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    • 5. 发明授权
    • Screening methods for biologically active ligands
    • 生物活性配体的筛选方法
    • US07732133B2
    • 2010-06-08
    • US10333103
    • 2001-07-17
    • Naohiro YabutaHideki AdachiYasushi ShimonakaKunihiro Hattori
    • Naohiro YabutaHideki AdachiYasushi ShimonakaKunihiro Hattori
    • G01Q1/68G01Q33/53G01N33/566C12P21/04C12N15/00
    • G01N33/566G01N2500/00
    • In the case when there are two objective biological activities, and the aim is to isolate a compound having at least one biological activity, the present inventors developed an assay method wherein a common detection marker is utilized for separately detecting the presence or absence of each of the biological activities. The present inventors discovered that a compound having at least one of two or more distinct biological activities can be efficiently and conveniently detected by simultaneously assaying at least one test sample or more by the above-mentioned method. Furthermore, for a test sample that proved to be positive by the detection method, they found that it is possible to efficiently and conveniently screen for a test sample having an objective specific biological activity by combining with a method wherein an individual activity of a test sample can be detected to specify the biological activity.
    • 在存在两个目标生物活性的情况下,目的是分离具有至少一种生物活性的化合物时,本发明人开发了一种测定方法,其中使用常见的检测标记来分别检测每种化合物的存在或不存在 生物活动。 本发明人发现通过上述方法同时测定至少一种测试样品,可有效地方便地检测具有两种或更多种不同生物活性中至少一种的化合物。 此外,对于通过检测方法证实为阳性的测试样品,他们发现可以通过结合其中测试样品的单独活性的方法有效和方便地筛选具有客观特异性生物活性的测试样品 可以检测到指定生物活性。
    • 8. 发明授权
    • Connecting structure of flat circuit member with reinforced connection boundary
    • 扁平电路构件与加强连接边界的连接结构
    • US06538871B2
    • 2003-03-25
    • US09878340
    • 2001-06-12
    • Hideki Adachi
    • Hideki Adachi
    • H01H7300
    • H01R12/62H01R4/02H01R35/025H05K3/281H05K3/363H05K2201/0394H05K2201/09063H05K2203/0455
    • In a connecting structure, an end portion (11A) of a flexible flat cable (FFC) (11), including a plurality of parallel connectors (12) held between base films (13 and 14), is joined by soldering to wiring terminal patterns (16) formed on a surface of a wiring board (15). The lower covering film (13), which is to be joined to the wiring terminal patterns (16) at the end portion (11A) of the FFC (11), is removed over a length corresponding to a region of soldering levelers (18) formed respectively on the wiring terminal patterns (16). The upper covering film (14) is removed at the end portion (11A) over a region closer to the end of the flat circuit member (11) than an end of the lower covering film (13), and covers part of the wiring terminal patterns (16).
    • 在连接结构中,包括保持在基膜(13和14)之间的多个平行连接器(12)的柔性扁平电缆(FFC)(11)的端部(11A)通过焊接连接到布线端子图案 (16)形成在布线板(15)的表面上。 要与FFC(11)的端部(11A)处的接线端子图案(16)接合的下覆盖膜(13)在对应于焊接矫直机(18)的区域的长度上被去除, 分别形成在布线端子图案(16)上。 上覆盖膜(14)在端部(11A)处比在下覆盖膜(13)的端部更靠近平坦电路部件(11)的端部的区域移除,并且覆盖部分布线端子 图案(16)。
    • 9. 发明授权
    • Image processing system which forms two-color images
    • 形成双色图像的图像处理系统
    • US06462834B1
    • 2002-10-08
    • US09019194
    • 1998-02-05
    • Masahito YamamotoHideki AdachiYoshiyuki SuzukiKazuhiko HirookaHiroyuki IchikawaTetsuya Nozaki
    • Masahito YamamotoHideki AdachiYoshiyuki SuzukiKazuhiko HirookaHiroyuki IchikawaTetsuya Nozaki
    • G06F1300
    • H04N1/60
    • The color determination circuit 308 detects hue of the color image information, and the controller 205 decides a color component to be separated (separation color) in accordance with the detected hue. Output color by the printer 204 is set in correspondence with the separation color. The two-color-separating circuit 303 separates the color image information into image information on at least two color components in accordance with the decided separation colors. The separated image information on the each color is transmitted to the printer 204 via printer density correction circuits 304 and 305, and a buffer 306. Thereby it is possible to provide an image processing apparatus capable of setting and changing the separation color and the output color by automatic operation or by simple manual operation, thus the expression of the image forming can be improved.
    • 颜色确定电路308检测彩色图像信息的色调,并且控制器205根据检测到的色调来确定要分离的颜色分量(分离颜色)。 打印机204的输出颜色与分离颜色对应地设定。 双色分离电路303根据所确定的分离颜色将彩色图像信息分离成关于至少两个颜色分量的图像信息。 通过打印机密度校正电路304和305以及缓冲器306将关于每种颜色的分离的图像信息发送到打印机204.由此,可以提供能够设置和改变分离颜色和输出颜色的图像处理装置 通过自动操作或通过简单的手动操作,可以提高图像形成的表达。