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    • 31. 发明授权
    • Endoscope apparatus calibration with color correction table
    • 内镜装置用色彩校正表校准
    • US08624966B2
    • 2014-01-07
    • US12888785
    • 2010-09-23
    • Satoshi OzawaTakayuki Iida
    • Satoshi OzawaTakayuki Iida
    • A61B1/04
    • A61B1/0638A61B1/00057A61B1/0008A61B1/063A61B1/0653
    • An endoscope apparatus includes: an endoscope which includes an imaging optical system and an illumination optical system; and a control unit which includes light source units and connected to the endoscope and supplying at least excitation light to the illumination optical system, and an image processing section correcting an image signal output from the imaging element on the basis of a predetermined color correction table. The control unit performs a calibration process in such a manner that an image of a color chart having a plurality of color patches with known chromaticity values is captured by an imaging element, chromaticity for each of the plurality of color patches is obtained from an imaging signal of the color chart, and the contents of the color correction table are changed.
    • 一种内窥镜装置,包括:内窥镜,包括摄像光学系统和照明光学系统; 以及控制单元,其包括光源单元并连接到内窥镜并且至少向照明光学系统供应激发光;以及图像处理部,其基于预定的颜色校正表来校正从成像元件输出的图像信号。 控制单元执行校准处理,使得具有已知色度值的多个色块的彩色图像由成像元件捕获,从成像信号获得多个色块中的每一个的色度 ,并且颜色校正表的内容被改变。
    • 33. 发明授权
    • Optical tomographic imaging system, tomographic image acquiring method, and optical tomographic image forming method
    • 光学层析成像系统,断层图像获取方法和光学断层图像形成方法
    • US08125645B2
    • 2012-02-28
    • US12414371
    • 2009-03-30
    • Satoshi Ozawa
    • Satoshi Ozawa
    • G01B9/02
    • G01B9/02064A61B5/0066A61B5/7257G01B9/02004G01B9/02078G01B9/02085G01B9/02091G01B2290/35G01J1/0407G01J1/0422G01N21/4795
    • This optical tomographic imaging system comprises an optical path length adjustor configured to set a first reference position of a measurement depth direction to an inner edge of a measurement range by adjusting an optical path length of a reference light, and an optical path length switching unit having a preset optical path length that provides a second reference position differing in measurement depth from the first reference position by a predetermined amount and configured to change the optical path length of the reference light or the optical path length of the reflected light adjusted by the optical path length adjustor so as to switch between the first reference position and the second reference position. This system is capable of measuring a measurement region of interest at high resolution, regardless of the position (depth) of the measurement region of interest, in an SS-OCT employing a wavelength-swept light source.
    • 该光学断层成像系统包括光路长度调节器,其被配置为通过调整参考光的光路长度来将测量深度方向的第一参考位置设置到测量范围的内边缘,以及光路长度切换单元,其具有 预设的光程长度,其将测量深度与第一参考位置不同的第二参考位置提供预定量,并且被配置为改变参考光的光路长度或由光路调节的反射光的光路长度 长度调节器,以便在第一参考位置和第二参考位置之间切换。 在采用波长扫描光源的SS-OCT中,无论感兴趣的测量区域的位置(深度)如何,该系统能够以高分辨率测量感兴趣的测量区域。
    • 35. 发明申请
    • WAVE SOLDERING TANK
    • WAVE SOLDERING坦克
    • US20090321498A1
    • 2009-12-31
    • US12226654
    • 2007-04-24
    • Mitsuo ZenHirokazu IchikawaSatoshi Ozawa
    • Mitsuo ZenHirokazu IchikawaSatoshi Ozawa
    • B23K3/06
    • B23K3/0653
    • A wave soldering tank is provided on which it is easy to perform maintenance, which does not have fluctuation of the height of spouted solder, which does not damage the rotating shaft of a discharge pump, and which can be stably used for long periods.The wave soldering tank 1 has a tank body 1a which houses molten solder S, a discharge pump 5 which pumps molten solder S, a discharge nozzle 4 which spouts molten solder S which was sent to it by the discharge pump 5 upwards, a duct 2 having the discharge pump 5 installed at one of its ends and the discharge nozzle 4 installed at its other end, an oxidation preventing member 22 which has a prescribed size and which floats on the surface of the molten solder S, and an engaging means 13 which controls rotation of the oxidation preventing member 22 in a horizontal plane. The oxidation preventing member 22 has a surrounding member 28 which extends downwards at its center and which surrounds the rotating shaft 10 with a gap between it and the rotating shaft 10, and a hollow space 26 in its interior for providing buoyancy.
