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    • 1. 发明申请
    • FLUIDIZED BED DETECTOR FOR CONTINUOUS, ULTRA-SENSITIVE DETECTION OF BIOLOGICAL AND CHEMICAL MATERIALS
    • 流化床检测仪用于连续,超敏感检测生物和化学材料
    • US20140106368A1
    • 2014-04-17
    • US14108538
    • 2013-12-17
    • David A. Kidwell
    • David A. Kidwell
    • G01N33/52G01N33/53
    • G01N33/52G01N21/6428G01N33/53G01N33/54313
    • The present invention is generally directed to a fluidized bed detector for continuous detection of biological and chemical materials comprising a fluidized bed of detecting elements suspended in a continuous flow system wherein the detecting elements remain in the system when a first force trying to move the detecting elements to the bottom of the system is balanced with a second opposing force of a flowing gas or liquid trying to move detecting elements to the top of the system and wherein the presence of a target molecule in the flowing gas or liquid disrupts the balance of the first and second forces causing the detecting element to exit the system. The release of the detecting element indicates the presence of the target molecule and may be captured, concentrated, or both for further evaluation by other assays or other means. Also disclosed is the related method of detecting biological and chemical materials using a fluidized bed detector.
    • 本发明一般涉及用于连续检测生物和化学材料的流化床检测器,其包括悬浮在连续流动系统中的检测元件的流化床,其中当试图移动检测元件的第一力时,检测元件保留在系统中 系统的底部与试图将检测元件移动到系统的顶部的流动气体或液体的第二相反的力平衡,并且其中流动气体或液体中目标分子的存在破坏了第一 以及使检测元件离开系统的第二力。 检测元件的释放指示靶分子的存在并且可被捕获,浓缩或两者用于通过其它测定或其它方法进一步评估。 还公开了使用流化床检测器检测生物和化学材料的相关方法。
    • 2. 发明授权
    • Light emission- or absorbance-based binding assays
    • 基于光发射或吸光度的结合测定
    • US5314802A
    • 1994-05-24
    • US865526
    • 1992-04-09
    • David A. Kidwell
    • David A. Kidwell
    • C12Q1/68G01N33/542G01N33/94G01N33/533
    • C12Q1/6818G01N33/542G01N33/946Y10S435/962Y10S436/80
    • A substance having binding sites for at least two molecules may be detected within a sample. A molecule which can be recognized by the substance is labelled such that when at least two of the labelled molecules are bound the binding sites on the substance, the labels on the molecules electronically interact with each other and vary the wavelength dependance of their spectra. This variation in the spectra of the label can be detected. If the sample is suspected of containing the unlabelled form of a molecule, such as biotin or cocaine, a known amount of the above substance, along with a known amount of the corresponding labelled biotin or cocaine is added to the sample. In this instance, the amount of the suspect molecule in the sample is then determined by the extent to which the variation in the spectra of the label has been reduced. Alternatively, the present invention can be used to determine the binding characteristics of the substance within the sample. The method of the present invention is useful in immunoassays or other bioassays as well as in studies of surface interactions.
