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    • 1. 发明授权
    • Object-oriented global cursor tool which operates in an incompatible
document by embedding a compatible frame in the document
    • 面向对象的全局光标工具,通过在文档中嵌入兼容的框架来操作不兼容的文档
    • US5848429A
    • 1998-12-08
    • US843813
    • 1997-04-21
    • Kevin J. McEnteeJack R. RobsonJeff Wishnie
    • Kevin J. McEnteeJack R. RobsonJeff Wishnie
    • G06F3/038G06F9/44G06F9/46G06F17/21
    • G06F3/038G06F9/4443G06F9/543
    • An innovative system and method provide a cursor tool framework and tool server with support for multiple cursors on any given system, and supports the selection of a cursor tool utilizing a cursor. The framework and server facilitate the association of cursor tools to a cursor in a process independent space such that tools can be used cross-process and cross-document. The framework also provides default functionality for communication among cursor tools and the canvas on which they are used. This high degree of interaction allows any cursor tool and any document to function together such that the cursor tool can be written without the knowledge of the document developer. A frame creation tool awaits the detection of a mouse button depression. Then, a document component is created. The document component type is assigned at a tools inception. Then a rectangle interactor is invoked. The rectangle interactor provides a rubber band GUI pivoting around a first selected point. The interactor continues to process until the mouse button is released. Finally, the document component is embedded in the previously created frame. One global frame tool allows a user to interactively select a rectangular frame region and embed a document component in the frame.
    • 创新的系统和方法提供了一个光标工具框架和工具服务器,支持任意给定系统上的多个光标,并支持使用光标选择光标工具。 框架和服务器便于将游标工具与过程独立空间中的游标相关联,从而可以使用跨进程和跨文档的工具。 该框架还为光标工具和使用它们的画布提供了默认的功能。 这种高度的交互允许任何光标工具和任何文档一起工作,使得光标工具可以在不了解文档开发者的情况下被写入。 帧创建工具等待鼠标按键的检测。 然后,创建文档组件。 文档组件类型在工具初始化时分配。 然后调用矩形交互器。 矩形交互器提供围绕第一选定点枢转的橡皮筋GUI。 交互器继续处理,直到鼠标按钮释放。 最后,文档组件嵌入到先前创建的框架中。 一个全局框架工具允许用户交互地选择矩形框架区域并将文档组件嵌入到框架中。
    • 4. 发明授权
    • Time domain reflectometer-integrity testing system and method for
implantable electrode
    • 时域反射计完整性测试系统和可植入电极的方法
    • US5231987A
    • 1993-08-03
    • US866850
    • 1992-04-10
    • Jack R. Robson
    • Jack R. Robson
    • A61N1/08A61N1/37
    • A61N1/3706A61N2001/083
    • A device, system and method is used for testing the integrity of an implantable electrode. The electrical device has a receptacle for an electrode and includes a time domain reflectometer comprising an output signal mechanism operatively connected to the electrode receptacle. The method of analyzing the integrity of an implanted electrode comprises the steps of generating a time domain reflectometer (TDR) reading (output signal) from the electrode, and transmitting the signal to an output device. The output signal may be analyzed to determined whether it varies by a predetermined threshold, or it may be compared to a previously generated signal from the electrode so that differences in the electrical characteristics of the electrode may be identified. The present device, system and method allows a cardiologist or technician to ensure that the electrode is properly implanted and to non-invasively determine the integrity of the electrode over a patient's life.
    • 使用装置,系统和方法来测试可植入电极的完整性。 电气设备具有用于电极的插座,并且包括时域反射计,其包括可操作地连接到电极插座的输出信号机构。 分析植入电极的完整性的方法包括以下步骤:从电极产生读取(输出信号)的时域反射计(TDR),并将该信号发送到输出装置。 可以分析输出信号以确定其是否变化了预定阈值,或者可以将其与来自电极的先前产生的信号进行比较,从而可以识别电极的电特性的差异。 本装置,系统和方法允许心脏病专家或技术人员确保电极被适当地植入,并且非侵入性地确定电极在患者生命中的完整性。
    • 5. 发明授权
    • Time domain reflectometer-integrity testing system and method for
medical device electrode
    • 用于医疗器械电极的时域反射计完整性测试系统和方法
    • US5233986A
    • 1993-08-10
    • US971415
    • 1992-11-04
    • Jack R. Robson
    • Jack R. Robson
    • A61N1/08A61N1/37
    • A61N1/3706A61N2001/083
    • A device and method for testing the integrity of an electrode/wire, such as a pacemaker electrode, and electrical wires connected thereto has a receptacle for an electrode and includes a time domain reflectometer comprising an output signal mechanism operatively connected to the electrode receptacle. The method of analyzing the integrity of an electrode comprises the steps of generating a time domain reflectometer (TDR) reading (output signal) from the electrode, and transmitting the signal to an output device. The output signal may be analyzed to determined whether it varies by a predetermined threshold, or it may be displayed so that differences in the electrical characteristics of the electrode may be identified. The present invention allows a cardiologist or technician to ensure that the electrode is properly engaged and to determine the integrity of the electrode.
    • 用于测试诸如起搏器电极的电极/线的完整性的装置和方法以及与其连接的电线具有用于电极的插座,并且包括时域反射计,其包括可操作地连接到电极插座的输出信号机构。 分析电极完整性的方法包括以下步骤:产生从电极读取(输出信号)的时域反射计(TDR),并将该信号传输到输出装置。 可以分析输出信号以确定其是否改变预定阈值,或者可以显示输出信号,使得可以识别电极的电特性的差异。 本发明允许心脏病专家或技术人员确保电极正确接合并确定电极的完整性。
    • 6. 发明授权
    • Responsive pacemaker with time domain reflectometer and method of use
    • 响应式起搏器采用时域反射计和使用方法
    • US5251622A
    • 1993-10-12
    • US971281
    • 1992-11-04
    • Jack R. Robson
    • Jack R. Robson
    • A61N1/08A61N1/37A61N1/362
    • A61N1/3706A61N2001/083
    • Responsive heart stimulating device and method for operating the device which includes a heart stimulating waveform generator for transmitting a waveform to an electrode. A time domain reflectometer (TDR) is also connectable to the electrode for generating TDR signals. A logic and control unit processes TDR readings from the electrode, and is adapted to alter the heart stimulating waveform in response to the TDR readings. The TDR may be connected to a pacemaker pacing electrode to detect changes in heart stroke volume or cardiac output, or to one or more probes capable of detecting motion of the patient, and the logic and control unit may adjust the pacing rate accordingly.
    • 响应性心脏刺激装置和操作该装置的方法,该装置包括用于将波形传送到电极的心脏刺激波形发生器。 时域反射计(TDR)也可连接到用于产生TDR信号的电极。 逻辑和控制单元处理来自电极的TDR读数,并且适于响应于TDR读数改变心脏刺激波形。 TDR可以连接到起搏器起搏电极以检测心搏量或心输出量的变化,或者可以检测能够检测患者运动的一个或多个探针,并且逻辑和控制单元可以相应地调节起搏速率。