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    • 5. 发明申请
    • PRICKING DEVICE FOR TAKING BLOOD
    • HOLLY设备收集的血液
    • WO2006058654A3
    • 2006-09-21
    • PCT/EP2005012569
    • 2005-11-24
    • ROCHE DIAGNOSTICS GMBHHOFFMANN LA ROCHEWINHEIM SVENDECK FRANKHARTTIG HERBERT
    • WINHEIM SVENDECK FRANKHARTTIG HERBERT
    • A61B5/151
    • A61B5/150893A61B5/150022A61B5/150297A61B5/150412A61B5/150465A61B5/150519A61B5/150916A61B5/15105A61B5/15128A61B5/15142A61B5/15144
    • The invention relates to a pricking device for taking blood, comprising an element (1, 100, 200) for contacting an extraction surface, an actuating element (3, 103, 202) for manually actuating the pricking device, and a pricking element (4, 102, 204) that is movable relative to the contacting element (1, 100, 200) substantially perpendicular to the extraction surface and is used for perforating the extraction surface. The pricking element (4, 102, 204) is disposed in the contacting element (1, 100, 200) so as not to protrude from the contacting element (1, 100, 200) before the pricking process is initiated while obtaining a defined pricking depth during the pricking process. The inventive pricking device further comprises a return spring (6, 106, 207) for automatically retracting the pricking element (4, 102, 204) into the contacting element (1, 100, 200) once the pricking process has been completed as well as a mechanism (7, 109) for locking the pricking device following a single pricking process. Said locking mechanism (7, 109) is embodied such that a bolt (11, 110, 208) slides across a switch (10, 112) along a first guiding area (24, 117, 211) when the pricking process is initiated while sliding across said switch (10, 112) along a second guiding area (27, 121, 215) into a locking position when the pricking element (4, 102, 204) is retracted by means of the return spring (6, 106, 207) once the pricking process has been completed.
    • 本发明涉及一种刺血装置用于与接触元件(1,100,200),用于提取表面接触,以及一个致动元件(3,103,202),用于手动操作所述柳叶刀切开装置,收集血液相对(与接触元件1,100 ,200)基本上垂直地移动的用于将用于产生采样表面的穿孔,其特征在于,所述穿刺件(4,102,204)在所述接触元件(1,100,200)中除去表面刺穿构件(4,102,204)被布置成 之前Einstechvorgangs的开始不从所述接触元件(1,100,200)突出,并且在其刺穿定义穿刺深度达到,在复位弹簧(6,106,207),用于将穿透构件的自动回缩(4,102,204) 完成穿孔后接触元件(1,100,200),以及锁定机构(7,109)根据一个独特的用于锁定柳叶刀切开装置由 刺穿,其中,所述锁定机构(7,109)被形成为使得通过开关沿着第一引导面(24,117,211)的螺栓(11,110,208)在所述Einstechvorgangs开始(10,112)滑动并在 通过沿着第二导向表面(27,121,215)的开关(10,112)刺穿的完成之后由复位弹簧(6,106,207)的穿透构件(4,102,204)的缩回滑动到锁定位置中。
    • 10. 发明申请
    • METHOD FOR CONTROLLING A PHOTOMETRIC MEASURING UNIT OF A MEASURING DEVICE FOR OBTAINING AND EXAMINING A BODILY FLUID SAMPLE AND MEASURING SYSTEM
    • 一种用于控制仪的光度测量单元,用于获得与体液样本和测量系统的研究
    • WO2011038839A8
    • 2011-09-29
    • PCT/EP2010005679
    • 2010-09-16
    • ROCHE DIAGNOSTICS GMBHHOFFMANN LA ROCHEWEHOWSKI FREDERICHHARTTIG HERBERTHOENES JOACHIM
    • WEHOWSKI FREDERICHHARTTIG HERBERTHOENES JOACHIM
    • G01N21/86
    • G01N21/8483
    • The invention relates to a method for controlling a photometric measuring unit of a measuring device for obtaining and examining a human or animal bodily fluid sample, wherein a test field (1) partially wetted with a bodily fluid sample is illuminated and light from a measuring surface (3) that covers a part of the test field (1) is fed to a detector of the measuring unit, and the measuring surface (3) is slid relative to the test field (1) to a partial surface (2) wetted by the fluid sample and beyond the partial surface (2). According to the invention, the intensity of a detector signal is detected during the sliding, an extreme is determined in the course of the detector signal, the measuring surface (3) is brought back to the position in which an extreme detector signal was previously measured, and the position of the measuring surface (3) in which the detector signal is extreme is used for a photometric determination of concentration.
    • 本发明涉及一种方法,用于控制测量装置的测光测量单元,用于人或动物的体液样品的回收和分析,其特征在于,与体液样品部分润湿测试场(1)进行照明和测量单元的一个检测器,光从测量表面(3)形成的一部分 覆盖的测试场(1),供给到测定表面(3)相对于所述测试场(1)移位到一个随液体试样的部分表面(2)朝向和在局部区域(2)除了润湿。 根据本发明,它提供了一种被检测到的检测信号的强度的位移期间,在检测器信号的过程中已经检测到一个极值,测量区域(3)被带回到其极值检测器信号被前测得的位置,和的位置 测量表面(3),其中检测器信号是极值,用于光度浓度测定。