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    • 52. 发明申请
    • METHOD OF DETECTING ANALYTE
    • 检测分析仪的方法
    • US20100045993A1
    • 2010-02-25
    • US12195997
    • 2008-08-21
    • Joerg MartiniRichard H. BruceFrancisco E. TorresPeter KieselMichael I. RechtJeffrey N. Roe
    • Joerg MartiniRichard H. BruceFrancisco E. TorresPeter KieselMichael I. RechtJeffrey N. Roe
    • G01N21/00
    • A61B5/1459A61B5/0031A61B5/14532G01N21/33G01N21/359
    • A system and method is provided for detecting concentration of an analyte in a fluid. The method comprises detecting an optical property of a first region of two or more regions in a system, the first region located in a container having a reservoir for one or more modifiers of one or more optical properties of the first region. The movement of the one or more modifiers is responsive to changes in concentration of the analyte. A next step detects an optical property of a second region of the two or more regions in the system, the second region located in a container having a reservoir for one or more modifiers of one or more optical properties of the second region. The movement of the one or more modifiers is responsive to changes in concentration of a compound, where the compound is something other than the analyte. The detected optical property of the first region and the detected optical property of the second region are used in embodiments to separate the effect of the analyte on the detected optical property of the first region from the effect of the compound, where the compound is an interfering compound.
    • 提供了用于检测流体中分析物的浓度的系统和方法。 该方法包括检测系统中两个或更多个区域的第一区域的光学性质,位于容器中的第一区域具有用于一个或多个第一区域的一个或多个光学特性的改性剂的储存器。 一种或多种改性剂的运动响应于分析物浓度的变化。 下一步骤检测系统中两个或更多个区域的第二区域的光学性质,位于容器中的第二区域具有用于一个或多个第二区域的一个或多个光学特性的改性剂的储存器。 一种或多种改性剂的运动响应化合物浓度的变化,其中化合物是除分析物以外的物质。 检测到的第一区域的光学特性和第二区域的检测光学特性用于实施例中以将分析物对第一区域的检测光学性质的影响与化合物的影响分开,其中化合物是干扰 复合。
    • 53. 发明申请
    • Controlling Transfer of Objects Affecting Optical Characteristics
    • 控制影响光学特性的物体的传输
    • US20090156917A1
    • 2009-06-18
    • US11957610
    • 2007-12-17
    • Jorg MartiniJeffrey RoePeter KieselMichael BasslerAlan BellRichard H. BruceNoble M. Johnson
    • Jorg MartiniJeffrey RoePeter KieselMichael BasslerAlan BellRichard H. BruceNoble M. Johnson
    • A61B5/00
    • A61B5/1459A61B5/14532G01N21/03G01N21/39G01N21/8507
    • An implantable product such as an article, device, or system can include analyte and non-analyte containers in parts that can be operated as optical cavities. The product can also include fluidic components such as filter assemblies that control transfer of objects that affect or shift spectrum features or characteristics such as by shifting transmission mode peaks or reflection mode valleys, shifting phase, reducing maxima or contrast, or increasing intermediate intensity width such as full width half maximum (FWHM). Analyte, e.g. glucose molecules, can be predominantly included in a set of objects that transfer more rapidly into the analyte container than other objects, and can have a negligible or zero rate of transfer into the non-analyte container; objects that transfer more rapidly into the non-analyte container can include objects smaller than the analyte or molecules of a set of selected types, including, e.g., sodium chloride. Output light from the containers accordingly includes information about analyte.
