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    • 1. 发明授权
    • Connection device and analyzer
    • 连接装置和分析仪
    • US09233371B2
    • 2016-01-12
    • US12838179
    • 2010-07-16
    • Yoichi NakamuraKohei SugitaniTakaaki Nagai
    • Yoichi NakamuraKohei SugitaniTakaaki Nagai
    • C12M1/34F16L39/04G01N35/00B01L3/00F16L39/00G01N35/10
    • B01L3/523B01L3/527B01L3/561B01L2200/026B01L2300/048F16L39/00G01N35/1002
    • A connection device for connecting to a plurality of fluid containers that have openings, and a sample analyzer body for analyzing samples using reagent, is disclosed, which comprises: a plurality of tubular members for passing liquid, the plurality of tubular members being inserted in the fluid containers through the openings of the plurality of fluid containers; a holding member to hold the plurality of tubular members; and a plurality of cover members to be fitted to the opening of the fluid container, wherein the plurality of cover members are arranged in a predetermined positional relationship on the holding member side of the plurality of tubular members; configured with a continuously decreasing cross sectional area toward the fluid container side; and the shape of the cross section of the cover member is substantially the same as the shape of the corresponding opening of the fluid container.
    • 公开了一种用于连接到具有开口的多个流体容器的连接装置和用于使用试剂分析样品的样本分析器主体,其包括:用于使液体通过的多个管状构件,所述多个管状构件插入到 流体容器穿过多个流体容器的开口; 保持构件,用于保持多个管状构件; 以及多个盖构件,其配合到所述流体容器的开口,其中,所述多个盖构件以预定的位置关系布置在所述多个管状构件的所述保持构件侧上; 配置有朝向流体容器侧的连续减小的横截面面积; 并且盖构件的横截面的形状与流体容器的相应开口的形状基本相同。
    • 2. 发明申请
    • Captured Image Compression Transmission Method And Captured Image Compression Transmission System
    • 捕获图像压缩传输方法和捕获的图像压缩传输系统
    • US20140192879A1
    • 2014-07-10
    • US14241034
    • 2012-08-22
    • Yoichi Nakamura
    • Yoichi Nakamura
    • H04N19/503
    • H04N19/503H04N19/507
    • Provided is a captured image compression transmission system comprising: a sending-side system which compresses an input image and sends the compressed image data; and a receiving-side system which restores the input image on the basis of the image data received from the sending-side system; wherein the sending-side system comprises: a sending-side storage unit which stores a plurality of reference images; a sending-side image selection unit which, in accordance with the degree of priority of information included in capturing information attached to an input image, selects reference images corresponding to the information in a stepwise manner from the sending-side storage unit, and thereby specifies one reference image; a differential image compression unit which acquires differential data between the reference image specified by the sending-side image selection unit and the input image, and compresses the differential data; and a transmission unit which sends the compressed differential data to the receiving-side system.
    • 提供一种拍摄图像压缩传输系统,包括:发送侧系统,其压缩输入图像并发送压缩图像数据; 以及接收侧系统,其基于从发送侧系统接收的图像数据恢复输入图像; 其中所述发送侧系统包括:发送侧存储单元,其存储多个参考图像; 发送侧图像选择单元,根据包含在附加到输入图像的信息中包含的信息的优先级,从发送侧存储单元逐步地选择与该信息对应的参考图像,从而指定 一个参考图像; 差分图像压缩单元,其获取由发送侧图像选择单元指定的参考图像与输入图像之间的差分数据,并压缩差分数据; 以及发送单元,其将压缩的差分数据发送到接收侧系统。
    • 3. 发明授权
    • Electrophotographic photoreceptor and manufacturing method therefor
    • 电子照相感光体及其制造方法
    • US08765336B2
    • 2014-07-01
    • US13582706
    • 2010-03-01
    • Fengqiang ZhuYoichi NakamuraShinjiro Suzuki
    • Fengqiang ZhuYoichi NakamuraShinjiro Suzuki
    • G03G5/04G03G5/05G03G5/047
    • G03G5/0517G03G5/047G03G5/0605G03G5/14708
    • An electrophotographic photoreceptor and a manufacturing method therefore are disclosed. The electrophotographic photoreceptor includes a conductive base; and a photosensitive layer provided on the conductive base and containing a diadamantyl diester compound represented by General Formula (I) below: where, R1, R2 and R3 each independently represent a hydrogen atom, halogen atom, optionally substituted C1-6 alkyl group, optionally substituted C1-6 alkoxyl group, C6-20 aryl group or heterocyclic group, X and Z represent single bonds or optionally substituted C1-6 alkylene groups, and Y represents an OCO group or COO group. The electrophotographic photoreceptor has sufficient wear resistance and satisfactory properties as a photoreceptor, while being little affected by harmful gasses and environmental temperature and humidity.
