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    • 1. 发明专利
    • Manufacturing method of seamless rubber-coated roller and its manufacturing device
    • 无缝橡胶包覆辊及其制造装置的制造方法
    • JP2008001514A
    • 2008-01-10
    • JP2006175487
    • 2006-06-26
    • Hideo IkedaYasuyuki Ikeda泰之 池田秀男 池田
    • IKEDA HIDEOIKEDA YASUYUKI
    • B65H5/06B29C35/02B29K19/00B29K105/20B29L9/00B29L31/32B65H3/06F16C13/00G03G15/02G03G15/08G03G15/16
    • PROBLEM TO BE SOLVED: To eliminate difference in level occurring in an elastic body layer of an elastic body-coated roller, or discontinuity of particles on the surface. SOLUTION: A manufacturing method of the elastic body-coated roller 10 is adopted, in which a core 1 is rotatably supported and a counter roller 5 is rotatably supported in parallel with the core 1. Unvulcanized rubber 11 is wound around an outer circumference 1a of the core 1, and the counter roller 5 is pressed against the wound unvulcanized rubber 11. The rollers are respectively rotated around their shafts to press and spread the unvulcanized rubber 11 on a whole circumference of the outer circumference 1a, and then through a vulcanizing process, the elastic body layer 2 is formed on the whole circumference of the outer circumference 1a of the core 1. Since the unvulcanized rubber 11 pressed by the core 1 and the counter roller 5 are kneaded by their pressing forces, the seamless elastic body layer 2 is cylindrically formed on the whole circumference of the outer circumference 1a of the core 1 to eliminate the difference in level or the discontinuity of the particles on the surface. Further, the kneading discharges air contained in the elastic body layer 2, to prevent generation of air bubbles in the elastic body layer 2 or occurrence of uneven surface on the elastic body layer 2. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:消除在弹性体涂覆辊的弹性体层中发生的水平差,或表面上的颗粒的不连续性。 解决方案:采用弹性体涂覆辊10的制造方法,其中芯1可旋转地支撑,并且反向辊5与芯1平行地可旋转地支撑。未硫化橡胶11缠绕在外部 将芯1的圆周1a和对置辊5按压在卷绕的未硫化橡胶11上。辊分别围绕其轴旋转,以将未硫化橡胶11挤压并扩展到外周1a的整个圆周上,然后通过 通过硫化处理,在芯体1的外周1a的整个圆周上形成弹性体层2.由于由芯1和对置辊5挤压的未硫化橡胶11由于其压力而被捏合,所以无缝弹性 主体层2在芯体1的外圆周1a的整个圆周上圆柱形地形成,以消除在水平面上的颗粒的水平差或不连续性 CE。 此外,捏合排出包含在弹性体层2中的空气,以防止在弹性体层2中产生气泡或在弹性体层2上产生不平坦表面。版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • New lipoprotein lipase (lpl) gene deletion mutation causing hypertriglyceridemia and kit for detecting lpl mutation for diagnosis of hypertriglyceridemia by using the same
    • 新的脂蛋白脂质体(LPL)基因删除突变引起超磷酸化酶和用于检测LPL突变以用于诊断高磷脂酰胆碱的试剂盒
    • JP2008307036A
    • 2008-12-25
    • JP2007181489
    • 2007-06-12
    • Yasuyuki IkedaAtsuko Takagi康行 池田敦子 高木
    • TAKAGI ATSUKOIKEDA YASUYUKI
    • C12N15/09C12Q1/68
    • PROBLEM TO BE SOLVED: To accumulate LPL gene mutation in Japanese for more easily performing LPL gene analysis useful for the clarification of the cause of hypertriglyceridemia and for the tailor-made prevention of hypertriglyceridemia, and to provide a specificity diagnosis kit necessary for the genetic diagnosis targeting the mutation. SOLUTION: A large deletion mutation of about 54 kb containing exon 1 and extending to a part of intron 1 (accurately the deletion mutation composed of 53,918 bases from the 7,594,420th to 7,648,337th bases of NT_030737.9 sequence) was confirmed from a new 5' adjacent region of a mutant LPL gene in an LPL gene of a Japanese hypertriglyceridemia subject A. The invention provides a probe for detecting the mutation based on the base sequence of the mutant LPL gene and provides an easy method for the diagnosis of primary hypertriglyceridemia by amplifying the base sequence containing the mutation part and detecting the mutation and a kit for the diagnosis. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了更容易地进行用于澄清高甘油三酯血症原因的LPL基因分析和用于量身定制的预防高甘油三酯血症,可以积累日语中的LPL基因突变,并提供必需的特异性诊断试剂盒 针对突变的遗传诊断。 解决方案:从含有外显子1并延伸到内含子1的一部分的大约54kb的大的缺失突变(从NT_030737.9序列的7,594,420至7,648,337个碱基的53,918个碱基中精确地缺失突变)被确认来自 在日本高甘油三酯血症受试者A的LPL基因中的突变型LPL基因的新的5'相邻区域。本发明提供了一种用于基于突变型LPL基因的碱基序列检测突变的探针,并提供了一种简便的诊断方法 原发性高甘油三酯血症通过扩增含有突变部分的碱基序列并检测突变和用于诊断的试剂盒。 版权所有(C)2009,JPO&INPIT
