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    • 3. 发明授权
    • Method and system for maintaining a state in a subject
    • 用于维持受试者状态的方法和系统
    • US09132333B2
    • 2015-09-15
    • US12993861
    • 2009-05-29
    • Ronaldus Maria AartsMark Thomas Johnson
    • Ronaldus Maria AartsMark Thomas Johnson
    • A61N1/00A63B71/06A61N1/36A61B5/024A61B5/00A63B23/18A63B24/00
    • A63B71/0686A61B5/02405A61B5/486A61N1/36078A61N1/3611A63B23/185A63B24/0075A63B2071/0625A63B2220/807A63B2230/06A63B2230/062A63B2230/50
    • A method of maintaining a state in a subject (12) comprises generating a pacing signal (20) at a first frequency, presenting to the subject an output based upon the generated pacing signal, measuring one or more physiological parameters of the subject, detecting that the measured parameter(s) conform to a desired state in the subject, and either removing the presentation to the subject of the output based upon the generated pacing signal, or generating a new pacing signal at a second frequency, and presenting to the subject an output based upon the generated new pacing signal. The method can further comprise, prior to the detecting that the measured parameter(s) conform to a desired state in the subject, adjusting the pacing signal according to feedback from the measured parameter(s). In a preferred embodiment, the method also further comprises detecting that the measured parameter(s) no longer conform to a desired state in the subject, and presenting to the subject an output based upon the original generated pacing signal.
    • 维持对象(12)中的状态的方法包括以第一频率生成起搏信号(20),基于产生的起搏信号向对象呈现输出,测量对象的一个​​或多个生理参数,检测该 所测量的参数符合所述对象中的期望状态,并且基于产生的起搏信号去除所述输出的对象的呈现,或者以第二频率生成新的起搏信号,并向所述对象呈现 基于生成的新起搏信号的输出。 该方法还可以包括在检测到所测量的参数符合受试者期望的状态之前,根据来自所测量的参数的反馈来调整起搏信号。 在优选实施例中,该方法还包括检测所测量的参数不再符合受检者的期望状态,并且基于原始产生的起搏信号向受检者呈现输出。
    • 6. 再颁专利
    • Generation of a sound signal
    • 产生声音信号
    • USRE43273E1
    • 2012-03-27
    • US12725693
    • 2003-09-16
    • Ronaldus Maria AartsRoy IrwanDaniel Willem Elisabeth Schobben
    • Ronaldus Maria AartsRoy IrwanDaniel Willem Elisabeth Schobben
    • H04R5/02
    • H04S1/005H04S1/007H04S5/00H04S2400/01H04S2420/01
    • In a method and a media system of/for generation of at least one output signal (HPL,HPR) from at least one input signal belonging to a second set of sound signals (M) having a related second set of Head Related Transfer Functions, in which the media system can be a TV, a CD player, a DVD player, a Radio, a display, an amplifier, a headphone or a VCR, the method includes the steps of determining, for each signal in the second set of sound signals, a weighted relation (14) including at least one signal belonging to a third set of intermediate sound signals (CHI1, CHI2) and at least one weight value (Weights); determining a first set of Head Related Transfer Functions (HRTFs) based on the second set of sound signals, the second set of Head Related Transfer Functions and the weighted relation; and transferring at least one signal belonging to the third set of intermediate sound signals by means of at least one HRTF belonging to said first set of Head Related Transfer Functions in order to generate at least one output signal belonging to said first set of sound signals. Hereby, in the end, fewer HRTFs are determined for a subsequent transfer of input signal(s) to output signal(s). Accordingly, few convolutions are required.
    • 在用于从属于具有相关的第二组头相关传递函数的第二组声音信号(M)的至少一个输入信号生成至少一个输出信号(HPL,HPR)的方法和媒体系统中, 其中媒体系统可以是电视,CD播放器,DVD播放器,无线电,显示器,放大器,耳机或VCR,该方法包括以下步骤:针对第二组声音中的每个信号 信号,包括属于第三组中间声音信号(CHI1,CHI2)和至少一个重量值(重量)的至少一个信号的加权关系(14); 基于第二组声音信号确定第一组头相关传送函数(HRTF),第二组头相关传递函数和加权关系; 以及通过属于所述第一组头相关传递函数的至少一个HRTF传送属于第三组中间声音信号的至少一个信号,以便产生属于所述第一组声音信号的至少一个输出信号。 因此,最终确定用于随后将输入信号传送到输出信号的HRTF较少。 因此,需要很少的卷积。
    • 8. 发明申请
    • PROCESSING A BIO-PHYSIOLOGICAL SIGNAL
    • 加工生物生理信号
    • US20120029322A1
    • 2012-02-02
    • US13262277
    • 2010-03-24
    • Frank WartenaRonaldus Maria Aarts
    • Frank WartenaRonaldus Maria Aarts
    • A61B5/00
    • A61B5/0476A61B5/0488A61B5/0496A61B5/4812A61B5/7285
    • The invention relates to an apparatus and a method for processing at least one bio-physiological signal of a sleeping object, such as a brain wave signal or electroencephalography (EEG) signal, an electro-oculogram (EOG) signal, or an electro-myogram (EMG) signal. The signal is captured by at least one sensor, which may be included in a pliable device such as a pillow or headgear. A processing unit (18) processes the at least one bio-physiological signal and thereby generates an output signal (28; 38; 44) based on the at least one bio-physiological signal and based on a signal pattern stored or generated in the processing unit (18), the output signal (28; 38; 44) comprising a temporally varying output signal pattern, wherein the output signal pattern depends on a current sleep state of the sleeping object. The output signal may be reproduced in a human-perceptible form.
    • 本发明涉及一种用于处理睡眠对象的至少一个生物生理信号的装置和方法,诸如脑波信号或脑电图(EEG)信号,电眼图(EOG)信号或电子肌图 (EMG)信号。 信号由至少一个传感器捕获,传感器可以包括在诸如枕头或头带的柔韧装置中。 处理单元(18)处理所述至少一个生物生理信号,从而基于所述至少一个生物生理信号并且基于在所述处理中存储或生成的信号模式来生成输出信号(28; 38; 44) 单元(18),所述输出信号(28; 38; 44)包括时间上变化的输出信号模式,其中所述输出信号模式取决于所述睡眠对象的当前睡眠状态。 输出信号可以以人类可察觉的形式再现。