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    • 45. 发明申请
    • Extracting video regions of interest
    • 提取感兴趣的视频区域
    • US20050220348A1
    • 2005-10-06
    • US10815389
    • 2004-03-31
    • Patrick ChiuAndreas GirgensohnQiong Liu
    • Patrick ChiuAndreas GirgensohnQiong Liu
    • G06T7/20G06F17/30G06K9/00G06K9/46G06K9/48
    • G06F17/30793G06F17/30802G06F17/30811G06F17/30843G06T7/215
    • In one embodiment, the present invention extracts video regions of interest from one or more videos and generates a highly condensed visual summary of the videos. The video regions of interest are extracted based on to energy, movement, face or other object detection methods, associated data or external input, or some other feature of the video. In another embodiment, the present invention extracts regions of interest from images and generates highly condensed visual summaries of the images. The highly condensed visual summary is generated by laying out germs on a canvas and then filling the spaces between the germs. The result is a visual summary that resembles a stained glass window having cells of varying shape. The germs may be laid out by temporal order, color histogram, similarity, according to a desired pattern, size, or some other manner. The people, objects and other visual content in the germs appear larger and become easier to see. The visual summary of the present invention utilizes important regions within the key frames, leading to more condensed summaries that are well suitable for small screens.
    • 在一个实施例中,本发明从一个或多个视频中提取感兴趣的视频区域,并且生成高分辨率的视频概要。 基于能量,移动,面部或其他物体检测方法,相关联的数据或外部输入或视频的某些其他特征来提取感兴趣的视频区域。 在另一个实施例中,本发明从图像中提取感兴趣的区域并且产生图像的高度浓缩的视觉摘要。 高度浓缩的视觉总结是通过在画布上布置细菌,然后填充细菌之间的空间来产生的。 结果是类似于具有不同形状的细胞的彩色玻璃窗的视觉总结。 根据期望的图案,大小或某种其他方式,细菌可以通过时间顺序,颜色直方图,相似性布置。 细菌中的人,物和其他视觉内容看起来更大,变得更容易看到。 本发明的视觉总结利用关键帧内的重要区域,导致更加精简的摘要,其非常适合于小屏幕。
    • 46. 发明申请
    • Generating a highly condensed visual summary
    • 生成高度浓缩的视觉总结
    • US20050220345A1
    • 2005-10-06
    • US10815354
    • 2004-03-31
    • Patrick ChiuAndreas GirgensohnQiong Liu
    • Patrick ChiuAndreas GirgensohnQiong Liu
    • G06T7/00G06K9/00G06K9/66
    • G06T11/60G06F17/30793G06F17/30802G06F17/30811G06F17/30843G11B27/031G11B27/28
    • In one embodiment, the present invention extracts video regions of interest from one or more videos and generates a highly condensed visual summary of the videos. The video regions of interest are extracted based on to energy, movement, face or other object detection methods, associated data or external input, or some other feature of the video. In another embodiment, the present invention extracts regions of interest from images and generates highly condensed visual summaries of the images. The highly condensed visual summary is generated by laying out germs on a canvas and then filling the spaces between the germs. The result is a visual summary that resembles a stained glass window having cells of varying shape. The germs may be laid out by temporal order, color histogram, similarity, according to a desired pattern, size, or some other manner. The people, objects and other visual content in the germs appear larger and become easier to see. The visual summary of the present invention utilizes important regions within the key frames, leading to more condensed summaries that are well suitable for small screens.