    • 4. 发明申请
    • Image processing system, image inputting apparatus, display controlling apparatus, management method and program for image processing system, and storage medium
    • 图像处理系统,图像输入装置,显示控制装置,图像处理系统的管理方法和程序以及存储介质
    • US20110188072A1
    • 2011-08-04
    • US12929387
    • 2011-01-20
    • Yasuyuki Ikeda
    • Yasuyuki Ikeda
    • G06F3/12
    • H04N1/32502H04N1/00347H04N1/0044H04N1/00469H04N1/32529H04N1/32539H04N2201/0039H04N2201/0082H04N2201/0094H04N2201/33321
    • An image processing system, connecting a plurality of image forming apparatuses via a network for outputting an input image using one of image forming apparatuses, includes an output-specifying information obtaining unit that obtains output-specifying information including to-be-output image data and information designating one of the image forming apparatuses as an output destination to output the to-be-output image data; an output-able size information obtaining unit to obtain output-able size information linking information identifying each image forming apparatus and output-able image size information at each image forming apparatus; an output-able size information display unit to display an output-able image size of each image forming apparatuses on a display area; an image data converter to convert image data to a data format suitable for the designated image forming apparatus; and an image data transmission unit to transmit the converted image data to one of the image forming apparatuses designated as the output destination.
    • 一种图像处理系统,其经由用于使用图像形成装置之一输出输入图像的网络连接多个图像形成装置,包括:输出指定信息获取单元,其获得包括要输出的图像数据的输出指定信息;以及 指定所述图像形成装置中的一个作为输出目的地的信息,以输出所述待输出图像数据; 可输出尺寸信息获取单元,用于获得在每个图像形成装置处链接识别每个图像形成装置的信息和可输出图像尺寸信息的可输出尺寸信息; 输出尺寸信息显示单元,用于在显示区域上显示每个图像形成装置的可输出图像尺寸; 图像数据转换器,用于将图像数据转换成适合于指定图像形成装置的数据格式; 以及图像数据发送单元,用于将转换的图像数据发送到指定为输出目的地的图像形成装置之一。
    • 6. 发明申请
    • METHOD FOR DERIVING PARAMETER FOR THREE-DIMENSIONAL MEASUREMENT PROCESSING AND THREE-DIMENSIONAL VISUAL SENSOR
    • 用于三维测量加工和三维视觉传感器的方法
    • US20100232682A1
    • 2010-09-16
    • US12711179
    • 2010-02-23
    • Shiro FujiedaAtsushi TanenoHiroshi YanoYasuyuki Ikeda
    • Shiro FujiedaAtsushi TanenoHiroshi YanoYasuyuki Ikeda
    • G06K9/00
    • G06K9/00214G06T7/60G06T2207/10012G06T2207/30164
    • In the present invention, processing for setting a parameter expressing a measurement condition of three-dimensional measurement to a value necessary to output a proper recognition result is easily performed. The three-dimensional measurement is performed to stereo images of real models WM1 and WM2 of a workpiece using a measurement parameter set by a user, and positions and attitudes of the workpiece models WM1 and WM2 are recognized based on the measurement result. An image expressing the recognition result is displayed, and numerical data indicating the selected recognition result is set to sample data in response to a user manipulation for selecting the recognition result. A setting value of the measurement parameter is changed every time in a predetermined numerical range, the three-dimensional measurement and recognition processing are performed using the setting measurement parameter, and a numerical range of the setting parameter is set to an acceptable range when the recognition result in which an amount of difference with sample data falls within a predetermined value is obtained. An intermediate value of the acceptable range is fixed and registered as an optimum value of the parameter.
