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    • 1. 发明授权
    • Adaptive data manager
    • 自适应数据管理器
    • US06904432B2
    • 2005-06-07
    • US09997723
    • 2001-11-30
    • Regis CharlotDavid HainesDavid PilkingtonJose Maldonado, Jr.
    • Regis CharlotDavid HainesDavid PilkingtonJose Maldonado, Jr.
    • G06F17/30
    • G06F17/30557Y10S707/99939Y10S707/99942
    • A method for managing a back-end information storage infrastructure and a flexible development environment for data storage using a computer system. The method includes managing system resources including a relational database. Meta data models are created to model processes and to define meta data elements and their relationships by using trees and graphs. The method manages access to the data by authenticating users through a directory describing user rights, while providing management of multi-user access and concurrency. The method includes running the processes that generate instance data, storing the instance data following the meta data model, and transforming the instance data into physical views.
    • 用于管理后端信息存储基础设施的方法和用于使用计算机系统进行数据存储的灵活的开发环境。 该方法包括管理包括关系数据库的系统资源。 创建元数据模型来建模流程,并通过使用树和图来定义元数据元素及其关系。 该方法通过对描述用户权限的目录进行认证,同时提供对多用户访问和并发的管理来管理对数据的访问。 该方法包括运行生成实例数据的过程,存储元数据模型之后的实例数据,以及将实例数据变换为物理视图。
    • 2. 发明申请
    • Identification mapping and translation method
    • 识别映射和翻译方法
    • US20050038671A1
    • 2005-02-17
    • US10642072
    • 2003-08-15
    • Frank Naeymi-RadDavid AlvinDavid PilkingtonRegis Charlot
    • Frank Naeymi-RadDavid AlvinDavid PilkingtonRegis Charlot
    • G06F7/00G06F17/00G06F19/00G06F17/60
    • G06Q50/22G06F19/00G16H10/60Y10S707/99936
    • A method for mapping and identifying entity information in a system that includes a database. A client application sends client entity attributes to the system that includes a database The system compares the attributes of the client entity with each of the system entities stored in the system database. Based on the results of the comparison, a score is calculated for the relevance between the client entity and each entity stored in the system. To perform this calculation, a multi-membership Bayesian function is used. Once the scores are computed, they are classified into three confidence zones based on predetermined threshold values. The client attributes are inserted into the system database. These attributes then are connected either to an existing system entity, or are connected to a new system entity that is created.
    • 一种用于在包括数据库的系统中映射和标识实体信息的方法。 客户端应用程序将客户端实体属性发送到包含数据库的系统。系统将客户端实体的属性与存储在系统数据库中的每个系统实体进行比较。 基于比较的结果,计算客户实体与存储在系统中的每个实体之间的相关性的分数。 为了执行该计算,使用多隶属贝叶斯函数。 一旦计算分数,它们将基于预定的阈值被分类为三个置信区间。 将客户端属性插入到系统数据库中。 然后,这些属性将连接到现有系统实体,或连接到创建的新系统实体。
    • 3. 发明授权
    • Identification mapping and translation method
    • 识别映射和翻译方法
    • US07167858B2
    • 2007-01-23
    • US10642072
    • 2003-08-15
    • Frank Naeymi-RadDavid AlvinDavid PilkingtonRegis Charlot
    • Frank Naeymi-RadDavid AlvinDavid PilkingtonRegis Charlot
    • G06F17/30
    • G06Q50/22G06F19/00G16H10/60Y10S707/99936
    • A method for mapping and identifying entity information in a system that includes a database. A client application sends client entity attributes to the system that includes a database The system compares the attributes of the client entity with each of the system entities stored in the system database. Based on the results of the comparison, a score is calculated for the relevance between the client entity and each entity stored in the system. To perform this calculation, a multi-membership Bayesian function is used. Once the scores are computed, they are classified into three confidence zones based on predetermined threshold values. The client attributes are inserted into the system database. These attributes then are connected either to an existing system entity, or are connected to a new system entity that is created.
    • 一种用于在包括数据库的系统中映射和标识实体信息的方法。 客户端应用程序将客户端实体属性发送到包含数据库的系统。系统将客户端实体的属性与存储在系统数据库中的每个系统实体进行比较。 基于比较的结果,计算客户实体与存储在系统中的每个实体之间的相关性的分数。 为了执行该计算,使用多隶属贝叶斯函数。 一旦计算分数,它们将基于预定的阈值被分类为三个置信区间。 将客户端属性插入到系统数据库中。 然后,这些属性将连接到现有系统实体,或连接到创建的新系统实体。
    • 4. 发明授权
    • Syringe pumps
    • 注射泵
    • US5879360A
    • 1999-03-09
    • US687349
    • 1996-09-16
    • David Pilkington Crankshaw
    • David Pilkington Crankshaw
    • A61M5/145A61M5/168G01L1/14A61M5/00
    • A61M5/1456G01L1/142A61M5/1458A61M5/16831
    • A syringe pump having a drive head (1) mounted on a lead screw (2) which drives the drive head (1) to cause the plunger (P) of the syringe (S) to be advanced to deliver the contents of the syringe in a controlled manner. The drive head (1) supports a sensing module (3) having a cylindrical outer metallic body supporting a sensor disk (9) to which a sensing button (10) is attached. The disk (9) has a central insulating disk (15) supporting copper plates (16 and 17) and thin layers of dielectric (18, 19) separated from ground plates (20, 21) by an air gap (22) defining separate electrical capacitors each having a significantly different value of capacitance such that a large fall in capacitance occurs in the first capacitor while a large rise in capacitance occurs in the second capacitor. The capacitors are connected to an integrated circuit (23) which detects changes in capacitance caused by small forces applied to the button (10) to provide signals representative of contact with the button (10) and/or the force applied by the button (10) and the plunger (P). The drive head (1) also carries spring loaded pawls (26, 27) which engage behind the flange of the plunger (P) of the syringe (S) to prevent plunger movement caused by siphoning or other undesired movement of the plunger.
    • PCT No.PCT / AU95 / 00029 Sec。 371日期1996年9月16日 102(e)日期1996年9月16日PCT提交1995年1月20日PCT公布。 WO95 / 20145 PCT出版物 日期1995年7月27日一种注射泵,其具有安装在导螺杆(2)上的驱动头(1),该驱动头驱动驱动头(1)以使得注射器(S)的柱塞(P)前进以将 注射器的内容物以受控的方式。 驱动头(1)支撑感测模块(3),该感测模块(3)具有支撑感测按钮(10)的传感器盘(9)的圆柱形外金属体。 盘(9)具有支撑铜板(16和17)的中心绝缘盘(15)和由接地板(20,21)与接地板(20,21)分离的薄层电介质(18,19),空气间隙(22)限定分开的电 电容器各自具有明显不同的电容值,使得在第一电容器中出现大的电容下降,同时在第二电容器中出现大的电容上升。 电容器连接到集成电路(23),其检测由施加到按钮(10)的小力引起的电容变化,以提供表示与按钮(10)接触的信号和/或由按钮(10)施加的力 )和柱塞(P)。 驱动头(1)还承载弹簧加载的棘爪(26,27),其接合在注射器(S)的柱塞(P)的后面,以防止柱塞由于虹吸或其他不期望的柱塞移动而引起移动。