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    • 3. 发明申请
    • System and Method for Acquisition of Biopotential Signals With Electrode-Tissue Impedance Measurement
    • 用电极组织阻抗测量获取生物电位信号的系统和方法
    • US20150119747A1
    • 2015-04-30
    • US14528931
    • 2014-10-30
    • IMEC VZW
    • Tom TorfsRefet Firat Yazicioglu
    • A61B5/053A61B5/00
    • A61B5/053A61B5/04004A61B5/04012A61B5/04284A61B5/7207A61B5/7278
    • A system for the acquisition of biopotential signals, comprising at least a first electrode configured for detecting a biopotential signal within a signal bandwidth of interest and being connected to an impedance detection module that provides a first electrode voltage. The impedance detection module comprises a current generation circuit connected in parallel to an amplifier. The current generation circuit comprises an AC current generator configured to generate a first current signal through the first electrode. The first current signal has a frequency outside of the signal bandwidth of interest. The current generation circuit also comprising a capacitor connected between the input of the amplifier and the AC current generator so as to isolate the AC current generator from the amplifier input at the signal bandwidth of interest. The system also including a signal processor configured to calculate a component value of a first and a second electrode-tissue impedance based on a difference between the first electrode voltage and a second electrode voltage.
    • 一种用于获取生物电位信号的系统,包括至少第一电极,其被配置用于检测感兴趣的信号带宽内的生物电位信号,并连接到提供第一电极电压的阻抗检测模块。 阻抗检测模块包括与放大器并联连接的电流产生电路。 电流产生电路包括配置成通过第一电极产生第一电流信号的AC电流发生器。 第一电流信号具有在感兴趣的信号带宽以外的频率。 电流产生电路还包括连接在放大器的输入端和交流电流发生器之间的电容器,以便在感兴趣的信号带宽上将交流电流发生器与放大器输入隔离。 该系统还包括被配置为基于第一电极电压和第二电极电压之间的差来计算第一和第二电极组织阻抗的分量值的信号处理器。
    • 4. 发明授权
    • System and method for acquisition of biopotential signals with motion artifact reduction
    • 用于获取生物电位信号的运动神经减影的系统和方法
    • US09375182B2
    • 2016-06-28
    • US14573714
    • 2014-12-17
    • IMEC VZW
    • Hyejung KimNick Van HelleputteRefet Firat Yazicioglu
    • A61B5/04A61B5/00A61B5/0428A61B5/0402
    • A61B5/7207A61B5/04017A61B5/0402A61B5/0428A61B5/7214A61B5/7246
    • A biopotential signal acquisition system including an analog readout unit configured to receive an analog biopotential signal, which may be acquired from at least one electrode attached to a body; and to extract an analog measured biopotential signal and an analog reference signal. The system also includes an ADC unit configured to provide a digital version of the analog measured biopotential signal and the analog reference signal, a digital filter unit configured to calculate a digital motion artifact estimate based on the digital version of the measured biopotential signal and the reference signal. The system further comprises a reference signal processing unit configured to convert the reference signal into a new reference signal being provided to the digital filter unit based on the correlation between the measured biopotential signal and the reference signal.
    • 生物电位信号采集系统,包括被配置为接收模拟生物电位信号的模拟读出单元,模拟生物电位信号可以从附着于身体的至少一个电极获取; 并提取模拟测量的生物电位信号和模拟参考信号。 该系统还包括被配置为提供模拟测量生物电位信号和模拟参考信号的数字版本的ADC单元,数字滤波器单元,被配置为基于测量的生物电位信号和参考的数字版本来计算数字运动伪影估计 信号。 该系统还包括参考信号处理单元,其被配置为基于所测量的生物电位信号和参考信号之间的相关性将参考信号转换为提供给数字滤波器单元的新参考信号。
    • 8. 发明授权
    • Instrumentation amplifier and signal amplification method
    • 仪表放大器和信号放大方法
    • US09294048B2
    • 2016-03-22
    • US14315478
    • 2014-06-26
    • IMEC VZW
    • Nick Van HelleputteRefet Firat Yazicioglu
    • H03F3/45H03F1/34H03F3/68
    • H03F1/34H03F3/45H03F3/45932H03F3/45941H03F3/68H03F2200/261H03F2203/45084H03F2203/45114H03F2203/45116
    • An instrumentation amplifier includes a first amplifier having one input connected to a first input of the instrumentation amplifier, a second amplifier having one input connected to a second input of the instrumentation amplifier, and a feedback network. The feedback network including an active filter having a first low pass filter characteristic with a first cut-off frequency in respect of differential mode signals at the first and second inputs of the instrumentation amplifier, and a second low pass filter characteristic with a second cut-off frequency in respect of common mode signals at the first and second inputs of the instrumentation amplifier. The disclosure also relates to a device for acquiring biopotential signals and a signal amplification method.
    • 仪表放大器包括具有连接到仪表放大器的第一输入的一个输入的第一放大器,具有连接到仪表放大器的第二输入的一个输入的第二放大器和反馈网络。 所述反馈网络包括有源滤波器,所述有源滤波器具有关于所述仪表放大器的第一和第二输入处的差模信号的具有第一截止频率的第一低通滤波器特性,以及具有第二截止频率的第二低通滤波器特性, 关于仪表放大器的第一和第二输入处的共模信号的截止频率。 本公开还涉及用于获取生物电位信号的装置和信号放大方法。
    • 9. 发明申请
    • System and Method for Acquisition of Biopotential Signals with Motion Artifact Reduction
    • 采用运动神器减少生物电位信号的系统和方法
    • US20150173683A1
    • 2015-06-25
    • US14573714
    • 2014-12-17
    • IMEC VZW
    • Hyejung KimNick Van HelleputteRefet Firat Yazicioglu
    • A61B5/00A61B5/0402A61B5/04
    • A61B5/7207A61B5/04017A61B5/0402A61B5/0428A61B5/7214A61B5/7246
    • A biopotential signal acquisition system including an analogue readout unit configured to receive an analogue biopotential signal, which may be acquired from at least one electrode attached to a body; and to extract an analogue measured biopotential signal and an analogue reference signal. The system also includes an ADC unit configured to provide a digital version of the analogue measured biopotential signal and the analogue reference signal, a digital filter unit configured to calculate a digital motion artifact estimate based on the digital version of the measured biopotential signal and the reference signal. The system further comprises a reference signal processing unit configured to convert the reference signal into a new reference signal being provided to the digital filter unit based on the correlation between the measured biopotential signal and the reference signal.
    • 生物电位信号采集系统,包括被配置为接收模拟生物电位信号的模拟读出单元,模拟生物电位信号可以从附着于身体的至少一个电极获取; 并提取模拟测量的生物电位信号和模拟参考信号。 该系统还包括被配置为提供模拟测量生物电位信号和模拟参考信号的数字版本的ADC单元,被配置为基于所测量的生物电位信号和参考的数字版本来计算数字运动伪像估计的数字滤波器单元 信号。 该系统还包括参考信号处理单元,其被配置为基于所测量的生物电位信号和参考信号之间的相关性将参考信号转换为提供给数字滤波器单元的新参考信号。