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    • 1. 发明授权
    • Automatic analysis apparatus and automatic analysis method
    • 自动分析仪器及自动分析方法
    • US07933014B2
    • 2011-04-26
    • US12168763
    • 2008-07-07
    • Shoichi KanayamaNaoko Omuro
    • Shoichi KanayamaNaoko Omuro
    • G01J3/30
    • G01N21/253G01N21/534
    • An automatic analysis apparatus and an automatic analysis method that can perform both spectrophometric measurements for biochemical tests and the turbidimetric immunoassay with high precision by selectively exchanging a white light or at least one monochromatic light based on analysis conditions determined by a measure condition setting unit for respective measuring object. The automatic analysis apparatus includes an irradiating direction setting unit configured to irradiate the selected white light or at least one monochromatic light based on the analysis conditions onto a reaction cuvette along the same light axis and a light detection unit having a plurality of light receiving elements in order to detect the white light of particular determined wavelength lights and the selected monochromatic light.
    • 一种自动分析装置和自动分析方法,其可以基于由各自的测量条件设定单元确定的分析条件,通过选择性地交换白光或至少一个单色光,以高精度执行生化测试和比浊免疫测定两种分光测量 测量对象。 自动分析装置包括:照射方向设定单元,被配置为基于分析条件将所选择的白光或至少一个单色光沿着相同的光轴照射到反应容器上;以及光检测单元,其具有多个光接收元件 以检测特定确定的波长光和所选择的单色光的白光。
    • 4. 发明申请
    • AUTOMATIC ANALYSIS APPARATUS AND AUTOMATIC ANALYSIS METHOD
    • 自动分析装置及自动分析方法
    • US20090009760A1
    • 2009-01-08
    • US12168763
    • 2008-07-07
    • Shoichi KanayamaNaoko Omuro
    • Shoichi KanayamaNaoko Omuro
    • G01J3/443
    • G01N21/253G01N21/534
    • An automatic analysis apparatus and an automatic analysis method that can perform both spectrophometric measurements for biochemical tests and the turbidimetric immunoassay with high precision by selectively exchanging a white light or at least one monochromatic light based on analysis conditions determined by a measure condition setting unit for respective measuring object. The automatic analysis apparatus includes an irradiating direction setting unit configured to irradiate the selected white light or at least one monochromatic light based on the analysis conditions onto a reaction cuvette along the same light axis and a light detection unit having a plurality of light receiving elements in order to detect the white light of particular determined wavelength lights and the selected monochromatic light.
    • 一种自动分析装置和自动分析方法,其可以基于由各自的测量条件设定单元确定的分析条件,通过选择性地交换白光或至少一个单色光,以高精度执行生化测试和比浊免疫测定两种分光测量 测量对象。 自动分析装置包括:照射方向设定单元,被配置为基于分析条件将所选择的白光或至少一个单色光沿着相同的光轴照射到反应容器上;以及光检测单元,其具有多个光接收元件 以检测特定确定的波长光和所选择的单色光的白光。
    • 6. 发明授权
    • Automatic analysis apparatus and automatic analysis method
    • 自动分析仪器及自动分析方法
    • US07830518B2
    • 2010-11-09
    • US12352337
    • 2009-01-12
    • Shoichi Kanayama
    • Shoichi Kanayama
    • G01N21/00
    • G01N21/255
    • An automatic analysis apparatus and an automatic analysis method analysis that includes an optical convergence point adjusting unit in order to variably adjust an optical convergence point of irradiation light or an optical convergence point of detection light to or from a reaction cuvette in accordance with at least one of analysis conditions of a kind of reaction of a mixed solution contained in the reaction cuvette, a liquid volume of the mixed solution or a measurement wave length. The optical convergence point adjusting unit is provided in front the reaction cuvette, in back of the reaction cuvette, or both in order to variably control the position of an optical convergence point so as to maximize the irradiation light based on the volume of the mixed solution in the reaction cuvette. By variably controlling the convergence point of the optical convergence point adjusting unit based on each of the examination items, both measurements of a turbidimetric assay and a spectrophotometric assay can be performed in a single automatic analysis apparatus with good accuracy and precision.
