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    • 75. 发明授权
    • Sample fluid testing device and method for analyzing a sample fluid
    • 用于分析样品流体的样品流体测试装置和方法
    • US08685227B2
    • 2014-04-01
    • US12257960
    • 2008-10-24
    • Hans ListMichael MarquantSteven N. Roe
    • Hans ListMichael MarquantSteven N. Roe
    • G01N27/327
    • G01N27/3273H01R39/64
    • The invention refers to a sample fluid testing device for analyzing a sample fluid, comprising a test media tape (1) comprising a tape (2) and a plurality of test media portions (3), each test media portion (3) containing a sensor field (7) for producing electrical signals, when the sample fluid is applied and at least two electrodes (4), the at least two electrodes (4) being positioned in the sensor field (7) and being electrically connected to at least two contact fields (5). The sample fluid testing device contains at least one roller with a surface (17), which contains at least one contact zone (14), the at least one roller (12, 13) being in rolling engagement with the test media tape (1) with its surface (17) in order to successively electrically contact the test media portions (3) via at least one contact field (5) with the at least one contact zone (14), the at least one contact zone (14) on the at least one roller (12, 13) being electrically connected to a meter for measuring the electrical signals.
    • 本发明涉及一种用于分析样品流体的样品流体测试装置,其包括包括带(2)和多个测试介质部分(3)的测试介质带(1),每个测试介质部分(3)包含传感器 用于产生电信号的场(7),当施加样品流体和至少两个电极(4)时,所述至少两个电极(4)定位在所述传感器场(7)中并且电连接到至少两个触点 领域(5)。 所述样品流体测试装置包含至少一个具有表面(17)的辊,所述辊包含至少一个接触区域(14),所述至少一个辊子(12,13)与测试介质带(1)滚动接合, 以及其表面(17),以便经由至少一个接触区域(5)与至少一个接触区域(14)连续电接触测试介质部分(3),所述至少一个接触区域(14)位于 至少一个辊子(12,13)电连接到用于测量电信号的仪表。
    • 79. 发明申请
    • Handheld Medical Diagnostic Devices With Lancing Speed Control
    • 带有牵引速度控制的手持式医疗诊断装置
    • US20120172760A1
    • 2012-07-05
    • US12981816
    • 2010-12-30
    • Steven N. RoeChris FruhaufMax Chen
    • Steven N. RoeChris FruhaufMax Chen
    • A61B5/151
    • A61B5/150419A61B5/150022A61B5/150167A61B5/150175A61B5/150267A61B5/150427A61B5/150503A61B5/150572A61B5/150946A61B5/15113A61B5/15117A61B5/15132A61B5/15151A61B5/15161A61B5/15182A61B5/157
    • A method of controlling lancing speed of a lancing structure of a portable handheld medical diagnostic device includes providing an elongated lancet structure having a skin piercing end and a blood transport portion adjacent the skin piercing end. The skin piercing end when displaced makes an incision at a skin site to produce an amount of bodily fluid from the skin site and in which the blood transport portion transports the amount of bodily fluid away from the skin site for use by a measurement system in making a physiological measurement. A spring-driven motor assembly is operatively connected to the lancet structure. The spring-driven motor assembly displaces the lancet structure toward the skin site to make the incision for producing the amount of bodily fluid and retracts the lancet structure to carry the amount of bodily fluid away from the skin cite. A speed control mechanism is engaged with the spring-driven motor assembly as the spring-driven motor assembly retracts the lancet structure thereby decelerating the lancet structure as the lancet structure is retracted away from the skin site.
    • 一种控制便携式手持式医疗诊断装置的穿刺结构的穿刺速度的方法包括:提供具有皮肤刺穿端的细长刺血针结构和邻近皮肤刺穿端的血液输送部分。 移位时的皮肤穿刺端在皮肤部位进行切口,以从皮肤部位产生一定量的体液,其中血液输送部分将体液的量从皮肤部位输送出去,以供测量系统制造 生理测量。 弹簧驱动的马达组件可操作地连接到刺血针结构。 弹簧驱动的马达组件将柳叶刀结构移动到皮肤部位,以形成用于产生体液量的切口,并使柳叶刀结构缩回以将体液的数量远离皮肤引诱。 当弹簧驱动的马达组件缩回柳叶刀结构,从而当刺血针结构从皮肤部位缩回时使柳叶刀结构减速,速度控制机构与弹簧驱动马达组件接合。