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    • 1. 发明授权
    • Image processing apparatus and method, and recording medium
    • 图像处理装置和方法以及记录介质
    • US06836565B1
    • 2004-12-28
    • US09428454
    • 1999-10-28
    • Naoyuki Nishikawa
    • Naoyuki Nishikawa
    • G06K900
    • G06T5/00H04N1/407
    • Conventionally, when a correction parameter is determined on the basis of the feature of an image obtained by analyzing image data, and the image is corrected, the processing speed becomes considerably low. In this invention, for an image file stored in an apparatus, reduced image data held in the file is analyzed to determine a correction parameter in printing, and the image is corrected on the basis of the correction parameter, thereby shortening the processing time. When an appropriate correction parameter is determined for an image file stored in the apparatus and added to the file in advance before printing, and the image is corrected on the basis of the correction parameter in printing, the processing time is further shortened.
    • 通常,当基于通过分析图像数据获得的图像的特征确定校正参数并且校正图像时,处理速度变得相当低。 在本发明中,对于存储在装置中的图像文件,分析保存在文件中的缩小图像数据,以确定打印中的校正参数,并且基于校正参数校正图像,从而缩短处理时间。 当对于在打印之前预先存储在设备中并且被添加到文件中的图像文件确定适当的校正参数,并且基于打印中的校正参数来校正图像时,处理时间被进一步缩短。
    • 4. 发明授权
    • Methods and apparatus for associating character codes with optimized character codes
    • 将字符代码与优化字符代码相关联的方法和装置
    • US06829386B2
    • 2004-12-07
    • US09796875
    • 2001-02-28
    • Ienup Sung
    • Ienup Sung
    • G06K900
    • G06F17/2217
    • A system identifies a character code. This character code may be received from keyboard entry, read from memory, or acquired from an external network, for example. This character code can comprise an arrangement of bytes. Each byte can be identified as a group, plane, row, or cell. The row and plane values of the character code can be mapped to corresponding row and plane values of an optimized character code. Character attributes associated with each optimized character code can be accessed. The row and plane values of optimized character codes can be mapped to corresponding row and plane values of character codes.
    • 系统识别字符代码。 例如,该字符代码可以从键盘输入接收,从存储器读取,或从外部网络获取。 该字符代码可以包括字节的排列。 每个字节可以被标识为组,平面,行或单元格。 字符代码的行和平面值可以映射到优化字符代码的相应行和平面值。 可以访问与每个优化字符代码相关联的字符属性。 优化字符代码的行和平面值可以映射到字符代码的相应行和平面值。
    • 7. 发明授权
    • Limb extremity positioning device and measurement method
    • 肢体肢体定位装置及测量方法
    • US06829377B2
    • 2004-12-07
    • US09832811
    • 2001-04-12
    • Giuceppe Milioto
    • Giuceppe Milioto
    • G06K900
    • A61B5/0064A43D1/025A61B5/1077
    • A device is provided to support and position a limb extremity in a desired steady position to enable acquisition of morphological data from the underside and the upper portion of the limb extremity in a substantially non-weight-bearing attitude. The device comprises a stretchable envelope, made of a thin elastomeric membrane, and a support provided with adjustable positioning members such as hooks, pegs or clips comprising a proximal end and a distal end. The envelope is provided with laterally extending positioning member engaging portions disposed on opposite sides along the longitudinal axis of said envelope. Said positioning member engaging portions receive the distal end of said adjustable positioning members and thereby enable adjustable support and positioning of the envelope and, in turn, of the limb extremity inserted therein. There is further disclosed a measurement method comprising the steps of inserting a limb extremity into a closely fitted thin stretchable envelope provided with positioning member engaging portions, attaching adjustable positioning members to said portions, adjusting the position of said adjustable positioning members and performing optical acquisition of morphological data of the limb extremity.
