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    • 3. 发明授权
    • Ultrasonic scanner for examination of a coeliac cavity
    • 超声波扫描仪用于检查腹腔
    • US4442842A
    • 1984-04-17
    • US203511
    • 1980-11-03
    • Kazuo Baba
    • Kazuo Baba
    • A61B1/00A61B1/273A61B1/31A61B8/00A61B8/12A61B10/00
    • A61B1/2736A61B1/31A61B8/12A61B8/4461A61B8/445
    • With an ultrasonic scanner for coeliac examination, the distal end of the insertion section is provided with a distal end part consisting of a beam-scanning section and beam transmitting and receiving section. The beam-scanning section comprises a beam mirror set in a beam-scanning chamber formed in a casing. A reflection plane formed at one end of the beam mirror is inclined at an angle of, for example, 45.degree. to its rotation axis. The beam mirror is rotated by means of a mirror shaft and flexible shaft. The beam transmitting and receiving section comprises a holder in which a vibrator is set. The holder is securely fitted into a receptacle formed in the casing by the threaded engagement of a fitting cap with the receptacle. The vibrator is electrically connected to the insertion body in a detachable state.
    • 利用用于腹腔镜检查的超声波扫描器,插入部分的远端设置有由光束扫描部分和光束发射和接收部分组成的远端部分。 光束扫描部分包括设置在形成在壳体中的光束扫描室中的光束镜。 在反射镜的一端形成的反射面以与其旋转轴成45度的角度倾斜。 光束镜通过镜轴和柔性轴旋转。 光束传输和接收部分包括设置振动器的保持器。 通过配合盖与容器的螺纹接合,保持器牢固地装配到形成在壳体中的容器中。 振动器以可拆卸的状态电连接到插入体。
    • 5. 发明授权
    • Endoscope apparatus
    • 内窥镜装置
    • US4633855A
    • 1987-01-06
    • US782145
    • 1985-09-30
    • Kazuo Baba
    • Kazuo Baba
    • A61B1/00A61B5/107A61B8/12G01S15/88A61B1/06
    • G01S15/88A61B1/0008A61B1/00165A61B5/1076A61B8/12A61B8/445
    • An endoscope apparatus includes an ultrasonic transducer disposed at the distal end portion of an endoscope. The ultrasonic wave transmission/reception time of the ultrasonic transducer is measured by a time counter. The measured time from the time counter and the velocity of propagation of ultrasonic wave are operated on by a calculator to calculate the distance between the distal end portion and a subject. The distance and the view angle of an observation optical system are operated on by a calculator, the ratio between the size of an image in the field of view of the observation optical system and the size of the subject is calculated, and the scale of a scale display panel disposed inside the field of view of the optical system is indicated in accordance with such ratio. The graduations of the scale are variable as a function of said calculated ratio.
    • 内窥镜装置包括设置在内窥镜的前端部的超声波振子。 通过时间计数器测量超声波换能器的超声波发送/接收时间。 从时间计数器测量的时间和超声波的传播速度由计算器操作,以计算远端部分和被摄体之间的距离。 观察光学系统的距离和视角由计算器操作,计算观察光学系统的视野中的图像的尺寸与被摄体的尺寸之间的比例, 根据这样的比例来指示设置在光学系统的视场内的尺寸显示面板。 刻度的刻度作为所计算的比率的函数而变化。
    • 8. 发明授权
    • Image-reading apparatus
    • 图像读取装置
    • US08462405B2
    • 2013-06-11
    • US12725019
    • 2010-03-16
    • Katsunori KawanoShin YasudaAkihiko NayaKazuo Baba
    • Katsunori KawanoShin YasudaAkihiko NayaKazuo Baba
    • H04N1/46H04N1/38
    • H04N1/1017H04N1/0318H04N1/193H04N2201/0081H04N2201/03112H04N2201/03141H04N2201/03145H04N2201/03187H04N2201/0458
    • An image-reading apparatus includes a light dividing unit that divides irradiated light so that a part of the light having a first wavelength is diffracted, and a part of the light having a second wavelength is transmitted; a first light measuring unit that measures an intensity of light entering into a first measuring area, and outputs first measurement information indicating the measured intensity; a second light measuring unit that measures an intensity of light entering into a second measuring area, and outputs second measurement information indicating the measured intensity; an image-forming unit that forms an image of a subject for reading in the first measurement area, and that forms a virtual image in the second measurement area using light diffracted by the light dividing unit; and a generation unit that corrects the first measurement information on the basis of the second measurement information.
    • 一种图像读取装置,包括:分光单元,其分割照射的光,使得具有第一波长的光的一部分被衍射,并且透射具有第二波长的一部分光; 第一光测量单元,其测量进入第一测量区域的光的强度,并输出表示测量强度的第一测量信息; 第二光测量单元,测量进入第二测量区域的光的强度,并输出表示测量强度的第二测量信息; 图像形成单元,其形成用于在所述第一测量区域中读取的对象的图像,并且使用由所述光分割单元衍射的光在所述第二测量区域中形成虚像; 以及生成单元,其基于第二测量信息来校正第一测量信息。