• 제목/요약/키워드: Wearable ECG(electrocardiogram)

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Wearable Approach of ECG Monitoring System for Wireless Tele-Home Care Application

  • Kew, Hsein-Ping;Noh, Yun-Hong;Jeong, Do-Un
    • 한국정보통신학회:학술대회논문집
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    • 한국해양정보통신학회 2009년도 춘계학술대회
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    • pp.337-340
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    • 2009
  • Wireless tele-home-care application gives new possibilities for ECG (electrocardiogram) monitoring system with wearable biomedical sensors. Thus, continuously development of high convenient ECG monitoring system for high-risk cardiac patients is essential. This paper describes to monitor a person's ECG using wearable approach. A wearable belt-type ECG electrode with integrated electronics has been developed and has proven long-term robustness and monitoring of all electrical components. The measured ECG signal is transmitted via an ultra low power consumption wireless sensor node. ECG signals carry a lot clinical information for a cardiologist especially the R-peak detection in ECG. R-peak detection generally uses the threshold value which is fixed thus it bring errors due to motion artifacts and signal size changes. Variable threshold method is used to detect the R-peak which is more accurate and efficient. In order to evaluate the performance analysis, R-peak detection using MIT-BIH databases and Long Term Real-Time ECG is performed in this research. This concept able to allow patient to follow up critical patients from their home and early detecting rarely occurrences of cardiac arrhythmia.

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심전도 신호를 이용한 개인 바이오인증 기술 융합과 smart key 기능이 탑재된 wearable device 개발 (Development of wearable device with smart key function and convergence of personal bio-certification and technology using ECG signal)

  • 방걸원
    • 디지털융복합연구
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    • 제20권5호
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    • pp.637-642
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    • 2022
  • 심전도(ECG, electrocardiogram) 신호를 이용한 본인 인증기술은 기존의 바이오 인증을 대체할 수 있는 본인 인증기술로 주목받고 있다. 디지털 전자키를 인식하는 장치를 차량에 탑재하여 자동차와 무선으로 데이터를 송수신할 수 있게 하고, 스마트폰 등을 활용해 자동차의 차 문을 잠금 또는 해제하거나, 시동을 걸 수 있는 기능을 스마트폰을 통해 차량 제어할 수 있다. 그러나 스마트키는 보안에 취약하여 이를 해결하고 운전자의 편의성을 제공하기 위해 바이오 인증기술을 적용한 스마트키를 연구하였다. 심전도를 이용한 개인인증 알고리즘을 시계 형태의 웨어러블 디바이스에 탑재하여 바이오인증을 하고 개인인증이 완료되면 자동차의 스마트키 기능을 할 수 있었다. 인증율 95%를 달성하였다. 운전자는 스마트키를 소지할 필요가 없고, 분실 및 해킹에 안전하게 보호할 수 있는 대안으로 스마트키를 제안한다. 심전도를 이용한 개인 인증기술을 활용한 스마트키는 개인인증을 통해 다양한 분야에 적용이 가능하고 향후 심전도를 이용한 본인확인 장치 등에 적용할 수 있는 방법을 연구할 계획이다.

심전도(Electrocardiogram) 신호를 이용한 생체암호시스템 기술 동향 (Technology Trends in Biometric Cryptosystem Based on Electrocardiogram Signals)

  • 정병호;권혁찬;박종근
    • 전자통신동향분석
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    • 제38권5호
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    • pp.61-70
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    • 2023
  • We investigated technological trends in an electrocardiogram (ECG)-based biometric cryptosystem that uses physiological features of ECG signals to provide personally identifiable cryptographic key generation and authentication services. The following technical details of the cryptosystem were investigated and analyzed: preprocessing of ECG signals, extraction of personally identifiable features, generation of quantified encryption keys from ECG signals, reproduction of ECG encryption keys under time-varying noise, and new security applications based on ECG signals. The cryptosystem can be used as a security technology to protect users from hacking, information leakage, and malfunctioning attacks in wearable/implantable medical devices, wireless body area networks, and mobile healthcare services.