    • 一种自动分析装置和自动分析方法分析,其包括光学会聚点调整单元,以便根据至少一个可变地调节照射光的光学会聚点或检测光的光学会聚点到反应试管 反应池中所含的混合溶液的反应的种类,混合溶液的液体体积或测定波长的分析条件。 光学会聚点调整单元设置在反应池的前面,反应池的背面或两者中,以便可变地控制光学会聚点的位置,以便基于混合溶液的体积来最大化照射光 在反应池中。 通过基于每个检查项可变地控制光学会聚点调整单元的会聚点,可以在单个自动分析装置中以良好的精度和精度进行比浊测定和分光光度测定的两种测量。
    • 7. 发明申请
    • AUTOMATIC ANALYSIS APPARATUS AND AUTOMATIC ANALYSIS METHOD
    • 自动分析装置及自动分析方法
    • US20090180120A1
    • 2009-07-16
    • US12352337
    • 2009-01-12
    • Shoichi Kanayama
    • Shoichi Kanayama
    • G01N21/59G02B3/12
    • G01N21/255
    • An automatic analysis apparatus and an automatic analysis method analysis that includes an optical convergence point adjusting unit in order to variably adjust an optical convergence point of irradiation light or an optical convergence point of detection light to or from a reaction cuvette in accordance with at least one of analysis conditions of a kind of reaction of a mixed solution contained in the reaction cuvette, a liquid volume of the mixed solution or a measurement wave length. The optical convergence point adjusting unit is provided in front the reaction cuvette, in back of the reaction cuvette, or both in order to variably control the position of an optical convergence point so as to maximize the irradiation light based on the volume of the mixed solution in the reaction cuvette. By variably controlling the convergence point of the optical convergence point adjusting unit based on each of the examination items, both measurements of a turbidimetric assay and a spectrophotometric assay can be performed in a single automatic analysis apparatus with good accuracy and precision.
    • 一种自动分析装置和自动分析方法分析,其包括光学会聚点调整单元,以便根据至少一个可变地调节照射光的光学会聚点或检测光的光学会聚点到反应试管 反应池中所含的混合溶液的反应的种类,混合溶液的液体体积或测定波长的分析条件。 光学会聚点调整单元设置在反应池的前面,反应池的背面或两者中,以便可变地控制光学会聚点的位置,以便基于混合溶液的体积来最大化照射光 在反应池中。 通过基于每个检查项可变地控制光学会聚点调整单元的会聚点,可以在单个自动分析装置中以良好的精度和精度进行比浊测定和分光光度测定的两种测量。
    • 8. 发明授权
    • Nuclear magnetic resonance imaging with high speed and interactive pulse
sequence control
    • 核磁共振成像与高速和交互式脉冲序列控制
    • US5519320A
    • 1996-05-21
    • US40857
    • 1993-03-31
    • Shoichi KanayamaYoshimori Kassai
    • Shoichi KanayamaYoshimori Kassai
    • A61B5/055G01R33/28G01R33/46G01R33/54G01R33/56G01V3/00
    • G01R33/56G01R33/543G01R33/546
    • A nuclear magnetic resonance imaging capable of controlling a generation of a desired pulse sequence to be used interactively, realizing the adjustment of the pulse sequence easily and accurately, and realizing the high speed pulse sequence execution. The pulse sequence is automatically generated from a basic pulse sequence form and a parameter block storing the imaging parameters affected by the imaging conditions specified interactively. The pulse sequence is then automatically adjusted to an optimum setting by simulating an execution of the pulse sequence by using simulated RF pulses, gradient magnetic fields, static magnetic field, and nuclear spin density distribution, according to the characteristic parameters measured in advance. In the actual execution of the pulse sequence, the event codes stored in the event memory of the sequence controller are decoded by a plurality of decoders in parallel, and the rewriting of the event memory is realized by using a rewriting table having entries specifying a manner of rewriting each slot of each entry in the event memory, and flags in the event memory indicating an appropriate rewriting table entry for each slot.
    • 能够以交互方式控制产生期望脉冲序列的核磁共振成像,实现脉冲序列的调整容易且准确,实现高速脉冲序列的执行。 脉冲序列是从基本的脉冲序列形式和参数块自动产生的,该参数块存储影响参数的成像参数。 根据预先测量的特征参数,通过使用模拟RF脉冲,梯度磁场,静态磁场和核自旋密度分布模拟脉冲序列的执行,脉冲序列然后自动调整到最佳设置。 在脉冲序列的实际执行中,存储在序列控制器的事件存储器中的事件代码由多个解码器并行解码,并且通过使用具有指定方式的条目的重写表来实现事件存储器的重写 重写事件存储器中每个条目的每个时隙,并且在事件存储器中标记指示每个时隙的适当的重写表条目。