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    • 5. 发明授权
    • Analysis method using dry chemical analysis element
    • 使用干化学分析元素的分析方法
    • US06642058B2
    • 2003-11-04
    • US09853751
    • 2001-05-14
    • Fumio SugayaYoichi EndoNobuaki TokiwaAkihiro KomatsuYoshihiro Seto
    • Fumio SugayaYoichi EndoNobuaki TokiwaAkihiro KomatsuYoshihiro Seto
    • G01N3348
    • G01N21/5907
    • An analysis method using a dry chemical analysis element accurately measures change in optical density indicating the composition of a liquid sample without requiring accurate control of the amount and position of the liquid sample dripped on the dry chemical analysis element. A one-dimensional or two-dimensional optical reading apparatus measures one-dimensional or two-dimensional distribution of degree of color reaction for a reacted portion of the dry chemical analysis element. Concurrently, the one-dimensional or two-dimensional optical reading apparatus measures a length or a spread area of the reacted portion. Physical density or activity of a target component contained in the liquid sample is determined based on an integrated value of the degree of the color reaction and the measured length or the spread area of the reacted portion.
    • 使用干化学分析元件的分析方法精确地测量表示液体样品组成的光密度变化,而不需要精确控制滴在干化学分析元件上的液体样品的量和位置。 一维或二维光学读取装置测量干化学分析元件的反应部分的显色反应程度的一维或二维分布。 同时,一维或二维光学读取装置测量反应部分的长度或扩展面积。 基于颜色反应程度和反应部分的测量长度或扩展面积的积分值来确定液体样品中包含的目标组分的物理密度或活性。
    • 7. 发明授权
    • Cartridge for dry-type chemical analysis films
    • 干式化学分析胶片盒
    • US5617973A
    • 1997-04-08
    • US405808
    • 1995-03-16
    • Yoshihiro SetoFumio Sugaya
    • Yoshihiro SetoFumio Sugaya
    • G01N31/22A61B10/00G01N1/28G01N35/00B65H1/08
    • G01N35/00029A61B5/150358A61B10/007A61B5/150015G01N2035/00089G01N2035/00108
    • A cartridge for dry-type chemical analysis films comprises a box housing, which accommodates therein a stack of dry-type chemical analysis films and which has a take-out opening at one end such that the dry-type chemical analysis films may be taken out of the box housing through the take-out opening one after another. A push member is located in the box housing so as to be capable of sliding. The push member comes into contact with the stack of the dry-type chemical analysis films from the side opposite to the take-out opening and pushes the stack of the dry-type chemical analysis films in the direction heading towards the take-out opening. An urging member is located in the box housing and urges the push member in the direction heading towards the take-out opening. A restriction member is located in the box housing and restricts the distance of movement of the push member in the direction heading away from the take-out opening to at most a value equal to the width of each dry-type chemical analysis film.
    • 用于干式化学分析膜的盒包括盒壳体,其容纳有干式化学分析膜的堆叠,并且其一端具有取出开口,使得可以取出干式化学分析膜 的箱子通过出口开口一个接一个。 推动构件位于箱体中以便能够滑动。 推动构件从与取出开口相对的一侧与干式化学分析膜的堆叠接触,并且在朝向取出开口的方向上推动干式化学分析膜的堆叠。 推动构件位于箱体中并沿着朝向取出开口的方向推动推动构件。 限制构件位于盒体中,并且限制推动构件在远离取出开口的方向上的移动距离至多等于每个干式化学分析膜的宽度的值。
    • 8. 发明申请
    • METHOD OF CONTROLLING TEMPERATURE
    • 控制温度的方法
    • US20100108514A1
    • 2010-05-06
    • US12593875
    • 2008-03-28
    • Yoshihiro SetoTomohisa KawabataChungsoo Charles Park
    • Yoshihiro SetoTomohisa KawabataChungsoo Charles Park
    • G01N27/26
    • G01N27/44708
    • To suppress temperature variations of sample fluids within flow channels for electrophoresis, in a method for controlling temperatures within micro flow channels. When controlling the temperatures of sample fluids within micro flow channels of electrophoresis chips, in which flow channels through which electrophoresis occurs by application of electrical potential differences can be switched, temperature variations of the sample fluids within the micro flow channels, caused by differences in heat generated by the sample fluids prior to and following the switching of the flow channels, are predicted. Control properties for temperature control in order to cancel the temperature variations are changed during the switching of the flow channels.
    • 为了抑制用于电泳的流动通道内的样品流体的温度变化,用于控制微流动通道内的温度的方法。 当控制电泳芯片的微流通道内的样品流体的温度,其中可以切换通过施加电势差而发生电泳的流动通道时,由微热流通道中的热差导致的样品流体的温度变化 预测在流动通道切换之前和之后由样品流体产生的。 为了消除温度变化,温度控制的控制特性在流道切换期间发生变化。
    • 9. 发明授权
    • Biochemical analysis method and apparatus
    • 生化分析方法及仪器
    • US07285245B2
    • 2007-10-23
    • US10233554
    • 2002-09-04
    • Yoshihiro Seto
    • Yoshihiro Seto
    • G01N21/00
    • G01N35/00029G01N2035/00049Y10T436/11Y10T436/112499Y10T436/113332Y10T436/114165Y10T436/2575
    • Samples and dry chemical analysis elements necessary for analyses of the samples are loaded on a circular sampler tray. Each of the samples having been loaded on the sampler tray is sucked through a spotting nozzle and spotted onto one of the dry chemical analysis elements. A temperature of each of the dry chemical analysis elements having been spotted with the samples is kept at a constant temperature in an incubator. The sampler tray is provided with a circular rotating disk. Sample vessels, each of which accommodates one of the samples, the dry chemical analysis elements of kinds corresponding to types of the analyses of the samples, nozzle tips, each of which is to be fitted to the spotting nozzle, diluent liquid vessels accommodating a diluent liquid, and mixing cups for dilution are supported on the rotating disk.
    • 将样品分析所需的样品和干化学分析元素装载在圆形取样器托盘上。 已经装载在采样器托盘上的每个样品通过点样喷嘴吸入并且被点到其中一个干化学分析元件上。 已经将样品点样的每个干化学分析元件的温度在培养箱中保持恒定温度。 取样器托盘设有圆形旋转盘。 样品容器,每个样品容纳一个样品,对应于样品分析类型的干燥化学分析元素,每个要装配到点样喷嘴的喷嘴尖端,容纳稀释剂的稀释液体容器 液体和用于稀释的混合杯支撑在旋转盘上。