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    • 41. 发明申请
    • PORTABLE ELECTROCARDIOGRAPH
    • 便携式电子
    • US20090299206A1
    • 2009-12-03
    • US12299178
    • 2007-02-08
    • Weihu WangLei ChenPeng Wu
    • Weihu WangLei ChenPeng Wu
    • A61B5/0404
    • A61B5/0404A61B2560/0425
    • A portable electrocardiograph, in which an exposed electrode is arranged on the end face of one end of a housing, characterized in that: the other end of the housing is of a comfortable structure for holding; the comfortable structure for holding is provided with the other exposed electrode; and the geometric center of the comfortable structure for holding is of an offset toward the other end of the housing and one of the two transverse sides, and a measuring key is arranged in the geometric center of the comfortable structure for holding. The present invention is of a humanized and unique holding structure shape, which ensures the wrist, the arm, and the trunk of the user are closed to form a relative space, thus allowing the user to measure in natural and correct posture so as to make sure the monitored data to be accurate and reliable.
    • 一种便携式心电图仪,其中暴露的电极布置在壳体的一端的端面上,其特征在于:所述壳体的另一端具有用于保持的舒适结构; 保持的舒适结构设置有另一个暴露的电极; 并且用于保持的舒适结构的几何中心朝向壳体的另一端偏移并且两个横向侧中的一个偏移,并且测量键布置在舒适结构的几何中心中用于保持。 本发明具有人性化和独特的保持结构形状,其确保使用者的手腕,手臂和躯干被封闭以形成相对空间,从而允许使用者以自然和正确的姿势进行测量,以便使 确保监控的数据准确可靠。
    • 42. 发明申请
    • COMPUTER-IMPLEMENTED METHOD, SYSTEM, AND PROGRAM PRODUCT FOR OPTIMIZING A DISTRIBUTED APPLICATION
    • 用于优化分布式应用的计算机实现方法,系统和程序产品
    • US20080271004A1
    • 2008-10-30
    • US12167258
    • 2008-07-03
    • Jong-Deok ChoiManish GuptaParviz KermaniKang-Won LeeKyung Dong RyuDinesh C. VermaPeng Wu
    • Jong-Deok ChoiManish GuptaParviz KermaniKang-Won LeeKyung Dong RyuDinesh C. VermaPeng Wu
    • G06F9/45G06F9/44
    • G06F8/61
    • A computer-implemented method, system, and program product for optimizing a distributed (software) application are provided. Specifically, a configuration of a target computing environment, in which the distributed application is deployed, is discovered upon deployment of the distributed application. Thereafter, based on a set of rules and the discovered configuration, one or more optimization techniques are applied to optimize the distributed application. In a typical embodiment, the set of rules can be embedded in the distributed application, or they can be accessed from an external source such as a repository. Regardless, the optimization techniques applied can include at least one of the following: (1) identification and replacement of an underperforming component of the distributed application with a new component; (2) generation of interface layers (to allow selection of optimal bindings) between distributed objects of the distributed application; and/or (3) execution of code transformation of the distributed application using program analysis techniques.
    • 提供了一种用于优化分布式(软件)应用程序的计算机实现的方法,系统和程序产品。 具体而言,在部署分布式应用程序时发现其中部署了分布式应用的目标计算环境的配置。 此后,基于一组规则和所发现的配置,应用一个或多个优化技术来优化分布式应用。 在典型的实施例中,该组规则可以嵌入在分布式应用中,或者可以从诸如存储库的外部源访问它们。 无论如何,应用的优化技术可以包括以下至少一个:(1)用新的组件识别和替换分布式应用程序的表现不佳的组件; (2)在分布式应用程序的分布式对象之间生成界面层(允许选择最佳绑定); 和/或(3)使用程序分析技术执行分布式应用程序的代码转换。
    • 45. 发明申请
    • Framework for Integrated Intra- and Inter-Loop Aggregation of Contiguous Memory Accesses for SIMD Vectorization
    • 用于SIMD向量化的连续内存访问的集成内部和环际聚合框架
    • US20080010634A1
    • 2008-01-10
    • US11856284
    • 2007-09-17
    • Alexandre EichenbergerKai-Ting WangPeng Wu
    • Alexandre EichenbergerKai-Ting WangPeng Wu
    • G06F9/45G06F15/00
    • G06F8/4452G06F8/445
    • A method, computer program product, and information handling system for generating loop code to execute on Single-Instruction Multiple-Datapath (SIMD) architectures, where the loop contains multiple non-stride-one memory accesses that operate over a contiguous stream of memory is disclosed. A preferred embodiment identifies groups of isomorphic statements within a loop body where the isomorphic statements operate over a contiguous stream of memory over the iteration of the loop. Those identified statements are then converted in to virtual-length vector operations. Next, the hardware's available vector length is used to determine a number of virtual-length vectors to aggregate into a single vector operation for each iteration of the loop. Finally, the aggregated, vectorized loop code is converted into SIMD operations.
    • 一种用于生成在单指令多数据路径(SIMD)架构上执行的循环码的方法,计算机程序产品和信息处理系统,其中循环包含在连续的存储器流上操作的多个非步进存储器访问 披露 优选实施例识别在循环体内同构语句的组,其中同构语句在循环的迭代上在连续的存储器流上操作。 然后将那些已识别的语句转换为虚拟长度向量操作。 接下来,使用硬件的可用向量长度来确定多个虚拟长度向量以聚合到单个向量操作中,用于循环的每次迭代。 最后,聚合的向量化循环码被转换成SIMD操作。