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    • 1. 发明授权
    • Flat type IC conveyor
    • 扁平型IC输送机
    • US5711413A
    • 1998-01-27
    • US761796
    • 1996-12-06
    • Akio NakamuraTetsuya OkudairaYoshihiro Goto
    • Akio NakamuraTetsuya OkudairaYoshihiro Goto
    • B65D85/86H01L21/673B65G21/20
    • H01L21/67333
    • A flat type IC conveyor capable of conveying flat type ICs while stabilizing the posture of the ICs. A plurality of recess portions accommodating therein flat type ICs are formed lengthwise and widthwise on a flat type IC conveyor. Through holes are respectively defined in the bottom surfaces of the recess portions in a manner of avoiding leads of the ICs. Positioning pins are provided upright on the IC conveyor. A cover includes a plurality of convex portions which are positioned corresponding to the recess portions and direct to project toward package portions of the ICs to be accommodated in the recess portions. The cover also includes holes into which the positioning pins are inserted. When the cover is mounted on the conveyor, the convex portions can prevent the inclination of the ICs in the recess portions.
    • 平板型IC输送机能够在稳定IC的姿势的同时输送扁平型IC。 容纳在其中的平坦型IC的多个凹部形成在扁平型IC输送机上纵向和横向地形成。 以避免IC的引线的方式,在凹部的底表面分别限定通孔。 定位销直立在IC输送机上。 一个盖子包括多个凸起部分,这些凸起部分对应于这些凹部并且直接突出到IC的封装部分以容纳在凹部中。 盖子还包括定位销插入其中的孔。 当盖子安装在输送机上时,凸起部分可以防止IC在凹部中的倾斜。
    • 2. 发明授权
    • Handling system
    • 处理系统
    • US5686834A
    • 1997-11-11
    • US717258
    • 1996-09-20
    • Tetsuya OkudairaAkio NakamuraYoshihiro Goto
    • Tetsuya OkudairaAkio NakamuraYoshihiro Goto
    • G01R31/26G01R31/28H01L21/66H01L21/677G01R31/02
    • G01R31/2893G01R31/2851
    • A handling system which carries a carrier carrying a plurality of IC devices, subjects the IC devices to testing, sorts the tested IC devices and stores the tested IC devices, said handling system comprises test units for electrically connecting IC devices to an IC socket for transmitting electrical signals provided by the IC devices to an IC tester; a loader/unloader unit for transferring IC devices to be tested from a container to a carrier, sorting tested IC devices and selectively transferring the tested IC devices from the carrier to containers; and carrier transfer units combined with the test units, respectively, to transfer the carrier from the loader/unloader unit to the corresponding test units and from the corresponding test units to the loader/unloader unit. The number of the test units to be used in combination with the loader/unloader unit being varied according to test time required by the IC tester for testing the IC devices contained in the carrier.
    • 承载携带承载IC器件进行测试的多个IC器件的载体的处理系统对所测试的IC器件进行分类并存储所测试的IC器件,所述处理系统包括用于将IC器件电连接到用于传输的IC插座的测试单元 由IC器件提供给IC测试仪的电信号; 用于将测试的IC器件从容器转移到载体的装载器/卸载器单元,对测试的IC器件进行分类并将测试的IC器件从载体选择性地传送到容器; 以及与测试单元组合的载体传送单元,以将载体从装载机/卸载机单元传送到相应的测试单元,并将相应的测试单元传送到装载机/卸载机单元。 与装载机/卸载机组合使用的测试单元的数量根据IC测试仪测试载体中包含的IC器件所需的测试时间而变化。
    • 3. 发明授权
    • Medical image display system and medical image display program
    • 医学图像显示系统和医学图像显示程序
    • US08107701B2
    • 2012-01-31
    • US12278505
    • 2007-03-12
    • Takashi ShirahataYoshihiro Goto
    • Takashi ShirahataYoshihiro Goto
    • G06K9/00
    • G01R33/56A61B5/7445A61B6/463A61B6/466A61B8/461A61B8/463A61B8/465A61B8/466G01R33/546G01R33/5608G01R33/563G06F19/00G06T11/008G06T15/08G06T19/00G06T2210/41
    • A medical image display apparatus of the present invention is used in a medical image display system having a function of preparing three-dimensional image data on a subject including a plurality of luminal organs and displaying the prepared three-dimensional image data on a display (15) as a three-dimensional image. The medical image display apparatus includes a curved-surface creation section (31) which specifies a desired luminal organ in an image showing the plurality of luminal organs displayed on the display (15) and sets a curved surface where the specified desired luminal organ is present; a developed-image creation section (33) which extracts, from the three-dimensional image data, pixel values on the curved surface set by the curved-surface creation section (31), creates curved-surface image data by use of the extracted pixel values on the curved surface, and reconstructs two-dimensional image data (developed image data) from the created curved-surface image data; and a CPU (11) which controls the display (15) so as to display the developed image data reconstructed by the developed-image creation section (33).
