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    • 4. 发明授权
    • Multi-chamber pacing system
    • 多室起搏系统
    • US07089058B2
    • 2006-08-08
    • US10813776
    • 2004-03-31
    • Sven-Erik HedbergAnders BjörlingNils HolmströmKarin Järverud
    • Sven-Erik HedbergAnders BjörlingNils HolmströmKarin Järverud
    • A61N1/368
    • A61N1/3702A61N1/3684
    • A multi-chamber pacing system has a pulse generator for successively delivering pacing pulses to chambers of a patient's heart. Evoked response detectors having blanking intervals following the delivery of pacing pulses include sensing elements for sensing IEGM-signals from each of the heart chambers and an integrating unit that integrates the IEGM-signal within evoked response detection time windows after delivery of pacing pulses for detecting evoked response. The evoked response detection time window for a heart chamber contain at least one blanking interval resulting from delivery of a pacing pulse to another chamber and each of the sensed IEGM signals having a generally known morphology. An integral reconstructing unit reconstructs the time integral of the IEGM signal from one of the heart chambers in the blanking interval following delivery of a pacing pulse to another heart chamber.
    • 多室起搏系统具有脉冲发生器,用于连续地向患者心脏的腔室输送起搏脉冲。 在递送起搏脉冲之后具有消隐间隔的诱发响应检测器包括用于感测来自每个心室的IEGM信号的感测元件和在递送用于检测诱发的起搏脉冲之后的诱发响应检测时间窗口内积分IEGM信号的积分单元 响应。 心室的诱发反应检测时间窗口包含至少一个消隐间隔,其由将起搏脉冲递送到另一个腔室而产生,每个感测的IEGM信号具有通常已知的形态。 整体重建单元在将起搏脉冲递送到另一个心室之后的消隐间隔中的一个心室重建IEGM信号的时间积分。
    • 6. 发明授权
    • Identification of pacing site
    • 鉴定起搏部位
    • US08620432B2
    • 2013-12-31
    • US13171952
    • 2011-06-29
    • Sven-Erik HedbergNils HolmströmJohn GustafssonAndreas BlomqvistAndreas Karlsson
    • Sven-Erik HedbergNils HolmströmJohn GustafssonAndreas BlomqvistAndreas Karlsson
    • A61N1/00
    • A61N1/3686A61N1/36521
    • An implantable medical device applies an electric signal over two electrodes and measures the resulting electric signal over a candidate pair of neighboring electrodes on a lead for a first heart ventricle or over a candidate electrode of the lead and a case electrode. An impedance signal is determined for each candidate pair or electrode based on the applied signal and the measured resulting signal. A time difference between start of contraction in a second ventricle and the timing of local myocardial contraction as identified from the impedance signal at the site of the candidate pair or electrode is determined for each candidate pair or electrode. An optimal pacing electrode is selected to correspond to one of the electrodes of the candidate pair having the largest time difference or the candidate electrode having largest time difference.
    • 可植入医疗装置在两个电极上施加电信号,并且通过在第一心室的引线上或在引线的候选电极和外壳电极上的相邻电极的候选对测量所得到的电信号。 基于所施加的信号和测得的结果信号,为每个候选对或电极确定阻抗信号。 针对每个候选对或电极确定从候选对或电极的位置处的阻抗信号识别的第二心室的收缩开始与局部心肌收缩的定时之间的时间差。 选择最佳起搏电极以对应于具有最大时间差的候选对的电极之一或具有最大时间差的候选电极。
    • 7. 发明申请
    • IDENTIFICATION OF PACING SITE
    • 鉴定场地
    • US20120004700A1
    • 2012-01-05
    • US13171952
    • 2011-06-29
    • Sven-Erik HedbergNils HolmströmJohn GustafssonAndreas BlomqvistAndreas Karlsson
    • Sven-Erik HedbergNils HolmströmJohn GustafssonAndreas BlomqvistAndreas Karlsson
    • A61N1/368
    • A61N1/3686A61N1/36521
    • An implantable medical device applies an electric signal over two electrodes and measures the resulting electric signal over a candidate pair of neighboring electrodes on a lead for a first heart ventricle or over a candidate electrode of the lead and a case electrode. An impedance signal is determined for each candidate pair or electrode based on the applied signal and the measured resulting signal. A time difference between start of contraction in a second ventricle and the timing of local myocardial contraction as identified from the impedance signal at the site of the candidate pair or electrode is determined for each candidate pair or electrode. An optimal pacing electrode is selected to correspond to one of the electrodes of the candidate pair having the largest time difference or the candidate electrode having largest time difference.
    • 可植入医疗装置在两个电极上施加电信号,并且通过在第一心室的引线上或在引线的候选电极和外壳电极上的相邻电极的候选对测量所得到的电信号。 基于所施加的信号和测得的结果信号,为每个候选对或电极确定阻抗信号。 针对每个候选对或电极确定从候选对或电极的位置处的阻抗信号识别的第二心室的收缩开始与局部心肌收缩的定时之间的时间差。 选择最佳起搏电极以对应于具有最大时间差的候选对的电极之一或具有最大时间差的候选电极。