    • 在本发明中,容易进行用于将表示三维测量的测量条件的参数设置为输出适当的识别结果所需的值的处理。 使用由用户设置的测量参数对工件的实际模型WM1和WM2的立体图像进行三维测量,并且基于测量结果识别工件模型WM1和WM2的位置和姿态。 显示表示识别结果的图像,并且响应于用于选择识别结果的用户操作,将指示所选择的识别结果的数值数据设置为采样数据。 在规定的数值范围内,每次改变测定参数的设定值,使用设定测定参数进行三维测定和识别处理,将该设定参数的数值范围设定为可以接受的范围 导致与采样数据的差异量落在预定值内的结果。 可接受范围的中间值是固定的,并被注册为参数的最佳值。
    • 8. 发明申请
    • Image processing device and image processing method for performing three dimensional measurements
    • 用于进行三维测量的图像处理装置和图像处理方法
    • US20090128648A1
    • 2009-05-21
    • US11630631
    • 2006-06-16
    • Yasuyuki IkedaShiro Fujieda
    • Yasuyuki IkedaShiro Fujieda
    • H04N5/228G06K9/00
    • G06T7/0004G01B11/03G01B11/245G01B11/2545G01B21/04G01S5/16G01S17/48G06T7/593G06T2200/04G06T2200/24G06T2207/10012G06T2207/20104G06T2207/30108G06T2207/30148
    • An image processing device for the user to easily perform the setting for specifying the location to be performed with three dimensional measurement on the image where the photographed is shown, the device including an imaging section (1) with a first camera (C0), arranged with the optical axis directed in the vertical direction, for generating a front image of a work W, and a second camera (C1), arranged with the optical axis directed in a slanted direction, for generating a slant image of the work W. In the setting prior to the measurement, the setting object is photographed with each camera (C0, C1), and the setting is performed pm the specified region for specifying the position to be measured by the user using the front image from the first camera C0. In time of the measurement, the specified region is defined in the front image from the first camera (C0) based on the setting, and the process of specifying the position to be measured is performed in the relevant region. Furthermore, the position corresponding to the position specified in the front image is specified, and the process of calculating the three dimensional coordinate is performed with respect to the slant image from the second camera (C1).
    • 一种图像处理装置,用于使用者能够容易地执行用于通过对所拍摄的图像进行三维测量来指定要执行的位置的设置,该装置包括具有第一照相机(C0)的成像部分(1) 其中光轴指向垂直方向,用于产生工件W的正面图像;以及第二照相机(C1),其布置成沿着倾斜方向指向光轴,用于产生工件W的倾斜图像。 在测量之前的设置中,利用每个摄像机(C0,C1)拍摄设置对象,并且在用于使用来自第一摄像机C0的前面图像指定要测量的位置的指定区域中进行设置。 在测量时,基于该设定,从第一相机(C0)的前方图像中定义指定区域,并且在相关区域中执行指定待测位置的处理。 此外,指定与前方图像中指定的位置相对应的位置,并且相对于来自第二相机(C1)的倾斜图像执行三维坐标的计算处理。