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    • 2. 发明申请
    • Display processor
    • 显示处理器
    • US20060202998A1
    • 2006-09-14
    • US11418534
    • 2006-05-04
    • Katsumi HirakawaMasanao Hara
    • Katsumi HirakawaMasanao Hara
    • G06T1/00
    • A61B1/041A61B1/00009A61B1/00016A61B1/0005A61B1/273A61B1/31A61B5/06A61B5/061
    • An image captured by successive imaging over time by using a capsule endoscope is correlated with the imaging position and compiled into a database. The left side of a display screen of a monitor device displays a subject internal model, a trajectory path of the capsule endoscope, and a position mark indicating the imaging position. An image corresponding to the position of the position mark is displayed in an image display area on the right side. When a position mark on the trajectory path is designated by a mouse, the corresponding image is displayed. It is also possible to designate a section for which the image corresponding to the position mark is displayed or to designate a position mark where an unusual image is captured.
    • 通过使用胶囊型内窥镜通过连续成像拍摄的图像与成像位置相关并编译成数据库。 监视器装置的显示画面的左侧显示被检体内部模型,胶囊型内窥镜的轨迹路径和表示摄像位置的位置标记。 对应于位置标记的位置的图像被显示在右侧的图像显示区域中。 当通过鼠标指定轨迹路径上的位置标记时,显示相应的图像。 也可以指定显示与位置标记相对应的图像的部分,或者指定捕获异常图像的位置标记。
    • 3. 发明授权
    • In vivo imaging device, display device, imaging and displaying system and intra-subject indwelling system using the same
    • 体内成像装置,显示装置,成像和显示系统以及使用该装置的体内留置系统
    • US08269823B2
    • 2012-09-18
    • US11632979
    • 2006-07-13
    • Katsumi HirakawaTakeshi YokoiAkio UchiyamaShinsuke TanakaHironobu Takizawa
    • Katsumi HirakawaTakeshi YokoiAkio UchiyamaShinsuke TanakaHironobu Takizawa
    • H04N7/18
    • A61B1/0005A61B1/00147A61B1/04A61B1/041G02B23/2484
    • An object of the present invention is to continuously display a series of images of the inside of the subject until the intra-body indwelling capsule is placed at the desired site in the subject, and to easily place the intra-body indwelling capsule endoscope at the desired site. The intra-subject indwelling system 1 according to the present invention includes an endoscope device 14 for imaging a first image of the inside of the subject; an intra-body indwelling capsule 2, for imaging a second image of the inside of the subject; a monitor device 12 for receiving the second image; a receiving device 13, a monitor 11 for displaying the first image or the second image; and an image switching device 10. The intra-body indwelling capsule 2 is arranged at the distal end of the inserting unit 5, and the separation from the inserting unit 5 is detected and the separation detection result is transmitted. The receiving device 13 receives the separation detection result. The image switching device 10 receives the first image from the endoscope device 14 and the second image from the monitor device 12, and switches the display image of the monitor 11 from the second image to the first image when receiving the separation detection result from the receiving device 13.