    • 诸如制品,装置或系统的可植入产品可以包括可以作为光腔操作的部件中的分析物和非分析物容器。 该产品还可以包括流体组件,例如过滤器组件,其控制影响或移动光谱特征或特性的物体的转移,例如通过移动透射模式峰值或反射模式谷,移动相位,减小最大值或对比度,或增加中等强度宽度, 作为全宽半最大值(FWHM)。 分析物,例如 葡萄糖分子可以主要包括在一组物体中,其比其它物体更快地转移到分析物容器中,并且可以具有可忽略或零速率的转移到非分析物容器中; 将更快速地转移到非分析物容器中的物体可以包括比分析物小的物体或一组选定类型的分子,包括例如氯化钠。 因此,来自容器的输出光包括关于分析物的信息。
    • 55. 发明授权
    • Apparatus and method for detecting and locating rare cells
    • 用于检测和定位稀有细胞的装置和方法
    • US07277569B2
    • 2007-10-02
    • US10616366
    • 2003-07-09
    • Richard H. BruceDouglas N. CurryRobert T. KrivacicHuangpin B. Hsieh
    • Richard H. BruceDouglas N. CurryRobert T. KrivacicHuangpin B. Hsieh
    • G06K9/00
    • B82Y20/00B82Y5/00B82Y10/00G01N15/1468G01N2015/0065
    • In accordance with one aspect of the present application, an imager and method for detecting and locating rare cells in a sample is disclosed. An imager stage supports the sample. A fiber optic bundle has a proximate bundle end of first fiber ends arranged to define an input aperture viewing the sample on the translation stage. The fiber optic bundle further has a distal bundle end of second fiber ends arranged to define an output aperture shaped differently from the input aperture and disposed away from the imager stage. A scanning radiation source is arranged in fixed relative position to the input aperture. The scanning radiation source scans a radiation beam on the sample within a viewing area of the input aperture. The radiation beam interacts with the sample to produce a light signal that is reflected, scattered, transmitted, re-emitted, or otherwise collected and received by the input aperture and transmitted via the fiber optic bundle to the output aperture. The scanning radiation source rasters the radiation beam over a selected area of the sample. A photodetector is arranged to detect the light signal at the distal bundle end, and a processor processes the detected light signals.
    • 根据本申请的一个方面,公开了一种用于检测和定位样品中的稀有细胞的成像器和方法。 成像器台支持样品。 光纤束具有布置成限定观察平移台上的样品的输入孔的第一光纤端的近端束端。 光纤束还具有设置成限定与输入孔不同的形状的输出孔并远离成像器台设置的第二纤维端的远端束端。 扫描辐射源被布置在与输入孔相对的固定相对位置。 扫描辐射源在输入孔的观察区域内扫描样品上的辐射束。 辐射束与样品相互作用以产生被信号反射,散射,透射,再发射或以其它方式收集和接收的光信号,并通过光纤束传输到输出孔。 扫描辐射源将辐射束照射在样品的选定区域上。 光检测器被设置为检测远端束端处的光信号,并且处理器处理检测到的光信号。
    • 56. 发明授权
    • Level sense and control system for biofluid drop ejection devices
    • 生物流体喷射装置的液位感应和控制系统
    • US06623700B1
    • 2003-09-23
    • US09721386
    • 2000-11-22
    • David A. HorineBabur B. HadimiogluRichard H. BruceJaan NoolandiScott A. Elrod
    • David A. HorineBabur B. HadimiogluRichard H. BruceJaan NoolandiScott A. Elrod
    • B01L302
    • B41J2/17566B41J2/1714Y10T436/2575
    • A level control mechanism is provided for a biofluid drop ejection device which ejects biofluid drops in small volumes. The biofluid drop device includes a drop ejection mechanism having a transducer which generates energy used to emit the biofluid drops. A reagent cartridge or biofluid holding area holds a biofluid, isolated from the drop ejection mechanism to avoid contamination between the biofluid drop ejection mechanism and the reagent cartridge. The reagent cartridge is connected to the drop ejection mechanism such that upon operation of the mechanism, the biofluid is emitted in controlled biofluid drops. A level sensor is positioned to sense a height of the biofluid within the cartridge. Upon sensing the height of the biofluid below a certain level, an adjustment is made to the height by providing at least one of additional biofluid to the cartridge, and raising the level of the entire reagent cartridge.
