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    • 4. 发明申请
    • METHOD AND SYSTEM FOR IMPROVING PROVISION OF ELECTRICAL STIMULATION
    • 提高电刺激条件的方法和系统
    • WO2017139243A1
    • 2017-08-17
    • PCT/US2017/016776
    • 2017-02-07
    • HALO NEURO, INC.
    • WINGEIER, BrettRAZEK, ShawnBABCOCK, KevinFINEBERG, AlanLOWENBERG, RichWOLBER, Patrick
    • A61N1/36A61N1/04A61N1/372
    • A61N1/36025A61N1/0456A61N1/0472A61N1/08A61N1/36031A61N1/36034A61N2001/083
    • A method and system for providing stimulation to a user, the method including: transitioning a stimulation device from a baseline state to a first impedance monitoring state; during the first impedance monitoring state, guiding, an adjustment of a position of the stimulation device at a head region of the user to satisfy a first impedance criterion; upon satisfaction of the first impedance criterion, transitioning the stimulation device from the first impedance monitoring state to a stimulation regime that comprises a second monitoring state having a second criterion; upon detection of failure to satisfy the second criterion, transitioning the stimulation device from the stimulation regime to the first impedance monitoring state; and upon detecting that a third impedance criterion of the first impedance monitoring state is satisfied, transitioning the stimulation device from the first impedance monitoring state to the stimulation regime.
    • 一种用于向用户提供刺激的方法和系统,所述方法包括:将刺激设备从基线状态转变到第一阻抗监测状态; 在所述第一阻抗监测状态期间,引导所述刺激设备在所述用户的头部区域的位置的调整以满足第一阻抗标准; 在满足所述第一阻抗标准之后,将所述刺激设备从所述第一阻抗监测状态转变到包括具有第二标准的第二监测状态的刺激机制; 在检测到不满足所述第二标准的故障时,将所述刺激设备从所述刺激状态转换到所述第一阻抗监控状态; 并且在检测到第一阻抗监测状态的第三阻抗标准被满足时,将刺激设备从第一阻抗监测状态转换到刺激方案。
    • 10. 发明申请
    • SYSTEMS AND METHOD FOR DETECTING, DIAGNOSING, AND/OR TREATMENT OF DISORDERS AND CONDITIONS
    • 用于检测,诊断和/或治疗疾病和病症的系统和方法
    • WO2016132215A1
    • 2016-08-25
    • PCT/IB2016/000222
    • 2016-02-19
    • MASDAR INSTITUTE OF SCIENCE AND TECHNOLOGY
    • YOO, JeraldALTAF, MuhammadZHANG, Chen
    • A61B5/0476A61B5/0478A61B5/04
    • A61B5/4094A61B5/0478A61B5/0531A61B5/6814A61B2560/0209A61B2562/164A61N1/36025A61N1/36064G06F19/00G16H50/20
    • A SoC includes an AFE to receive a plurality of differential input channels and generate digitized data corresponding to the channels, and a classification processor configured to receive the digitized data from the AFE. The AFE includes a Dual-Channel Chopper to perform channel multiplexing of two channels while simultaneously chopping the channels, a Dual Channel Charge Recycled-AFE having an Chopper-Stabilized Capacitive-Coupled IA including bias sampling capacitors that store bias values associated with the first and second channels to enable swapping between the channel, and a DC servo loop (DSL) having a reduced setting time based on a reduction in a resistance of the pseudo-PMOS in response to engaging a system reset. The classification processor includes a Frequency-Time Division Multiplexing (FTDM) Feature Extraction (FE) engine and a Dual-Detector Architecture (D 2 A) classification processor. The FTDM-FE includes a plurality of FIFOs configured to store, in parallel, the digitized data corresponding to the channels, a plurality of BPF banks storing BPF coefficients, and a single BPF to calculate outputs of one specific bank of the BFP banks for all of the channels. The D 2 A processor receives the output from the FTDM-FE and estimates a beginning and end of a seizure using two LSVMs optimized for only sensitivity and specificity, respectively.
    • SoC包括AFE以接收多个差分输入通道并生成与通道相对应的数字化数据,以及分类处理器,被配置为从AFE接收数字化数据。 AFE包括双通道斩波器,用于在同时斩波通道的同时切断两个通道的信道复用,具有斩波稳定电容耦合IA的双通道充电回收AFE,其包括偏置采样电容器,其存储与第一和第二通道相关联的偏置值 第二通道,用于能够响应于接合系统复位而基于模拟PMOS的电阻的降低,使得能够在通道之间进行交换和具有减小的设置时间的DC伺服环路(DSL)。 分类处理器包括频分复用(FTDM)特征提取(FE)引擎和双检测器架构(D2A)分类处理器。 FTDM-FE包括多个FIFO,其被配置为并行存储对应于信道的数字化数据,存储BPF系数的多个BPF组和单个BPF,以计算所有BFP组的一个特定组的输出 的渠道。 D2A处理器接收FTDM-FE的输出,并分别使用针对灵敏度和特异性优化的两个LSVM来估计癫痫发作的开始和结束。