    • 可以在样品内检测到具有至少两个分子的结合位点的物质。 可以被该物质识别的分子被标记为使得当至少两个标记分子与物质上的结合位点结合时,分子上的标记物彼此电子相互作用并改变其光谱的波长依赖性。 可以检测标签光谱的这种变化。 如果样品被怀疑含有未标记形式的分子,例如生物素或可卡因,将已知量的上述物质连同已知量的相应标记的生物素或可卡因一起加入到样品中。 在这种情况下,样品中的可疑分子的量然后通过标记的光谱变化已被降低的程度确定。 或者,本发明可用于确定样品中物质的结合特性。 本发明的方法可用于免疫测定或其他生物测定以及表面相互作用研究。
    • 6. 发明申请
    • EXCESS ENTHALPY UPON PRESSURIZATION OF NANOSIZED METALS WITH DEUTERIUM
    • 纳米金属与脱氧核糖核酸的加压过程
    • US20110077145A1
    • 2011-03-31
    • US12893325
    • 2010-09-29
    • David A. Kidwell
    • David A. Kidwell
    • B01J23/00B01J23/44B01J23/42B01J29/04B01J21/04B01J8/02
    • G01N25/48B01J21/04B01J23/42B01J23/44B01J23/63B01J29/04
    • A method for producing excess enthalpy by impregnating metallic precursors on an oxide support that reduces sintering and particle growth; drying the impregnated support at a temperature where the particle growth is minimal; reducing the metallic precursors at a second temperature where the particle growth results in supported metallic particles 2 nm or less in size; and pressurizing the supported metallic particles in the presence of deuterium. The metal particles may comprise palladium, platinum, mixtures thereof, or mixtures of palladium and/or platinum with other elements. Also disclosed is a method for measuring excess enthalpy by placing a test material in a pressure vessel; heating the pressure vessel; evacuating the pressure vessel; introducing deuterium, hydrogen, or both into the pressure vessel; measuring the enthalpy generated during pressurization; again evacuating the pressure vessel; and measuring the enthalpy used during depressurization.
    • 通过将金属前体浸渍在减少烧结和颗粒生长的氧化物载体上来产生过量焓的方法; 在颗粒生长最小的温度下干燥浸渍的载体; 在第二温度下还原金属前体,其中颗粒生长导致尺寸为2nm或更小的负载金属颗粒; 并在氘存在下对负载的金属颗粒加压。 金属颗粒可以包括钯,铂,其混合物,或钯和/或铂与其它元素的混合物。 还公开了一种通过将测试材料放置在压力容器中来测量过量焓的方法; 加热压力容器; 排空压力容器; 将氘,氢或二者引入压力容器中; 测量加压过程中产生的焓; 再次抽空压力容器; 并测量在减压期间使用的焓。
    • 7. 发明授权
    • Chemical and biological sensor using an ultra-sensitive force transducer
    • 化学和生物传感器使用超灵敏力传感器
    • US5807758A
    • 1998-09-15
    • US505547
    • 1995-07-21
    • Gil U. LeeDavid A. KidwellRichard J. Colton
    • Gil U. LeeDavid A. KidwellRichard J. Colton
    • B81B3/00C12Q1/68C12Q1/70G01N33/543G01Q90/00G01N27/00G01N33/573C01N33/573
    • G01Q60/42B82Y35/00G01N27/745G01N33/54373
    • The present invention is a method and apparatus for detecting a target species. The target molecule may be in liquid phase (in solution) or (for some embodiments of the invention) in vapor phase. A sensor according to the present invention monitors whether a target species has selectively bound to groups on the cantilever surface by monitoring the displacement of the cantilever, and hence the force acting on the cantilever. This force acting on the cantilever arises from the force acting on a structure that moves in electric or magnetic field, and that may be selectively bound to the cantilever. In the case of target species having a sufficiently large net electric charge or dipole moment, the target species itself may serve as the structure that moves in an electric field. More typically however, separate modified structures, such as modified magnetic beads or modified beads having a net charge or a dipole moment, will, when selectively bound to the cantilever, exert a force on the cantilever that relates to the presence of the target species.
    • 本发明是用于检测目标物种的方法和装置。 靶分子在气相中可以是液相(溶液中)或(对于本发明的一些实施方案)。 根据本发明的传感器通过监测悬臂的位移以及因此作用在悬臂上的力来监视目标物种是否选择性地结合到悬臂表面上的组。 作用在悬臂上的力源自作用在电场或磁场中移动的结构上的力,并且可以选择性地结合到悬臂。 在具有足够大的净电荷或偶极矩的目标物种的情况下,目标物质本身可以用作在电场中移动的结构。 然而,更典型地,单独的改性结构,例如具有净电荷或偶极矩的改性磁珠或改性珠粒,当选择性地结合到悬臂时,将在悬臂上施加与靶物种的存在有关的力。