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    • 4. 发明申请
    • APPARATUS AND METHOD TO OPTIMIZE PACING PARAMETERS
    • 优化PAC参数的装置和方法
    • US20130079839A1
    • 2013-03-28
    • US13603418
    • 2012-09-05
    • Jie LianVolker LangHannes KraetschmerDirk Muessig
    • Jie LianVolker LangHannes KraetschmerDirk Muessig
    • A61N1/365
    • A61N1/3627A61B5/0402A61N1/36521A61N1/3682A61N1/3684A61N1/3686
    • The present disclosure refers to a heart stimulator comprising a stimulation control unit, a stimulation unit, an impedance measurement unit and an impedance evaluation unit. The stimulation control unit is operatively connected to the stimulation unit to control timing of stimulation pulses by said stimulation unit. The impedance measurement unit is configured to determine an impedance signal reflecting intracardiac impedance. The impedance evaluation unit is operatively connected to the impedance measurement unit and to the stimulation control unit and is configured to evaluate the impedance signal so as to determine an isovolumic contraction time, an isovolumic relaxation time, an ejection time and a filling time from said impedance signal. The stimulation control unit is further configured to control timing of stimulation pulses depending on a performance index.
    • 本公开涉及包括刺激控制单元,刺激单元,阻抗测量单元和阻抗评估单元的心脏刺激器。 刺激控制单元可操作地连接到刺激单元以控制所述刺激单元的刺激脉冲的定时。 阻抗测量单元被配置为确定反映心内阻抗的阻抗信号。 阻抗评估单元可操作地连接到阻抗测量单元和刺激控制单元,并被配置为评估阻抗信号,以便确定等容收缩时间,等容弛豫时间,喷射时间和来自所述阻抗的填充时间 信号。 刺激控制单元还被配置为根据性能指标来控制刺激脉冲的定时。
    • 5. 发明授权
    • Heart monitoring system and method
    • 心脏监测系统及方法
    • US08175709B2
    • 2012-05-08
    • US11668491
    • 2007-01-30
    • Jie LianHannes KraetschmerDirk Muessig
    • Jie LianHannes KraetschmerDirk Muessig
    • A61N1/362
    • A61B5/04017A61B5/0402A61B5/04525A61B5/7232
    • A system for heart monitoring comprises an IEGM input for an intracardiac electrocardiogram (IEGM) that is connected to an active filtering stage that is adapted to transform an incoming IEGM into an output ECG signal. The active filtering stage is connected to a filter characterization stage that is adapted to process a recorded, patient specific IEGM template and a corresponding SECG template and to adapt the filter characteristics of said active filtering stage such that the filter characteristics best characterize the input-output relationship between the IEGM template and the corresponding SECG template. As a consequence, the active filtering stage is adapted to transform an incoming IEGM such that the output ECG signal closely resembles a morphology of a corresponding SECG.
    • 用于心脏监测的系统包括用于心内心电图(IEGM)的IEGM输入,其连接到适用于将输入的IEGM变换为输出ECG信号的有源滤波级。 有源滤波级连接到滤波器表征阶段,其适于处理记录的,患者特异性IEGM模板和对应的SECG模板,并适应所述有源滤波级的滤波器特性,使得滤波器特性最好地表征输入 - 输出 IEGM模板与相应的SECG模板之间的关系。 因此,有源滤波阶段适于变换输入的IEGM,使得输出的ECG信号非常类似于对应的SECG的形态。
    • 7. 发明授权
    • Apparatus and method to optimize pacing parameters
    • 优化起搏参数的装置和方法
    • US08843198B2
    • 2014-09-23
    • US13603418
    • 2012-09-05
    • Jie LianVolker LangHannes KraetschmerDirk Muessig
    • Jie LianVolker LangHannes KraetschmerDirk Muessig
    • A61N1/368A61B5/04A61N1/365A61N1/362A61B5/0402
    • A61N1/3627A61B5/0402A61N1/36521A61N1/3682A61N1/3684A61N1/3686
    • The present disclosure refers to a heart stimulator comprising a stimulation control unit, a stimulation unit, an impedance measurement unit and an impedance evaluation unit. The stimulation control unit is operatively connected to the stimulation unit to control timing of stimulation pulses by said stimulation unit. The impedance measurement unit is configured to determine an impedance signal reflecting intracardiac impedance. The impedance evaluation unit is operatively connected to the impedance measurement unit and to the stimulation control unit and is configured to evaluate the impedance signal so as to determine an isovolumic contraction time, an isovolumic relaxation time, an ejection time and a filling time from said impedance signal. The stimulation control unit is further configured to control timing of stimulation pulses depending on a performance index.
