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    • 3. 发明申请
    • CARDIAC DECOMPENSATION DETECTION USING MULTIPLE SENSORS
    • 使用多个传感器的心脏分解检测
    • US20120157864A1
    • 2012-06-21
    • US13324174
    • 2011-12-13
    • Pramodsingh Hirasingh ThakurAbhilash Patangay
    • Pramodsingh Hirasingh ThakurAbhilash Patangay
    • A61B5/02
    • A61B5/0538A61B5/036A61B5/0809A61N1/36521A61N1/36535G06F19/00
    • Physiological data, such as thoracic impedance data, can be obtained over a first time window to establish a baseline, or can be used to form one or more data clusters. Additional physiological data, such as thoracic impedance test data acquired over a later time window, can be obtained and compared to the baseline or data clusters to determine an indication of worsening heart failure. In an example, a quantitative attribute of one or more data clusters can be monitored and used to provide an indication of worsening heart failure. A posture discrimination metric can be obtained, such as using the physiological data obtained over the first time window. The additional physiological data, such as can be obtained over a second time window, can be compared to the posture discrimination metric to provide a patient posture status.
    • 可以在第一时间窗口中获得诸如胸部阻抗数据的生理数据以建立基线,或者可以用于形成一个或多个数据簇。 可以获得额外的生理数据,例如在稍后时间窗口上获取的胸部阻抗测试数据,并与基线或数据簇进行比较,以确定心脏衰竭恶化的指示。 在一个示例中,可以监视一个或多个数据集群的定量属性并用于提供恶化的心力衰竭的指示。 可以获得姿势辨别度量,例如使用在第一时间窗口中获得的生理数据。 可以将诸如在第二时间窗口上获得的附加生理数据与姿势辨别度量进行比较以提供患者姿势状态。
    • 4. 发明授权
    • Cardiac decompensation detection using multiple sensors
    • 使用多个传感器进行心脏代偿失调检测
    • US08821404B2
    • 2014-09-02
    • US13324174
    • 2011-12-13
    • Pramodsingh Hirasingh ThakurAbhilash Patangay
    • Pramodsingh Hirasingh ThakurAbhilash Patangay
    • A61B5/02A61B5/08A61B5/053A61N1/365A61B5/03
    • A61B5/0538A61B5/036A61B5/0809A61N1/36521A61N1/36535G06F19/00
    • Physiological data, such as thoracic impedance data, can be obtained over a first time window to establish a baseline, or can be used to form one or more data clusters. Additional physiological data, such as thoracic impedance test data acquired over a later time window, can be obtained and compared to the baseline or data clusters to determine an indication of worsening heart failure. In an example, a quantitative attribute of one or more data clusters can be monitored and used to provide an indication of worsening heart failure. A posture discrimination metric can be obtained, such as using the physiological data obtained over the first time window. The additional physiological data, such as can be obtained over a second time window, can be compared to the posture discrimination metric to provide a patient posture status.
    • 可以在第一时间窗口中获得诸如胸部阻抗数据的生理数据以建立基线,或者可以用于形成一个或多个数据簇。 可以获得额外的生理数据,例如在稍后时间窗口上获取的胸部阻抗测试数据,并与基线或数据簇进行比较,以确定心脏衰竭恶化的指示。 在一个示例中,可以监视一个或多个数据集群的定量属性并用于提供恶化的心力衰竭的指示。 可以获得姿势辨别度量,例如使用在第一时间窗口中获得的生理数据。 可以将诸如在第二时间窗口上获得的附加生理数据与姿势辨别度量进行比较以提供患者姿势状态。
    • 5. 发明申请
    • WIDE QRS DETECTOR
    • 宽QRS检测器
    • US20120310101A1
    • 2012-12-06
    • US13472563
    • 2012-05-16
    • Abhilash PatangayShibaji ShomePramodsingh Hirasingh ThakurDan LiStevens L. Martin
    • Abhilash PatangayShibaji ShomePramodsingh Hirasingh ThakurDan LiStevens L. Martin
    • A61B5/0472
    • A61B5/0472A61B5/0031A61B5/0452A61B5/7239A61N1/3627A61N1/36507A61N1/37
    • A system comprises a cardiac signal sensing circuit and a processor circuit. To detect a QRS duration, the processor circuit determines an isoelectric amplitude value of the cardiac signal segment, identifies a time where the cardiac signal segment amplitude deviates from the first isoelectric amplitude value by a specified threshold deviation value as a Q time, determines an isoelectric value time after the determined maxima and minima times that the cardiac signal segment returns to the same or a different isoelectric amplitude value, identifies a time that follows both the determined maxima and minima times and precedes the isoelectric value time as an S time, wherein the cardiac signal segment amplitude at the identified S time satisfies a specified amplitude change criterion from an isoelectric amplitude value, and determines a time duration of the QRS complex in the cardiac signal segment using the identified Q and S times.
    • 一种系统包括心脏信号感测电路和处理器电路。 为了检测QRS持续时间,处理器电路确定心脏信号片段的等电位振幅值,将心脏信号片段振幅与第一等电位振幅值偏离指定阈值偏差值的时间作为Q时间,确定等电点 确定心脏信号段返回到相同或不同等电位振幅值的确定最大值和最小值之后的值时间,识别在确定的最大值和最小值时间之后的时间,并且在等电点时间之前等于S时间,其中 在所识别的S时刻的心脏信号段振幅满足来自等电位振幅值的规定的振幅变化标准,并且使用所识别的Q和S倍来确定心脏信号段中的QRS复合物的持续时间。