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    • 63. 发明申请
    • SYSTEMS AND METHODS FOR TRACKING AND PROVIDING WORKFLOW INFORMATION
    • 跟踪和提供工作流信息的系统和方法
    • US20090222746A1
    • 2009-09-03
    • US12394324
    • 2009-02-27
    • Laura ChiricaMats GrahnStephen Jones
    • Laura ChiricaMats GrahnStephen Jones
    • G06F3/048
    • G06Q10/0633G06F19/00G06Q10/06G16H10/40G16H40/20G16H40/67
    • A tangible computer-readable storage device storing computer-executable program instructions that generate a user interface for displaying workflow information associated with a tissue specimen in a pathology laboratory. The program instructions may be configured to perform a method including displaying a virtual laboratory component representing a physical pathology laboratory having one or more laboratory stations for processing the tissue specimen, wherein the tissue specimen is processed by the one or more laboratory stations according to a workflow, and displaying a specimen indicator that indicates a current specimen state based on a current relationship of the tissue specimen to the workflow. The method may further include enabling a first active component associated with the virtual laboratory component, wherein the first active component is configured to receive a user selection of a laboratory station and generating a supplemental view component of the selected laboratory station in response to the user selection, wherein the supplemental view provides supplemental information on processing by the selected laboratory station of the tissue specimen.
    • 存储计算机可执行程序指令的有形计算机可读存储设备,其生成用于在病理学实验室中显示与组织标本相关联的工作流信息的用户界面。 程序指令可以被配置为执行一种方法,包括显示代表具有用于处理组织样本的一个或多个实验室的物理病理学实验室的虚拟实验室部件,其中根据工作流程由所述一个或多个实验室站处理所述组织标本 并且基于组织样本与工作流的当前关系,显示指示当前样本状态的样本指示符。 该方法还可以包括启用与虚拟实验室组件相关联的第一活动组件,其中第一活动组件被配置为接收实验室的用户选择并响应于用户选择生成所选实验室的补充视图组件 其中补充视图提供了所选实验室对组织标本进行加工的补充信息。
    • 64. 发明申请
    • Real time clock calibration system
    • 实时时钟校准系统
    • US20080222440A1
    • 2008-09-11
    • US11715182
    • 2007-03-07
    • Stephen JonesRupinder Judge
    • Stephen JonesRupinder Judge
    • G06F1/12
    • G06F1/14
    • A temperature-based real time clock calibration system and method for performing the same. The system in one embodiment includes a real time clock calibrated against a reference frequency, a temperature sensor being operative to measure a instantaneous temperature T1, and control circuitry operative to receive and sense the temperature T1. Control logic, preferably implemented in the control circuitry in one embodiment, determines when to recalibrate the real time clock against the reference frequency based on the measured temperature T1. In one embodiment, the reference frequency is generated by a main system clock. The system may be used during sleep mode or another reduced power operating mode of an electronic device.
    • 基于温度的实时时钟校准系统及其执行方法。 一个实施例中的系统包括相对于参考频率校准的实时时钟,温度传感器可操作以测量瞬时温度T 1,以及可操作以接收和感测温度T 1的控制电路。 在一个实施例中优选地在控制电路中实现的控制逻辑基于测量的温度T 1确定何时基于参考频率重新校准实时时钟。 在一个实施例中,参考频率由主系统时钟产生。 该系统可以在睡眠模式或电子设备的另一种降低功率操作模式下使用。
    • 65. 发明授权
    • Drill string rotation encoding
    • 钻柱旋转编码
    • US07245229B2
    • 2007-07-17
    • US10882789
    • 2004-07-01
    • Emilio BaronStephen Jones
    • Emilio BaronStephen Jones
    • G01V3/00
    • E21B47/12G01V11/002
    • A method for communicating with a downhole device is provided. The method includes predefining an encoding language including codes understandable to the device, the codes represented in the language as predefined value combinations of drill string rotation variables such as rotation rate or duration. The method further includes rotating a drill string at first and second rates and measuring the rotation rates downhole. The first measured rotation rate is processed downhole in combination with the second measured rotation rate to acquire a code in the language at the downhole device. Embodiments of the invention are useful, for example, for transmitting commands from the surface to a downhole device such as a directional drilling tool. Exemplary embodiments of this invention advantageously provide for quick and accurate communication with a downhole device without substantially interrupting the drilling process.