    • 因此公开了一种电子照相感光体及其制造方法。 电子照相感光体包括导电性基体; 和设置在导电性基体上并含有下述通式(I)表示的二十一烷基二酯化合物的感光层:其中,R 1,R 2和R 3各自独立地表示氢原子,卤素原子,任选取代的C 1-6烷基, 取代的C 1-6烷氧基,C 6-20芳基或杂环基,X和Z表示单键或任选取代的C 1-6亚烷基,Y表示OCO基或COO基。 电摄影光感受器具有足够的耐磨性和作为感光体的令人满意的性能,同时受到有害气体和环境温度和湿度的影响很小。
    • 5. 发明授权
    • Collating device, collating method, and program
    • 整理装置,整理方法和程序
    • US08712190B2
    • 2014-04-29
    • US13123473
    • 2009-10-09
    • Yoichi NakamuraToshio Kamei
    • Yoichi NakamuraToshio Kamei
    • G06K9/32
    • G06K9/00067A61B5/117A61B5/7257G06T7/12G06T7/60G06T2207/30172
    • Provided are a collating device, a processing method and a collation program, in which a reference line is extracted from an image and each partial image is moved in a manner that the reference line becomes a predetermined one thereby to correct the image, and in which the corrected image is collated so that an authentication result can be obtained for a short time period without any rotating operation. At first, a reference line extracting unit extracts the center line or the contour line of the image as the reference line. Next, an image correcting unit moves each partial image in parallel thereby to correct the image so that the reference line obtained by the reference line extracting unit becomes a predetermined one. Moreover, an image collating unit collates the image corrected by the image correcting unit and a predetermined image to acquire an authentication result.
    • 提供了一种对照装置,处理方法和对照程序,其中从图像中提取参考线,并且每个部分图像以参考线变为预定的方式移动,从而校正图像,并且其中 校正后的图像进行整理,从而能够在没有任何旋转操作的情况下在短时间内获得认证结果。 首先,参考线提取单元提取图像的中心线或轮廓线作为基准线。 接下来,图像校正单元平行移动每个部分图像,从而校正图像,使得由参考线提取单元获得的参考线变为预定的图像。 此外,图像对照单元将由图像校正单元校正的图像和预定图像进行对照以获得认证结果。
    • 8. 发明申请
    • ELECTROPHOTOGRAPHIC PHOTORECEPTOR AND MANUFACTURING METHOD THEREFORE
    • 电子照相机及其制造方法
    • US20130022904A1
    • 2013-01-24
    • US13582706
    • 2010-03-01
    • Fengqiang ZhuYoichi NakamuraShinjiro Suzuki
    • Fengqiang ZhuYoichi NakamuraShinjiro Suzuki
    • G03G5/06
    • G03G5/0517G03G5/047G03G5/0605G03G5/14708
    • An electrophotographic photoreceptor and a manufacturing method therefore are disclosed. The electrophotographic photoreceptor includes a conductive base; and a photosensitive layer provided on the conductive base and containing a diadamantyl diester compound represented by General Formula (I) below: where, R1, R2 and R3 each independently represent a hydrogen atom, halogen atom, optionally substituted C1-6 alkyl group, optionally substituted C1-6 alkoxyl group, C6-20 aryl group or heterocyclic group, X and Z represent single bonds or optionally substituted C1-6 alkylene groups, and Y represents an OCO group or COO group. The electrophotographic photoreceptor has sufficient wear resistance and satisfactory properties as a photoreceptor, while being little affected by harmful gasses and environmental temperature and humidity.
