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    • 3. 发明申请
    • FASTENER FOR A FLEXIBLE DISPLAY SYSTEM
    • 用于柔性显示系统的紧固件
    • WO2008006004A1
    • 2008-01-10
    • PCT/US2007/072789
    • 2007-07-03
    • ELEMENT LABS, INC.HOCHMAN, JeremyMADDOX, JeffTHORJUSSEN, NilsVARRIN, ChristopherWARD, Matthew
    • HOCHMAN, JeremyMADDOX, JeffTHORJUSSEN, NilsVARRIN, ChristopherWARD, Matthew
    • G09F13/22
    • G09F19/22G09F9/301G09F9/33G09F27/00
    • A display unit, a display system, and a method of manufacturing thereof are disclosed. The display unit includes a first substrate and a second substrate attached to the first substrate to form a cavity between the substrates. A pixel is then disposed within the cavity and is configured to receive an electrical signal and power. The display system includes a plurality of display units having a first substrate with edges and a plurality of pixels disposed upon the first substrate. At least one edge of at least one of the display units is configured to removably attach to another edge of an adjacent display unit. The method includes providing a first and second substrate, and a pixel, attaching the first and second substrates together to form a cavity therebetween, and disposing a pixel within the cavity. The pixel is configured to receive an electrical signal and power.
    • 公开了显示单元,显示系统及其制造方法。 显示单元包括第一基板和附接到第一基板的第二基板,以在基板之间形成空腔。 然后将像素设置在空腔内并且被配置为接收电信号和电力。 显示系统包括多个显示单元,其具有带有边缘的第一基板和设置在第一基板上的多个像素。 至少一个显示单元的至少一个边缘被配置为可移除地附接到相邻显示单元的另一个边缘。 该方法包括提供第一和第二基板以及将第一和第二基板连接在一起以在其间形成空腔并在空腔内设置像素的像素。 像素被配置为接收电信号和电力。
    • 6. 发明申请
    • GAMING SYSTEM HAVING PROGRESSIVE JACKPOTS FLEXIBLY LINKED WITH COMMON PROGRESSIVE POOL
    • 具有伸缩夹克的游戏系统灵活连接到普通游泳池
    • WO2008133849A1
    • 2008-11-06
    • PCT/US2008/005025
    • 2008-04-18
    • WMS GAMING INC.WARD, Matthew
    • WARD, Matthew
    • G07F17/32
    • G07F17/32G07F17/3258
    • A linked progressive wagering system, comprises a first progressive wagering subsystem comprising X jackpots, each of the X jackpots displayed on a first meter. The system further comprises a second progressive wagering subsystem having Y jackpots, each of the Y jackpots displayed on a second meter. The system further comprises at least one wager input device, a progressive pool, and at least one controller. The at least one controller is operative to (i) receive a signal from the at least one wager input device of receipt of a first wager on the first progressive wagering subsystem, (ii) generate an increment, the increment comprising a portion of the first wager, (iii) transfer the increment into the progressive pool, (iv) add a first increase equal to the increment to the X jackpots, and (v) add a second increase equal to the increment to the Y jackpots.
    • 一个链接的渐进式投注系统,包括一个包含X个积分奖金的第一个进阶投注子系统,每个X积分都显示在第一个计量表上。 所述系统还包括具有Y积分奖金的第二进阶投注子系统,每个Y积分都显示在第二计量表上。 该系统还包括至少一个下注输入装置,逐行池和至少一个控制器。 所述至少一个控制器可操作以(i)从所述至少一个下注输入设备接收在所述第一渐进式投注子系统上接收到第一投注的信号,(ii)生成增量,所述增量包括所述第一 (iii)将增量转移到渐进池中,(iv)向X累积奖金增加等于增量的第一次增加,以及(v)将增加的第二次增加与Y积分奖金相等。
    • 8. 发明申请
    • ADAPTIVE REAL-TIME SEIZURE PREDICTION SYSTEM AND METHOD
    • 自适应实时检测预测系统及方法
    • WO2010141603A2
    • 2010-12-09
    • PCT/US2010/037093
    • 2010-06-02
    • PURDUE RESEARCH FOUNDATIONRAJDEV, PoojaIRAZOQUI, PedroWARD, MatthewWORTH, Robert
    • RAJDEV, PoojaIRAZOQUI, PedroWARD, MatthewWORTH, Robert
    • A61B5/0476A61B5/0478A61B5/0484
    • A61B5/0476A61B5/04012A61B5/4094A61B5/7275G06F19/00
    • A real-time seizure prediction system. The system includes an implantable electrode configured to transmit an analog neuro-electrophysiological signal from a subject, an analog-to- digital converter configured to convert the analog neuro-electrophysiological signal to a digital neuro-electrophysiological signal based on a predetermined sampling rate, a processor configured to perform following steps during a period defined by the predetermined sampling rate: calculate a plurality of autocorrelation coefficients of the digital neuro-electrophysiological signal for a first predetermined number of samples, calculate a predicted future value of the digital neuro-electrophysiological data based on the plurality of autocorrelation coefficients and the first predetermined number of samples of the digital neuro-electrophysiological data, compare the predicted future value with an actual future value of the digital neuro- electrophysiological data to determine a prediction error, calculate a threshold based on a mean squared value of the prediction error for the first predetermined number of samples and based on a proportionality constant, generate a seizure prediction signal if the prediction error remains above the threshold for a second predetermined number of samples, and a warning device configured to receive the seizure prediction signal and generate an alert.
    • 实时发作预测系统。 该系统包括被配置为从受试者传送模拟神经 - 电生理信号的可植入电极,被配置为基于预定采样率将模拟神经 - 电生理信号转换为数字神经 - 电生理信号的模拟 - 数字转换器 处理器,其被配置为在由所述预定采样率定义的时段期间执行以下步骤:针对第一预定数量的采样计算所述数字神经 - 电生理信号的多个自相关系数,计算所述数字神经 - 电生理数据的预测未来值 对多个自相关系数和数字神经 - 电生理数据的第一预定数量的样本进行比较,将预测的未来值与数字神经电生理数据的实际未来值进行比较,以确定预测误差,基于 平均值o f是第一预定数量样本的预测误差,并且基于比例常数,如果预测误差保持高于第二预定数量样本的阈值,则产生检测预测信号,以及被配置为接收发作预测信号的警报装置 并产生警报。