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    적응 SFLC(Scaled Fourier Linear Combiner)를 이용한 활동 중의 PPG 신호의 잡음 감소 = Noise Reduction of PPG Signal During Free Movements Using Adaptive SFLC(Scaled Fourier Linear Combiner)

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    https://www.riss.kr/link?id=A104282046

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    - Blood flow is one of vital signals related to human physiological information. Photoplethysmograph (PPG) has been used to measure indirectly heart rate, blood oxygen saturation (SpO2), and so on. Because PPG signal is weak and sensitive to motion artifacts, it is very important to continuously obtain stable PPG signal during free movement. In this study, we applied the scaled Fourier linear combiner (SFLC) using both the adaptive filter and FLC to remove effectively the motion artifacts as well as background noise in the real time without additional signal correlated with motion from a accelerometer. The proposed method would be useful to reduce the movement and background noise which are not synchronized with heart rate.
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    - Blood flow is one of vital signals related to human physiological information. Photoplethysmograph (PPG) has been used to measure indirectly heart rate, blood oxygen saturation (SpO2), and so on. Because PPG signal is weak and sensitive to motion ar...

    - Blood flow is one of vital signals related to human physiological information. Photoplethysmograph (PPG) has been used to measure indirectly heart rate, blood oxygen saturation (SpO2), and so on. Because PPG signal is weak and sensitive to motion artifacts, it is very important to continuously obtain stable PPG signal during free movement. In this study, we applied the scaled Fourier linear combiner (SFLC) using both the adaptive filter and FLC to remove effectively the motion artifacts as well as background noise in the real time without additional signal correlated with motion from a accelerometer. The proposed method would be useful to reduce the movement and background noise which are not synchronized with heart rate.

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    참고문헌 (Reference)

    1 Y. S. Yan, "Reduction of motion artifact in pulse oximetry by smoothed pseudo Wigner-Ville distribution" 2 : 3-, 2005.

    2 H. H. Asada, "Mobile monitoring with wearable photoplethysmographic biosensors" 22 : 28-40, 2003.

    3 A. K. Barros, "Filtering noncorrelated noise in impedance cardiography" 42 : 324-327, 1995.

    4 P. Laguna, "Adaptive filter for event-related bioelectric signals using an impulse correlated reference input comparison with signal averaging techniques" 39 : 1032-44, 1992.

    5 L. R. Bentt, "Accuracy and utility of pulse oximetry in the surgical intensive care unit" 47 : 267-8, 1990.

    6 M. J. Hayes, "A new method for pulse oximetry possessing inherent insensitivity to artifact" 48 : 452-461, 2001

    1 Y. S. Yan, "Reduction of motion artifact in pulse oximetry by smoothed pseudo Wigner-Ville distribution" 2 : 3-, 2005.

    2 H. H. Asada, "Mobile monitoring with wearable photoplethysmographic biosensors" 22 : 28-40, 2003.

    3 A. K. Barros, "Filtering noncorrelated noise in impedance cardiography" 42 : 324-327, 1995.

    4 P. Laguna, "Adaptive filter for event-related bioelectric signals using an impulse correlated reference input comparison with signal averaging techniques" 39 : 1032-44, 1992.

    5 L. R. Bentt, "Accuracy and utility of pulse oximetry in the surgical intensive care unit" 47 : 267-8, 1990.

    6 M. J. Hayes, "A new method for pulse oximetry possessing inherent insensitivity to artifact" 48 : 452-461, 2001

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    2007-01-01 등재 학술지 통합(등재유지)
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