    • 提供了一种装置,用于支撑和定位肢体末端到期望的稳定位置,以使得能够以基本上不承重的姿态从肢体的下侧和上部获取形态学数据。 该装置包括由薄的弹性膜制成的可拉伸外壳,以及设置有可调定位构件的支撑件,例如包括近端和远端的钩,钉或夹子。 信封设置有沿着所述外壳的纵向轴线设置在相对侧上的横向延伸的定位构件接合部分。 所述定位构件接合部分接收所述可调定位构件的远端,从而使得能够可调整地支撑和定位外壳,并且还允许插入其中的肢体末端。 还公开了一种测量方法,包括以下步骤:将肢体末端插入设置有定位构件接合部分的紧密配合的薄可拉伸外壳中,将可调定位构件附接到所述部分,调节所述可调定位构件的位置并执行光学采集 肢体肢体的形态学资料。
    • 8. 发明授权
    • Coding depth file and method of postal address processing using a coding depth file
    • 使用编码深度文件编码深度文件和邮政地址处理方法
    • US06829369B2
    • 2004-12-07
    • US09860307
    • 2001-05-18
    • Jeffrey Scott PoulinRobert StrebelJoseph P. Zanovitch
    • Jeffrey Scott PoulinRobert StrebelJoseph P. Zanovitch
    • G06K900
    • B07C3/00
    • The processing of mail pieces relies in part on automated address interpretation of captured address field images to generate sortation signals that control automated mail sorting machinery at outgoing and incoming mail centers. In alternative implementations, a coding depth file (“CDF”) controls (i) the depth to which a captured address field image is resolved and (ii) a time delay in performing address interpretation. In one aspect, a CDF includes a first set of data associating a depth value with each of a selected plurality of incoming mail centers to which an outgoing mail center sends mail pieces. The depth value controls the depth to which a stored address field image is resolved and corresponds to a level of refinement to which automated sorting machinery at the associated incoming mail center sorts mail pieces. In another aspect, a CDF includes a second set of data associating a deferral time with stored address data, the deferral time representing at least an acceptable maximum length of time before sortation signals are rendered accessible to the automated sorting machinery at the incoming mail center.
    • 邮件的处理部分依赖于捕获的地址字段图像的自动地址解释,以生成排序信号,其控制在传出和传入邮件中心的自动邮件分类机器。 在替代实现中,编码深度文件(“CDF”)控制(i)捕获的地址字段图像被解析的深度和(ii)执行地址解释的时间延迟。 在一个方面,CDF包括第一组数据,其将深度值与输出邮件中心发送邮件的所选择的多个入站邮件中心中的每一个相关联。 深度值控制存储的地址字段图像被解析的深度,并且对应于相关联的传入邮件中心的自动分类机器对其进行分类的细化级别。 在另一方面,CDF包括将延迟时间与存储的地址数据相关联的第二组数据,所述延迟时间表示在接收邮件中心处的自动分类机器可访问分拣信号之前的至少可接受的最大时间长度。
    • 9. 发明授权
    • Software-based acceleration color correction filtering system
    • 基于软件的加速色彩校正滤波系统
    • US06826303B2
    • 2004-11-30
    • US09893657
    • 2001-06-28
    • Henry M. D'SouzaGokalp Bayramoglu
    • Henry M. D'SouzaGokalp Bayramoglu
    • G06K900
    • G06T5/009G06T2207/10016G06T2207/10024G09G5/06G09G2320/0666
    • A color correction filtering system filters color video data by compensating for non-linearities and color characteristics specific to a color monitor. Color video data is received by the system, for example through a web browser, and in an accelerated manner passed through a pre-calculated gamut-shifting array. The color correction filtering system gamma decompensates incoming color video data referenced to a non-linear color space through use of a linearization filter. The gamut-shifting array may contain pre-calculated compensation values stored in a plurality of look-up tables. A non-linearization filter is applied to the gamut-shifted color video data to produce color video data compensated for non-linearities specific to the color monitor.
    • 颜色校正滤波系统通过补偿特定于彩色监视器的非线性和颜色特性来对彩色视频数据进行滤波。 彩色视频数据由系统接收,例如通过网络浏览器,并以加速的方式通过预先计算的色域移位阵列。 颜色校正滤波系统通过使用线性化滤波器对参考非线性颜色空间的输入彩色视频数据进行失真衰减。 色域移位阵列可以包含存储在多个查找表中的预先计算的补偿值。 将非线性化滤波器应用于色域移动的彩色视频数据,以产生针对彩色监视器特有的非线性补偿的彩色视频数据。