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    • 1. 发明授权
    • System and method for editing image data
    • 用于编辑图像数据的系统和方法
    • US07382919B2
    • 2008-06-03
    • US11472698
    • 2006-06-22
    • Reiner EschbachZhigang FanWilliam Fuss
    • Reiner EschbachZhigang FanWilliam Fuss
    • G06K9/34
    • H04N1/3871
    • A method for editing image data includes segmenting input image data into a plurality of discrete objects, wherein each of the objects is defined by a plurality of input pixels that are spatially grouped and that relate to a common content type and feature of the input image data so as to define an objectized input image from the input image data. The objectized input image and a holding area image are generated and simultaneously displayed. Editing input is received from a user by user selection of an object of the objectized input image that the user desires to be moved from the objectized input image to the holding area image based upon the user's visual inspection of the objectized input image. The objectized input image and the holding area image are updated based upon the received editing input so that the selected object is deleted from an original location in the objectized input image and inserted into the holding area image as a temporary object at an insertion location that spatially corresponds to the original location of the objectized input image. The method further includes receiving replacement input data from the user that indicates a selected replacement object in a replacement object database to be inserted into the original location of the objectized input image. The objectized input image is updated to include the selected replacement object in the original location to define an objectized output image.
    • 用于编辑图像数据的方法包括将输入图像数据分割成多个离散对象,其中每个对象由空间分组的多个输入像素定义,并且与输入图像数据的公共内容类型和特征相关 以便从输入图像数据中定义一个对象化的输入图像。 产生并同时显示被摄体输入图像和保持区域图像。 基于用户对目标化输入图像的目视检查,用户通过用户选择用户期望从对象化输入图像移动到保持区域图像的对象化输入图像的对象来接收编辑输入。 基于所接收的编辑输入来更新对象化输入图像和保持区域图像,使得所选择的对象在对象化输入图像中从原始位置被删除并且在空间上插入到插入位置中作为临时对象插入到保持区域图像中 对应于对象化输入图像的原始位置。 该方法还包括接收来自用户的替换输入数据,该替换输入数据指示替换对象数据库中的所选择的替换对象,以插入到对象化输入图像的原始位置。 更新对象化的输入图像以在原始位置包括所选择的替换对象以定义对象化的输出图像。
    • 2. 发明申请
    • System and method for editing image data
    • 用于编辑图像数据的系统和方法
    • US20070297672A1
    • 2007-12-27
    • US11472698
    • 2006-06-22
    • Reiner EschbachZhigang FanWilliam Fuss
    • Reiner EschbachZhigang FanWilliam Fuss
    • G06K9/34
    • H04N1/3871
    • A method for editing image data includes segmenting input image data into a plurality of discrete objects, wherein each of the objects is defined by a plurality of input pixels that are spatially grouped and that relate to a common content type and feature of the input image data so as to define an objectized input image from the input image data. The objectized input image and a holding area image are generated and simultaneously displayed. Editing input is received from a user by user selection of an object of the objectized input image that the user desires to be moved from the objectized input image to the holding area image based upon the user's visual inspection of the objectized input image. The objectized input image and the holding area image are updated based upon the received editing input so that the selected object is deleted from an original location in the objectized input image and inserted into the holding area image as a temporary object at an insertion location that spatially corresponds to the original location of the objectized input image. The method further includes receiving replacement input data from the user that indicates a selected replacement object in a replacement object database to be inserted into the original location of the objectized input image. The objectized input image is updated to include the selected replacement object in the original location to define an objectized output image.
    • 用于编辑图像数据的方法包括将输入图像数据分割成多个离散对象,其中每个对象由空间分组的多个输入像素定义,并且与输入图像数据的公共内容类型和特征相关 以便从输入图像数据中定义一个对象化的输入图像。 产生并同时显示被摄体输入图像和保持区域图像。 基于用户对目标化输入图像的目视检查,用户通过用户选择用户期望从对象化输入图像移动到保持区域图像的对象化输入图像的对象来接收编辑输入。 基于所接收的编辑输入来更新对象化输入图像和保持区域图像,使得所选择的对象在对象化输入图像中从原始位置被删除并且在空间上插入到插入位置中作为临时对象插入到保持区域图像中 对应于对象化输入图像的原始位置。 该方法还包括接收来自用户的替换输入数据,该替换输入数据指示替换对象数据库中的所选择的替换对象,以插入到对象化输入图像的原始位置。 更新对象化的输入图像以在原始位置包括所选择的替换对象以定义对象化的输出图像。
    • 4. 发明申请
    • Artifact removal and quality assurance system and method for scanned images
    • 扫除图像的人工制品和质量保证体系及方法
    • US20070003157A1
    • 2007-01-04
    • US11170013
    • 2005-06-29
    • Reiner EschbachZhigang FanWilliam FussShen-Ge Wang
    • Reiner EschbachZhigang FanWilliam FussShen-Ge Wang
    • G06K9/40
    • G06K9/036G06K9/00456
    • An artifact removal and quality assurance method and system for digital images, wherein a document comprising at least one printed page is scanned or the original image data are otherwise input. The input digital image data are segmented into components as to content type. The components are classified as either information or noise components. An information component image defined by the information components and a noise component image defined by the noise components are generated and displayed to the user. The user inputs quality assurance input data to indicate zero or more improperly classified components and any improperly classified component is reclassified. The component images are then regenerated and displayed to account for the reclassified component(s). The reclassified component is moved as a unit in real time as viewed by the user from an original location in one of the component images to a corresponding location in the other of the component images. Both component images are saved or otherwise output as desired.