    • 因此公开了一种电子照相感光体及其制造方法。 电子照相感光体包括导电性基体; 和设置在导电性基体上并含有下述通式(I)表示的二十一烷基二酯化合物的感光层:其中,R 1,R 2和R 3各自独立地表示氢原子,卤素原子,任选取代的C 1-6烷基, 取代的C 1-6烷氧基,C 6-20芳基或杂环基,X和Z表示单键或任选取代的C 1-6亚烷基,Y表示OCO基或COO基。 电摄影光感受器具有足够的耐磨性和作为感光体的令人满意的性能,同时受到有害气体和环境温度和湿度的影响很小。
    • 9. 发明申请
    • PUMP IMPELLER AND SUBMERSIBLE PUMP HAVING SUCH PUMP IMPELLER
    • 泵式叶轮和具有这种泵式叶轮的不可渗透的泵
    • US20130022450A1
    • 2013-01-24
    • US13518975
    • 2010-12-22
    • Junya KawabataHiromi SakachoMasashi ObuchiYoichi NakamuraRitsuko Miyazaki
    • Yoshiaki MiyazakiJunya KawabataHiromi SakachoMasashi ObuchiYoichi Nakamura
    • F04D29/22F04D7/04
    • F04D7/04F04D29/225
    • A non-clogging type pump impeller (1) includes: a fluid passage (18) provided in an approximately cylindrical body (10) and connecting a suction port (13) to a discharge port (14). The fluid passage (18) has a vortex shape as viewed from the axial direction. A first recess (21), which is sunk downwardly in the axial direction, is formed on one end surface (11) of the body (10) so as to surround a boss (12). A second recess (22), which is sunk upwardly in the axial direction, is formed on the other end surface (15) of the body (10) so as to surround the suction port (13). One or more communication hole (23) provides fluid communication between the first recess (21) and the second recess (22). Sewage in the second recess (22) is introduced into the first recess (21) through the communication hole (23) to thereby effectively remove air pocket trapped on the upper end surface (11) of the impeller (1) and in the first recess (21).
    • 非阻塞型泵叶轮(1)包括:流体通道(18),设置在大致圆筒体(10)中并将吸入口(13)连接到排出口(14)。 流体通道(18)从轴向方向看具有涡流形状。 在主体(10)的一个端面(11)上形成有沿轴向下沉的第一凹部(21),以围绕凸台(12)。 在主体(10)的另一个端面(15)上形成有围绕吸入口(13)的第二凹部(22),该第二凹部沿轴向向下凹陷。 一个或多个连通孔(23)在第一凹部(21)和第二凹部(22)之间提供流体连通。 通过连通孔(23)将第二凹部(22)中的污水引入第一凹部(21),从而有效地除去被捕获在叶轮(1)的上端面(11)上的空气袋,并且在第一凹部 (21)。
    • 10. 发明申请
    • SIMILARITY CALCULATION DEVICE, SIMILARITY CALCULATION METHOD, AND PROGRAM
    • 类似的计算设备,类似的计算方法和程序
    • US20120294492A1
    • 2012-11-22
    • US13519307
    • 2010-12-15
    • Toshio KameiYoichi Nakamura
    • Toshio KameiYoichi Nakamura
    • G06K9/68
    • G06K9/6203G06K9/6205
    • The similarity calculation device is provided with a displacement vector estimation unit 101 for estimating a displacement vector between a first local region set in a first image, and a second local region which is most similar to the first local region in a second image, a geometric transformation parameter estimation unit 102 for estimating a geometric transformation parameter which geometrically transforms the first image into the second image, a displacement vector correction unit 103 for correcting the displacement vector based on the geometric transformation parameter, a scoring unit 104 for scoring the displacement vector, corrected by the displacement vector correction unit 103, in a two-dimensional space and creating a scored image, a peak detection unit 105 for detecting a peak in the scored image, and a similarity calculation unit 106 for calculating a similarity of the first image and the second image according to a size of the peak.
    • 相似度计算装置设置有位移矢量估计单元101,用于估计在第一图像中设置的第一局部区域和与第二图像中的第一局部区域最相似的第二局部区域之间的位移矢量,几何 用于估计将第一图像几何变换为第二图像的几何变换参数的变换参数估计单元102,用于基于几何变换参数校正位移矢量的位移矢量校正单元103,用于对位移矢量进行评分的刻划单元104, 由位移矢量校正单元103在二维空间中校正并创建刻痕图像,用于检测刻痕图像中的峰值的峰值检测单元105以及用于计算第一图像和第二图像的相似度的相似度计算单元106, 第二个图像根据峰值的大小。