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    • 1. 发明申请
    • Methods and Apparatus for Reducing Count of Infectious Agents in Intravenous Access Systems
    • 静脉注射系统中传染物计数减少的方法与装置
    • US20110085936A1
    • 2011-04-14
    • US12751365
    • 2010-03-31
    • Eyal HaytmanAssaf DeutschEliahu Pewzner
    • Eyal HaytmanAssaf DeutschEliahu Pewzner
    • A61L2/08G21G5/00
    • A61L2/084A61L2202/23A61N5/0624
    • Methods and apparatus for preventing patient bloodstream infection by microorganisms during administration of various medications or fluids through IV lines. In particular, the invention reduces contamination of IV lines, connecters, stopcock valves, manifolds, ports, etc. by means of irradiation by violet and/or blue light. Each embodiment comprises a source of violet and/or blue light and an optical element optically coupled to that light source for shaping the radiation pattern of the light emitted by the light source. Preferably, a light-emitting diode or a laser diode that emits light in the desired wavelength can be used. The optical element, optically coupled to the light source, is embedded or installed in or attached to a component of an IV set, the emitted light being directed to a “point of entry” or any other stagnation point of an IV set.
    • 在通过IV线施用各种药物或液体期间预防微生物患者血液感染的方法和装置。 特别地,本发明通过紫外线和/或蓝光的照射来减少IV线,连接器,旋塞阀,歧管,端口等的污染。 每个实施例包括紫色和/或蓝色光源和与该光源光耦合的光学元件,用于对由光源发射的光的辐射图进行整形。 优选地,可以使用发射所需波长的光的发光二极管或激光二极管。 与光源光学耦合的光学元件被嵌入或安装在IV组件的一个部件中或附着于IV组件的组件上,所发射的光被引导到IV组的“进入点”或任何其它停滞点。
    • 2. 发明申请
    • PARTICLE SEPARATION
    • 颗粒分离
    • US20110036787A1
    • 2011-02-17
    • US12854943
    • 2010-08-12
    • Mordechai DEUTSCHAssaf DEUTSCH
    • Mordechai DEUTSCHAssaf DEUTSCH
    • B01D29/66
    • A61M1/3627A61M2205/7563
    • Apparatus for increasing a concentration of large particles in a mixture which includes the large particles and smaller particles, including a flow chamber, a filtrate accepting chamber, a filtering component separating the flow chamber from the filtrate accepting chamber, the filtering component including a plurality of pores passing therethrough, characterized by further including means for generating a flow of the fluid in the flow chamber, with a flow component in a direction parallel to a surface of the filtering component sufficient to substantially prevent particles from adhering to the filtering component and clogging the pores. A method of increasing a concentration of large particles in a mixture which includes the large particles and smaller particles, including providing a flow chamber and a filtrate accepting chamber separated by a filtering component, the filtering component including a plurality of pores passing therethrough, and placing a fluid with the mixture in the flow chamber, characterized by causing the fluid with the mixture to flow in the flow chamber, with a flow component parallel to a surface of the filtering component sufficient to substantially prevent particles from adhering to the filtering component and clogging the pores, thereby increasing the concentration of the larger particles relative to the concentration of the smaller particles in the mixture. Related apparatus and methods are also described.
    • 用于增加包括大颗粒和较小颗粒的混合物中的大颗粒浓度的装置,包括流动室,滤液接收室,将流动室与滤液接收室分离的过滤组分,过滤组分包括多个 通过其中的孔,其特征在于还包括用于在流动室中产生流体的流动的装置,其中流动分量在平行于过滤组件的表面的方向上,足以基本上防止颗粒粘附到过滤组件并阻塞 毛孔 一种增加包含大颗粒和较小颗粒的混合物中的大颗粒浓度的方法,包括提供由过滤组分分离的流动室和滤液接收室,过滤组分包括通过其中的多个孔,并将 在流动室中具有混合物的流体,其特征在于使混合物中的流体在流动室中流动,其中流动分量平行于过滤组分的表面足以基本上防止颗粒粘附到过滤组分并堵塞 孔,从而相对于混合物中较小颗粒的浓度增加了较大颗粒的浓度。 还描述了相关装置和方法。