METHOD AND SYSTEM FOR MONITORING NUTRITIONAL UPTAKE AS A FUNCTION OF MICROFLORA INTESTINAL GAS LEVELS
    2.
    发明申请
    METHOD AND SYSTEM FOR MONITORING NUTRITIONAL UPTAKE AS A FUNCTION OF MICROFLORA INTESTINAL GAS LEVELS 审中-公开
    监测营养摄取作为微生物肠胃气水平功能的方法和系统

    公开(公告)号:WO2012080858A3

    公开(公告)日:2012-11-01

    申请号:PCT/IB2011054964

    申请日:2011-11-07

    Abstract: Systems and methods for monitoring nutritional uptake of an individual are disclosed. The method can include monitoring microflora intestinal gas concentration levels associated with a patient and adjusting the volume of nutrient provided by the patient with an artificial feeding device based at least in part on the microflora intestinal gas levels associated with the patient. A microflora intestinal gas sensor can be used to monitor the microflora intestinal gas associated with the patient. The microflora intestinal gas sensor can monitor the microflora intestinal gas in a patient's exhaled breath or in the patient's digestive tract. The microflora intestinal gas sensor be included as part of an enteral feeding system at the distal end or outside end of an enteral feeding tube. Systems and methods for monitoring nutritional uptake of an infant based on microflora intestinal gas levels associated with the infant are also disclosed.

    Abstract translation: 公开了用于监测个体营养摄取的系统和方法。 该方法可以包括监测与患者相关的微生物菌群肠气浓度水平,并至少部分地基于与患者相关的微生物菌群肠气水平用人造饲喂装置调节患者提供的营养物的体积。 微生物菌群肠气体传感器可用于监测与患者相关的微生物菌群肠气。 微生物菌群肠气传感器可以监测患者呼出气中或患者消化道中的微生物菌群肠气。 微生物菌群肠气体传感器作为肠内喂养系统的一部分被包括在肠饲管的远端或外端。 还公开了基于与婴儿相关的微生物菌群肠气水平监测婴儿营养摄取的系统和方法。

    THERMOPLASTIC COMPOSITIONS FOR SHEET MATERIALS HAVING IMPROVED TENSILE PROPERTIES
    3.
    发明申请
    THERMOPLASTIC COMPOSITIONS FOR SHEET MATERIALS HAVING IMPROVED TENSILE PROPERTIES 审中-公开
    用于具有改进的拉伸性能的片材的热塑性组合物

    公开(公告)号:WO2012090103A2

    公开(公告)日:2012-07-05

    申请号:PCT/IB2011/055559

    申请日:2011-12-08

    CPC classification number: C08L23/10 B82Y30/00 C08L2205/02

    Abstract: Disclosed is a thermoplastic composition suitable for forming sheet materials with improved tensile properties. The thermoplastic composition includes from about 1 to about 98 weight percent of a fiber-forming or film-forming polymer, from about 1 to about 98 weight percent of a low melt flow rate polymer having a melt flow rate less than 20 grams per 10 minutes, and from about 0.1 to about 10 weight percent of nanoparticles. The nanoparticles may be cylindrical nanoparticles having an average aspect ratio greater than about 1 and less than about 500.

    Abstract translation: 公开了适用于形成具有改善的拉伸性能的片材的热塑性组合物。 该热塑性组合物包含约1至约98重量%的成纤维或成膜聚合物,约1至约98重量%的熔体流动速率小于20克/ 10分钟的低熔体流动速率聚合物 ,和约0.1至约10重量百分比的纳米颗粒。 纳米颗粒可以是具有大于约1且小于约500的平均纵横比的圆柱形纳米颗粒

    APPARATUS FOR DETECTION OF A CONTAMINATED BEVERAGE AND METHOD FOR PRODUCING SAME
    4.
    发明申请
    APPARATUS FOR DETECTION OF A CONTAMINATED BEVERAGE AND METHOD FOR PRODUCING SAME 审中-公开
    用于检测污染的饮料的装置及其生产方法

    公开(公告)号:WO2012087342A1

    公开(公告)日:2012-06-28

    申请号:PCT/US2011/001521

    申请日:2011-08-29

    Abstract: A system and method for a beverage container configured to test for a contaminated beverage in the beverage container comprises a base of the beverage container, an upper portion of the beverage container, and a sidewall with an inner surface and an outer surface that extends from the base to the upper portion, and a testing material. A portion of the beverage container is the testing material configured to visibly react when the portion of the beverage container is contacted with the contaminated beverage.

