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    • 2. 发明授权
    • Analysis of gases
    • 气体分析
    • US08903474B2
    • 2014-12-02
    • US11566919
    • 2006-12-05
    • Zvi YanivPrabhu Soundarrajan
    • Zvi YanivPrabhu Soundarrajan
    • A61B6/00A61B5/1455
    • A61B5/14551G01N2291/0427G06F19/00
    • Systems and techniques for the analysis of gases for medical purposes are described. In one aspect, a system includes a sample collector to collect a physical sample associated with an individual and present a gas sample for analysis, a gas analysis device to analyze the gas sample presented by the sample collector to determine a concentration of one or more non-aqueous gases in the gas sample, a data storage device that includes information reflecting a correlation between concentration of the one or more non-aqueous gases in the gas sample and a disease state, and a data analysis device to determine a medical condition of the individual based on the concentration of one or more non-aqueous gases in the gas sample and the information.
    • 描述了用于医疗目的的气体分析的系统和技术。 一方面,系统包括样品收集器以收集与个体相关联的物理样品并呈现用于分析的气体样品,气体分析装置,用于分析由样品收集器呈现的气体样品,以确定一个或多个非 - 气体样品中的含水气体,数据存储装置,其包括反映气体样品中的一种或多种非水性气体的浓度与疾病状态之间的相关性的信息,以及数据分析装置,用于确定 个体基于气体样品中一种或多种非水性气体的浓度和信息。
    • 7. 发明申请
    • Analysis of Gases
    • 气体分析
    • US20070167832A1
    • 2007-07-19
    • US11566919
    • 2006-12-05
    • Zvi YanivPrabhu Soundarrajan
    • Zvi YanivPrabhu Soundarrajan
    • A61B6/00
    • A61B5/14551G01N2291/0427G06F19/00
    • Systems and techniques for the analysis of gases for medical purposes are described. In one aspect, a system includes a sample collector to collect a physical sample associated with an individual and present a gas sample for analysis, a gas analysis device to analyze the gas sample presented by the sample collector to determine a concentration of one or more non-aqueous gases in the gas sample, a data storage device that includes information reflecting a correlation between concentration of the one or more non-aqueous gases in the gas sample and a disease state, and a data analysis device to determine a medical condition of the individual based on the concentration of one or more non-aqueous gases in the gas sample and the information.
    • 描述了用于医疗目的的气体分析的系统和技术。 一方面,系统包括样品收集器以收集与个体相关联的物理样品并呈现用于分析的气体样品,气体分析装置,用于分析由样品收集器呈现的气体样品,以确定一个或多个非 - 气体样品中的含水气体,数据存储装置,其包括反映气体样品中的一种或多种非水性气体的浓度与疾病状态之间的相关性的信息,以及数据分析装置,用于确定 个体基于气体样品中一种或多种非水性气体的浓度和信息。
    • 8. 发明授权
    • Metal encapsulation
    • 金属封装
    • US07879131B2
    • 2011-02-01
    • US11839257
    • 2007-08-15
    • Zvi YanivPrabhu Soundarrajan
    • Zvi YanivPrabhu Soundarrajan
    • B22F9/06B22F9/24
    • C23C26/00B22F1/025B22F2999/00Y10S977/777Y10S977/888Y10S977/896B22F9/24
    • A process for encapsulating metal microparticles in a pH sensitive polymer matrix using a suspension containing the polymer. The process first disperses the metal particles in a polymeric solution consisting of a pH sensitive polymer. The particles are then encapsulated in the form of micro-spheres of about 5-10 microns in diameter comprising the pH sensitive polymer and the metal ions (Ni2+, Cu2+) to be coated. The encapsulated matrix includes first metal particles homogeneously dispersed in a pH sensitive matrix, comprising the second metal ions. A high shear homogenization process ensures homogenization of the aqueous mixture resulting in uniform particle encapsulation. The encapsulated powder may be formed using spray drying. The powder may be then coated in a controlled aqueous media using an electroless deposition process. The polymer is removed when the encapsulated micro-spheres encounter a pH change in the aqueous solution.
    • 使用含有聚合物的悬浮液将金属微粒包封在pH敏感性聚合物基质中的方法。 该方法首先将金属颗粒分散在由pH敏感聚合物组成的聚合物溶液中。 然后将颗粒包封成直径约5-10微米的微球形式,其中包含pH敏感聚合物和待涂覆的金属离子(Ni2 +,Cu2 +)。 包封的基质包括均匀分散在pH敏感基质中的第一金属颗粒,其包含第二金属离子。 高剪切均匀化过程确保水性混合物的均匀化,导致均匀的颗粒包封。 包封的粉末可以使用喷雾干燥形成。 然后可以使用无电沉积方法将粉末涂覆在受控的水性介质中。 当封装的微球遇到水溶液中的pH变化时,聚合物被去除。
    • 9. 发明申请
    • METAL ENCAPSULATION
    • 金属封装
    • US20080210742A1
    • 2008-09-04
    • US11839257
    • 2007-08-15
    • Zvi YanivPrabhu Soundarrajan
    • Zvi YanivPrabhu Soundarrajan
    • B23K31/00
    • C23C26/00B22F1/025B22F2999/00Y10S977/777Y10S977/888Y10S977/896B22F9/24
    • A process for encapsulating metal microparticles in a pH sensitive polymer matrix using a suspension containing the polymer. The process first disperses the metal particles in a polymeric solution consisting of a pH sensitive polymer. The particles are then encapsulated in the form of micro-spheres of about 5-10 microns in diameter comprising the pH sensitive polymer and the metal ions (Ni2+, Cu2+) to be coated. The encapsulated matrix includes first metal particles homogeneously dispersed in a pH sensitive matrix, comprising the second metal ions. A high shear homogenization process ensures homogenization of the aqueous mixture resulting in uniform particle encapsulation. The encapsulated powder may be formed using spray drying. The powder may be then coated in a controlled aqueous media using an electroless deposition process. The polymer is removed when the encapsulated micro-spheres encounter a pH change in the aqueous solution.
    • 使用含有聚合物的悬浮液将金属微粒包封在pH敏感性聚合物基质中的方法。 该方法首先将金属颗粒分散在由pH敏感聚合物组成的聚合物溶液中。 然后将颗粒以包含pH敏感聚合物和金属离子(Ni 2+),Cu 2+ / SUP的直径约5-10微米的微球的形式包封 >)进行涂布。 包封的基质包括均匀分散在pH敏感基质中的第一金属颗粒,其包含第二金属离子。 高剪切均匀化过程确保水性混合物的均匀化,导致均匀的颗粒包封。 包封的粉末可以使用喷雾干燥形成。 然后可以使用无电沉积方法将粉末涂覆在受控的水性介质中。 当封装的微球遇到水溶液中的pH变化时,聚合物被去除。