생체신호에 기반한 웨어러블 로봇 내 부분 압박 바지 착용 시 효과 검증 (Verification of Effectiveness of Wearing Compression Pants in Wearable Robot Based on Bio-signals)

  • 박소영;이예진
    • 한국의류학회지
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    • 제45권2호
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    • pp.305-316
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    • 2021
  • In this study, the effect of wearing functional compression pants is verified using a lower-limb wearable robot through a bio-signal analysis and subjective fit evaluation. First, the compression area to be applied to the functional compression pants is derived using the quad method for nine men in their 20s. Subsequently, functional compression pants are prepared, and changes in Electroencephalogram (EEG) and Electrocardiogram (ECG) signals when wearing the functional compression and normal regular pants inside a wearable robot are measured. The EEG and ECG signals are measured with eyes closed and open. Results indicate that the Relative alpha (RA) and Relative gamma wave (RG) of the EEG signal differ significantly, resulting in increased stability and reduced anxiety and stress when wearing the functional compression pants. Furthermore, the ECG analysis results indicate statistically significant differences in the Low frequency (LF)/High frequency (HF) index, which reflect the overall balance of the autonomic nervous system and can be interpreted as feeling comfortable and balanced when wearing the functional compression pants. Moreover, subjective sense is discovered to be effective in assessing wear fit, ease of movement, skin friction, and wear comfort when wearing the functional compression pants.

패치형 웨어러블 심전도 측정 시스템을 위한 접착성 폴리우레탄 기반의 용량성 전극 (Adhesive Polyurethane-based Capacitive Electrode for Patch-type Wearable Electrocardiogram Measurement System)

  • 이정수;이원규;임용규;박광석
    • 대한의용생체공학회:의공학회지
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    • 제35권6호
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    • pp.203-210
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    • 2014
  • Wearable medical device has been a resurgence of interest thanks to the development of technology and propagation of smart phone in recent years. Various types of wearable devices have been introduced and available in market. Capacitive coupled electrode which measures electrocardiogram over cloth is able to be applied wearable device. In previous approaches of capacitive electrode, they need proper pressure for stable contact of the electrode to body surface. However, wearable device that gives pressure on body surface is not suitable for long-term monitoring. In this study, we proposed adhesive polyurethane-based capacitive electrode for patch-type wearable electrocardiogram (ECG) monitoring device. Self-adhesive polyurethane make the electrode and whole system be adhered to the surface of skin without any pressure. The patch-type system is consisted of analog filter, analog-to-digital converter and wireless transmission module and designed to be attached on the body as a patch. To validate the feasibility of the developed system, we measured ECG signal in stable and active state and extracted heart rate. Therefore, we observed skin response after long-term attachment for biocompatibility of the adhesive polyurethane and adhesive strength of it. The result shows the possibility of applying the developed system for ECG monitoring in real-life.

Real Time ECG Monitoring Through a Wearable Smart T-shirt

  • Mathias, Dakurah Naangmenkpeong;Kim, Sung-Il;Park, Jae-Soon;Joung, Yeun-Ho
    • Transactions on Electrical and Electronic Materials
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    • 제16권1호
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    • pp.16-19
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    • 2015
  • A wearable sensing ECG T-shirt for ubiquitous vital signs sensing is proposed. The sensor system consists of a signal processing board and capacitive sensing electrodes which together enable measurement of an electrocardiogram (ECG) on the human chest with minimal discomfort. The capacitive sensing method was employed to prevent direct ECG measurement on the skin and also to provide maximum convenience to the user. Also, low power integrated circuits (ICs) and passive electrodes were employed in this research to reduce the power consumption of the entire system. Small flexible electrodes were placed into cotton pockets and affixed to the interior of a worn tight NIKE Pro combat T-shirt. Appropriate signal conditioning and processing were implemented to remove motion artifacts. The entire system was portable and consumed low power compared to conventional ECG devices. The ECG signal obtained from a 24 yr. old male was comparable to that of an ECG simulator.

웨어러블 기반의 심전도 측정 의복을 이용한 시각감성과 생체신호간의 상관관계 (Correlation between Visual Sensibility and Vital Signal using Wearable based Electrocardiogram Sensing Clothes)

  • 정경용
    • 한국콘텐츠학회논문지
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    • 제9권12호
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    • pp.496-503
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    • 2009
  • 물질적 풍요로움뿐만 아니라 품질이 다변화 되어가는 생활환경 속에서 감성에 따른 생체신호를 파악하는 것은 감성공학 전략의 중요한 성공요소가 되고 있다. 이를 위하여 제품의 기능적 측면뿐만 아니라 정서적 감정과 선호도가 반영된 제품의 설계나 디자인 또한 요구되고 있다. 본 논문에서는 웨어러블 기반의 심전도 측정 의복을 이용한 시각감성과 생체신호간의 상관관계를 제안하였다. 심전도 측정 의복을 착용함으로 심전도 ECG 파형을 측정하였다. 심전도 측정 의복을 착용에 의해 수집된 심전도 파형으로부터 심박변화율을 계산한다. 그리고 고속 퓨리에 변환을 이용한 파워 스펙트럼 분석은 시각감성과 생채신호의 상관관계를 평가한다. 제안된 방법에 대해서 논리적 타당성과 유효성을 검증하기 위해 실험적인 적용을 시도하고자 한다.