    • 本发明的目的是连续地显示被检体内部的一系列图像,直到体内留置胶囊被放置在被检体的所需位置为止,容易将体内留置胶囊型内窥镜置于 所需网站。 根据本发明的被检体内部居留系统1包括:用于对被检体内部的第一图像成像的内窥镜装置14; 体内留置胶囊2,用于对被检体内部的第二图像成像; 用于接收第二图像的监视器装置12; 接收装置13,用于显示第一图像或第二图像的监视器11; 和图像切换装置10.体内留置胶囊2配置在插入部5的前端,检测出与插入部5的分离,并发送分离检测结果。 接收装置13接收分离检测结果。 图像切换装置10从内窥镜装置14接收第一图像,从监视装置12接收第二图像,并且当从接收到接收到的分离检测结果接收到时,将监视器11的显示图像从第二图像切换到第一图像 装置13。
    • 7. 发明授权
    • Powder catalyst composition and process for polymerizing olefins with
the use thereof
    • 粉末催化剂组合物及其用途聚合烯烃的方法
    • US5474962A
    • 1995-12-12
    • US124753
    • 1993-09-22
    • Tadashi TakahashiKazuhiro YamamotoKatsumi Hirakawa
    • Tadashi TakahashiKazuhiro YamamotoKatsumi Hirakawa
    • C08F4/642C08F4/60C08F4/602C08F4/659C08F4/6592C08F10/00B01J31/00
    • C08F10/00C08F4/65908C08F4/65912C08F4/65916C08F4/6592
    • The present invention provides a powder catalyst composition for producing by gas-phase polymerization olefin polymers having excellent polymer qualities and good particle properties in a high yield.The powder catalyst composition comprises fine particles of the following Component (B) coated with the following Component (A), and is characterized in that the ratio of the Component (A) to the Component (B) based on percent by weight ranges from 5:50 to 95:50: Component (A): an inorganic compound in the form of fine particles having an average particle diameter of 0,003-1 .mu.m and mainly comprising an inorganic oxide, and Component (B): a solution or dispersion in a hydrocarbon of the following Sub-components (i) and (ii): Sub-component (i): a compound of a transition metal belonging to the IVB group of the Periodic Table, and Sub-component (ii): an alumoxane, a Lewis acid, or an ionic compound which can convert the Sub-component (i) upon reaction therewith into a cation.A process for polymerizing an olefin with use of the composition is also disclosed.
    • 本发明提供了一种通过气相聚合烯烃聚合物制备的粉末催化剂组合物,其具有优异的聚合物质量和良好的颗粒性能,以高产率。 该粉末催化剂组合物包含以下组分(A)涂覆的下述组分(B)的细颗粒,其特征在于组分(A)与组分(B)的重量百分比基于5重量% :50〜95:50:成分(A):平均粒径为0.003-1μm,主要由无机氧化物构成的微粒状的无机化合物,(B)成分: 下列子成分(i)和(ii)的烃:副成分(ⅰ):属于元素周期表IVB族的过渡金属的化合物和副成分(ⅱ):铝氧烷, 路易斯酸或离子化合物,其可以将副成分(i)与其反应转化成阳离子。 还公开了使用该组合物聚合烯烃的方法。
    • 8. 发明授权
    • Image display device
    • 图像显示装置
    • US08900124B2
    • 2014-12-02
    • US11888871
    • 2007-08-02
    • Katsumi Hirakawa
    • Katsumi Hirakawa
    • A61B1/04A61B1/00
    • A61B1/04A61B1/00045A61B1/041G06F19/00
    • A device for displaying in vivo images picked up inside a subject in a time series. The device automatically detects lesion images contained in all in vivo images picked up over the time series. The device displays an elongated display area having a time scale assigned along a longitudinal direction thereof and an indicator which moves along the time scale to indicate a time position in the time scale which corresponds to a current in vivo image currently displayed in a main display area. In response to a detection of the lesion image, the device makes pixels located at a time position in the elongated display area which position corresponds to the lesion image to emit light in a predetermined pixel-display mode. The display mode of the indicator is controlled in response to information on a lesion that is possible to be contained in the current in vivo image.
    • 用于以时间序列显示在对象内拾取的体内图像的装置。 该装置自动检测包含在通过时间序列拾取的所有体内图像中的病变图像。 该装置显示具有沿着其纵向方向分配的时标的细长显示区域和沿时间尺度移动的指示符,以指示与当前显示在主显示区域中的当前体内图像相对应的时间尺度中的时间位置 。 响应于病变图像的检测,设备使位于细长显示区域中的时间位置处的像素对应于损伤图像的位置以预定的像素显示模式发光。 响应于可能包含在当前体内图像中的病变的信息来控制指示器的显示模式。
    • 9. 发明授权
    • Image display apparatus
    • 图像显示装置
    • US08830307B2
    • 2014-09-09
    • US11631273
    • 2006-02-02
    • Katsumi Hirakawa
    • Katsumi Hirakawa
    • A62B1/04A61B1/00G06T7/00A61B1/04
    • A61B1/042A61B1/00045A61B1/0005G06T7/0012G06T7/32G06T7/33G06T2207/10068G06T2207/30028G06T2207/30092
    • To reduce a display time of an image for which an observation is less required, and to effectively perform an observation of a series of images, the image display apparatus (1) includes an image processing controller (2a) that acquires an image from a storage unit (5), controls various image processes for the acquired image, and stores an image of a processing result in the storage unit (5), an image classification unit (2b) that calculates a correlation value between temporally continuous images and classifies each of the images into an image group based on the calculated correlation value, an image-of-interest detecting unit (2c) that detects a feature-image area including a predetermined feature from each of the images, and detects the feature image including the detected feature-image area as an image-of-interest, a representative-image extracting unit (2d) that extracts the image-of-interest and a first image in each of the image groups as a representative image and sets a display rate for each of the extracted representative images, and an image display controller (6a) that performs a control of sequentially displaying the series of representative images based on the set display rates.
