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    • 23. 发明授权
    • Information processing device, information processing method, and information processing program
    • 信息处理装置,信息处理方法和信息处理程序
    • US09411503B2
    • 2016-08-09
    • US12487995
    • 2009-06-19
    • Takuo IkedaSatoshi AkagawaSatoshi AsaiTakashi KitaoDan LiKazuto MuguraMakoto Nishimura
    • Takuo IkedaSatoshi AkagawaSatoshi AsaiTakashi KitaoDan LiKazuto MuguraMakoto Nishimura
    • G06F3/041G06F3/0488
    • G06F3/04883
    • An information processing device includes: a main unit to be held; a display unit provided on the main unit such that an information display screen is positioned on a front face thereof, to display information on the information display screen; a touch position detection unit to detect a touch position on the information display screen, and generate touch position detection data represented in terms of coordinates based on two axes intersecting at the detected touch position; and a control unit to display predetermined information on the information display screen, in the event of detecting that the touch position on the information display screen is being continually displaced from within a predetermined region on the information display screen in a predetermined first diagonal direction as to two directions following the two axes, based on the touch position detection data generated by the touch position detection unit.
    • 一种信息处理装置,包括:待保持的主单元; 显示单元,设置在主单元上,使得信息显示屏幕位于其正面上,以在信息显示屏幕上显示信息; 触摸位置检测单元,用于检测所述信息显示屏幕上的触摸位置,并且生成基于与所检测的触摸位置相交的两个轴线的坐标表示的触摸位置检测数据; 以及控制单元,用于在检测到信息显示屏幕上的触摸位置在预定的第一对角线方向上在信息显示屏幕上的预定区域内不断地移位的情况下,在信息显示屏幕上显示预定信息,以及 基于由触摸位置检测单元生成的触摸位置检测数据,沿着两个轴的两个方向。
    • 27. 发明授权
    • Sensor response delay for hemodynamic stability detection during arrhythmia
    • 心律失常期间血液动力学稳定性检测的传感器响应延迟
    • US08812102B2
    • 2014-08-19
    • US13467695
    • 2012-05-09
    • Dan LiAmy Jean Brisben
    • Dan LiAmy Jean Brisben
    • A61N1/39A61N1/365
    • A61N1/36507A61N1/36578A61N1/36585A61N1/3956
    • An apparatus comprises a cardiac signal sensing circuit, a physiologic sensor circuit configured to provide a physiologic sensor signal representative of mechanical cardiac activity, a therapy circuit, and a control circuit. The control circuit includes a cardiac depolarization detection circuit, a tachyarrhythmia detection circuit, and a timer circuit. A time interval between a mechanical cardiac event and a detected fiducial electrical cardiac event is monitored. The control circuit is configured to correct the monitored time interval for variation with heart rate to form a corrected electromechanical time interval, initiate anti-tachyarrhythmia therapy when the corrected electromechanical time interval satisfies a specified time interval threshold value during a detected episode of tachyarrhythmia, and withhold anti-tachyarrhythmia therapy otherwise.
    • 一种装置包括心脏信号感测电路,生理传感器电路,其被配置为提供表示机械心脏活动的生理传感器信号,治疗电路和控制电路。 控制电路包括心脏去极化检测电路,快速心律失常检测电路和定时器电路。 监测机械心脏事件与检测到的基准电心脏事件之间的时间间隔。 控制电路被配置为校正所监视的心率变化的时间间隔,以形成校正的机电时间间隔,当校正的机电时间间隔在检测到的快速性心律失常发作期间满足规定的时间间隔阈值时启动抗慢性心律失常治疗,以及 否则禁止抗快速性心律失常治疗。
    • 30. 发明授权
    • Automatic multi-level therapy based on morphologic organization of an arrhythmia
    • 基于心律失常形态组织的自动多级疗法
    • US08583228B2
    • 2013-11-12
    • US13048582
    • 2011-03-15
    • Dan LiYayun Lin
    • Dan LiYayun Lin
    • A61N1/00
    • A61N1/3622A61B5/04525A61B5/0464A61N1/36585A61N1/3962
    • Methods and systems for selecting tachyarrhythmia therapy based on the morphological organization level of the arrhythmia are described. Morphological organization levels of arrhythmias are associated with cardiac therapies. The morphological organization levels are related to cardiac signal morphologies of the arrhythmias. An arrhythmia episode is detected and the morphological organization level of the arrhythmia episode is determined. A cardiac therapy associated with the morphological organization level of the arrhythmia episode is delivered to treat the arrhythmia. For example, the morphological organization levels may be associated with the cardiac therapies based on one or more of retrospective database analysis, patient therapy tolerance, and physician input. The associations may be static or may be dynamically adjusted based on therapy efficacy.
    • 描述了基于心律失常形态组织水平选择快速性心律失常治疗的方法和系统。 心律失常的形态学组织水平与心脏治疗有关。 形态组织水平与心律失常的心脏信号形态有关。 检测到心律失常发作,确定心律失常发作的形态组织水平。 与心律失常发作的形态组织水平相关的心脏治疗被递送以治疗心律失常。 例如,形态组织水平可以基于回顾性数据库分析,患者治疗耐受性和医师输入中的一种或多种与心脏疗法相关联。 协会可以是静态的,或者可以基于治疗功效来动态调整。