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    • 72. 发明授权
    • Method for amplifying abnormal pattern signal in observed brain activity of a subject for diagnosis or treatment
    • 用于诊断或治疗受试者观察到的脑活动中异常模式信号的方法
    • US09538950B1
    • 2017-01-10
    • US13731315
    • 2012-12-31
    • NeuroWave Systems Inc.
    • Stéphane BibianTatjana ZikovMo Modarres
    • A61B5/04A61B5/00A61B5/0476A61B5/048
    • 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. Preferably, 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 yielding a seizure index directly related to the current presence of ictal activity in the signal. Additionally, 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. These indexes can be used in the context of emergency and/or clinical situations 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。 优选地,本发明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增异常脑活动,并使正常的背景活动最小化,产生与信号中目前存在的发作活动直接相关的癫痫发作指数。 另外,为了诊断目的,导出了基于上述扣押指数的历史值的缉获概率指数。 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。 这些指标可以在紧急情况和/或临床情况的情况下使用,以评估患者的大脑的状态和健康状况,或者可以在临床症状出现之前自动进行治疗以停止癫痫发作。
    • 76. 发明申请
    • HEAD BONE CONDUCTION DEVICE AND METHOD
    • 头骨传导装置和方法
    • US20160228673A1
    • 2016-08-11
    • US15025136
    • 2015-01-21
    • Kacheung CHOW
    • Kacheung CHOW
    • A61M21/00A61B5/04A61H23/00A61B5/048
    • A61M21/00A61B5/04014A61B5/048A61B5/7415A61H23/004A61H2201/1604A61H2201/1607A61H2201/5048A61H2205/02A61H2205/021A61M2021/0022A61M2021/0027A61M2205/3375H04R2460/13
    • The present disclosure relates to a head bone conduction device and method. The head bone conduction device includes: a head fixing unit, a brain wave detection connecting ends, a frequency signal generating circuit, an audio device and an audio mixer. Seven independent bone conduction units are adopted for operation, and at least one bone conduction unit is adopted for operation and is arranged at a suitable position of a head. Audio information received by the bone conduction unit is converted into mechanical vibration, thus vibration force, vibration sensation and mechanical vibration are generated simultaneously on a region of a cranial cortex. Accompanying with the ear bone mechanical vibration, a user will feel a mixed sensation including auditory and positional sense, or namely ‘third auditory’. The frequency signal generation circuit generates specific frequency signals according to detected brain wave signals to the audio mixer. The frequency signals will then be mixed with regular audio signal, whose change would be aware by the user for secondary confirmation.
    • 头骨传导装置及方法技术领域本发明涉及头部骨传导装置及方法。 头骨传导装置包括:头部固定单元,脑波检测连接端,频率信号发生电路,音频装置和音频混合器。 采用七个独立的骨传导单元进行操作,并且至少一个骨传导单元用于操作,并且布置在头部的适当位置。 由骨传导单元接收的音频信息被转换为机械振动,因此在颅脑皮质区域上同时产生振动力,振动感和机械振动。 伴随耳骨机械振动,使用者将感觉到包括听觉和位置感在内的混合感,或即“第三听觉”。 频率信号发生电路根据检测到的脑波信号产生特定频率信号给音频混频器。 然后,频率信号将与常规音频信号混合,其变化将由用户识别以进行二次确认。
    • 79. 发明授权
    • Process and device for brain computer interface
    • 大脑计算机接口的过程和设备
    • US09211078B2
    • 2015-12-15
    • US12875544
    • 2010-09-03
    • Marco Antonio MeggiolaroAlexandre Ormiga Galvao Barbosa
    • Marco Antonio MeggiolaroAlexandre Ormiga Galvao Barbosa
    • A61B5/04A61B5/048A61B5/00G06F3/01
    • A61B5/048A61B5/7203A61B5/7264G06F3/015
    • A brain computer interface as an alternative communication channel to be used in various applications, such as robotics. In one embodiment of the invention, there is provided a process for the analysis and conversion of EEG signals obtained from the brain into movement commands through electric and/or mechanical devices. The process of the present invention provides substantial advantages over the similar systems/techniques known in the art, such as a 91% average hit rate, obtained in attempts to control a mobile robot. In other embodiment of the invention, there is provided an apparatus comprising: means for obtaining brain signals; an electroencephalograph (EEG); and means for transducing said signals into functional commands useful in several applications. Said means for transducing mental signals is the core of the invention and provides a number of technical advantages over the similar systems/techniques known in the art of identifying mental activities.
    • 大脑计算机接口作为可用于各种应用中的替代通信信道,例如机器人技术。 在本发明的一个实施例中,提供了一种用于通过电和/或机械装置将从脑获得的脑电信号分析和转换为运动指令的方法。 本发明的方法提供了与本领域已知的类似系统/技术相比的实质优点,例如在试图控制移动机器人时获得的91%的平均命中率。 在本发明的其他实施例中,提供了一种装置,包括:用于获得脑信号的装置; 脑电图(EEG); 以及用于将所述信号转换成在若干应用中有用的功能命令的装置。 用于转导心理信号的所述手段是本发明的核心,并且提供了与识别心理活动的本领域已知的类似系统/技术相关的许多技术优点。