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    • 1. 发明申请
    • METHOD FOR MEASURING CYSTATIN C IN HUMAN BODY FLUID
    • 测定人体液中胱氨酸C的方法
    • WO2010064435A8
    • 2010-09-16
    • PCT/JP2009006590
    • 2009-12-03
    • SEKISUI MEDICAL CO LTDNAKAYAMA SHINYATAKAHASHI HIROSHINAKAMURA YASUSHISHIMIZU TOMO
    • NAKAYAMA SHINYATAKAHASHI HIROSHINAKAMURA YASUSHISHIMIZU TOMO
    • G01N33/53G01N33/543G01N33/577
    • G01N33/543G01N33/6893G01N2333/8139
    • Disclosed is a particle-enhanced immunoassay method for cystatin C in a human body fluid, which has higher specificity, is more inexpensive, and can be automated more readily compared with conventional assay methods in which polyclonal antibodies having low specificity or monoclonal antibodies having high specificity but having poor aggregability have been used in large quantities. The particle-enhanced immunoassay method utilizes a combination of an antibody-sensitized particle comprising an insoluble carrier particle and an anti-human cystatin C monoclonal antibody having higher affinity and bound to the particle and an antibody-sensitized particle comprising the insoluble carrier particle and an anti-human cystatin C monoclonal antibody having a different recognition site from that of the aforementioned monoclonal antibody and having a relatively lower affinity, wherein the quantity of each of the human cystatin C monoclonal antibodies bound to the insoluble carrier particle is less than 5 wt% relative to the weight of the antibody-sensitized particle.
    • 公开了一种人体液中半胱氨酸蛋白酶抑制剂C的颗粒增强免疫测定方法,与特异性低的多克隆抗体或特异性高的单克隆抗体的常规测定方法相比,该方法具有更高的特异性,更便宜,并且可以更容易自动化 但具有较差的可聚合性已被大量使用。 颗粒增强免疫测定方法利用包含不溶性载体颗粒的抗体敏化颗粒和具有较高亲和力且结合于颗粒的抗人半胱氨酸蛋白酶抑制剂C单克隆抗体的组合以及包含不溶性载体颗粒和抗体敏化颗粒 与上述单克隆抗体具有不同识别位点并具有相对较低亲和力的抗人半胱氨酸蛋白酶抑制剂C单克隆抗体,其中与不溶性载体颗粒结合的每种人半胱氨酸蛋白酶抑制剂C单克隆抗体的量小于5重量% 相对于抗体致敏颗粒的重量。
    • 5. 发明申请
    • APPARATUS FOR MEASURING A SURFACE PROFILE
    • 测量表面轮廓的设备
    • WO03023369A2
    • 2003-03-20
    • PCT/JP0209058
    • 2002-09-05
    • OLYMPUS OPTICAL CONAGAIKE YASUNARINAKAMURA YASUSHIITO YOSHIAKI
    • NAGAIKE YASUNARINAKAMURA YASUSHIITO YOSHIAKI
    • G01B21/20G01B3/00G01B5/004G01B5/008G01B5/20G01N19/08G01N19/00
    • G01B5/008G01B3/008G01B5/004G01B5/20
    • An apparatus for measuring a surface profile of an object to be measured, comprising a measuring probe (6) positioned to contact the surface of the object (2) to be measured, guide means (4) for supporting and guiding the measuring probe (6) in an axis direction of the measuring probe, tilt angle adjustment means (3) for tilting the guide means (4) at a predetermined tile angle to a horizontal direction so that the measuring probe (6) contact the surface of the object (2) to be measured with a predetermined contact force, and drive means for relatively driving at least one of the measuring probe (6) and the object (2) to scan the surface of the object (2) to be measured with the measuring probe (6), the contact force being derived from a tilt direction component of the gravity of the measuring probe (6) generated when the measuring probe (6) is tilted.
    • 一种用于测量待测量物体的表面轮廓的装置,包括定位成与待测物体(2)的表面接触的测量探针(6),用于支撑和引导测量探针(6)的引导装置(4) )在所述测量探头的轴线方向上倾斜的倾斜角度调节装置(3),用于使所述引导装置(4)以预定的平铺角倾斜到水平方向,使得所述测量探头(6)接触所述物体(2)的表面 )以预定的接触力测量;以及驱动装置,用于相对驱动测量探针(6)和物体(2)中的至少一个以利用测量探针扫描待测量物体(2)的表面( 接触力是由测量探针(6)倾斜时产生的测量探针(6)的重力的倾斜方向分量导出的。
    • 7. 发明申请
    • SPECULUM COVER, METHOD OF MANUFACTURING SAME AND CASE FOR HOUSING COVER
    • SPECIAL CO COVER,其制造方法和壳体外壳
    • WO1993019662A1
    • 1993-10-14
    • PCT/JP1993000406
    • 1993-03-31
    • OMRON CORPORATIONMAKITA, ShigeruSANO, YoshihikoOTA, HiroyukiNAKAMURA, Yasushi
    • OMRON CORPORATION
    • A61B05/00
    • G01J5/02A61B1/00142A61B1/32A61B46/10A61B2017/00057A61B2017/00084A61B2017/00907G01J5/021
    • A sensor probe cover (20) is constituted by two sheets of transparent film (21) and (22) each being of a generally square shape and a ring (23) having a hole (23a) suitable for fitting over a sensor probe (12). A hole (21a) is formed in the center of the first film (21) and a ring (23) is welded to the peripheral edge of this hole (21a) in the inner surface of the first film (21). The ring (23) is formed of a material harder than that of the film. The first film (21) and the second film (22) are hot-welded to each other at four corners thereof. The positions of hot welding are designated by reference numerals (20a). The second film (22) is formed of a material which can transmit infrared rays therethrough when it is used for a cover of a probe in an infrared ray clinical thermometer. When the forward end of the probe (12) is pushed into the ring (23) from above the second film (22), the second film (22) covers the probe (12) while the second film (22) is turned over. When the ring (23) is fitted into an annular groove (12a) of the probe (12), the mounting of the cover is completed.
    • 传感器探针盖(20)由两片透明膜(21)和(22)构成,每片透明膜(21)和(22)均为大致正方形,并且环(23)具有适于安装在传感器探头(12)上的孔 )。 在第一膜(21)的中心形成有孔(21a),并且在第一膜(21)的内表面上,在该孔(21a)的周缘焊接有环(23)。 环(23)由比膜的材料硬的材料形成。 第一膜(21)和第二膜(22)在其四个角处彼此热焊接。 热焊接的位置用附图标记(20a)表示。 第二膜(22)由用于红外线体温计中的探针的盖的能够透过红外线的材料形成。 当探针(12)的前端从第二膜(22)的上方推入环(23)时,第二膜(22)在第二膜(22)翻转时覆盖探针(12)。 当环(23)装配到探针(12)的环形槽(12a)中时,盖的安装完成。