    • US15601725
    • 2017-05-22
    • Cepheid
    • Douglas B. DORITYRonald Chang
    • B01L3/00G01N1/18G01N1/28G01N1/40
    • A fluid control and processing system for controlling fluid flow among a plurality of chambers comprises a body including a fluid processing region continuously coupled fluidicly with a fluid displacement region. The fluid displacement region is depressurizable to draw fluid into the fluid displacement region and pressurizable to expel fluid from the fluid displacement region. The body includes at least one external port. The fluid processing region is fluidicly coupled with the at least one external port. The fluid displacement region is fluidicly coupled with at least one external port of the body. The body is adjustable with respect to the plurality of chambers to place the at least one external port selectively in fluidic communication with the plurality of chambers. One or more of the chambers may be a processing chamber which includes two ports configured to selectively engage the at least one external port of the body, and a fluid processing material such as an enrichment material or a depletion material. In some embodiments, one or more chambers may include a separation channel, and an electric field may be applied across the separation channel.
    • 34. 发明申请
    • THERMAL CONTROL DEVICE AND METHODS OF USE
    • 热控制装置及其使用方法
    • US20170023281A1
    • 2017-01-26
    • US15217902
    • 2016-07-22
    • Cepheid
    • David FROMMTien PHANMatthew PICCINI
    • F25B21/04B01L7/00
    • F25B21/04B01L7/52B01L2200/025B01L2300/1822F25B2321/0212F25B2321/0251
    • Thermal control devices adapted to provide improved control and efficiency in temperature cycling are provided herein. Such thermal control device can include a thermoelectric cooler controlled in coordination with another thermal manipulation device to control an opposing face of the thermoelectric cooler and/or a microenvironment. Some such thermal control devices include a first and second thermoelectric cooler separated by a thermal capacitor. The thermal control devices can be configured in a planar configuration with a means for thermally coupling with a planar reaction vessel of a sample analyzer for use in thermal cycling in a polymerase chain reaction of the fluid sample in the reaction vessel. Methods of thermal cycling using such a thermal control devices are also provided.
    • 本文提供了适于提供改进的温度循环控制和效率的热控制装置。 这种热控制装置可以包括与另一个热操纵装置配合控制的热电冷却器,以控制热电冷却器和/或微环境的相对面。 一些这样的热控制装置包括由热电容器分离的第一和第二热电冷却器。 热控制装置可以被配置成具有用于与样品分析器的平面反应容器热耦合的装置的平面配置,以用于在反应容器中的流体样品的聚合酶链式反应中的热循环。 还提供了使用这种热控制装置的热循环方法。