    Abstract translation: 用于饮料容器的系统和方法,其被配置成测试饮料容器中的污染饮料,包括饮料容器的基部,饮料容器的上部,以及具有内表面和外表面的侧壁,所述内表面和外表面从 基部到上部,以及测试材料。 饮料容器的一部分是配置成当饮料容器的部分与受污染的饮料接触时可视地反应的测试材料。

    METHODS OF PREPARING METAL-MODIFIED SILICA NANOPARTICLES
    6.
    发明申请
    METHODS OF PREPARING METAL-MODIFIED SILICA NANOPARTICLES 审中-公开
    制备金属改性二氧化硅纳米粒子的方法

    公开(公告)号:WO2010070480A3

    公开(公告)日:2010-09-23

    申请号:PCT/IB2009055090

    申请日:2009-11-16

    CPC classification number: B01F11/0258 A61L9/014

    Abstract: A method of preparing metal-modified silica particles is disclosed. Specifically, a treatment chamber is provided in which a first and a second formulation are ultrasonically mixed to prepare metal-modified silica particles. The treatment chamber has an elongate housing through which the first and second formulations flow longitudinally from a first inlet port and a second inlet port, respectively, to an outlet port thereof. An elongate ultrasonic waveguide assembly extends within the housing and is operable at a predetermined ultrasonic frequency to ultrasonically energize the formulations within the housing. An elongate ultrasonic horn of the waveguide assembly is disposed at least in part intermediate the inlet and outlet ports, and has a plurality of discrete agitating members in contact with and extending transversely outward from the horn intermediate the inlet and outlet ports in longitudinally spaced relationship with each other. The horn and agitating members are constructed and arranged for dynamic motion of the agitating members relative to the horn at the predetermined frequency and to operate in an ultrasonic cavitation mode of the agitating members corresponding to the predetermined frequency and the formulations being mixed in the chamber.

    Abstract translation: 公开了一种制备金属改性二氧化硅颗粒的方法。 具体地说,提供一种处理室,其中第一和第二制剂被超声波混合以制备金属改性的二氧化硅颗粒。 处理室具有细长的外壳,第一和第二配方通过该外壳从第一入口端口和第二入口端口分别纵向流到其出口。 细长的超声波波导组件在壳体内延伸并且可以预定的超声频率操作以超声波地激励壳体内的配方。 波导组件的细长超声波喇叭至少部分地设置在入口和出口的中间,并且具有多个离散的搅拌构件,其与入口和出口端口处的喇叭中的接触并横向向外延伸,与纵向间隔开的关系 彼此。 喇叭和搅拌构件被构造和布置成用于搅动构件相对于喇叭以预定频率的动态运动,并且在对应于预定频率的搅拌构件的超声空化模式下操作,并且配方在腔室中混合。

    METHODS OF PREPARING METAL-MODIFIED SILICA NANOPARTICLES
    9.
    发明申请
    METHODS OF PREPARING METAL-MODIFIED SILICA NANOPARTICLES 审中-公开
    制备金属改性的二氧化硅纳米粒子的方法

    公开(公告)号:WO2010070480A2

    公开(公告)日:2010-06-24

    申请号:PCT/IB2009/055090

    申请日:2009-11-16

    CPC classification number: B01F11/0258 A61L9/014

    Abstract: A method of preparing metal-modified silica particles is disclosed. Specifically, a treatment chamber is provided in which a first and a second formulation are ultrasonically mixed to prepare metal-modified silica particles. The treatment chamber has an elongate housing through which the first and second formulations flow longitudinally from a first inlet port and a second inlet port, respectively, to an outlet port thereof. An elongate ultrasonic waveguide assembly extends within the housing and is operable at a predetermined ultrasonic frequency to ultrasonically energize the formulations within the housing. An elongate ultrasonic horn of the waveguide assembly is disposed at least in part intermediate the inlet and outlet ports, and has a plurality of discrete agitating members in contact with and extending transversely outward from the horn intermediate the inlet and outlet ports in longitudinally spaced relationship with each other. The horn and agitating members are constructed and arranged for dynamic motion of the agitating members relative to the horn at the predetermined frequency and to operate in an ultrasonic cavitation mode of the agitating members corresponding to the predetermined frequency and the formulations being mixed in the chamber.

    Abstract translation: 公开了一种制备金属改性的二氧化硅颗粒的方法。 具体而言,提供处理室,其中超声混合第一和第二制剂以制备金属改性的二氧化硅颗粒。 处理室具有细长的外壳,第一和第二制剂分别从第一入口端口和第二入口端口纵向流动到其出口端口。 细长的超声波导组件在外壳内延伸并且可以预定的超声频率操作以超声地激励外壳内的配方。 波导组件的细长超声波喇叭筒至少部分地设置在入口和出口端口的中间,并且具有多个分立的搅动构件,该喇叭状件与喇叭口接触并从喇叭口横向向外延伸,入口和出口之间以纵向间隔的关系与 彼此。 喇叭和搅拌构件被构造和布置成用于搅动构件相对于喇叭以预定频率进行动态运动并且以对应于预定频率的搅动构件的超声空化模式进行操作,并且所述制剂在腔室中混合。

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