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    • 5. 发明授权
    • Biosensor and measuring apparatus using the same
    • 生物传感器和使用其的测量装置
    • US5320732A
    • 1994-06-14
    • US75859
    • 1993-06-11
    • Shiro NankaiMariko KawaguriToshihiko YoshiokaHaruhiro TsutsumiMinoru Fukuda
    • Shiro NankaiMariko KawaguriToshihiko YoshiokaHaruhiro TsutsumiMinoru Fukuda
    • G01N27/28G01N33/487G01N27/26
    • G01N27/3272
    • The subject invention provides a simple sensor and an easy to handle biosensor measuring apparatus for the purpose of making measurements easily, rapidly and with high accuracy for specific components within a biological specimen such as blood.The biosensor of the subject invention is provided with a protrusion or a depression in a portion of a base having at least a measurement electrode and an opposing electrode. Also, the biosensor measuring apparatus is so configurated to have a mating means in the main body of the measuring apparatus freely supporting this biosensor to contact the said sensor's protrusion or depression, and further having the activating switch of the driving power supply located in this mating means.By means of these, it is possible to prevent wasteful measuring operations, as noted in the prior art biosensors, such as inserting the sensor backwards and making measurements with the sensor inserted backwards.
    • 本发明提供了一种简单的传感器和易于处理的生物传感器测量装置,用于容易,快速且高度精确地测量诸如血液的生物样本内的特定组分的目的。 本发明的生物传感器在至少具有测量电极和相对电极的基部的一部分中设置有突起或凹陷。 此外,生物传感器测量装置被配置为具有在测量装置的主体中具有自由支撑该生物传感器的配合装置以接触所述传感器的突起或凹陷,并且还具有位于该配合中的驱动电源的启动开关 手段。 通过这些,可以防止浪费的测量操作,如现有技术的生物传感器中所述,例如向后插入传感器并且使传感器向后插入进行测量。
    • 7. 发明授权
    • Biosensor
    • 生物传感器
    • US06830669B2
    • 2004-12-14
    • US09890761
    • 2001-10-16
    • Shoji MiyazakiHaruhiro TsutsumiEriko Yamanishi
    • Shoji MiyazakiHaruhiro TsutsumiEriko Yamanishi
    • G01N2726
    • C12Q1/001G01N27/3272
    • A biosensor having an electrode layer, which includes a working electrode and a counter electrode, and a reagent layer 10 are formed on an insulating support. Further, a spacer having a long and narrow cut-out portion on the reagent layer is bonded to a cover having an air hole to form a cavity that sucks blood as a liquid sample by capillary phenomenon, and a portion of side walls of the spacer and the cover, which side walls face the cavity, is subjected to a treatment for making the portion itself have hydrophilicity. Accordingly, when blood is sucked into the cavity by capillary phenomenon, the suction is promoted, and the performance of a sensor of the biosensor is improved. Further, the process of manufacturing the sensor is simplified, thereby resulting in increased productivity.
    • 具有工作电极和对电极的电极层的生物传感器和试剂层10形成在绝缘支撑体上。 此外,在试剂层上具有长而窄的切出部分的间隔物结合到具有空气孔的盖上,以形成通过毛细管现象吸取血液作为液体样品的空腔,并且间隔物的侧壁的一部分 并且将侧壁面向空腔的盖子进行处理以使该部分本身具有亲水性。 因此,当通过毛细管现象将血液吸入空腔时,促进吸力,提高生物传感器的传感器的性能。 此外,简化了传感器的制造过程,从而提高了生产率。