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    • 2. 发明申请
    • CROSS-CHANNEL NOISE DETECTOR IN IMPLANTABLE DEVICES
    • 交叉通道噪声检测器在可移植设备中
    • WO2010090896A1
    • 2010-08-12
    • PCT/US2010/022028
    • 2010-01-26
    • CARDIAC PACEMAKERS, INC.LI, DanPERSCHBACHER, David, L.
    • LI, DanPERSCHBACHER, David, L.
    • A61N1/37A61N1/08
    • A61N1/3704A61N1/3718A61N1/3925
    • An apparatus comprises a primary cardiac signal sensing circuit to sense a first cardiac signal, a secondary cardiac signal sensing to sense a second cardiac signal, and an arrhythmia detection circuit. The primary sensing circuit includes at least first and second implantable electrodes, and the secondary sensing circuit includes a third implantable electrode to deliver high-energy shock therapy. The arrhythmia detection circuit detects tachyarrhythmia using the primary sensing circuit, determines correspondence between events sensed with the primary sensing circuit and events sensed with the secondary sensing circuit, and deems whether a detected rhythm is indicative of noise or is indicative of an arrhythmia according to the determined correspondence.
    • 一种装置包括用于感测第一心脏信号的主要心脏信号感测电路,感测第二心脏信号的次要心脏信号感测和心律失常检测电路。 主感测电路至少包括第一和第二可植入电极,并且次级感测电路包括用于输送高能量休克疗法的第三可植入电极。 心律失常检测电路使用主感测电路检测快速性心律失常,确定用主感测电路感测的事件与由次级感测电路感测的事件之间的对应关系,并且考虑检测到的节奏是指示噪声还是指示心律失常根据 确定的信件。
    • 10. 发明申请
    • HIGH-ENERGY ANTI-TACHYCARDIA THERAPY
    • 高能量抗惊厥药治疗
    • WO2009126642A2
    • 2009-10-15
    • PCT/US2009/039798
    • 2009-04-07
    • CARDIAC PACEMAKERS, INCSHUROS, Allan, CharlesARCOT-KRISHNAMURTHY, ShanthaLI, Dan
    • SHUROS, Allan, CharlesARCOT-KRISHNAMURTHY, ShanthaLI, Dan
    • A61N1/39A61N1/365
    • A61N1/3621A61N1/3906
    • A solution for performing a data correction on a hierarchical integrated circuit layout is provided. A method includes: receiving a CD compensation map for the long range critical dimension variation prior to the data correction; grouping compensation amounts of the CD compensation into multiple compensation ranges; generating multiple target layers corresponding to the multiple compensation ranges; super-imposing a region of the CD compensation map having a compensation amount falling into a compensation range over a respective target layer to generate a target shape; performing the data correction on the layout to generate a data corrected layout; performing the data correction on the target shape separately to generate a data corrected target shape; and combining the data corrected layout and the data corrected target shape based on the CD compensation map.
    • 提供了一种用于在分层集成电路布局上执行数据校正的解决方案。 一种方法包括:在数据校正之前接收用于长距离临界尺寸变化的CD补偿图; 将CD补偿的补偿量分组为多个补偿范围; 产生对应于多个补偿范围的多个目标层; 超级CD补偿图的区域具有落在相应目标层上的补偿范围内的补偿量以产生目标形状; 在布局上执行数据校正以生成数据校正布局; 分别对目标形状进行数据校正,生成数据校正对象形状; 并且基于CD补偿图组合数据校正布局和数据校正目标形状。