    • 本发明的医疗用图像显示装置用于具有对包含多个管腔器官的被检体进行三维图像数据的准备的功能的医用图像显示系统,并将准备好的三维图像数据显示在显示器(15)上 )作为三维图像。 医用图像显示装置包括曲面生成部(31),该曲面形成部(31)在显示在显示器(15)上的多个管腔器官的图像中指定所需的管腔器官,并设定存在指定的所需腔器官的曲面 ; 从三维图像数据中提取由曲面创建部分(31)设置的曲面上的像素值的显影图像创建部分(33),通过使用提取的像素创建曲面图像数据 并且从所创建的曲面图像数据重建二维图像数据(显影图像数据); 以及控制显示器(15)以显示由显影图像创建部分(33)重建的显影图像数据的CPU(11)。
    • 4. 发明申请
    • MEDICAL IMAGE DISPLAY DEVICE AND METHOD
    • 医学图像显示装置及方法
    • US20110255755A1
    • 2011-10-20
    • US13142014
    • 2009-12-22
    • Takashi ShirahataHiroto KokubunYoshihiro Goto
    • Takashi ShirahataHiroto KokubunYoshihiro Goto
    • G06K9/00
    • G06T19/00A61B5/055A61B6/03G06F19/321G06T2219/021
    • In a medical image display device for displaying a hollow organ of an examinee as a panoramic image, in order to inform an operator of the existence or nonexistence of a blind area in a panoramic image, the medical image display device has a panoramic image creating unit configured to create a panoramic image of a hollow organ of an examinee and a display unit configured to display the panoramic image, and further has a blind area detecting unit configured to detect a blind area in the panoramic image and an informing unit configured to inform an operator of the existence or nonexistence of the blind portion. Furthermore, a medical image display method of the present invention has a panoramic image creating step that creates a panoramic image of a hollow organ of an examinee and a display step that displays the panoramic image, and further has a blind area detecting step that detects a blind area in the panoramic image and an informing step that informs an operator of the existence or nonexistence of the blind portion.
    • 在用于显示受检者的中空器官作为全景图像的医用图像显示装置中,为了通知操作者全景图像中存在或不存在盲区,医疗图像显示装置具有全景图像生成单元 被配置为创建受检者的空心器官的全景图像和被配置为显示全景图像的显示单元,并且还具有盲区检测单元,被配置为检测全景图像中的盲区,以及通知单元,其被配置为通知 操作者盲目存在或不存在。 此外,本发明的医用图像显示方法具有创建被检体的中空器官的全景图像的全景图像生成步骤和显示全景图像的显示步骤,还具有盲区检测步骤, 全景图像中的盲区,以及通知操作者盲区的存在或不存在的通知步骤。
    • 6. 发明申请
    • IMAGE PROCESSING DEVICE, IMAGE PROCESSING METHOD, AND IMAGE PROCESSING PROGRAM
    • 图像处理设备,图像处理方法和图像处理程序
    • US20110069875A1
    • 2011-03-24
    • US12993337
    • 2009-05-18
    • Yoshihiro Goto
    • Yoshihiro Goto
    • G06K9/40
    • A61B6/032A61B6/463G06T5/002G06T5/20G06T2200/24G06T2207/10081G06T2207/10116G06T2207/20076G06T2207/30061
    • An image processing device includes: image reading means that reads a medical image; anisotropic area setting means that sets plural anisotropic areas continuous with a pixel-of-interest contained in the medical image with the pixel-of-interest being centered; statistical amount calculating means that calculates a statistical amount of pixel values of pixels constituting each anisotropic area with respect to each of the plural anisotropic areas; filter setting means that determines an anisotropic area having the minimum statistical amount out of the plural anisotropic areas and constructs an anisotropic shape filter in the same direction as the anisotropic area concerned, or determines an anisotropic area having the maximum statistical amount out of the plural anisotropic areas and constructs an anisotropic shape filter by clockwise or counterclockwise rotating the anisotropic area concerned around the pixel-of-interest by 90°, and sets any one of the former anisotropic shape filter and the latter anisotropic shape filter; and filter processing means that performs median filter processing or smoothing filter processing by using the anisotropic shape filter.
