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    • 61. 发明申请
    • DOCUMENT PROCESSING METHOD AND SYSTEM
    • 文件处理方法和系统
    • US20100306248A1
    • 2010-12-02
    • US12786557
    • 2010-05-25
    • Sheng Hua BaoJie CuiHui SuZhong SuLi Zhang
    • Sheng Hua BaoJie CuiHui SuZhong SuLi Zhang
    • G06F17/30
    • G06F17/30716G06F17/30011
    • A method and system for expanding a document set as a search data source in the field of business related search. The present invention provides a method of expanding a seed document in a seed document set. The method includes identifying one or more entity words of the seed document; identifying one or more topic words identifying one or more topic words related to the based entity word in the seed document where the entity word is located; forming an entity word-topic word pair from each identified topic word and the entity word on the basis of which each topic word is identified; and obtaining one or more expanded documents through web by taking the entity word and topic word in the each entity word-topic word pair as key words at the same time. A system for executing the above method is also provided.
    • 一种在业务相关搜索领域中扩展作为搜索数据源的文档集的方法和系统。 本发明提供一种在种子文档集中扩展种子文档的方法。 该方法包括识别种子文档的一个或多个实体单词; 识别识别在所述实体字所在的种子文档中与所述基于实体字相关的一个或多个主题词的一个或多个主题词; 从每个识别的主题词和实体单词形成实体单词对,并根据该单词识别每个主题词; 并通过网络获取一个或多个扩展文档,通过将每个实体词主题词对中的实体单词和主题词作为关键词同时获取。 还提供了用于执行上述方法的系统。
    • 66. 发明授权
    • Imaging system
    • 成像系统
    • US07672427B2
    • 2010-03-02
    • US11545255
    • 2006-10-10
    • Zhiqiang ChenLi ZhangHewei GaoKejun KangJianping ChengYuanjing LiYinong LiuYuxiang XingZiran ZhaoYongshun Xiao
    • Zhiqiang ChenLi ZhangHewei GaoKejun KangJianping ChengYuanjing LiYinong LiuYuxiang XingZiran ZhaoYongshun Xiao
    • G01N23/04
    • G01N23/04A61B6/027
    • It is disclosed an imaging system comprising: radiation generating means including at least one radiation source for generating radiations; data acquiring means including an detector matrix faced the radiation source for obtaining projection data by receiving radiations penetrated through an object to be inspected; transporting means for making the object to be inspected between the radiation source and the detector matrix linearly moving relative to the radiation source and the detector matrix; and controlling and image processing means for controlling the radiation generating means, the data acquiring means and the transporting means, and for reconstructing an image of the object to be inspected from the projection data. The imaging system according to the present invention achieves a real stereoscopic radiography by using straight-line trajectory scan and reconstructing a tomographic or stereoscopic image through a straight-line filtered back-projection algorithm. The present imaging system has advantages of fast examination speed, no rotation, and out of large cone-angle problem in a circular-orbit cone-beam CT.
    • 公开了一种成像系统,包括:辐射发生装置,其包括用于产生辐射的至少一个辐射源; 数据获取装置,包括面向辐射源的检测器矩阵,用于通过接收穿过待检查对象的辐射来获得投影数据; 用于使所述物体在所述辐射源和所述检测器矩阵之间相对于所述辐射源和所述检测器矩阵线性移动的传送装置; 以及控制和图像处理装置,用于控制辐射发生装置,数据获取装置和传送装置,并用于从投影数据重建待检查对象的图像。 根据本发明的成像系统通过使用直线轨迹扫描并通过直线过滤的反投影算法重建断层摄影或立体图像来实现真正的立体放射照相。 本发明的成像系统在圆锥轨道锥形CT中具有检测速度快,无旋转和大锥角问题的优点。
    • 68. 发明申请
    • Robust Jitter-Free Remote Clock Offset Measuring Method
    • 强大的无抖动远程时钟偏移测量方法
    • US20100034103A1
    • 2010-02-11
    • US12186588
    • 2008-08-06
    • Steven FroehlichMichel H. T. HackXiaoqiao MengLi Zhang
    • Steven FroehlichMichel H. T. HackXiaoqiao MengLi Zhang
    • G06F11/30
    • H04L43/087H04J3/0667H04L43/0858H04L43/106
    • A clock offset between a client and a server is measured by: (a) the client sending a request to the server; (b) upon receiving the request in step (a), the server optionally sending a server acknowledgement to the client; (c) upon the client receiving the server acknowledgement in step (b) or directly, if no acknowledgement was used, each of the client and the server proceeding to concurrently exchange their respective timestamps with each other a multiplicity (n) of times, thus forming a multiplicity (n) of timestamp exchanges; and (d) determining a plurality of apparent forwards and backwards delays based on the multiplicity (n) of timestamp exchanges. The preferred apparent forwards and backwards delays are then selected based on the minimum values (for each direction) determined in (d) above. The clock offset between client and server is then determined based on the preferred apparent forwards and backwards delays.
    • 客户端和服务器之间的时钟偏移是通过以下方式测量的:(a)客户端向服务器发送请求; (b)在步骤(a)中接收到请求后,服务器可选地向客户端发送服务器确认; (c)在客户端在步骤(b)中接收到服务器确认或直接接收到服务器确认,如果没有使用确认,则客户端和服务器中的每个客户端和服务器进行多次(n次)的同时交换它们各自的时间戳,从而 形成多个(n)时间戳交换; 和(d)基于时间戳交换的多重性(n)来确定多个明显的向前和向后的延迟。 然后根据上述(d)中确定的最小值(对于每个方向)选择优选的明显的向前和向后延迟。 然后基于优选的明显的向前和向后延迟来确定客户端和服务器之间的时钟偏移。