Diagnostic method for high sensitivity detection of component concentrations in human gas emission
    11.
    发明授权
    Diagnostic method for high sensitivity detection of component concentrations in human gas emission 有权
    高灵敏度检测人体气体排放成分浓度的诊断方法

    公开(公告)号:US09285310B2

    公开(公告)日:2016-03-15

    申请号:US14630492

    申请日:2015-02-24

    Abstract: A system for collecting gas samples emitted from skin and detecting concentrations of specified components therein. The system includes a collection chamber housing defining an interior space, the collection chamber housing having a gas inlet, a gas outlet, and an opening. The opening is configured for enclosing a skin portion from which to receive an emitted gas sample and sealing the interior space against the skin portion. An inert gas source is connected to the gas inlet, which is capable of allowing inert gas from the inert gas source to flow into the interior space. A gas cell is connected to the gas outlet, which is capable of allowing the inert gas and the gas sample to flow from the interior space into the gas cell. As a laser travels through the gas cell, power and optoacoustic signals are measured and used to determine a concentration of the specified component.

    Abstract translation: 用于收集从皮肤发出的气体样品并检测其中特定组分的浓度的系统。 该系统包括限定内部空间的收集室壳体,收集室壳体具有气体入口,气体出口和开口。 开口构造成用于封闭皮肤部分,从该部分接收发射的气体样品并将内部空间密封抵靠皮肤部分。 惰性气体源连接到气体入口,其能够允许来自惰性气体源的惰性气体流入内部空间。 气体单元连接到气体出口,其能够使惰性气体和气体样品从内部空间流入气室。 当激光穿过气室时,测量功率和光声信号,并用于确定特定部件的浓度。

    ANALYSIS AND PURGING OF MATERIALS IN MANUFACTURING PROCESSES
    12.
    发明申请
    ANALYSIS AND PURGING OF MATERIALS IN MANUFACTURING PROCESSES 有权
    材料在制造过程中的分析和清洗

    公开(公告)号:US20160041087A1

    公开(公告)日:2016-02-11

    申请号:US14454483

    申请日:2014-08-07

    Applicant: H2Optx Inc.

    Abstract: Various systems and methods of analyzing one or more properties of a sample are provided. The system includes a self-contained purging device having a sample holder and one or more analyzers for analyzing one or more properties of the sample. The purging device is configured to remove sample contained within the sample holder when an analysis is complete. In one embodiment the purging device is configured via an air pump having a tube in fluid communication with an air inlet of the sample holder, wherein the air pump is configured to deliver pressurized air to the air inlet and thereby purge the sample. The pressurized air is localized ambient air, and substantially free of contaminants. Methods and other systems are also described and illustrated.

    Abstract translation: 提供了分析样品的一种或多种性质的各种系统和方法。 该系统包括具有样品保持器和用于分析样品的一个或多个性质的一个或多个分析器的独立清洗装置。 清洗装置被配置为当分析完成时除去样品架中包含的样品。 在一个实施例中,清洗装置经由具有与样品保持器的空气入口流体连通的管的空气泵配置,其中空气泵构造成将加压空气输送到空气入口并由此吹扫样品。 加压空气是局部环境空气,并且基本上没有污染物。 还描述和示出了方法和其他系统。

    OBSERVATION DEVICE, OBSERVATION PROGRAM, AND OBSERVATION SYSTEM
    15.
    发明申请
    OBSERVATION DEVICE, OBSERVATION PROGRAM, AND OBSERVATION SYSTEM 有权
    观察设备,观察计划和观察系统

    公开(公告)号:US20150264235A1

    公开(公告)日:2015-09-17

    申请号:US14713755

    申请日:2015-05-15

    Abstract: An observation device (1) is provided with: a general observation unit (10) for observing sample cells by observing an entire container (C) containing the cells and a culture solution; and a magnification observation unit (20) for magnifying a region within the container (C) and observing the cells, the general observation unit (10) and the magnification observation unit (20) each individually having lighting for illuminating the cells with light, and an optical system for observing the cells. The general observation unit (10) and the magnification observation unit (20) are thereby each provided with an individual optical system and lighting, making it possible to configure an appropriate observation unit for use both when the cells are observed by observing the entire container (C) and when a part within the container (C) is magnified and the cells are observed.

