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    • 1. 发明申请
    • FLUID CONTAINERS WITH RESERVOIRS IN THEIR CLOSURES AND METHODS OF USE
    • 流体容器在其封闭物中的储存和使用方法
    • WO2006099122A1
    • 2006-09-21
    • PCT/US2006/008572
    • 2006-03-10
    • LABCYTE INC.ELLSON, Richard, N.MILLER, Michael, F.BRAMWELL, Arlen, Mark
    • ELLSON, Richard, N.MILLER, Michael, F.BRAMWELL, Arlen, Mark
    • B01L3/00
    • B01L3/50853B01L2200/142B01L2300/041B01L2300/042B01L2300/047B01L2300/0829B01L2300/10
    • Fluid containers are disclosed which have fluid reservoirs in their closures. These reservoirs are advantageous to hold sacrificial fluid which lessens the loss of the fluid of interest to the outside through evaporation. The reservoirs may have openings to the inside or outside of the container, or to both. Reservoirs with openings to the outside serve to reduce evaporative loss by raising the partial pressure of fluid in the vicinity of the contact between the closure and the remainder of the container. The reservoirs may be refÊllable without opening the container. In one embodiment a fluid reservoir allows the zone of contact between the closure and the remainder of the container to be immersed in fluid, so that gases seeking to escape the interior of the container must pass through fluid. In a further embodiment a closure for a container comprises at least two closure members. The relative position of the closure members with respect to each other is altered upon mating of the closure and container. The alteration of the relative position of the closure members may result in one or more of the members approaching the container more closely. The alteration may result in one or more of the members pressing against the container.
    • 公开了在其封闭件中具有流体储存器的流体容器。 这些储存器有利于保持牺牲流体,其通过蒸发减少感兴趣的流体的损失。 储存器可以具有到容器的内部或外部的开口,或者具有到两者的开口。 具有向外部开口的容器用于通过提高封闭件和容器的其余部分之间的接触附近的流体的分压来减少蒸发损失。 储存器可以在不打开容器的情况下被重新装入。 在一个实施例中,流体储存器允许封闭件和容器的其余部分之间的接触区浸没在流体中,使得试图逃离容器内部的气体必须通过流体。 在另一实施例中,用于容器的封闭件包括至少两个闭合构件。 封闭件相对于彼此的相对位置在封盖和容器配合时被改变。 关闭构件的相对位置的改变可能导致一个或多个构件更接近容器。 改变可能导致一个或多个构件压靠容器。
    • 6. 发明申请
    • METHODS, DEVICES, AND SYSTEMS USING ACOUSTIC EJECTION FOR DEPOSITING FLUID DROPLETS ON A SAMPLE SURFACE FOR ANALYSIS
    • 使用声学喷射在样品表面上沉积流体滴的方法,装置和系统用于分析
    • WO2003075307A1
    • 2003-09-12
    • PCT/US2003/006427
    • 2003-03-03
    • PICOLITER INC.ELLSON, Richard, N.MUTZ, Mitchell, W.CAPRIOLI, Richard, M.
    • ELLSON, Richard, N.MUTZ, Mitchell, W.CAPRIOLI, Richard, M.
    • H01J49/04
    • H01J49/0454G01N33/54393G01N35/1011H01J49/0004Y10T436/2575
    • Provided is a method for preparing a sample surface (51) for analysis that involves placing a sample surface (51) in droplet-receiving relationship to a reservoir (13,15) containing a fluid (14, 16). Typically, the sample is a cellular sample (45) that exhibits a nonuniform surface, the fluid (14, 16) is an analysis-enhancing fluid comprised of a mass spectrometry matrix material and a carrier fluid, and the carrier fluid is comprised of a low volatility solvent. A droplet (49) of fluid is ejected from the reservoir (13, 15) such that the droplet (49) is deposited on the sample surface (51) at a designated site (55, 57). Such ejection is typically, but not necessarily carried out through the application of focused acoustic energy. Then, the sample (45) is subjected to conditions sufficient to allow the fluid (14, 16) to interact with the sample surface (51) and to render the sample surface (51) suitable for analysis. Optionally, the sample (45) is analyzed at the designated site (55,57). Also provided are systems and devices for preparing a sample surface (51) for analysis.
    • 提供一种用于制备用于分析的样本表面(51)的方法,该方法包括将样本表面(51)以液滴接收关系放置到包含流体(14,15)的储存器(13,15) 16)。 典型地,样品是呈现不均匀表面的细胞样品(45),流体(14,16)是由质谱基质材料和载体流体组成的分析增强流体,并且载体流体由 低挥发性溶剂。 流体的液滴(49)从贮存器(13,15)喷出,使得液滴(49)在指定的位置(55,57)沉积在样本表面(51)上。 这种喷射通常是通过聚焦声能的应用来实现的,但不是必须的。 然后,样品(45)经受足以允许流体(14,16)与样品表面(51)相互作用并使样品表面(51)适于分析的条件。 可选地,样品(45)在指定地点进行分析(55,57)。 还提供了用于制备用于分析的样品表面(51)的系统和设备。
    • 8. 发明申请
    • ACOUSTIC SAMPLE INTRODUCTION FOR ANALYSIS AND/OR PROCESSING
    • 声学样本介绍分析和/或处理
    • WO2002071051A2
    • 2002-09-12
    • PCT/US2002/004912
    • 2002-02-14
    • PICOLITER, INC.ELLSON, Richard, N.MUTZ, Mitchell, W.
    • ELLSON, Richard, N.MUTZ, Mitchell, W.
    • G01N30/00
    • H01J49/0454G01N33/54393Y10T436/2575
    • The invention relates to the efficient transport of a small volume of fluid, such as may be required by mass spectrometers and other devices configured to process and/or analyze small samples of biomolecular fluids. Such transport involves nozzleless acoustic ejection. In some instances, sample molecules contained in droplets of fluid are introduced from a reservoir into an ionization chamber of a analytical device. In other instances, sample molecules are introduced into a small capillary by directing focused acoustic radiation at a focal point near the surface of a fluid sample. In still other instances, acoustic ejection is used to form an array on a surface, wherein the features of the array are ionized for analysis. The invention may be used with microfluidic devices. Thus, the invention facilitates the processing and/or analysis of various types of samples, such as biomolecules having high molecular weights.
    • 本发明涉及小体积流体的有效输送,例如质谱仪可能需要的,以及被配置为处理和/或分析生物分子流体的小样品的其它装置。 这种运输涉及喷嘴无声弹射。 在一些情况下,包含在流体液滴中的样品分子从储器引入分析装置的电离室。 在其他情况下,通过将聚焦声辐射引导到流体样品表面附近的焦点处,将样品分子引入小毛细管中。 在其他情况下,使用声弹出来在表面上形成阵列,其中阵列的特征被电离以便分析。 本发明可以与微流体装置一起使用。 因此,本发明有助于各种类型的样品(例如具有高分子量的生物分子)的加工和/或分析。