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    • 1. 发明专利
    • Uterine cancer diagnosis method and uterine cancer diagnosis kit
    • 子宫癌诊断方法和子宫癌诊断包
    • JP2010151677A
    • 2010-07-08
    • JP2008331273
    • 2008-12-25
    • National Cancer Center-JapanOlympus Corpオリンパス株式会社国立がんセンター総長
    • KOBAYASHI TAMIYOMURASE YUMIMATSUMURA YASUHIROKOGA NOBUKATSUYASUNAGA MASAHIRO
    • G01N33/574G01N33/543
    • PROBLEM TO BE SOLVED: To provide an uterine cancer diagnosis method, which is a cell base screening method for directly measuring and analyzing cervical cancer and body cancer cells, non-invasive, decreasing test load, and obtaining diagnosis result with high reliability, and a kit used in the diagnosis method.
      SOLUTION: According to this uterine cancer diagnosis method, an uterine cancer is diagnosed according to whether an uterine cancer cell is contained in a living body sample. The method includes: (a1) a process of dyeing cells in the living body sample after being fixed in a cell observation container; and (b1) a process of acquiring a microscopic image of the cell dyed in the process (a1), and analyzing the image to detect an uterine cancer cell. The living body sample derives from a womb. A uterine cancer diagnosis kit is also provided which is used in the diagnosis method for the uterine cancer.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种子宫癌诊断方法,其是用于直接测量和分析子宫颈癌和体癌细胞的非侵入性,降低的测试负荷并获得具有高可靠性的诊断结果的细胞基础筛选方法 ,以及用于诊断方法的试剂盒。 解决方案:根据该子宫癌诊断方法,根据子宫癌细胞是否含有活体样本来诊断子宫癌。 该方法包括:(a1)固定在细胞观察容器中后,将活体样品中的细胞染色的工序; 和(b1)获得在步骤(a1)中染色的细胞的显微图像并分析该图像以检测子宫癌细胞的过程。 活体样本来源于子宫。 还提供了用于子宫癌诊断方法的子宫癌诊断试剂盒。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Gripping forceps
    • 传送力
    • JP2008253638A
    • 2008-10-23
    • JP2007101274
    • 2007-04-09
    • Hoya CorpHoya株式会社National Cancer Center-Japan国立がんセンター総長
    • KAKIZOE TADAOKOBAYASHI HISAMITSUIKEDA KUNITOSHIKANDA HIROYUKISANO HIROSHI
    • A61B17/28
    • PROBLEM TO BE SOLVED: To provide gripping forceps, surely gripping in-vivo tissue without causing damage such as contused wound. SOLUTION: The gripping forceps includes a pair of forceps members respectively having pivoted parts pivoted to relatively rotate by a common rotating shaft and arm parts extending from the pivoted parts toward the tip, and performing opening and closing operation to make pawl parts provided on the tip parts of the arm parts approach and separate each other around the pivoted parts, wherein a lightening part is formed in each of opposite surface parts of the arm parts so that when the paired forceps members are closed, the space between the whole opposite surfaces of the arm parts is uniformly spread wider than the space between the base parts of the pawl parts. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供夹钳,确保抓住体内组织而不引起伤口等伤害。 解决方案:夹钳包括一对镊子构件,它们分别具有枢转部分,枢转部分由共同的旋转轴和从枢转部分朝向尖端延伸的臂部分枢转,并且执行打开和关闭操作以使得提供棘爪部分 在臂部的尖端部分接近并且绕枢转部分彼此分离,其中在臂部件的相对表面部分中的每一个中形成减轻部分,使得当成对的钳子部件关闭时,整个相对的空间 臂部分的表面均匀地扩展得比棘爪部分的基部之间的空间宽。 版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • Charged particle beam irradiation device
    • 充电颗粒光束辐射装置
    • JP2008173297A
    • 2008-07-31
    • JP2007009524
    • 2007-01-18
    • National Cancer Center-JapanSumitomo Heavy Ind Ltd住友重機械工業株式会社国立がんセンター総長
    • NISHIO TEIJIOGINO TAKASHINOMURA KAZUHIROTACHIKAWA TOSHIKI
    • A61N5/10A61B6/00A61N5/01G01T1/161G21K5/00G21K5/04
    • PROBLEM TO BE SOLVED: To provide a charged particle beam irradiation device permitting confirmation of an irradiation position in a desired region. SOLUTION: The charged particle beam irradiation device has an irradiation chamber 103 with a charged particle beam irradiation part 1 which is rotatable around an object 51 to be irradiated. A detection part 30 for detecting annihilation gamma rays generated in the object 51 to be irradiated is movable in the direction in which the axis X of rotation of the charged particle beam irradiation part 1. Accordingly, by moving the detection part 30 in the direction of the axis X, the detection part 30 can be prevented from preventing rotation of the charged particle beam irradiation part 1. Further, the detection part 30 will not be an obstacle in carrying the object to be irradiated into/out of the irradiation chamber 103, and the position of the desired region can be confirmed. Since the detection part 30 can be moved in the direction of the axis X according to the size of the object to be irradiated, the range of detection by the detection part 30 can be expanded. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供允许在期望区域中确认照射位置的带电粒子束照射装置。 解决方案:带电粒子束照射装置具有照射室103,其具有能够围绕物体51旋转以照射的带电粒子束照射部分1。 用于检测在被照射物体51中产生的湮灭伽马射线的检测部30能够沿着带电粒子束照射部1的旋转轴线X的方向移动。因此,通过使检测部30沿着 可以防止轴线X,检测部件30阻止带电粒子束照射部分1的旋转。此外,检测部件30将不会妨碍将被照射入/离开照射室103的物体, 并且可以确认所需区域的位置。 由于检测部30能够根据被照射物的尺寸沿轴线X的方向移动,所以能够扩大检测部30的检测范围。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • Image recognition device
    • 图像识别装置
    • JP2007265331A
    • 2007-10-11
    • JP2006092949
    • 2006-03-30
    • Hitachi Medical CorpNational Cancer Center-Japan国立がんセンター総長株式会社日立メディコ
    • ABE NOBUTAKATANIGUCHI HIROKIKAKIZOE TADAOKOBAYASHI HISAMITSU
    • G06T7/60A61B5/00A61B5/055G06T1/00
    • PROBLEM TO BE SOLVED: To provide an image recognition device for extracting an object image with high accuracy. SOLUTION: The image recognition device sets a closed curve 3 when extracting the outline of the object image 1. The image recognition device sets a band region 29 having a predetermined width including the closed curve 3, computes a threshold value 45 maximum in separation based on the pixel value distribution of the band region 29, and compares the threshold value with the pixel value of each sample point 31 on the closed curve 3 to compute the moving direction and moving amount of each sample point 31. Each sample point 31, i.e., the closed curve 3 is dynamically moved to eventually converge the closed curve 3 on the outline of the object region 1 and to extract the outline of the object region 1. To determine the movement of each sample point 31, a statistic based on the pixel value of an internal region 33 inside the band region 29 is compared with a statistic based on the pixel value on the closed curve or in the band region 29, to use a threshold value computed from the pixel value distribution of the band region 29. The outline of the object region 1 can thereby be extracted with high accuracy after reflecting information on the internal region 33 inside the band region 29. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种用于以高精度提取对象图像的图像识别装置。 解决方案:当提取对象图像1的轮廓时,图像识别装置设置闭合曲线3.图像识别装置设置具有包括闭合曲线3的预定宽度的带区域29,计算最大值的阈值45 基于带区域29的像素值分布进行分离,并将阈值与闭合曲线3上的各采样点31的像素值进行比较,计算各采样点31的移动方向和移动量。各采样点31 即闭合曲线3被动态地移动以最终收敛在对象区域1的轮廓上的闭合曲线3并提取对象区域1的轮廓。为了确定每个采样点31的移动,基于 将带区域29内的内部区域33的像素值与基于闭合曲线或带区域29中的像素值的统计量进行比较,以使用从像素计算出的阈值 带区域29的值分布。因此,可以在反映关于区域29内的内部区域33的信息之后,高精度地提取对象区域1的轮廓。(C)2008,JPO和INPIT
    • 9. 发明专利
    • Electronic endoscope apparatus
    • 电子内窥镜装置
    • JP2007202589A
    • 2007-08-16
    • JP2006021345
    • 2006-01-30
    • National Cancer Center-JapanPentax Corpペンタックス株式会社国立がんセンター総長
    • KAKIZOE TADAOKOBAYASHI HISAMITSUMATSUI TAKESHIIKETANI KOHEI
    • A61B1/04A61B1/06G02B23/24H04N7/18
    • PROBLEM TO BE SOLVED: To provide an electronic endoscope apparatus allowing easy understanding of the whole image of an observation surface and providing a clear image of a microstructure of the observation surface in an intended depth. SOLUTION: This electronic endoscope apparatus is provided with a light source, a rotating filter emitting the emission light from the light source by sequentially changing over between a wide band light having a wide wavelength band and a narrow band light having a narrow wavelength band, a first image memory section recording a first image signal obtained when irradiated with the wide band light, a second image memory section recording a second image signal obtained when irradiated with the narrow band light, and image signal composition section composing the first image signal and the second image signal. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种允许容易地理解观察表面的整个图像并且以预期深度提供观察表面的微结构的清晰图像的电子内窥镜装置。 解决方案:该电子内窥镜装置设置有光源,旋转滤光器,其通过在具有宽波长带的宽带光和具有窄波长的窄带光之间顺序地转换来发射来自光源的发射光 记录当用宽带光照射时获得的第一图像信号的第一图像存储部分,记录用窄带光照射时获得的第二图像信号的第二图像存储部分,以及构成第一图像信号的图像信号合成部分 和第二图像信号。 版权所有(C)2007,JPO&INPIT