    Abstract translation: 观察装置(1)具备:通过观察包含细胞的整个容器(C)和培养液观察样品池的一般观察单元(10) 以及用于放大容器(C)内的区域并观察细胞的放大观察单元(20),一般观察单元(10)和放大观察单元(20)各自具有用光照亮细胞的照明,以及 用于观察细胞的光学系统。 一般观察单元(10)和放大率观察单元(20)各自设置有单独的光学系统和照明,使得可以配置在通过观察整个容器观察细胞时使用的适当的观察单元( C),并且当容器(C)中的一部分被放大并观察细胞时。

    DEVICE FOR EVALUATION OF FLUIDS USING ELECTROMAGNETIC ENERGY
    16.
    发明申请
    DEVICE FOR EVALUATION OF FLUIDS USING ELECTROMAGNETIC ENERGY 审中-公开
    使用电磁能量评估流体的装置

    公开(公告)号:US20150253244A1

    公开(公告)日:2015-09-10

    申请号:US14720241

    申请日:2015-05-22

    Abstract: A portable, tabletop fluid sampling device simplifies spectral analysis to produce an accurate but inexpensive chromatic fingerprint for fluid samples. In one embodiment, the sampling device uses an array of variable wavelength LED emitters and photodiode detectors to measure Rayleigh scattering of electromagnetic energy from the fluid sample contained in a cuvette. Either the fluid itself, or particles suspended in the fluid can then be identified by performing spectral pattern matching to compare results of a spectral scan against a library of known spectra. A wide range of applications include substance identification, security screening, authentication, quality control, and medical diagnostics.

    Abstract translation: 便携式,桌面液体采样装置简化了光谱分析,以便为流体样品产生精确但便宜的彩色指纹。 在一个实施例中,采样装置使用可变波长LED发射器和光电二极管检测器的阵列来测量包含在比色皿中的流体样品的电磁能量的瑞利散射。 流体本身或悬浮在流体中的颗粒然后可以通过执行光谱模式匹配来识别,以将光谱扫描的结果与已知光谱库相比较。 广泛的应用包括物质识别,安全检查,认证,质量控制和医疗诊断。

    VACUUM CHAMBER WITH BASE PLATE
    17.
    发明申请
    VACUUM CHAMBER WITH BASE PLATE 有权
    真空室与基板

    公开(公告)号:US20150144789A1

    公开(公告)日:2015-05-28

    申请号:US14344067

    申请日:2012-09-12

    Abstract: A target processing machine (100), such as a lithography or inspection machine, comprising a rigid base plate (150), a projection column (101) for projecting one or more optical or particle beams on to a target (130), a support frame (102) supporting the projection column, the support frame being supported by and fixed to the base plate, a stage comprising a movable part (128) for carrying the target and a fixed part (132, 133) being supported by and fixed to the base plate, a beam sensor (160) for detecting one or more of the beams projected by the column, the beam sensor at least in part being supported by and fixed to the base plate, and a vacuum chamber (110) enclosing the support frame and the column, for maintaining a vacuum environment in the interior space of the chamber, the vacuum chamber formed with the base plate forming part thereof and supporting a plurality of wall panels (171, 172) including a plurality of side wall panels (171) supported by and fixed thereto.

