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    • 1. 发明授权
    • Automated staining apparatus
    • 自动染色装置
    • US5439649A
    • 1995-08-08
    • US129243
    • 1993-09-29
    • Ken TseungWai Bun WongGlenn K. TakayamaChristopher M. JonesKrishan L. Kalra
    • Ken TseungWai Bun WongGlenn K. TakayamaChristopher M. JonesKrishan L. Kalra
    • G01N1/30B01L3/02G01N1/28G01N1/31G01N35/00G01N35/10G02B21/34B01L11/00
    • B01L3/0275G01N1/312G02B21/34G01N2001/282G01N2001/317G01N2035/103G01N35/0099G01N35/109
    • An automated microscope-slide-staining apparatus, having a supporting framework; an arm moveable in three dimensions attached to the framework; apparatus for moving the arm; a hollow tip head located on the arm; apparatus for alternatively supplying positive or negative gas pressure to the hollow tip head; a removable wash/blow tip having an exit slit, the wash/blow tip being adapted to be removably attached to the hollow tip head by a preselected movement of the arm; a wash/blow tip holder at a first fixed location on the framework; a reagent application tip holder at a second fixed location on the framework for holding a reagent application tip, the reagent application tip being adapted to be removably attached to the hollow tip head by a preselected movement of the arm; a reagent container holder at a third fixed location on the framework; a microscope slide holder at a fourth fixed location on the framework, the microscope slide holder being adapted to removably contain the microscope slide; and control apparatus for controlling movement of the arm between the locations, whereby the tip head picks up the wash/blow tip or the reagent application tip in response to movement of the arm under control of the control apparatus and moves to one or more of the locations to pick up a reagent in the reagent container or dispense the reagent on the slide or to dispense a gas through the wash/blow tip over the slide. Components of the apparatus and methods of staining are also part of the invention.
    • 具有支撑框架的自动显微镜载玻片染色装置; 一个可移动的臂可以三维地连接到框架上; 用于移动臂的装置; 位于手臂上的中空尖头; 用于交替地向中空尖端头供应正或负气体压力的装置; 具有出口狭缝的可移除的洗涤/吹塑尖端,所述洗涤/吹塑尖端适于通过所述臂的预选运动可移除地附接到所述中空末端头部; 在框架上的第一固定位置处的洗涤/吹头保持器; 用于保持试剂应用尖端的框架上的第二固定位置处的试剂施用末端保持器,所述试剂施加末端适于通过所述臂的预选运动可移除地附接到所述中空末端头; 在框架上的第三固定位置的试剂容器支架; 在框架上的第四固定位置处的显微镜载玻片保持器,显微镜载玻片保持器适于可拆卸地容纳显微镜载玻片; 以及用于控制所述臂在所述位置之间的移动的控制装置,由此所述尖端头在所述控制装置的控制下响应于所述臂的移动而拾取所述洗涤/吹出尖端或所述试剂施加末端,并移动到所述控制装置中的一个或多个 在试剂容器中取出试剂的位置或者将试剂分配在载玻片上,或者通过载玻片上的洗涤/吹塑尖端分配气体。 设备的组分和染色方法也是本发明的一部分。
    • 3. 发明申请
    • Interferometry-Based Downhole Analysis Tool
    • 基于干涉测井的井下分析工具
    • US20120250017A1
    • 2012-10-04
    • US13147478
    • 2009-12-23
    • Marian L. MorysSteve ZannoniChristopher M. Jones
    • Marian L. MorysSteve ZannoniChristopher M. Jones
    • G01B9/02G01N21/84
    • G01N21/31E21B49/088G01J3/021G01J3/4532G01J3/4535G01J2003/4534G01N21/33G01N21/35G01N21/3577G01N2021/3595
    • Various systems and methods for performing optical analysis downhole with an interferogram (a light beam having frequency components with a time variation that identifies those frequency components. The interferogram is produced by introducing an interferometer into the light path, with the two arms of the interferometer having a propagation time difference that varies as a function of time. Before or after the interferometer, the light encounters a material to be analyzed, such as a fluid sample from the formation, a borehole fluid sample, a core sample, or a portion of the borehole wall. The spectral characteristics of the material are imprinted on the light beam and can be readily analyzed by processing electronics that perform a Fourier Transform to obtain the spectrum or that enable a comparison with one or more templates. An interferometer designed to perform well in the hostile environments downhole is expected to enable laboratory-quality measurements.
    • 用干涉图进行井下光学分析的各种系统和方法(具有识别那些频率分量的具有时间变化的频率分量的光束)通过将干涉仪引入光路而产生干涉图,干涉仪的两个臂具有 传播时间差随时间而变化在干涉仪之前或之后,光线遇到要分析的材料,例如来自地层的流体样品,井眼流体样品,核心样品或一部分 材料的光谱特性被印在光束上,并且可以通过进行傅里叶变换的处理电子装置容易地进行分析,以获得光谱或使得能够与一个或多个模板进行比较。 预计井下敌对环境将能够实现实验室质量测量。
    • 4. 发明申请
    • ADDITIVE PHOTOMETRIC ANALYSIS
    • 加光光度分析
    • US20120232707A1
    • 2012-09-13
    • US13386369
    • 2009-08-14
    • Christopher M. JonesMichael T. Pelletier
    • Christopher M. JonesMichael T. Pelletier
    • G05D7/06
    • G01N21/31G01N21/274G01N21/85G01N2201/1293
    • Apparatus, systems, and methods may operate to discharge a plurality of spike fluids into a fluid flowing in a flow channel, transmit energy to the fluid using an energy source coupled to the flow channel, receive the energy modified by the fluid as photometric energy, convert the photometric energy to at least one photometric signal, compare the at least one photometric signal with a reference signal to determine at least one photometric property of the fluid, and determine at least one component of the fluid using the at least one photometric property supplied to a generalized standard addition method (GSAM). Additional apparatus, systems, and methods, including the use of multivariate curve resolution (MCR) to refine GSAM results, are disclosed.
    • 装置,系统和方法可以操作以将多个尖峰流体排放到在流动通道中流动的流体中,使用耦合到流动通道的能量源将能量传递到流体,接收由流体改变的能量作为光度能量, 将所述光度能量转换为至少一个光度信号,将所述至少一个光度信号与参考信号进行比较以确定所述流体的至少一个光度特性,并且使用所提供的所述至少一个光度特性确定所述流体的至少一个分量 到广义标准加法(GSAM)。 公开了包括使用多变量曲线分辨率(MCR)来改进GSAM结果的附加装置,系统和方法。