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    • 1. 发明申请
    • MINIATURE, WIRELESS APPARATUS FOR PROCESSING PHYSIOLOGICAL SIGNALS AND USE THEREOF
    • 微处理器,用于处理生理信号的无线设备及其使用
    • US20080300469A1
    • 2008-12-04
    • US11755964
    • 2007-05-31
    • Terry B.J. KuoCheryl C.H. Yang
    • Terry B.J. KuoCheryl C.H. Yang
    • A61B5/00
    • A61B1/00165
    • The present invention provides a miniature, wireless apparatus for processing physiological signals comprising a signal-receiving element and a signal-processing element, wherein said signal-receiving element receives plural of signals input from external sensors and transmits the signals to said signal-processing element. Then said signal-processing element divides the receiving-time into n equal intervals and corresponds each divided time-interval to signals received by one sensor.The present invention further provides a method for processing physiological signals comprising receiving the signals by signal-receiving element, dividing the receiving-time into n equal intervals by signal-processing element, and corresponding each divided time-interval to signals received by one sensor.
    • 本发明提供了一种用于处理包括信号接收元件和信号处理元件的生理信号的微型无线装置,其中所述信号接收元件接收从外部传感器输入的多个信号,并将信号发送到所述信号处理元件 。 然后,所述信号处理元件将接收时间分成n个相等的间隔,并将每个划分的时间间隔对应于由一个传感器接收到的信号。 本发明还提供一种用于处理生理信号的方法,包括通过信号接收元件接收信号,通过信号处理元件将接收时间分成n个等间隔,并将每个划分的时间间隔对应于由一个传感器接收到的信号。
    • 2. 发明申请
    • SYSTEM AND METHOD FOR ANALYZING BIOCHIP
    • 用于分析生物化学的系统和方法
    • US20050214931A1
    • 2005-09-29
    • US10906889
    • 2005-03-11
    • Terry B.J. KuoArthur ChiouCheng-Yu WeiChun-Nan TengKun-Shan Lu
    • Terry B.J. KuoArthur ChiouCheng-Yu WeiChun-Nan TengKun-Shan Lu
    • B01L3/00C12Q1/68G01N21/64
    • G01N21/6452B01L3/50851
    • A system and method for analyzing a biochip are provided. Wherein, a first modulator circuit outputs a first modulated signal with a first frequency. A first light source module output a first light beam based on the first modulated signal. A first optical signal is generated after the first light beam being emitted onto the biochip. An optical sensing module sense the first optical signal and outputting a first sensing signal. A first filter circuit filters the first sensing signal and outputting a first portion sensing signal. A first demodulator circuit demodulates the first portion sensing signal and outputting a first demodulated signal. An analog to digital converter convert the first demodulated signal to a first digital signal. A signal display module receives and display the first digital signal.
    • 提供了一种用于分析生物芯片的系统和方法。 其中,第一调制器电路输出具有第一频率的第一调制信号。 第一光源模块基于第一调制信号输出第一光束。 在第一光束被发射到生物芯片上之后产生第一光信号。 光学感测模块感测第一光学信号并输出​​第一感测信号。 第一滤波器电路对第一感测信号进行滤波并输出第一部分感测信号。 第一解调器电路解调第一部分感测信号并输出​​第一解调信号。 模数转换器将第一解调信号转换为第一数字信号。 信号显示模块接收并显示第一数字信号。
    • 3. 发明申请
    • APPARATUS FOR COLLECTING A PHYSIOLOGICAL SIGNAL
    • 收集生理信号的装置
    • US20130172766A1
    • 2013-07-04
    • US13451218
    • 2012-04-19
    • JENG-CHUNG CHENTERRY B.J. KUO
    • JENG-CHUNG CHENTERRY B.J. KUO
    • A61B5/0402A61B5/04
    • A61B5/0245A61B5/02438A61B5/0404A61B5/6826A61B5/6843A61B2560/0425
    • The present invention relates to an improved apparatus for collecting a physiological signal, comprising a main body, including two devices for taking out the physiological signal from a finger at each side of the main body by pressing the finger therein, each device for taking out the physiological signal from a finger including: a finger contacting element, provided thereon an electrode unit for taking out an electronic signal of the physiological signal at the time of being contacted by the finger; a receiving element, provided on an upper side of the finger contacting element; and an elastic element, being connected to the receiving element, wherein each elastic element is opened an angle at each receiving element according to elastic force of each elastic element, and each finger inserts into a space and engages with the finger contacting element and the receiving element.
    • 本发明涉及一种用于收集生理信号的改进装置,包括主体,包括两个装置,用于通过在其中按压手指从主体的每一侧从手指取出生理信号,每个装置用于取出 来自手指的生理信号包括:手指接触元件,设置有用于在手指接触时取出生理信号的电子信号的电极单元; 设置在所述手指接触元件的上侧的接收元件; 以及弹性元件,其连接到所述接收元件,其中每个弹性元件根据每个弹性元件的弹性力在每个接收元件处开一个角度,并且每个指状物插入到空间中并与所述手指接触元件和所述接收元件接合 元件。
    • 5. 发明申请
    • MINIATURE WIRELESS APPARATUS FOR RECORDING PHYSIOLOGICAL SIGNALS OF HUMANS AND USE THEREOF
    • 用于记录人体生理信号的微型无线设备及其使用
    • US20080306348A1
    • 2008-12-11
    • US11758921
    • 2007-06-06
    • Terry B.J. KuoCheryl C.H. Yang
    • Terry B.J. KuoCheryl C.H. Yang
    • A61B5/00
    • A61B5/4815A61B5/0006A61B5/4035A61B5/7232
    • A miniature wireless apparatus for recording and remote monitoring physiological signals and use thereof are described. The miniature wireless apparatus comprises a signal collecting module, a signal processing module, a wireless module, and a recording device. The methods for recording and remote monitoring physiological signals comprising collecting physiological signals by a signal collecting module, processing the said physiological signals by a signal processing module and recording the processed signals by a recording device, modulating the said processed signals and synchronously transmitting and receiving the modulated signals by a wireless module to integrate the physiological signals, receiving the signals by a remote receiver, and recording, monitoring, and analyzing the physiological signals by the remote receiver and further transmitting the physiological signals to the remote monitoring station through a network. Methods for sleep monitoring and evaluating and for monitoring and evaluating of autonomic nerve function using the miniature wireless apparatus are further described.
    • 描述用于记录和远程监测生理信号的微型无线装置及其用途。 微型无线装置包括信号采集模块,信号处理模块,无线模块和记录装置。 用于记录和远程监测生理信号的方法,包括由信号采集模块收集生理信号,由信号处理模块处理所述生理信号,并通过记录装置记录处理的信号,调制所述处理的信号并同步发送和接收 通过无线模块调制信号以集成生理信号,由远程接收器接收信号,以及由远程接收器记录,监测和分析生理信号,并通过网络将生理信号发送到远程监控站。 进一步描述了使用微型无线设备进行睡眠监测和评估以及用于监测和评估自主神经功能的方法。