    Abstract translation: 目标处理机(100),例如光刻或检查机器,其包括刚性基板(150),用于将一个或多个光学或粒子束投射到目标(130)的投影柱(101),支撑 框架(102),其支撑所述突出柱,所述支撑框架由所述基板支撑并固定到所述基板;舞台,包括用于承载所述目标的可移动部分(128)和固定部分(132,133) 所述基板,用于检测由所述列突出的一个或多个光束的光束传感器(160),所述光束传感器至少部分地由所述基板支撑并固定到所述基板;以及真空室(110),其围绕所述支撑 框架和柱,用于在室的内部空间中保持真空环境,真空室形成有基板,形成其一部分,并且支撑包括多个侧壁板(171)的多个壁板(171,172) )由其支撑并固定。

    Sensor protector
    18.
    发明授权
    Sensor protector 有权
    传感器保护器

    公开(公告)号:US08809765B2

    公开(公告)日:2014-08-19

    申请号:US13513344

    申请日:2010-11-12

    CPC classification number: G01N21/6428 G01N2201/022

    Abstract: A sensor protector is intended to reduce the sensitivity of the optical sensor (4) to radiation products which, for example, are formed during sterilization with gamma radiation and to ensure simple and cost-effective manufacture. The sensor protector includes an upper part (1), a lower part (3) and an optical sensor (4). The optical sensor (4) situated on the lower part is positionable in an offset manner with respect to an opening (2) situated in the upper part and movable by means of displacement toward the opening (2) of the upper part (1). The sensor protector is suitable for use in containers and laboratory products that are sterilized by gamma radiation, for example disposable bioreactors.

    Abstract translation: 传感器保护器旨在降低光学传感器(4)对例如在用γ辐射灭菌期间形成的辐射产品的灵敏度,并确保简单且具有成本效益的制造。 传感器保护器包括上部(1),下部(3)和光学传感器(4)。 位于下部的光学传感器(4)可相对于位于上部的开口(2)以偏移的方式定位,并且通过位移朝向上部(1)的开口(2)移动。 传感器保护器适用于通过伽马辐射灭菌的容器和实验室产品,例如一次性生物反应器。

    BIOLOGICAL SAMPLE MEASUREMENT APPARATUS
    19.
    发明申请
    BIOLOGICAL SAMPLE MEASUREMENT APPARATUS 有权
    生物样品测量仪器

    公开(公告)号:US20130323124A1

    公开(公告)日:2013-12-05

    申请号:US14000729

    申请日:2012-02-28

    Abstract: A biological sample measurement apparatus includes container (10) having an opening in a top surface thereof and right and left accommodation chambers (12) and (13) formed by separating an inner space and the opening in container (10) by partition wall (11a), measurement device (1) accommodated in accommodation chamber (12) of container (10), and a holder accommodated in accommodation chamber (13) of container (10) and holding measurement device (1). Provided are recesses (15, 16) configuring holding means holding measurement device (1) on an outer peripheral wall configuring accommodation chamber (12) or in accommodation chamber (12) in a state where sensor mounting section (4) of measurement device (1) is projected to an outside of accommodation chamber (12).

    Abstract translation: 生物样品测量装置包括:容器(10),其顶表面具有开口;以及通过分隔壁(11a)将容器(10)的内部空间和开口分开形成的左右容纳室(12)和(13) ),容纳在容器(10)的容纳室(12)中的测量装置(1)和容纳在容器(10)的容纳室(13)中并保持测量装置(1)的保持架。 在测量装置(1)的传感器安装部分(4)的状态下,设置有在外周壁构成容纳室(12)或容纳室(12)中保持测量装置(1)的保持装置的凹部(15,16) )被投影到容纳室(12)的外部。

    OBSERVATION DEVICE, OBSERVATION PROGRAM, AND OBSERVATION SYSTEM

    公开(公告)号:US20130156287A1

    公开(公告)日:2013-06-20

    申请号:US13808520

    申请日:2011-08-30

    Abstract: An observation device (1) is provided with: a general observation unit (10) for observing sample cells by observing an entire container (C) containing the cells and a culture solution; and a magnification observation unit (20) for magnifying a region within the container (C) and observing the cells, the general observation unit (10) and the magnification observation unit (20) each individually having lighting for illuminating the cells with light, and an optical system for observing the cells. The general observation unit (10) and the magnification observation unit (20) are thereby each provided with an individual optical system and lighting, making it possible to configure an appropriate observation unit for use both when the cells are observed by observing the entire container (C) and when a part within the container (C) is magnified and the cells are observed.

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