IMAGE DIAGNOSIS DEVICE AND IMAGE PROCESSING METHOD
    111.
    发明公开
    IMAGE DIAGNOSIS DEVICE AND IMAGE PROCESSING METHOD 有权
    BILDDIAGNOSEVORRICHTUNG UND BILDVERARBEITUNGSVERFAHREN

    公开(公告)号:EP2896372A1

    公开(公告)日:2015-07-22

    申请号:EP12884676.3

    申请日:2012-09-11

    发明人: KANEKO, Kenji

    IPC分类号: A61B8/12 A61B1/00

    摘要: According to the present invention, there is provided an imaging apparatus for diagnosis which includes first generating means for generating a closed curve indicating a blood vessel wall by extracting a position of the blood vessel wall using an ultrasonic cross-sectional image at a predetermined position in an axial direction, second generating means for generating a closed curve indicating a boundary of a blood flow region by extracting a boundary position of the blood flow region using an optical cross-sectional image at the predetermined position, and setting means for setting a region between the closed curve generated by the first generating means and the closed curve generated by the second generating means as the region of interest in the ultrasonic cross-sectional image or the optical cross-sectional image, in a case where the ultrasonic cross-sectional image and the optical cross-sectional image are aligned and overlapped with each other at the predetermined position.

    摘要翻译: 根据本发明,提供了一种用于诊断的成像装置,其包括:第一产生装置,用于通过使用超声波横截面图像在预定位置处提取血管壁的位置来产生指示血管壁的闭合曲线 第二产生装置,用于通过使用在预定位置处的光学横截面图像提取血流区域的边界位置来产生指示血流区域的边界的闭合曲线,以及设定装置, 在超声波截面图像和超声波截面图像的情况下,由第一生成装置生成的闭合曲线和由第二生成装置生成的闭合曲线作为超声波截面图像或光学截面图像中的感兴趣区域 光学横截面图像在预定位置彼此对准并重叠。

    Biological optical measurement apparatus and ultrasound diagnostic apparatus
    116.
    发明公开
    Biological optical measurement apparatus and ultrasound diagnostic apparatus 审中-公开
    Biologische Optische Messvorrichtung und Ultraschalldiagnosevorrichtung

    公开(公告)号:EP2837333A2

    公开(公告)日:2015-02-18

    申请号:EP14171929.4

    申请日:2014-06-11

    IPC分类号: A61B8/00 A61B5/00

    摘要: According to one embodiment, a biological optical measurement apparatus includes a light emission unit, plural detectors, an image acquisition unit, and a calculation unit. The light emission unit is arranged on a surface of a subject and configured to substantially vertically emit light from an emission surface of the light emission unit to the surface of the subject. The plural detectors are arranged on a surface of a subject and configured to substantially vertically emit light from an emission surface of the light emission unit to the surface of the subject. The image acquisition unit acquires an image with respect to the subject.

    摘要翻译: 根据一个实施例,生物光学测量装置包括发光单元,多个检测器,图像获取单元和计算单元。 发光单元布置在被摄体的表面上并且被配置为基本上垂直地将光从发光单元的发射表面发射到被摄体的表面。 多个检测器被布置在被检体的表面上并且被配置为基本上垂直地将光从发光单元的发射表面发射到被检体的表面。 图像获取单元获取关于被摄体的图像。

    PROBE
    117.
    发明公开
    PROBE 审中-公开
    探测

    公开(公告)号:EP2832302A1

    公开(公告)日:2015-02-04

    申请号:EP13768950.1

    申请日:2013-03-19

    IPC分类号: A61B8/12 A61B1/00

    摘要: A configuration is provided for firmly fixing a transmitting and receiving unit for IVUS and a transmitting and receiving unit for OCT in a probe of an imaging apparatus for diagnosis in which space saving is achieved. According to the present invention, the probe includes a cylindrical housing 223 in which an ultrasonic wave transmitting and receiving unit 310 is arranged on a distal side and a light transmitting and receiving unit 320 is arranged on a proximal side. Two signal wires 311 of which one ends are connected to the ultrasonic wave transmitting and receiving unit 310 and which extend toward the proximal side substantially parallel to each other are arranged in the housing 223 so as to cause the distance between the two signal wires to be smaller than a width W of a ball lens portion 322 configuring the light transmitting and receiving unit 320 below the light transmitting and receiving unit 320.

    摘要翻译: 提供一种构造,用于将用于IVUS的发送和接收单元以及用于OCT的发送和接收单元牢固地固定在用于实现节省空间的诊断的成像装置的探针中。 根据本发明,探头包括圆柱形壳体223,其中超声波发射和接收单元310布置在远侧,光发射和接收单元320布置在近侧。 一端连接到超声波发送和接收单元310并且彼此基本平行地朝向近侧延伸的两条信号线311布置在壳体223中,以使得两条信号线之间的距离为 小于构成光收发部320下的光收发部320的球透镜部322的宽度W.