    • 在一个实施例中,本发明从一个或多个视频中提取感兴趣的视频区域,并且生成高分辨率的视频概要。 基于能量,移动,面部或其他物体检测方法,相关联的数据或外部输入或视频的某些其他特征来提取感兴趣的视频区域。 在另一个实施例中,本发明从图像中提取感兴趣的区域并且产生图像的高度浓缩的视觉摘要。 高度浓缩的视觉总结是通过在画布上布置细菌,然后填充细菌之间的空间来产生的。 结果是类似于具有不同形状的细胞的彩色玻璃窗的视觉总结。 根据期望的图案,大小或某种其他方式,细菌可以通过时间顺序,颜色直方图,相似性布置。 细菌中的人,物和其他视觉内容看起来更大,变得更容易看到。 本发明的视觉总结利用关键帧内的重要区域,导致更加精简的摘要,其非常适合于小屏幕。
    • 49. 发明授权
    • Systems and methods for interacting with mobile devices using external displays
    • 使用外部显示器与移动设备交互的系统和方法
    • US08866699B2
    • 2014-10-21
    • US12326767
    • 2008-12-02
    • Volker RothLaurent DenoueQiong LiuScott Carter
    • Volker RothLaurent DenoueQiong LiuScott Carter
    • G09G5/00G06F3/14
    • G06F3/1454G09G2340/0407G09G2340/0464G09G2340/12G09G2340/145G09G2370/16
    • A system and method for interacting with a mobile device using an external display is disclosed, where a mobile device provides representations of an object and action to an external display for a user to select and then input back to the mobile device. An application on a mobile device provides representation data of an object and an action to a host system driving an external display. The host system arranges the representation data into a representation on the external display and allows the user to interact with the representations. The user then selects a representation and inputs the selected representation into the mobile device, where the application processes the representation to carry out the appropriate actions on the appropriate objects. The representation may be inputted to the mobile device using a photo of the representation taken by a mobile device camera, or by inputting a code provided with each representation on the external display.
    • 公开了一种使用外部显示器与移动设备进行交互的系统和方法,其中移动设备向外部显示器提供对象和动作的表示,供用户选择然后输入到移动设备。 移动设备上的应用将对象和动作的表示数据提供给驱动外部显示器的主机系统。 主机系统将表示数据排列在外部显示器上的表示中,并允许用户与表示进行交互。 然后,用户选择表示并将所选择的表示输入到移动设备中,其中应用处理该表示以对适当的对象执行适当的动作。 该表示可以使用移动设备摄像机所采用的表示的照片或者通过在外部显示器上输入与每个表示一起提供的代码来将其输入到移动设备。
    • 50. 发明授权
    • System and methods for vital sign estimation from passive thermal video
    • 被动热视频的生命体征估计系统和方法
    • US08149273B2
    • 2012-04-03
    • US12171273
    • 2008-07-10
    • Qiong LiuMing YangAlthea Turner
    • Qiong LiuMing YangAlthea Turner
    • A62B1/04H04N5/33G06K9/00A61B5/04
    • A61B5/489A61B5/01A61B5/024
    • A system for measuring a pulse and respiratory rate from passive thermal video includes contour segmentation and tracking, clustering of informative pixels of interests, and robust dominant frequency component estimation. Contour segmentation is used to locate a blood vessel region to measure, after which all pixels in the nearby region are aligned across frames based on the segmentation's position, and scale in each frame. Spatial filtering is then performed to remove noise not related to heart beat and then non-linear filtering is performed on the temporal signal corresponding to each aligned pixel. The signal spectrum of each pixel is then feed to a clustering algorithm for outlier removal. Pixels in the largest cluster are then used to vote for the dominant frequency, and the median of the dominant frequency is output as the pulse rate.
    • 用于从被动热视频测量脉搏和呼吸频率的系统包括轮廓分割和跟踪,兴趣信息像素的聚类和鲁棒的主频分量估计。 轮廓分割用于定位血管区域以测量,之后基于分割的位置在附近区域中的所有像素对准跨越帧,并且在每个帧中缩放。 然后执行空间滤波以去除与心跳不相关的噪声,然后对对应于每个对准的像素的时间信号执行非线性滤波。 然后将每个像素的信号频谱馈送到用于异常值去除的聚类算法。 最大簇中的像素然后用于投票主导频率,主频率的中值作为脉率输出。