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    • 1. 发明申请
    • Method for screening cervical cancer
    • 筛查宫颈癌的方法
    • US20050221399A1
    • 2005-10-06
    • US11092944
    • 2005-03-30
    • Koichi NakanoMasaki IshisakaKazuki KishiMiharu WatanabeYasuyuki Imura
    • Koichi NakanoMasaki IshisakaKazuki KishiMiharu WatanabeYasuyuki Imura
    • G01N33/574G01N33/58G01N33/567
    • G01N33/57411G01N33/582
    • The invention provides a reagent for diagnosing cervical cancer, which can not only detect the presence or absence of cervical cancer but can also distinguish squamous cell carcinoma and adenocarcinoma from each other, a method for screening cervical cancer by using the reagent, particularly a screening method capable high speed processing by utilizing flow cytometry. The reagent comprises a first labeled antibody reacting with gland cells, a second labeled antibody reacting with adenocarcinoma cells and a third labeled antibody reacting with atypical cervical squamous cells, the antibodies being labeled with mutually distinguishable labels respectively. Preferably, at least one selected from the group consisting of MUC1 antibody, cytokeratin 7 antibody, and cytokeratin 18 antibody is used as the first labeled antibody, at least one selected from the group consisting of cytokeratin 8 antibody and HIK1083 antibody is used as the second labeled antibody, and at least one member selected from the group consisting of NMP179 antibody, p16INK4A antibody, Ki-67 antibody, p53 antibody, p21 antibody, EMA antibody, CEA antibody and MIB-1 antibody is used as the third labeled antibody.
    • 本发明提供了一种用于诊断宫颈癌的试剂,其不仅可以检测宫颈癌的存在或不存在,还可以区分鳞状细胞癌和腺癌,通过使用试剂筛选子宫颈癌的方法,特别是筛选方法 利用流式细胞仪进行高速处理。 试剂包含与腺体细胞反应的第一标记抗体,与腺癌细胞反应的第二标记抗体和与非典型宫颈鳞状细胞反应的第三标记抗体,所述抗体分别用相互区分的标记标记。 优选使用选自MUC1抗体,细胞角蛋白7抗体和细胞角蛋白18抗体的至少一种作为第一标记抗体,使用选自细胞角蛋白8抗体和HIK1083抗体的至少一种作为第二标记抗体 标记抗体,选自NMP179抗体,p16,INK4A抗体,Ki-67抗体,p53抗体,p21抗体,EMA抗体,CEA抗体和MIB-1抗体中的至少一种是 用作第三标记抗体。
    • 5. 发明申请
    • CELL ANALYSIS APPARATUS AND CELL ANALYSIS METHOD
    • 细胞分析装置和细胞分析方法
    • US20100196917A1
    • 2010-08-05
    • US12762703
    • 2010-04-19
    • Masaki IshisakaKazuki KishiMasakazu Fukuda
    • Masaki IshisakaKazuki KishiMasakazu Fukuda
    • C12Q1/68C12M1/34C12Q1/02
    • G01N21/6486G01N15/147G01N2015/0092G01N2015/1497
    • A cell analysis apparatus that can accurately distinguish between an aggregating cell and a non-aggregating cell is provided. The cell analysis apparatus (10) includes: an optical detection section (3) for flowing a measurement sample obtained from a biological sample and a pigment into a flow cell (51), irradiating the measurement sample flowing in the flow cell (51) with laser beam and detecting fluorescence from the measurement sample; a signal processing circuit (4) for acquiring, based on a fluorescence signal outputted from the detection section (3), a value reflecting the height of a waveform of the signal and a value reflecting the length of a ridge line of the waveform of the signal; and a system control section (13) for distinguishing between an aggregating cell formed by aggregation of a plurality of cells and a non-aggregating cell, based on the value reflecting the height of the waveform of the fluorescence signal and the value reflecting the length of the ridge line of the waveform of the fluorescence signal obtained by the signal processing circuit (4).