    • 本公开涉及包括刺激控制单元,刺激单元,阻抗测量单元和阻抗评估单元的心脏刺激器。 刺激控制单元可操作地连接到刺激单元以控制所述刺激单元的刺激脉冲的定时。 阻抗测量单元被配置为确定反映心内阻抗的阻抗信号。 阻抗评估单元可操作地连接到阻抗测量单元和刺激控制单元,并被配置为评估阻抗信号,以便确定等容收缩时间,等容弛豫时间,喷射时间和来自所述阻抗的填充时间 信号。 刺激控制单元还被配置为根据性能指标来控制刺激脉冲的定时。
    • 8. 发明授权
    • Heart stimulating system
    • 心脏刺激系统
    • US08064998B2
    • 2011-11-22
    • US11863375
    • 2007-09-28
    • Xin GoodDavid F. HastingsHannes KraetschmerDirk Muessig
    • Xin GoodDavid F. HastingsHannes KraetschmerDirk Muessig
    • A61N1/00
    • A61N1/3702A61B5/0422A61B5/0452A61B5/053A61B5/0816A61B5/11A61B5/145A61N1/368A61N1/3682
    • Heart stimulating system for stimulating at least a ventricle of a heart including: stimulation pulse generator adapted to generate stimulation pulses and connected to a ventricular stimulation electrode for delivering stimulation pulses, atrial sensing stage connected to an electrode for picking up potentials inside an atrium and adapted to sense an excitation or contraction of atrial myocardium, ventricular sensing stage connected to an electrode for picking up potentials inside a ventricle and adapted to sense an excitation or contraction of ventricular myocardium, memory for AV-delay values, a control unit adapted to trigger said stimulation pulse generator to generate ventricular stimulation pulses timed based on AV-delay values stored in said memory and to acquire atrioventricular interval samples, and atrioventricular interval timing analyzing unit for receiving atrioventricular interval samples from said control unit and adapted to generate at least one histogram based on said atrioventricular interval samples and analyze said histograms.
    • 用于刺激至少一个心脏心室的心脏刺激系统,包括:刺激脉冲发生器,其适于产生刺激脉冲并连接到心室刺激电极以传递刺激脉冲,心房感测级连接到电极,用于拾取心房内的电位并适应 感测心房心肌的激发或收缩,心室感测阶段连接到电极,用于拾取心室内的电位并且适于感测心室心肌的激发或收缩,用于AV延迟值的记忆,适于触发所述 刺激脉冲发生器,以产生基于存储在所述存储器中的AV延迟值定时并获取房室间隔样本的心室刺激脉冲,以及房室间隔定时分析单元,用于从所述控制单元接收房室间隔样本,并适于生成至少一个基于直方图 就说 房室间隔采样并分析所述直方图。
    • 10. 发明授权
    • Monitoring system for sleep disordered breathing
    • 睡眠呼吸障碍监测系统
    • US08718751B2
    • 2014-05-06
    • US11746156
    • 2007-05-09
    • David F. HastingsXin GoodHannes KraetschmerDirk Muessig
    • David F. HastingsXin GoodHannes KraetschmerDirk Muessig
    • A61B5/08A61B5/04A61B5/053A61B5/085
    • A61N1/36521A61B5/0535A61B5/0809A61B5/4818A61N1/36114A61N1/36542A61N1/36585
    • A heart monitoring system comprises a ventricular sensing stage sensing excitation or contraction of ventricular myocardium, an activity sensor unit determining a signal reflecting a patient's physical activity, a ventricular impedance or conductance measuring module, said modules comprising a current source unit adapted to provide a sub-threshold excitation current to the myocardium and comprising an impedance or conductance measurement unit for measuring the resulting voltage on said electrode at the myocardium, a signal generator module, a filter module, a memory, a control unit adapted to derive single measures |ΣZ| of magnitude of impedance or conductance change over a preset sample time interval, determine the variability TARVI in the impedance or conductance change, compare this variability and the activity sensor output signal with a threshold and recent history, determine if sleep disturbed breathing (SDB) is present, and log the SDB episode in the memory device.
    • 心脏监测系统包括心室感测阶段感测心室心肌的激发或收缩,活动传感器单元确定反映患者身体活动的信号,心室阻抗或电导测量模块,所述模块包括电流源单元,其适于提供子 并且包括用于测量心肌上的所述电极上产生的电压的阻抗或电导测量单元,信号发生器模块,滤波器模块,存储器,适于导出单个测量的控制单元。 Z | 在预设的采样时间间隔内测量阻抗或电导变化的大小,确定阻抗或电导变化中的变异性TARVI,将该变异性和活动传感器输出信号与阈值和最近历史进行比较,确定睡眠扰动呼吸(SDB)是否为 呈现并记录SDB剧集在内存设备中。