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    손목 피부 온도에 의한 맥센서 어레이(array)의 신호 변동 및 보정 = Signal Change and Compensation of Pulse Pressure Sensor Array Due to Wrist Surface Temperature

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    https://www.riss.kr/link?id=A103660573

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    A pressure sensor in pulse measurement system is a core component for precisely measuring the pulse waveform of radial artery. A pulse sensor signal that measures the pulse wave in contact with the skin is affected by the temperature difference between the ambient temperature and skin surface. In this study, we found experimentally that the signal changes of the pressure sensors and a temperaturesensor were caused by the temperature of the wrist surface while the pressure sensor was contacted on the skin surface for measuringpulse wave. To observe the signal change of the pulse sensor caused by temperature increase on sensor surface, Peltier device that can be kept at a set temperature was used. As the temperature of Peltier device was kept at 35°C (the maximum wrist temperature), thedevice was put on the pulse sensor surface. The temperature and pressure signals were obtained simultaneously from a temperature sen-sor and six pressure sensors embedded in the pulse sensor. As a result of signal analysis, the sensor pressure was decreased during tem- perature increase of pulse sensor surface. In addition, the signal difference ratio of pressure and temperature sensors with respect tothickness of cover layer in pulse sensor was increased exponentially. Therefore, the signal of pressure sensor was modified by the com-pensation equation derived by the temperature sensor signal. We suggested that the thickness of cover layer in pulse sensor should be designed considering the skin surface temperature.
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    A pressure sensor in pulse measurement system is a core component for precisely measuring the pulse waveform of radial artery. A pulse sensor signal that measures the pulse wave in contact with the skin is affected by the temperature difference betwee...

    A pressure sensor in pulse measurement system is a core component for precisely measuring the pulse waveform of radial artery. A pulse sensor signal that measures the pulse wave in contact with the skin is affected by the temperature difference between the ambient temperature and skin surface. In this study, we found experimentally that the signal changes of the pressure sensors and a temperaturesensor were caused by the temperature of the wrist surface while the pressure sensor was contacted on the skin surface for measuringpulse wave. To observe the signal change of the pulse sensor caused by temperature increase on sensor surface, Peltier device that can be kept at a set temperature was used. As the temperature of Peltier device was kept at 35°C (the maximum wrist temperature), thedevice was put on the pulse sensor surface. The temperature and pressure signals were obtained simultaneously from a temperature sen-sor and six pressure sensors embedded in the pulse sensor. As a result of signal analysis, the sensor pressure was decreased during tem- perature increase of pulse sensor surface. In addition, the signal difference ratio of pressure and temperature sensors with respect tothickness of cover layer in pulse sensor was increased exponentially. Therefore, the signal of pressure sensor was modified by the com-pensation equation derived by the temperature sensor signal. We suggested that the thickness of cover layer in pulse sensor should be designed considering the skin surface temperature.

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    참고문헌 (Reference)

    1 김영민, "맥 센서 어레이(array)의 실리콘(silicone) 코팅 두께에 따른 센서 간 간섭효과" 한국센서학회 25 (25): 35-40, 2016

    2 "https://en.tdk.eu/inf/57/ds/c33_barometric.pdf"

    3 Yu-Wen Chu, "Using an array sensor to determine differences in pulse diagnosis—Three positions and nine indicators" 6 (6): 516-523, 2014

    4 Martinez-Nicolas A, "Uncovering different masking factors on wrist skin temperature rhythm in free-living subjects" 8 (8): e61142-, 2013

    5 C. S. Hu, "Temporal and spatial properties of arterial pulsation measurement using pressure sensor array" 2012 : 9-, 2012

    6 Joshi, A. B., "Simulations of piezoelectric pressure sensor for radial artery pulse measurement" 168 (168): 250-253, 2010

    7 McLaughlin, J., "Piezoelectric sensor determination of arterial pulse wave velocity" 24 (24): 693-702, 2003

    8 Yoo, S. K., "Development of a radial pulse tonometric (RPT) sensor with a temperature compensation mechanism" 13 (13): 611-625, 2013

    9 Jun, M. H., "Development of a Tonometric Sensor with a Decoupled Circular Array for Precisely Measuring Radial Artery Pulse" 16 (16): 2016

    10 J. A. Sarabia, "Circadian rhythm of wrist temperature in normal-living subjects : A candidate of new index of the circadian system" 95 (95): 570-580, 2008

    1 김영민, "맥 센서 어레이(array)의 실리콘(silicone) 코팅 두께에 따른 센서 간 간섭효과" 한국센서학회 25 (25): 35-40, 2016

    2 "https://en.tdk.eu/inf/57/ds/c33_barometric.pdf"

    3 Yu-Wen Chu, "Using an array sensor to determine differences in pulse diagnosis—Three positions and nine indicators" 6 (6): 516-523, 2014

    4 Martinez-Nicolas A, "Uncovering different masking factors on wrist skin temperature rhythm in free-living subjects" 8 (8): e61142-, 2013

    5 C. S. Hu, "Temporal and spatial properties of arterial pulsation measurement using pressure sensor array" 2012 : 9-, 2012

    6 Joshi, A. B., "Simulations of piezoelectric pressure sensor for radial artery pulse measurement" 168 (168): 250-253, 2010

    7 McLaughlin, J., "Piezoelectric sensor determination of arterial pulse wave velocity" 24 (24): 693-702, 2003

    8 Yoo, S. K., "Development of a radial pulse tonometric (RPT) sensor with a temperature compensation mechanism" 13 (13): 611-625, 2013

    9 Jun, M. H., "Development of a Tonometric Sensor with a Decoupled Circular Array for Precisely Measuring Radial Artery Pulse" 16 (16): 2016

    10 J. A. Sarabia, "Circadian rhythm of wrist temperature in normal-living subjects : A candidate of new index of the circadian system" 95 (95): 570-580, 2008

    11 Pressman, G. L, "A transducer for the continuous external measurement of arterial blood pressure" 10 (10): 73-81, 1963

    12 Wang, D. M., "A Novel Multichannel Wrist Pulse System With Different Sensor Arrays" 64 (64): 2020-2034, 2015

    13 이상석, "A New Measurement Method of a Radial Pulse Wave Using Multiple Hall Array Devices" 한국자기학회 14 (14): 132-136, 2009

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2022 평가 계속평가 신청대상 (계속평가)
    2021-12-01 등재 등재후보로 하락 (재인증) KCI등재후보
    2018-01-01 등재 등재학술지 선정 (계속평가) KCI등재
    2017-12-01 등재 등재후보로 하락 (계속평가) KCI등재후보
    2013-01-01 등재 등재 1차 FAIL (등재유지) KCI등재
    2010-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2008-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2005-01-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    2004-01-01 등재 등재후보 1차 PASS (등재후보1차) KCI등재후보
    2002-07-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    학술지 인용정보

    학술지 인용정보
    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.22 0.22 0.16
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.15 0.13 0.319 0.07
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