    • 提供了可以精确地区分聚集单元和非聚集单元的单元分析设备。 细胞分析装置(10)包括:光检测部(3),用于将从生物样品和颜料获得的测定样品流入流动池(51),向流动池(51)中流动的测定样品照射 激光束和检测来自测量样品的荧光; 信号处理电路(4),用于基于从检测部(3)输出的荧光信号,获取反映信号的波形的高度的值和反映该信号的波形的脊线的长度的值 信号; 以及系统控制部(13),用于基于反映荧光信号的波形的高度的值和反映荧光信号的长度的值来区分由多个单元的聚集形成的聚集单元和非聚集单元 由信号处理电路(4)获得的荧光信号波形的脊线。
    • 8. 发明授权
    • Method and apparatus for determining the boundary of an object
    • 用于确定物体边界的方法和装置
    • US06289126B1
    • 2001-09-11
    • US09131375
    • 1998-08-07
    • Masaki Ishisaka
    • Masaki Ishisaka
    • G06K956
    • G06K9/0014G06K9/48G06T5/20G06T7/0012G06T7/12G06T2207/10016G06T2207/30024
    • The boundary of an object is determined based on its optically captured image by: (a) converting a density data of each of a plurality of pixels forming the captured image into a binary signal; (b) converting the binary signal into a neighbor pixel state value so that only the pixels located on the boundary r in the interior of the object have a value corresponding to the binary signals of the surrounding pixels; (c) normalizing the neighbor pixel state value using an absolute chain direction value of a previous chain direction; (d) obtaining a relative chain direction value for a pixel located on the boundary of the object in the image relative to the direction from which the chain has proceeded, with reference to the neighbor pixel state value of the pixel; (e) calculating an absolute chain direction value of a next chain direction on the basis of the relative chain direction value; and (f) repeating the steps (c) to (e) for each pixel located on the boundary to trace the boundary of the object for determining the boundary.
    • 基于其光学拍摄图像,通过以下方式确定对象的边界:(a)将形成所述拍摄图像的多个像素中的每一个的密度数据转换为二进制信号; (b)将二进制信号转换为相邻像素状态值,使得只有位于物体内部的边界r上的像素具有与周围像素的二进制信号对应的值; (c)使用先前的链方向的绝对链方向值来归一化邻近像素状态值; (d)参考像素的相邻像素状态值,相对于链已经进行的方向,获得位于图像中物体边界上的像素的相对链方向值; (e)基于相对链条方向值计算下一个链条方向的绝对链条方向值; 以及(f)针对位于边界上的每个像素重复步骤(c)至(e),以跟踪对象的边界以确定边界。
    • 9. 发明申请
    • Cell analyzer and cell analyzing method
    • 细胞分析仪和细胞分析方法
    • US20090091746A1
    • 2009-04-09
    • US12286702
    • 2008-10-01
    • Masakazu FukudaMasaki Ishisaka
    • Masakazu FukudaMasaki Ishisaka
    • G01N21/17G01N21/01
    • G01N15/147G01N15/1434G01N15/1459G01N2015/1477G01N2021/6439
    • The present invention is to present a cell analyzer capable of measuring cells which are approximately 20 to 100 μm in size with high precision via flow cytometry. The cell analyzer 10 comprises: a flow cell 51 in which a measurement sample including a measurement target cell flows; a light source part 53 for irradiating a light on the measurement sample flowing in the flow cell 51; an optical system 52 for forming a beam spot on the measurement sample flowing in the flow cell 51, the beam spot having a diameter of 3˜8 μm in a flow direction of the measurement sample and a diameter of 300˜600 μm in a direction perpendicular to the flow direction of the measurement sample; and a light receiving part 55, 58, 59 for receiving a light from the measurement sample.
    • 本发明是提供能够通过流式细胞术以高精度大小测量大约20〜100μm的细胞的细胞分析装置。 细胞分析装置10包括:流动池51,其中包括测量目标细胞的测量样本流动; 用于对在流动池51中流动的测量样品照射光的光源部53; 用于在流动池51中流动的测量样品上形成束斑的光学系统52,在测量样品的流动方向上具有直径为3〜8μm的束斑,在方向上具有300〜600μm的直径 垂直于测量样品的流动方向; 以及用于接收来自测量样品的光的光接收部分55,58,59。