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    • 2. 发明授权
    • Translating layers into effect graphs in digital image processing
    • 在数字图像处理中将图层转换为效果图
    • US07295208B2
    • 2007-11-13
    • US11166021
    • 2005-06-24
    • Steven James WhiteDonald M. MarshTomasz S. M. Kasperkiewicz
    • Steven James WhiteDonald M. MarshTomasz S. M. Kasperkiewicz
    • G09G5/02G09G5/00G06T11/20H04N1/46G06T1/00
    • G06T15/503G06T1/60G06T11/60
    • Methods and systems for processing, e.g., non-destructively processing, digital image data utilizing one or more Effect Layers are provided. Effect Layers combine Effects in useful ways that simplify the process of creating Effect graphs. Each Effect Layer contains a logical Effect sub-graph that includes a plurality of logical Effects, e.g., a main Effect, a blend Effect, and a mask Effect. In one embodiment, a method in accordance with an embodiment of the present invention includes receiving input regarding processing of digital image data, determining the impact that input will have on each logical Effect upon processing of digital image data, and creating a physical Effect sub-graph in accordance with the determined impact. The physical Effect sub-graph may closely resemble or appear nothing like the logical Effect sub-graph. Images may subsequently be rendered utilizing the physical Effect sub-graph.
    • 提供了用于处理,例如非破坏性处理利用一个或多个效果层的数字图像数据的方法和系统。 效果层结合效果,以简化创建效果图的过程的有用方式。 每个效果层包含包含多个逻辑效果(例如主效果,混合效果)和掩码效果的逻辑效果子图。 在一个实施例中,根据本发明的实施例的方法包括接收关于数字图像数据的处理的输入,确定在处理数字图像数据时输入将对每个逻辑效果的影响,以及创建物理效应子图像, 图根据确定的影响。 物理效应子图可能与逻辑效应子图非常相似或不显示。 随后可以使用物理效应子图渲染图像。
    • 3. 发明授权
    • Caching digital image data
    • 缓存数字图像数据
    • US07619628B2
    • 2009-11-17
    • US11166751
    • 2005-06-24
    • Steven James WhiteDonald M. MarshJingyang Xu
    • Steven James WhiteDonald M. MarshJingyang Xu
    • G06F17/00G06T1/00G06T15/00G06T13/00G06T15/70G06K9/40G06K9/36
    • G06T15/503G06T1/60G06T11/60
    • Methods and systems for processing digital image data utilizing vertically-oriented Effect graphs are provided. When processing digital image data utilizing Effect graphs, it is often necessary for certain Effects on the graph to render their outputs multiple times during a single rendering pass. To alleviate the exponential processing that such a scenario can cause, methods and systems for caching at least a portion of the digital image data being processed in image buffers associated with the output of one or more Effects in the Effect graph during processing are provided. Additionally provided are methods and systems for caching digital image data in image buffers associated with the output of one or more Effects across multiple processing passes of an Effect graph.
    • 提供了利用垂直取向效果图处理数字图像数据的方法和系统。 当使用效果图处理数字图像数据时,图形中的某些效果通常需要在单次渲染过程中多次渲染它们的输出。 为了缓解这种场景可能导致的指数处理,提供了用于在处理期间缓存与效果图中的一个或多个效果的输出相关联的图像缓冲器中处理的数字图像数据的至少一部分的方法和系统。 另外提供了用于在与效果图的多个处理遍的一个或多个效果的输出相关联的图像缓冲器中缓存数字图像数据的方法和系统。
    • 8. 发明授权
    • Automatic dust removal in digital images
    • 数字图像中自动除尘
    • US08351736B2
    • 2013-01-08
    • US12476514
    • 2009-06-02
    • Denis DemandolxEric Paul BennettAntonio CriminisiVladimir FarbmanSteven James White
    • Denis DemandolxEric Paul BennettAntonio CriminisiVladimir FarbmanSteven James White
    • G06K9/40G06T5/00
    • H04N5/3572H04N5/367H04N9/045
    • Methods and a processing device are provided for restoring pixels damaged by artifacts caused by dust, or other particles, entering a digital image capturing device. A user interface may be provided for a user to indicate an approximate location of an artifact appearing in a digital image. Dust attenuation may be estimated and an inverse transformation, based on the estimated dust attenuation, may be applied to damaged pixels in order to recover an estimate of the underlying digital image. One or many candidate source patch may be selected based on having smallest pixel distances, with respect to a target patch area. The damaged pixels included in the target patch area may be considered when calculating the pixel distance with respect to candidate source patches. RGB values of corresponding pixels of source patches may be used to restore the damaged pixels included in the target patch area.
    • 提供了方法和处理装置,用于恢复由于灰尘或其他颗粒引起的伪影所损坏的像素进入数字图像捕获装置。 可以为用户提供用户界面来指示出现在数字图像中的人造物的大致位置。 可以估计灰尘衰减,并且可以将基于估计的灰尘衰减的逆变换应用于损坏的像素,以便恢复底层数字图像的估计。 可以基于相对于目标贴片区域具有最小像素距离来选择一个或多个候选源贴片。 当计算相对于候选源贴片的像素距离时,可以考虑包括在目标贴片区域中的损伤像素。 可以使用源贴片的相应像素的RGB值来恢复包括在目标贴片区域中的损伤像素。
    • 9. 发明申请
    • Automatic Dust Removal In Digital Images
    • 数字图像中自动除尘
    • US20100303380A1
    • 2010-12-02
    • US12476514
    • 2009-06-02
    • Denis DemandolxEric Paul BennettAntonio CriminisiValadimir FarbmanSteven James White
    • Denis DemandolxEric Paul BennettAntonio CriminisiValadimir FarbmanSteven James White
    • G06K9/40
    • H04N5/3572H04N5/367H04N9/045
    • Methods and a processing device are provided for restoring pixels damaged by artifacts caused by dust, or other particles, entering a digital image capturing device. A user interface may be provided for a user to indicate an approximate location of an artifact appearing in a digital image. Dust attenuation may be estimated and an inverse transformation, based on the estimated dust attenuation, may be applied to damaged pixels in order to recover an estimate of the underlying digital image. One or many candidate source patch may be selected based on having smallest pixel distances, with respect to a target patch area. The damaged pixels included in the target patch area may be considered when calculating the pixel distance with respect to candidate source patches. RGB values of corresponding pixels of source patches may be used to restore the damaged pixels included in the target patch area.
    • 提供了方法和处理装置,用于恢复由于灰尘或其他颗粒引起的伪影所损坏的像素进入数字图像捕获装置。 可以为用户提供用户界面来指示出现在数字图像中的人造物的大致位置。 可以估计灰尘衰减,并且可以将基于估计的灰尘衰减的逆变换应用于损坏的像素,以便恢复底层数字图像的估计。 可以基于相对于目标贴片区域具有最小像素距离来选择一个或多个候选源贴片。 当计算相对于候选源贴片的像素距离时,可以考虑包括在目标贴片区域中的损伤像素。 可以使用源贴片的相应像素的RGB值来恢复包括在目标贴片区域中的损伤像素。