    • 提供了一种易于进行维护的波峰焊槽,其不会引起喷射焊料的高度的波动,这不会损坏排出泵的旋转轴,并且可以长期稳定地使用。 波峰焊锡槽1具有容纳熔融焊料S的罐主体1a,泵送熔融焊料S的排出泵5,喷出喷嘴5的吐出喷嘴4,喷出喷嘴4向上排出泵5,将管道2 具有安装在其一端的排出泵5和安装在其另一端的排出喷嘴4,具有规定尺寸并浮在熔融焊料S的表面上的防氧化构件22和接合装置13, 控制氧化防止构件22在水平面中的旋转。 氧化防止构件22具有围绕构件28,其围绕其中心向下延伸并且围绕旋转轴10在其与旋转轴10之间的间隙以及在其内部的用于提供浮力的中空空间26。
    • 36. 发明申请
    • APPARATUS FOR CHEMILUMINESCENT ASSAY AND DETECTION
    • 用于荧光测定和检测的装置
    • US20080261294A1
    • 2008-10-23
    • US12034880
    • 2008-02-21
    • Hideyuki NodaSatoshi OzawaMasahiro OkanojoKenko Uchida
    • Hideyuki NodaSatoshi OzawaMasahiro OkanojoKenko Uchida
    • G01N21/76C12M1/36
    • C12Q1/04G01N21/76
    • An apparatus includes a system for guiding chemiluminescence and a system for preventing a variation in dark currents. The apparatus includes a first light shielding BOX having a sample container holder and a shutter unit therein, the shutter unit including a top plate which is partly formed by a movement of a plate member and a second light shielding BOX having a photodetector therein. While a measurement is not implemented, the shutter unit is closed to block entrance of stray light to the photodetector, and while a measurement is implemented, the plate member is moved to open the shutter unit and the tip of the photodetector is inserted into a through hole formed in the top plate, so that the distance between the bottom of the sample container and a sensitive area of the photodetector is reduced to several millimeters or less.
    • 一种装置包括用于引导化学发光的系统和用于防止暗电流变化的系统。 该装置包括:第一遮光盒,其具有样品容器保持器和其中的快门单元,所述快门单元包括顶板,该顶板部分地通过板构件的运动和在其中具有光电检测器的第二遮光箱而形成。 虽然没有实现测量,但是关闭快门单元以阻止杂散光入射到光电检测器,并且在实施测量的同时,移动板构件以打开快门单元,并且将光电检测器的末端插入通孔 使得样品容器的底部与光电检测器的敏感区域之间的距离减小到几毫米或更小。
    • 38. 发明申请
    • Image processing method, image processing system, image processing apparatus and image processing program
    • 图像处理方法,图像处理系统,图像处理装置和图像处理程序
    • US20050219580A1
    • 2005-10-06
    • US11064942
    • 2005-02-25
    • Satoshi Ozawa
    • Satoshi Ozawa
    • G06T1/00G06K15/00G06T3/40H04N1/387H04N1/409H04N1/58H04N1/60H04N5/225H04N101/00
    • H04N1/60
    • A simplified initial image data is generated by thinning out an initial image data, which is obtained by shooting, at a predetermined rate. Image correction is performed to the simplified initial image data by using predetermined development parameters, and the simplified initial image data is converted into a simplified display image which is displayable in a monitor. An operator changes the development parameters while observing the simplified display image. Every time the development parameters are changed, the image correction with using changed development parameters is performed to the simplified initial image data, and the simplified display image is updated and displayed. The initial image data is subjected to the image correction with determined development parameters, and output after being converted into display image data.
    • 通过以预定的速率稀疏通过拍摄获得的初始图像数据来生成简化的初始图像数据。 通过使用预定的显影参数对简化的初始图像数据执行图像校正,并且将简化的初始图像数据转换成可在监视器中显示的简化显示图像。 操作者在观察简化的显示图像时更改开发参数。 每次显影参数改变时,对简化的初始图像数据执行使用改变的显影参数的图像校正,并且更新和显示简化的显示图像。 初始图像数据用确定的显影参数进行图像校正,并在转换成显示图像数据之后输出。
    • 39. 发明授权
    • Oscilloscope intensity regulation apparatus
    • 示波器强度调节装置
    • US06262543B1
    • 2001-07-17
    • US09249849
    • 1999-02-16
    • Satoshi OzawaKikutada Yoshida
    • Satoshi OzawaKikutada Yoshida
    • G09G104
    • G01R13/26
    • An oscilloscope intensity regulation apparatus is disclosed. The oscilloscope displays wave-forms with the regulated intensity in spite of various wave-form repetition rates or sweep ranges. The scope has a CCD sensor 11 on a CRT 10. The CCD output 28 is applied to a video circuit 12 delivering a video signal 29. The CPU 4 instructs an intensity of an electron beam to a Z-axis circuit 8 and an AGC (automatic gain control) revision signal 27 to a AGC circuit 13 in accordance with an intensity input signal 21. The AGC circuit 13 controls its gain for amplifying a video signal 29 from the CCD 11 via the video circuit 12. When the video signal 29 is small in its amplitude, the AGC circuit 13 has a large gain. When the video signal 29 is large, the circuit 13 has a small gain. Therefore, an intensity of wave-forms being displayed is regulated in the intensity desired, in spite of various repetition rates of the wave-forms or sweep velocities.
    • 公开了一种示波器强度调节装置。 尽管各种波形重复率或扫描范围,示波器显示具有调节强度的波形。 示波器在CRT10上具有CCD传感器11. CCD输出28被施加到传送视频信号29的视频电路12.CPU4向Z轴电路8和AGC指示电子束的强度 自动增益控制)修正信号27根据强度输入信号21发送到AGC电路13. AGC电路13控制其增益,用于经由视频电路12从CCD 11放大视频信号29.当视频信号29为 其振幅小,AGC电路13具有大的增益。 当视频信号29较大时,电路13具有小的增益。 因此,尽管波形或扫描速度具有各种重复率,但所显示的波形强度是以期望的强度来调节的。