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    • 4. 发明授权
    • Checkpoint entry insertion during test scenario creation
    • 在测试场景创建期间插入检查点
    • US08566794B2
    • 2013-10-22
    • US12907298
    • 2010-10-19
    • Claude RossiGregory Martin
    • Claude RossiGregory Martin
    • G06F9/44
    • G06F11/3684
    • A test module can be configured to initiate test scenario creation for a target application, and an interaction entry definition module can be configured to define, during the test scenario creation, a plurality of interaction entries representing a sequence of user interactions with a plurality of user interface elements of the target application. A test scenario compiler can be configured to include the plurality of interaction entries in a test scenario file representing a test scenario, and a checkpoint entry definition module can be configured to receive an indicator that a property of a user interface element from the plurality of user interface elements has been selected for verification, and configured to define a checkpoint entry configured to trigger verification of the property of the user interface element from the plurality of user interface elements based on the test scenario file during test scenario verification of the target application.
    • 测试模块可以被配置为发起目标应用的测试场景创建,并且交互条目定义模块可以被配置为在测试场景创建期间定义表示与多个用户的用户交互序列的多个交互条目 目标应用程序的界面元素。 测试场景编译器可以被配置为将多个交互条目包括在表示测试场景的测试场景文件中,并且检查点条目定义模块可以被配置为接收来自多个用户的用户界面元素的属性的指示符 界面元素被选择用于验证,并且被配置为定义检查点条目,其被配置为在目标应用的测试场景验证期间基于测试场景文件触发从多个用户界面元素检测用户界面元素的属性。
    • 5. 发明申请
    • Method and apparatus for control of non-invasive parameter measurements
    • 用于控制非侵入性参数测量的方法和装置
    • US20080064968A1
    • 2008-03-13
    • US11982975
    • 2007-11-05
    • Gregory MartinGregory VossManouchehr GoharlaeeStuart GallantWarren Craycroft
    • Gregory MartinGregory VossManouchehr GoharlaeeStuart GallantWarren Craycroft
    • A61B5/0225
    • A61B5/721A61B5/0048A61B5/02007A61B5/021A61B5/0225A61B5/7207A61B5/7264A61B5/7282A61B5/7285
    • Improved methods and apparatus for non-invasively assessing one or more parameters associated with fluidic systems such as the circulatory system of a living organism, when such parameters are potentially affected by other concurrent events. In one exemplary embodiment, apparatus and methods for compensating for occlusive events (e.g., pressure cuff inflation) occurring ipsilateral to the location of parameter measurement are disclosed. Upon passive detection of signal degradation resulting from the event, the apparatus selectively enters a “wait state” wherein further processing of the hemodynamic data is suspended until the degrading event subsides. This behavior mitigates any adverse effects the event might have on the accuracy of the representation of the measured hemodynamic parameter generated by the system. In another exemplary embodiment, the measured data is analyzed in order to classify the type of event (e.g., occlusive or other), such classification allowing the system to appropriately tailor its response to the event.
    • 改进的方法和装置,用于非侵入性地评估与流体系统相关联的一个或多个参数,例如活体的循环系统,当这些参数可能受到其他并发事件的影响时。 在一个示例性实施例中,公开了用于补偿与参数测量位置同侧出现的闭塞事件(例如,压力袖带充气)的装置和方法。 在被动检测由事件导致的信号劣化时,该装置选择性地进入“等待状态”,其中暂停血液动力学数据的进一步处理,直到降解事件消退。 该行为减轻了事件可能对由系统产生的测量的血液动力学参数的表示的准确性的任何不利影响。 在另一个示例性实施例中,分析测量数据以便将事件的类型(例如,闭塞或其他)分类,允许系统适当地定制其对事件的响应。
    • 7. 发明申请
    • Apparatus for control of non-invasive parameter measurements
    • 用于控制非侵入性参数测量的装置
    • US20060094965A1
    • 2006-05-04
    • US11300019
    • 2005-12-13
    • Gregory VossGregory MartinManouchehr Goharlaee
    • Gregory VossGregory MartinManouchehr Goharlaee
    • A61B5/02
    • A61B5/022A61B5/02007A61B5/02028A61B5/024A61B5/684A61B5/6843A61B5/7203A61B5/7207A61B5/7264
    • Improved methods and apparatus for non-invasively assessing one or more parameters associated with fluidic systems such as the circulatory system of a living organism. In a first aspect, an improved method of continuously measuring pressure from a compressible vessel is disclosed, wherein a substantially optimal level of compression for the vessel is achieved and maintained using perturbations (e.g., modulation) of the compression level of the vessel. In one exemplary embodiment, the modulation is conducted according to a pseudo-random binary sequence (PBRS). In a second aspect, an improved apparatus for determining the blood pressure of a living subject is disclosed, the apparatus generally comprising a pressure sensor and associated processor with a computer program defining a plurality of operating states related to the sensed pressure data. Methods for pressure waveform correction and reacquisition, as well as treatment using the present invention, are also disclosed.
    • 用于非侵入性评估与诸如活体的循环系统的流体系统相关联的一个或多个参数的改进的方法和装置。 在第一方面,公开了一种从可压缩容器连续测量压力的改进方法,其中使用容器的压缩水平的扰动(例如,调制)来实现和维持容器的基本上最佳的压缩水平。 在一个示例性实施例中,根据伪随机二进制序列(PBRS)进行调制。 在第二方面,公开了一种用于确定活体的血压的改进装置,所述装置通常包括压力传感器和与计算机程序相关联的处理器,所述计算机程序定义与感测的压力数据有关的多个操作状态。 还公开了压力波形校正和再吸收的方法以及使用本发明的处理。