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    • 81. 发明授权
    • Disc inverting mechanism and disc automatic changer with the mechanism
    • 光盘反转机构和光盘自动更换装置
    • US06304525B1
    • 2001-10-16
    • US09380217
    • 1999-08-27
    • Akio HayashiKoutaro OnsoHitoshi NakamuraKouichi ShibasakiNoritada Kuwayama
    • Akio HayashiKoutaro OnsoHitoshi NakamuraKouichi ShibasakiNoritada Kuwayama
    • G11B1722
    • G11B17/056G11B17/225
    • A rotating frame 22 is supported by a stationary frame 21 rotatably by 180 degrees, and in both side plates 22c of the rotating frame 22, there are formed four pairs of guide grooves 25-28 for guiding pallets 9 and slots 32a-32d for moving claw members 30, 31, said slots corresponding to said guide grooves 25-28. On an inner wall of a rear plate 22b of the rotating frame 22, there is provided an up and down movable member 47 which moves downward together with the claw members 30, 31 when the rotating frame 22 is rotated by 180 degrees. Into the first and third guide grooves 25 and 27, there have been previously inserted empty pallets 9 with such a posture that their front surfaces 11 face downward. By moving the claw members 30, 31 along the slots 32b, 32d, the pallets 9 having discs D placed thereon are drawn into the second and fourth guide grooves 26 and 28 such that these pallets 9 are opposed to the upper empty pallets 9. In this condition, when the rotating frame 22 is rotated by 180 degrees, the discs D are turned-over and are placed on the lower empty pallets 9.
    • 旋转框架22由可旋转180度的固定框架21支撑,并且在旋转框架22的两个侧板22c中形成有四对导向槽25-28,用于引导托盘9和槽32a-32d以移动 爪构件30,31,所述槽对应于所述引导槽25-28。 在旋转框架22的后板22b的内壁上设置有上下可动构件47,当旋转框架22旋转180度时,上下可动构件47与爪构件30,31一起向下移动。 在第一和第三引导槽25和27中,先前插入有空的托盘9,使其前表面11面向下的姿势。 通过沿着槽32b,32d移动爪构件30,31,将具有放置在其上的盘D的托盘9拉入第二和第四引导槽26和28中,使得这些托板9与上空的托盘9相对。 这种情况下,当旋转框架22旋转180度时,盘D被翻转并放置在下空的托盘9上。
    • 82. 发明授权
    • Image recognition method and device and copier and scanner employing same
    • 图像识别方法和装置以及使用它的复印机和扫描仪
    • US06188787B1
    • 2001-02-13
    • US08826701
    • 1997-04-07
    • Kouichi OhmaeShinya SonodaIkuo KinoshitaHitoshi NakamuraJunji Hiraishi
    • Kouichi OhmaeShinya SonodaIkuo KinoshitaHitoshi NakamuraJunji Hiraishi
    • G06K978
    • H04N1/00846G03G21/046G07D7/00H04N1/00875
    • An image recognition method and device detects an object mark reliably even when the mark is defaced with a different color. RGB signals are transmitted to color extraction unit. The color extraction unit has a characteristic color extraction block to extract the characteristic color of the object mark. A binary image is generated from the extracted pixels which are the color of the mark and stored in storage device. A mark detection unit detects the location of the mark in the stored image data and an image extraction unit extracts the region where the mark is located and obtains a feature count. A matching unit compares the feature count with a reference pattern and finds the goodness of fit. A control unit subjects the goodness of fit value to threshold value processing to determine whether this is a nonreproducible document. If the mark has been defaced with black ink, the pixels constituting the mark are extracted by a likely color extraction block. A binary image is generated and stored in storage device. Thus, the defaced mark can undergo the same recognition processing as the normal mark, and both can be recognized.
    • 即使当标记被不同颜色污染时,图像识别方法和装置可靠地检测对象标记。 RGB信号被传送到颜色提取单元。 颜色提取单元具有特征颜色提取块,以提取对象标记的特征颜色。 从作为标记的颜色的提取像素生成二值图像并存储在存储装置中。 标记检测单元检测所存储的图像数据中的标记的位置,并且图像提取单元提取标记所在的区域并获得特征数。 匹配单元将特征计数与参考模式进行比较,并找到拟合优度。 控制单元对拟合值进行阈值处理,以确定这是否是不可再现的文档。 如果标记已被黑色油墨弄脏,则构成标记的像素由可能的颜色提取块提取。 二进制图像生成并存储在存储设备中。 因此,污损标记可以进行与正常标记相同的识别处理,并且都可以识别。
    • 88. 发明授权
    • Method of and apparatus for bone measurement
    • 骨测量方法和装置
    • US5426709A
    • 1995-06-20
    • US70796
    • 1993-06-03
    • Makoto YoshidaYasuki HanaokaKenji MorimotoHitoshi NakamuraTakayuki Ishizaki
    • Makoto YoshidaYasuki HanaokaKenji MorimotoHitoshi NakamuraTakayuki Ishizaki
    • A61B6/00G06T7/60G06K9/00
    • A61B6/505G06T7/60G06T2207/10116G06T2207/30008
    • A bone data measurement method and apparatus, using an X-ray picture film having a picture of the sample bone and a picture of the standard matter having gradational steps therein, e.g., an aluminum step wedge, in which a cursory reading of the pictures of the X-ray film is implemented through detection of a quantity level of light that transmits through the X-ray picture film, determining the maximum quantity level ICmax of the transmitting light that transmits through the examined region of the picture of the sample bone, minutely reading the picture of the standard matter so as to find a thickness portion R.sub.1 of the standard matter, in which thickness portion a quantity level of transmitting light that transmits through the thickness portion is larger than and close to ICmax, and adjustably changing illuminating light for illuminating the X-ray picture film so that the quantity level I.sub.R1 of the transmitting light transmitting through the thickness portion R.sub.1 of the standard matter is within a predetermined quantity range of light. A temperature compensation for an output from the transmitting light detecting unit, i.e., a CCD image sensor is carried out by utilizing a light shielded output from the CCD image sensor.
    • 一种骨数据测量方法和装置,使用具有样品骨骼图像的X射线图像胶片和其中具有梯度步骤的标准物质的图像,例如铝步进楔形物,其中粗略地读取图像的图像 通过检测通过X射线图像胶片透射的光量的量来实现X射线胶片,确定通过样本骨骼的图像的检查区域透射的透射光的最大量水平ICmax 读取标准物的图像,以找到标准物质的厚度部分R1,其中厚度部分透过厚度部分的透射光的数量级别大于并接近ICmax,并且可调节地改变照明光以供 照射X射线图像胶片,使得通过标准物质的厚度部分R1透射的透射光的量级IR1为 在预定量的光范围内。 通过利用CCD图像传感器的屏蔽输出来执行来自透射光检测单元即CCD图像传感器的输出的温度补偿。