    • 一种用于数字图像的人造物去除和质量保证方法和系统,其中扫描包括至少一个打印页面的文档,否则输入原始图像数据。 输入数字图像数据被分割成内容类型的组件。 组件被分类为信息或噪声组件。 由信息分量定义的信息分量图像和由噪声分量定义的噪声分量图像被生成并显示给用户。 用户输入质量保证输入数据以指示零个或多个不正确分类的组件,并且任何不正确分类的组件被重新分类。 然后,重新生成组件图像并显示以重新分类的组件。 重新分类的组件以用户从组件图像之一中的原始位置实时地作为单元移动到另一个组件图像中的对应位置。 根据需要保存或输出两个分量图像。
    • 5. 发明授权
    • Guilloche mark generation
    • Guilloche标记代
    • US08681387B2
    • 2014-03-25
    • US12958819
    • 2010-12-02
    • Martin S. MaltzZhigang FanReiner EschbachJudith Stinehour
    • Martin S. MaltzZhigang FanReiner EschbachJudith Stinehour
    • H04N1/32
    • H04N1/0044H04N1/00883
    • A method and system for creating guilloché base pattern with two-dimensional periodicity in a plurality of replicate patterns is shown wherein the creating can be assessed in real-time for pattern acceptability by a user. A base pattern is set on an imaging device in vector space relative to a set of predetermined pattern nodes. The base pattern is modulated via a user interface by adjusting positions of the pattern known for selectively controlling curve shapes of the pattern. A guilloché mark is illustrated by display on the imaging device of the adjusted base pattern and a compilation of associated replicate patterns for user assessment of the mark.
    • 示出了用于在多个重复图案中创建具有二维周期性的illo形基底图案的方法和系统,其中可以实时地评估创建以便用户的图案可接受性。 在相对于一组预定图案节点的向量空间中的成像装置上设置基本图案。 通过调整已知的用于选择性地控制图案的曲线形状的图案的位置,经由用户界面调制基本图案。 通过在成像装置上显示调整后的基本图案和用于用户评估标记的相关联的重复图案的汇编来说明illo迹标记。
    • 6. 发明申请
    • VARIABLE DATA IMAGE WATERMARKING USING INFRARED SEQUENCE STRUCTURES IN BLACK SEPARATION
    • 在黑色分离中使用红外序列结构的可变数据图像水印
    • US20140022603A1
    • 2014-01-23
    • US13553338
    • 2012-07-19
    • Reiner EschbachZhigang FanMartin E. Hoover
    • Reiner EschbachZhigang FanMartin E. Hoover
    • G06K15/02
    • G06T1/0028G06T2201/0051H04N1/32261H04N1/32309H04N1/32331H04N1/32352H04N2201/327
    • An image watermarking method includes a color transform on RGB image data to derive CMYK image data that define a constant K image. Variable infrared (IR) mark data defining an IR mark are received and a sparse two-dimensional pattern of black pixels is defined that corresponds to the variable IR data, e.g., using Gold codes or pseudorandom binary sequences. A watermarked black separation K″ is defined by embedding the sparse two-dimensional pattern into the constant K black separation K′ while maintaining local average levels. A watermarked image includes the watermarked black separation K″ in combination with the CMY separations of the constant K image. A decoding process includes using an IR microscope fitted with IR LEDs and an IR pass filter to capture an IR image, which is subjected to exposure correction, thresholding, and dilation operations to extract the two-dimensional pattern for subsequent correlation processing.
    • 图像水印方法包括对RGB图像数据进行颜色变换以导出定义常数K图像的CMYK图像数据。 接收定义IR标记的可变红外(IR)标记数据,并且例如使用Gold码或伪随机二进制序列来定义对应于可变IR数据的稀疏二维图案的黑色像素。 通过将稀疏二维图案嵌入到常数K黑色分离K'中同时保持局部平均水平来定义水印黑色分离K“。 水印图像包括与常数K图像的CMY分离相结合的水印黑色分离K“。 解码过程包括使用装有IR LED的IR显微镜和IR通过滤光片来捕获经过曝光校正,阈值和扩张操作的IR图像,以提取二维图案用于随后的相关处理。