    • 为生物流体液滴喷射装置提供液面控制机构,其以小体积喷射生物流体液滴。 生物流体液滴装置包括液滴喷射机构,其具有产生用于发射生物流体滴的能量的换能器。 试剂盒或生物流体保持区域保持与液滴喷射机构隔离的生物流体,以避免生物流体液滴喷射机构和试剂盒之间的污染。 试剂盒连接到液滴喷射机构,使得在机构操作时,生物流体在受控的生物流体滴下发射。 水平传感器被定位成感测盒内的生物流体的高度。 当感测到生物流体的高度低于一定水平时,通过向盒提供至少一种额外的生物流体,并提高整个试剂盒的水平来调节高度。
    • 58. 发明授权
    • Multi-ejector system for ejecting biofluids
    • 用于喷射生物流体的多喷射器系统
    • US06503454B1
    • 2003-01-07
    • US09721389
    • 2000-11-22
    • Babur B. HadimiogluScott A. ElrodRichard H. BruceJaan NoolandiDavid A. Horine
    • Babur B. HadimiogluScott A. ElrodRichard H. BruceJaan NoolandiDavid A. Horine
    • B01L302
    • B01L3/0268G01N2035/1039Y10T436/2575
    • A multiple-ejector system for printing arrays of biofluids include a tooling plate having a plurality of sets of tooling pins extending outward from the surface of the tooling plate. A printed circuit board is provided having pairs of power connection pins and ground return pins extending from a surface of the circuit board. A plurality of biofluid drop ejection units are provided and include alignment grooves and at least a transducer. Each of the plurality of biofluid drop ejection units are connected to a corresponding one of a set of tooling pins by connection of the tooling pins and alignment grooves. The power connection pins of the pairs are in operational connection with respective transducers and the ground return connection pins of the pairs are in operational connection with a body portion of the drop ejection units. The different drop ejection units will contain different biofluids which are to be emitted onto a substrate. Verification of drop ejection units containing biofluids, may be obtained in one embodiment through the use of an optical scanner. Detection of drops at defined locations provides a verification that validates a properly formed spot is present on a substrate, and is in the correct position.
    • 用于打印生物流体阵列的多喷射器系统包括具有从工具板的表面向外延伸的多组工具销的工具板。 提供一个印刷电路板,其具有从电路板的表面延伸的成对的电源连接引脚和接地返回引脚。 提供多个生物流体液滴喷射单元,并且包括对准凹槽和至少一个换能器。 多个生物流体滴落喷射单元中的每一个通过工具销和对准槽的连接连接到一组加工销中的对应的一个。 成对的电源连接引脚与相应的换能器操作连接,并且对的接地返回连接引脚与液滴喷射单元的主体部分操作连接。 不同的液滴喷射单元将包含将被发射到基底上的不同生物流体。 通过使用光学扫描仪可以在一个实施例中获得包含生物流体的液滴喷射单元的验证。 在限定位置处检测液滴提供验证,验证正确形成的斑点存在于基底上,并处于正确的位置。
    • 59. 发明授权
    • Presenting an image on a display as it would be presented by another
image output device or on printing circuitry
    • 在显示器上呈现由另一图像输出设备或打印电路呈现的图像
    • US6078936A
    • 2000-06-20
    • US679169
    • 1996-07-12
    • Russel A. MartinRichard H. BruceAlan G. LewisKathryn M. MiddoMalcolm J. ThompsonWilliam D. Turner
    • Russel A. MartinRichard H. BruceAlan G. LewisKathryn M. MiddoMalcolm J. ThompsonWilliam D. Turner
    • H04N1/00G06T11/80H04N1/60G06F3/147G06F3/12G06F17/21G06K15/00
    • H04N1/6011
    • A display has sufficient resolution to present images as they would appear on other types of image output devices, such as types of printers or displays. In response to a user signal indicating a type of image output devices, data defining an image is used to automatically obtain version data defining a version of the image. The version can be presented on the display to show the image as it would appear when presented by an image output device of the indicated type. The user can indicate a type by selecting a menu item or a button or by providing a sequence of keystrokes. In response to a user signal indicating a parameter value, a version can be presented showing the image as it would appear when presented with the value. When a satisfactory image is displayed, the user can then request presentation of the image by a device of the indicated type. Either data defining the input image from which the displayed image is a version or data defining the currently displayed image can then be transformed to obtain a presentation version for the image output device. A copier or printer that includes the display can use it to perform print previewing.
    • 显示器具有足够的分辨率来呈现在其他类型的图像输出设备(例如打印机或显示器的类型)上显示的图像。 响应于指示图像输出设备的类型的用户信号,定义图像的数据被用于自动获取定义图像版本的版本数据。 该版本可以在显示器上呈现,以显示当由指定类型的图像输出设备呈现时将出现的图像。 用户可以通过选择菜单项或按钮或通过提供一系列按键来指示类型。 响应于指示参数值的用户信号,可以呈现当呈现该值时将出现的图像的版本。 当显示令人满意的图像时,用户可以通过所指示类型的设备请求呈现图像。 然后可以对定义所显示的图像是定义当前显示的图像的版本的数据的数据进行变换,以获得图像输出装置的呈现版本。 包含显示器的复印机或打印机可以使用它来执行打印预览。