    • 为了减少不需要观察的图像的显示时间,并且为了有效地进行一系列图像的观察,图像显示装置(1)包括从存储部获取图像的图像处理控制器(2a) 单元(5)控制所获取的图像的各种图像处理,并将处理结果的图像存储在存储单元(5)中,图像分类单元(2b),其计算时间连续图像之间的相关值,并将 基于所计算的相关值将图像转换为图像组,感兴趣图像检测单元(2c),其从每个图像检测包括预定特征的特征图像区域,并检测包括检测到的特征的特征图像 图像区域作为感兴趣的图像,提取感兴趣图像的代表图像提取单元(2d)和作为代表图像的每个图像组中的第一图像,并且设置显示 提取的代表图像中的每一个的速率;以及图像显示控制器(6a),其执行基于所设置的显示速率顺序显示所述一系列代表图像的控制。
    • 10. 发明授权
    • In-vivo information acquiring apparatus, in-vivo information acquiring system, and in-vivo information acquiring method
    • 体内信息获取装置,体内信息获取系统和体内信息获取方法
    • US08491464B2
    • 2013-07-23
    • US11571510
    • 2006-07-10
    • Takeshi YokoiKatsumi HirakawaAkio UchiyamaShinsuke TanakaHironobu TakizawaManabu Fujita
    • Takeshi YokoiKatsumi HirakawaAkio UchiyamaShinsuke TanakaHironobu TakizawaManabu Fujita
    • A61B1/00
    • A61B1/2736A61B1/00147A61B1/041A61B5/6882A61B2562/162
    • To stably and properly monitor an inside of a body by using an easily operable placement technique, a capsule endoscope 101 to be swallowed from an oral cavity 200 to acquire in-vivo information of a subject 201 and to wirelessly output for a transmission of the in-vivo information to an outside of a body, a string member 103 that is connected to the capsule endoscope 101 for positioning the capsule endoscope 101 at a gastric cardia 202, and a fixing portion 104 that is a portion of the string member 103, is provided on a position with which a length from the capsule endoscope 101 corresponds to a length from the gastric cardia 202 to the inside of an esophageal region 203 for fixing the string member 103 that has located the capsule endoscope 101 at the gastric cardia 202 to the inside of the esophageal region 203 by an endoscopic fixture are included. As a result, the capsule endoscope 101 is placed at a position of the gastric cardia 202 where an entire inside of the stomach is easily inspected, and the capsule endoscope 101 itself can easily be placed inside the esophageal region by using the fixing portion 104.
    • 为了通过使用易于操作的放置技术来稳定且适当地监视身体的内部,可以从口腔200中吞咽的胶囊型内窥镜101获取被检体201的体内信息,并进行无线输出。 体内信息输送到身体的外部,与胶囊型内窥镜101连接以将胶囊型内窥镜101定位在胃贲门202处的绳状构件103和作为绳构件103的一部分的固定部104, 设置在从胶囊型内窥镜101的长度对应于从胃贲门202到食道区域203的长度的位置的位置,用于将位于胃贲门202处的胶囊型内窥镜101的线状部件103固定到 包括内窥镜固定装置在食管区域203内部。 结果,胶囊型内窥镜101配置在容易检查胃内整体的胃贲门202的位置,通过使用固定部104,能够容易地将胶囊型内窥镜101本身放置在食道内。