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    • 3. 发明申请
    • SYSTEMS, DEVICES AND METHODS FOR FLUID/DRUG DELIVERY
    • 用于流体/药物递送的系统,装置和方法
    • WO2008012817A1
    • 2008-01-31
    • PCT/IL2007/000932
    • 2007-07-24
    • MEDINGO LTD.YODFAT, OferIDDAN, Gavriel J.
    • YODFAT, OferIDDAN, Gavriel J.
    • A61M5/142
    • A61M5/14244A61M5/14232A61M5/14248A61M2005/14252A61M2005/14268A61M2209/04
    • Fluid delivery systems, methods and devices for delivering a therapeutic fluid to the body of the patient are disclosed. A fluid delivery device (100) for delivering fluid to the body of the patient includes a housing having an upper wall (534) and a lower wall (536), wherein the upper wall includes an upper opening (116) and the lower wall includes a lower opening (540), a well-arrangement mechanism (510) configured to be disposed inside the housing and between the upper wall and the lower wall and including a tubular member (322) having a bore (326), wherein the bore is configured to be disposed between the upper opening and the lower opening, and a penetrating cartridge (662) for delivery of therapeutic fluid to the body of the patient, wherein the penetrating cartridge is configured to engage the bore following its insertion through the upper opening and the lower opening, wherein therapeutic fluid is configured to be delivered through the tubular member into the penetrating cartridge into the body of the patient when the penetrating cartridge engages the bore.
    • 公开了用于将治疗流体递送到患者体内的流体递送系统,方法和装置。 用于将流体输送到患者身体的流体输送装置(100)包括具有上壁(534)和下壁(536)的壳体,其中上壁包括上开口(116),下壁包括 下部开口(540),井下布置机构(510),其构造成设置在壳体内部以及上壁和下壁之间并且包括具有孔(326)的管状构件(322),其中孔是 被配置为设置在所述上​​部开口和所述下部开口之间,以及用于将治疗性流体输送到患者身体的穿透药筒(662),其中所述穿透药筒构造成在其穿过所述上部开口插入之后与所述孔接合, 下部开口,其中治疗性流体构造成当穿透滤芯接合孔时通过管状构件输送到贯穿滤芯进入患者体内。
    • 8. 发明申请
    • MINUSCULE SIZE PHTO-SPECTROMETRY
    • 缩小尺寸PHTO-SPECTROMETRY
    • WO2007129305A1
    • 2007-11-15
    • PCT/IL2007/000533
    • 2007-05-01
    • MEDINGO LTD.IDDAN, Gavriel J.
    • IDDAN, Gavriel J.
    • G01J3/02G01J3/12G01J3/28
    • G01J3/2803G01J3/02G01J3/0259G01J3/0291G01J3/12
    • Device and method for implementing a photo-spectrometer unit, PSU (20), for use with a spectrometry system (100) having optical means (12), and electronic means (13) including detection means (15, 25, 25j) and processing means (16, 26, 26k). The PSU is formed in a first manufacturing process step into a monolithic structure as a chip of substrate material (30) including integrally formed optical means, and has a first input surface (301) separated from a second receiving surface (302) by a substrate material thickness (t). Electronic means are formed onto the PSU structure in a second manufacturing process step. The substrate material is selected as a material transparent to electromagnetic radiations, and the PSU has at least one optical deflecting element (32) configured for guiding received radiations through the thickness of the substrate material, for establishing direct optical path coupling between both an element formed on one surface and an element formed on another surface of the substrate material.
    • 用于实现光谱仪单元的装置和方法,PSU(20),用于具有光学装置(12)的光谱测量系统(100)和包括检测装置(15,25,25j)的电子装置(13)和处理 (16,26,26k)。 PSU在第一制造工艺步骤中形成作为包括一体形成的光学装置的基板材料(30)的芯片的单片结构,并且具有通过基板与第二接收表面(302)分离的第一输入表面(301) 材料厚度(t)。 电子装置在第二制造工艺步骤中形成在PSU结构上。 衬底材料被选择为对电磁辐射透明的材料,并且PSU具有至少一个光学偏转元件(32),该光学偏转元件构造成用于引导接收的辐射穿过衬底材料的厚度,以在两个元件形成之间建立直接光路耦合 在一个表面上形成的元件和形成在基底材料的另一个表面上的元件。