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    • 1. 发明申请
    • System and Method for Neurometric Analysis
    • 系统与方法进行神经测量分析
    • US20090312663A1
    • 2009-12-17
    • US12139228
    • 2008-06-13
    • Erwin R. JohnLeslie S. PrichepRobert IsenhartDavid Cantor
    • Erwin R. JohnLeslie S. PrichepRobert IsenhartDavid Cantor
    • A61B5/0476G06Q50/00
    • A61B5/0476A61B5/0484A61B5/16G06Q50/24
    • A system, comprises a plurality of neurometric analyzing software modules operating on electroencephalogram (EEG) data, each module performing a defined task with respect to neurometric analysis of the EEG data and a database including normative neurometric data in combination with a server including an authorization module, the authorization module comparing data received from a remote user to determine whether the user is authorized to utilize any of the plurality of analyzing software modules and an analysis module configured to receive input data from a patient and select one of the neurometric analyzing modules based on the input data, wherein the selected one of the neurometric analyzing modules compares the input data to the normative neurometric data to generate an output, the analysis module selecting the one of neurometric analyzing modules from a set of subscribed neurometric analyzing modules.
    • 一种系统,包括对脑电图(EEG)数据进行操作的多个神经测量分析软件模块,每个模块执行关于EEG数据的神经测量分析的定义任务,以及包括规范性神经测量数据的数据库,包括与包括授权模块 所述授权模块将从远程用户接收的数据进行比较,以确定所述用户是否被授权使用所述多个分析软件模块中的任何一个;以及分析模块,其被配置为从患者接收输入数据,并且基于所述神经测量分析模块 所述输入数据,其中所述神经测量分析模块中的所选择的一个将所述输入数据与所述规范性神经测量数据进行比较以生成输出,所述分析模块从一组订阅的神经测量分析模块中选择所述神经测量分析模块中的一个。
    • 6. 发明授权
    • System and method for guidance of anesthesia, analgesia and amnesia
    • US07089927B2
    • 2006-08-15
    • US10279131
    • 2002-10-23
    • Erwin R. JohnLeslie S. Prichep
    • Erwin R. JohnLeslie S. Prichep
    • A61M15/00
    • A61B5/4821A61B5/01A61B5/02028A61B5/021A61B5/024A61B5/04012A61B5/048A61B5/04845A61B5/08A61B5/4839A61B5/7225A61B5/7257A61B5/7275A61B5/7405A61B5/742A61B5/7455A61B5/746A61M5/00A61M5/1407A61M5/142A61M5/1723A61M16/01A61M16/06A61M16/0683A61M16/12A61M16/18A61M16/201A61M2016/0661A61M2202/048A61M2210/0618A61M2230/10
    • A method for monitoring anesthetization of a patient, includes the steps of removably connecting a plurality of electrodes to the scalp of the patient and administering sufficient anesthesia to the patient so that the patient attains a plane of anesthesia selected by an operator. The brain waves of the patient are then amplified and digitized after the patient has been anesthetized, before beginning the medical procedure, to obtain a first set of digital data. The brain waves of the patient are then amplified and digitized during the medical procedure to provide a second set of digital data and the first and second sets of digital data are analyzed in at least one of a time domain and a frequency domain. Separate trajectories are then computed from the data analysis trajectories for at least two different indices of an anesthetic state of the patient during the medical procedure, the indices being selected from a group including a Depth Index (DI), a Memory Index (MI) and a Pain Index (PI). A system for providing anesthesia to a patient, includes a plurality of electrodes, a first arrangement allowing an operator to administer anesthesia to the patient until the patient has attained a selected plane of anesthesia and a second arrangement coupled to the electrodes for amplifying and digitizing brain waves of the patient after the patient has been anesthetized, before the medical procedure has been begun to obtain a first set of digital data, the second arrangement amplifying and digitizing ongoing brain waves of the patient during the medical procedure to provide a second set of digital data in combination with a third arrangement analyzing the first and second sets of digital data in at least one of a time domain and a frequency domain, a fourth arrangement computing from the data analysis separate trajectories for at least two different indices of a state of the patient during the medical procedure, the indices being selected from a group including a Depth Index (DI), a Memory Index (MI) and a Pain Index (PI), a fifth arrangement providing control signals when any of the trajectories indicates that the patient is deviating from the selected plane of anesthesia and a sixth arrangement automatically adjusting two different anesthetic agents administered to the patient based on the control signal to restore the patient to the selected plane of anesthesia.
    • 10. 发明授权
    • System and method for fetal brain monitoring
    • 胎儿脑部监测系统与方法
    • US07016722B2
    • 2006-03-21
    • US10377967
    • 2003-02-28
    • Leslie S. Prichep
    • Leslie S. Prichep
    • A61B5/04
    • A61B5/0476A61B5/048A61B5/04845A61B5/7203A61B5/7207A61B5/7257A61B5/726A61B2503/02A61N1/36014Y10S607/902
    • A system for monitoring a brain wave response of a fetus in utero, comprises removably connecting an auditory transducer, including at least one biosensor electrode, producing pulsed auditory sounds to a mother's abdomen to detect brain wave activity in a fetus. The transducer is pulsed with one of rectangular waves and tone pips of a selected frequency to emit pulsed audible sounds at predetermined times. The at least one biosensor electrode, including connected amplifier, detects brain stem auditory responses (BAER) of the fetus. For each pulsed audible sound a series of voltage oscillations corresponding to BAER of the fetus are time-locked to the corresponding audible sound. BAER analog output is converted to BAER digital data. A computer-based QEEG (Quantitative EEG) system improves a signal to noise ratio of the BAER digital data using an adaptive optimum filtering algorithm and analyzes the BAER digital data relative to a reference database.
    • 一种用于监测子宫内胎儿的脑波响应的系统,包括可移除地连接包括至少一个生物传感器电极的听觉换能器,产生脉冲听觉声音到母亲的腹部以检测胎儿中的脑波活动。 传感器用选定频率的矩形波和音调点之一脉冲,以在预定时间发射脉冲的可听见的声音。 包括连接的放大器的至少一个生物传感器电极检测胎儿的脑干听觉反应(BAER)。 对于每个脉冲可听声音,对应于胎儿的BAER的一系列电压振荡被时间锁定到相应的可听见的声音。 BAER模拟输出转换为BAER数字数据。 基于计算机的QEEG(定量脑电图)系统使用自适应最优滤波算法提高了BAER数字数据的信噪比,并分析了相对于参考数据库的BAER数字数据。