    • 一种图像处理装置包括:读取医学图像的图像读取装置; 各向异性区域设定装置,其中以感兴趣像素居中的医疗图像中包含的感兴趣像素连续的多个各向异性区域; 统计量计算装置,其计算相对于所述多个各向异性区域中的每一个的构成每个各向异性区域的像素的像素值的统计量; 滤波器设定装置确定在多个各向异性区域中具有最小统计量的各向异性区域,并且在与所涉及的各向异性区域相同的方向上构造各向异性形状滤波器,或者确定在多个各向异性区域中具有最大统计量的各向异性区域 区域并通过顺时针或逆时针方向将相关像素周围的各向异性区域旋转90°来构造各向异性形状滤波器,并且设置前者各向异性形状滤波器和后者各向异性形状滤波器中的任何一个; 以及通过使用各向异性形状滤波器进行中值滤波处理或滤波处理的滤波处理单元。
    • 7. 发明授权
    • Medical image display method and apparatus
    • 医用图像显示方法及装置
    • US07890156B2
    • 2011-02-15
    • US10569998
    • 2004-09-09
    • Masao OoiHiroshi TakagiYoshihiro Goto
    • Masao OoiHiroshi TakagiYoshihiro Goto
    • A61B5/05
    • A61B6/481A61B6/461A61B6/504
    • A medical image display method of this invention includes an organ display step for displaying an image of a predetermined organ including a desired blood vessel in a medical image on a display unit; a blood vessel selection step for selecting the desired blood vessel from the image of the predetermined organ displayed by the organ display step and designating a specific position of the desired blood vessel; and an image display step for displaying a pseudo image in a pseudo imaging mode as if a contrast, agent were made to flow through the blood vessel selected in the blood vessel selection step. The pseudo image of the flow of the contrast agent in the blood vessel assists doctor in conducting diagnoses and therapies.
    • 本发明的医学图像显示方法包括:器官显示步骤,用于在显示单元上显示医学图像中包含期望血管的预定器官的图像; 用于从由所述器官显示步骤显示的所述预定器官的图像中选择所需血管并指定所述期望血管的特定位置的血管选择步骤; 以及图像显示步骤,用于以仿造成像模式显示伪图像,仿佛使造影剂流过血管选择步骤中选择的血管。 血管中造影剂的流动的伪像有助于医生进行诊断和治疗。
    • 8. 发明申请
    • IMAGE DIAGNOSIS SUPPORT DEVICE AND IMAGE DIAGNOSIS SUPPORT PROGRAM
    • 图像诊断支持设备和图像诊断支持程序
    • US20100249580A1
    • 2010-09-30
    • US12304051
    • 2007-06-04
    • Yoshihiro GotoSuzushi Kusano
    • Yoshihiro GotoSuzushi Kusano
    • A61B5/05G06K9/62
    • G06T7/0012A61B5/055A61B5/1075A61B6/032A61B6/463G06T2207/10072G06T2207/30061
    • An image diagnosis support device 10 of the present invention includes an image acquisition section 61 which acquires a tomographic image including a desired organ of an object from a medical image scanning apparatus 2 or a magnetic disk 13; a reference region extraction section 62 which extracts a reference region representing a reference in the organ of interest from the tomographic image acquired by the image acquisition section 61; an organ region extraction section 63 which extracts an organ region representing a region of the organ of interest from the tomographic image acquired by the image acquisition section 61; an organ shape information calculation section 64 which calculates organ shape information regarding the shape of the organ of interest from the reference region extracted by the reference region extraction section 62 and the organ region extracted by the organ region extraction section 63; and display control means 11 which displays on a monitor 15, which is a display device, the organ shape information calculated by the organ shape information calculation section 64.
    • 本发明的图像诊断支援装置10包括图像取得部61,其从医用图像扫描装置2或磁盘13获取包含物体的所需器官的断层图像; 参考区域提取部分62,从由图像获取部分61获取的断层图像中提取表示感兴趣器官中的参考的参考区域; 器官区域提取部63,其从由图像获取部61获取的断层图像中提取表示感兴趣器官的区域的器官区域; 器官形状信息计算部64,其从参考区域提取部62提取的参考区域和由器官区域提取部63提取的器官区域计算关于感兴趣的器官的形状的器官形状信息; 以及显示控制装置11,其在作为显示装置的监视器15上显示由器官形状信息计算部64计算的器官形状信息。