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    • 2. 发明授权
    • Seizure detector, brain dysfunction monitor and method
    • 癫痫检测仪,脑功能障碍监测仪及方法
    • US09554721B1
    • 2017-01-31
    • US12148815
    • 2008-04-23
    • Tatjana ZikovStéphane BibianMohammad Modarres
    • Tatjana ZikovStéphane BibianMohammad Modarres
    • A61B5/04A61B5/0476A61B5/048
    • A61B5/0476A61B5/0006A61B5/04001A61B5/04012A61B5/048A61B5/1128A61B5/4094A61B5/4839A61B5/721A61B5/7235A61B5/743A61N1/36064
    • The present invention relates to a brain dysfunction and seizure detector monitor and system, and a method of detecting brain dysfunction and/or seizure of a subject. The various embodiments of the system of the present invention were developed for the brain activity and preferably EEG monitoring of a single patient or multiple patients. Preferably, the system or monitor of the present invention also includes one or more seizure detection algorithms. The analysis method is specifically optimized to amplify abnormal brain activity and minimize normal background activity. This analysis yields a seizure index whose value is directly related to the current presence of ictal activity in the signal. In addition, a seizure probability index based on historical values of the aforementioned seizure index, is derived for diagnostic purposes. The seizure probability index quantifies the probability that the patient has exhibited abnormal brain activity since the beginning of the recording. The real-time seizure index, and the historical seizure probability index, can be used in the context of an emergency and/or clinical situation to assess the status and well being of a patient's brain, or can be used to automatically administer treatment to stop the seizure before clinical signs appear.
    • 本发明涉及脑功能障碍和癫痫发作检测器监测和系统,以及检测受试者脑功能障碍和/或发作的方法。 本发明的系统的各种实施方案是针对脑活动而开发的,优选地对单个患者或多个患者进行EEG监测。 优选地,本发明的系统或监视器还包括一个或多个发作检测算法。 分析方法被特别优化,以扩大异常大脑活动并最小化正常的背景活动。 该分析产生一个缉获指数,其价值与信号中当前存在的动作直接相关。 此外,基于上述扣押指数的历史值的缉获概率指数被推导出用于诊断目的。 癫痫发作概率指数量化自记录开始以来患者表现出异常脑活动的可能性。 可以在紧急情况和/或临床情况的情况下使用实时癫痫发作指数和历史发作概率指数来评估患者的大脑的状态和健康状况,或者可以用于自动管理治疗停止 临床前出现癫痫发作。
    • 10. 发明申请
    • Method and system for electrode impedance measurement
    • 电极阻抗测量方法和系统
    • US20110295096A1
    • 2011-12-01
    • US13110455
    • 2011-05-18
    • Stéphane BibianTatjana Zikov
    • Stéphane BibianTatjana Zikov
    • A61B5/04
    • A61B5/0478A61B5/053A61B5/4094A61B5/4806A61B5/4821A61B5/7203A61B5/7221
    • The present invention relates to measuring electrical impedance, and particularly to measuring impedance of electrodes used to acquire physiological signals. The measurement of electrode impedance is typically performed to ensure proper electrode-to-skin contact, and thus verify the quality of the acquired signals. Electrode-to-skin contact impedance has also clinical utility for monitoring, diagnosis, prognosis or treatment, as it can be used to measure skin conductivity, which is function of physiological processes. The present invention relates in particular to a substantially continuous method for performing such measurement. The measurement is performed in such a way that it does not affect the bioband, the range (or ranges) of frequencies that contains components used for diagnostic, prognostic, triage, and/or treatment purposes. The present invention therefore performs this impedance measurement without affecting the physiological signal while allowing for uninterrupted monitoring of said signal.
    • 本发明涉及测量电阻抗,特别涉及测量用于获取生理信号的电极的阻抗。 通常执行电极阻抗的测量以确保适当的电极对皮肤接触,并且因此验证所获取的信号的质量。 电极对皮肤接触阻抗也具有监测,诊断,预后或治疗的临床效用,因为它可用于测量皮肤电导率,这是生理过程的功能。 本发明特别涉及进行这种测量的基本连续的方法。 以不影响生物带,包含用于诊断,预后,分诊和/或治疗目的的组分的频率的范围(或范围)的方式进行测量。 因此,本发明执行该阻抗测量而不影响生理信号,同时允许不间断地监视所述信号。