会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Dating images from scanned watermarks
    • 从扫描水印约会图像
    • US08290205B2
    • 2012-10-16
    • US12491268
    • 2009-06-25
    • Anthony ScaliseAndrew C. Blose
    • Anthony ScaliseAndrew C. Blose
    • G06K9/62
    • G06F17/30265G03D15/003H04N1/32101H04N1/32128H04N2201/3214H04N2201/3269H04N2201/3271
    • A method for dating photographic prints comprising scanning a front side of a photographic print forming an image scan; scanning a back side of the photographic print forming a back scan; defining a database of photographic print watermarks, each photographic print watermark comprising a representation of a watermark pattern and an associated date range; analyzing the back scan using a cross-correlation process between the back scan and the watermark patterns in the database of photographic print watermarks to identify a matching photographic print watermark; determining a date range for the image scan responsive to the identified matching photographic print watermark; and associating the determined date range with the image scan.
    • 一种用于拍摄照片的方法,包括扫描形成图像扫描的照相印相的前侧; 扫描形成背面扫描的照相打印的背面; 定义摄影打印水印的数据库,每个照相打印水印包括水印图案和关联的日期范围的表示; 使用摄影打印水印的数据库中的反向扫描和水印图案之间的互相关处理来分析反向扫描,以识别匹配的照相打印水印; 响应于所识别的匹配摄影打印水印确定图像扫描的日期范围; 并将确定的日期范围与图像扫描相关联。
    • 2. 发明授权
    • Evaluating subject interests from digital image records
    • 从数字图像记录评估主题兴趣
    • US08275221B2
    • 2012-09-25
    • US13235737
    • 2011-09-19
    • Robert B. PoetkerAnthony ScaliseKevin R. DeLongAndrew C. Blose
    • Robert B. PoetkerAnthony ScaliseKevin R. DeLongAndrew C. Blose
    • G06K9/54
    • G06F17/30244G06K2209/27G06Q30/0201
    • A method of evaluating a user subject interest is based at least upon an analysis of a user's collection of digital image records and is implemented at least in part by a data processing system. The method receives a defined user subject interest, receives a set of content requirements associated with the defined user-subject-interest, and identifies a set of digital image records from the collection of digital image records each having image characteristics in accord with the content requirements. A subject-interest trait associated with the defined user-subject-interest is evaluated based at least upon an analysis of the set of digital image records or characteristics thereof. The subject-interest trait is associated with the defined user-subject-interest in a processor-accessible memory.
    • 评估用户对象兴趣的方法至少基于用户对数字图像记录的收集的分析,并且至少部分地由数据处理系统来实现。 该方法接收定义的用户主题感兴趣,接收与定义的用户主题兴趣相关联的一组内容要求,并且从数字图像记录集合中识别出数字图像记录集合,每个数字图像记录具有符合内容要求的图像特征 。 至少基于对该组数字图像记录或其特征的分析来评估与所定义的用户主题兴趣相关联的主题兴趣特征。 主题兴趣特征与处理器可访问存储器中定义的用户主题兴趣相关联。
    • 7. 发明授权
    • User-interactive reduction of scene balance failures
    • 用户交互式减少场景平衡失败
    • US5644647A
    • 1997-07-01
    • US583740
    • 1990-09-17
    • Patrick Andre CosgroveRobert Melvin GoodwinHeemin KwonAnthony Scalise
    • Patrick Andre CosgroveRobert Melvin GoodwinHeemin KwonAnthony Scalise
    • G03B27/73H04N1/46H04N1/60G06K9/40
    • H04N1/6011G03B27/73
    • A photofinishing image processing operator detects failures in the performance of a scene balance mechanism on a digitized image and enables a photofinisher to interactively correct for such failures before the failed image has been processed and an unacceptable output image printed. Whenever a failed image is identified, one or more reasonably low resolution versions of the image as processed by the scene balance mechanism are displayed to the photofinishing operator, together with a request for image adjustment information that is used to modify or correct the color balance of the image. In response to this user input information, the image processor adjusts color balance parameters of the scene balance mechanism, so that the digitized image processed by the modified scene balance mechanism will yield a print of acceptable color balance quality. This interaction of the photofinishing operator with the image processing system may be accomplished by way of several modes, including displaying differently processed versions of the image, or a single version of the image processed by the scene balance mechanism, together with a question regarding the type of image. The failure detection mechanism preferably employs a non-linear discriminator, such as a neural network.
    • 照相洗印图像处理操作者检测在数字化图像上执行场景平衡机构的失败,并且使得照相洗印厂能够在故障图像被处理之前交互地校正这样的故障并且打印出不可接受的输出图像。 每当识别失败的图像时,由场景平衡机构处理的图像的一个或多个相当低的分辨率版本被显示给照相洗印加工者,以及用于修改或校正颜色平衡的图像调整信息的请求 图片。 响应于该用户输入信息,图像处理器调整场景平衡机构的色彩平衡参数,使得由修改的场景平衡机构处理的数字化图像将产生可接受的色平衡质量的打印。 照相洗印加工操作者与图像处理系统的这种交互可以通过几种模式来实现,包括显示图像的不同处理版本,或由场景平衡机构处理的图像的单一版本,以及关于类型的问题 的图像。 故障检测机构优选采用非线性鉴别器,例如神经网络。
    • 10. 发明申请
    • Digital image cropping using a blended map
    • 使用混合地图进行数字图像裁剪
    • US20080019575A1
    • 2008-01-24
    • US11489966
    • 2006-07-20
    • Anthony ScaliseRobert B. PoetkerKevin R. Delong
    • Anthony ScaliseRobert B. PoetkerKevin R. Delong
    • G06K9/62G06K9/00
    • G06K9/00234G06T7/11G06T7/194G06T7/90G06T2207/20132G06T2207/30201
    • In a method and system for mapping a digital image having a plurality of pixels, a skin color map of the digital image is computed. The skin color map has a plurality of skin color values. Each of the skin color values is associated with a respective set of one or more of the pixels. Each of the skin color values indicates a likelihood that the respective pixel set is skin. A face map of the digital image is generated. The face map is divided into one or more face zones and a background exclusive of the face zones. Each of the face zones is a group of the pixels. Each of the face zones indicates a greater likelihood than the background that the respective group of pixels is a face. In the skin color map, the respective skin color values associated with the pixels of the face zones are increased to provide a revised map, which is used in controlling a procedure producing an output.
    • 在用于映射具有多个像素的数字图像的方法和系统中,计算数字图像的肤色图。 皮肤颜色图具有多个皮肤颜色值。 每个皮肤颜色值与一个或多个像素的相应组相关联。 每个皮肤颜色值表示各个像素组为皮肤的可能性。 生成数字图像的人脸图。 脸部地图被分成一个或多个脸部区域和不包括脸部区域的背景。 每个脸部区域是一组像素。 每个面部区域表示比相应的像素组是面部的背景更大的可能性。 在皮肤颜色图中,增加与面部区域的像素相关联的各肤色值,以提供用于控制产生输出的过程的修正图。