    • 提供了一种与井下装置通信的方法。 该方法包括预定义包括对设备可理解的代码的编码语言,以语言表示的代码作为钻柱旋转变量(例如旋转速率或持续时间)的预定义值组合。 该方法还包括以第一和第二速率旋转钻柱并测量井下旋转速率。 第一测量的旋转速率与第二测量的旋转速率结合在井下,以获得井下装置中的语言的代码。 本发明的实施例例如用于将命令从表面传送到诸如定向钻具的井下装置是有用的。 本发明的示例性实施例有利地提供与井下装置的快速和准确的通信,而基本上不中断钻孔过程。
    • 66. 发明授权
    • Programming method for controlling a downhole steering tool
    • 用于控制井下转向工具的编程方法
    • US07222681B2
    • 2007-05-29
    • US11062299
    • 2005-02-18
    • Stephen JonesJunichi Sugiura
    • Stephen JonesJunichi Sugiura
    • E21B44/00E21B7/04
    • E21B47/12
    • A method for communicating with a downhole tool located in a subterranean borehole is disclosed. Exemplary embodiments of the method include encoding data and/or commands in a sequence of varying drill string rotation rates and drilling fluid flow rates. The varying rotation rates and flow rates are measured downhole and processed to decode the data and/or the commands. In one exemplary embodiment, commands in the form of relative changes to current steering tool offset and tool face settings are encoded and transmitted downhole. Such commands may then be executed, for example, to change the steering tool settings and thus the direction of drilling. Exemplary embodiments of this invention advantageously provide for quick and accurate communication with a downhole tool.
    • 公开了一种与位于地下钻孔中的井下工具进行通信的方法。 该方法的示例性实施例包括以变化的钻柱旋转速率和钻井液流速的顺序编码数据和/或命令。 在井下测量变化的旋转速率和流速,并进行处理以对数据和/或命令进行解码。 在一个示例性实施例中,以当前转向工具偏移和工具面设置的相对变化形式的命令被编码并在井下传送。 然后可以执行这样的命令,例如,改变转向工具的设置,从而改变钻孔的方向。 本发明的示例性实施例有利地提供了与井下工具的快速和准确的通信。
    • 69. 发明授权
    • Industrial restraint edging system for segmented paving units
    • 用于分离式装置的工业限制加工系统
    • US5073061A
    • 1991-12-17
    • US509173
    • 1990-04-16
    • Stephen Jones
    • Stephen Jones
    • E01C11/22
    • E01C11/221
    • Paving support apparatus is provided which includes substantially vertical strip restraining elements for defining a boundary around paving members and the like which move laterally during use. The support apparatus is disposed below local ground level during use. The vertical strip restraining elements include an inner surface facing toward the paving member for receiving substantially horizontal forces. Horizontal extension elements are provided which extend out from an outer surface of the vertical strip restraining elements in at least the lower region of the upright strip restraining elements for receiving vertical forces relative to the ground surface. Force converting or reinforcing elements are provided for converting the horizontal forces received by the vertical strip restraining elements into vertical forces against the horizontal extension elements, thereby restraining the paving members in the boundary. The horizontal extension elements extend inwardly of the boundary to underlie the paving members and accept vertical forces to thereby clamp the support apparatus and resist horizontal movement thereof. Preferred embodiments include unitary molded plastic support members exhibiting substantially planar upright member portions engageable with paving members, a substantially lower base member portion extending from both sides of the upright member portion by a substantial distance and a reinforced member portion connecting the upright member portion and the base member portion.
    • 提供铺设支撑装置,其包括用于限定在使用期间横向移动的铺路构件等的边界的基本垂直的带状限制元件。 支撑装置在使用期间设置在地面下方。 垂直条带限制元件包括面向铺路构件的内表面,用于接收基本上水平的力。 提供了水平的延伸元件,其在直立条限制元件的至少下部区域中从垂直条限制元件的外表面延伸,用于接收相对于地面的垂直力。 提供力转换或增强元件,用于将由垂直带限制元件接收的水平力转换成与水平延伸元件成垂直的力,由此限制在边界中的铺路构件。 水平延伸元件从边界向内延伸到铺路构件下面,并接受垂直力,从而夹紧支撑装置并抵抗其水平运动。 优选的实施例包括整体模制塑料支撑构件,其具有可与铺路构件接合的基本平坦的直立构件部分,从直立构件部分的两侧延伸相当距离的基本上较低的底部构件部分和连接直立构件部分和 基座部件。