휴대용 심전도 모니터링 계측 시스템 개발에 관한 연구 (Development of an Ambulatory Wearable System for Continuous Patient Monitoring)

  • 박찬원;전찬민
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2003년도 학술회의 논문집 정보 및 제어부문 B
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    • pp.920-923
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    • 2003
  • An wearable electrocardiogram (ECG) monitoring system is a widely used non-invasive diagnostic tool for ambulatory patient who may be at risk from latent life-threatening cardiac abnormalities. In this paper, we have a portable ECG monitoring system with conductive fiber which was characterized by the small-size and the low power consumption. The system consists of conductive fibers, one-chip microcontroller, ECG preprocessing circuit, and monitoring software to be able to record and analyze in PC. ECG preprocessing circuit is made of pre-amplifier with gain of 10, band-pass filter with bandwidth of 0.5-120Hz and 2.5V offset circuit for A/D conversion. ECG signals obtained by sensor are included with corrupted noises such as a baseline wandering, 60 Hz power noise and interference noise by body movement. For cancellation corrupted noises in signals obtained by conductive fiber, we used the wavelet decomposition of wavelet transforms in MATLAB toolbox.

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웨어러블 디바이스를 활용한 ECG 인증 시스템 구현 및 평가 (Implementation and Evaluation of ECG Authentication System Using Wearable Device)

  • 허재욱;진선우;전문석
    • 한국산학기술학회논문지
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    • 제20권10호
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    • pp.1-6
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    • 2019
  • IoT 기반의 스마트홈, 핀테크 등의 모바일 기술이 발달하면서 스마트 디바이스를 이용한 사용자 인증이 일상생활에서 널리 사용되고 있다. 이에 따라 기존의 비밀번호와 같은 지식 기반의 인증 방법에서 스마트 디바이스를 이용한 존재 기반의 생체인증이 새로운 주류가 되었고, 맥파, 지문, 얼굴, 홍채 등 다양한 생체인증 중에 신체적 특성상 위변조 가능성이 낮고 고유한 특징으로 개인 식별성이 높은 ECG(Electrocardiogram, 이하 ECG)를 이용한 생체인증이 헬스케어 및 핀테크와 맞물려 높은 관심을 받고 있다. 본 연구에서는 기존의 고가이면서 부피가 커 휴대가 불가능한 ECG 측정디바이스가 아닌 소형화된 웨어러블 디바이스를 이용하여 손쉽게 사용자의 ECG 파형을 측정해 사용자 인증을 할 수 있는 ECG 인증 시스템을 구현하였다. 구현된 ECG 인증 시스템은 PQRST 고유 값 식별을 통해 ECG 특징점을 판별하고 이를 이용한 제안된 인증 프로토콜로 사용자 인증이 가능하였다. 최종적으로 성인 남성 다수를 통한 측정 평가를 통해 안정적인 정지 상태에서는 1.73%의 비교적 낮은 타인수락률과 4.14%의 본인거부율을 보였고 움직임이 있는 상태에서는 13.72%의 타인수락률과 21.68%의 높은 본인거부율을 보였다. 활동으로 인해 심박수가 상승한 정지 상태에서는 10.48%의 타인수락률과 11.21%의 본인거부율을 보였다.

Evaluation of the Diagnostic Performance and Efficacy of Wearable Electrocardiogram Monitoring for Arrhythmia Detection after Cardiac Surgery

  • Seungji Hyun;Seungwook Lee;Yu Sun Hong;Sang-hyun Lim;Do Jung Kim
    • Journal of Chest Surgery
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    • 제57권2호
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    • pp.205-212
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    • 2024
  • Background: Postoperative atrial fibrillation (A-fib) is a serious complication of cardiac surgery that is associated with increased mortality and morbidity. Traditional 24-hour Holter monitors have limitations, which have prompted the development of innovative wearable electrocardiogram (ECG) monitoring devices. This study assessed a patch-type wearable ECG device (MobiCARE-MC100) for monitoring A-fib in patients undergoing cardiac surgery and compared it with 24-hour Holter ECG monitoring. Methods: This was a single-center, prospective, investigator-initiated cohort study that included 39 patients who underwent cardiac surgery between July 2021 and June 2022. Patients underwent simultaneous monitoring with both conventional Holter and patchtype ECG devices for 24 hours. The Holter device was then removed, and patch-type monitoring continued for an additional 48 hours, to determine whether extended monitoring provided benefits in the detection of A-fib. Results: This 72-hour ECG monitoring study included 39 patients, with an average age of 62.2 years, comprising 29 men (74.4%) and 10 women (25.6%). In the initial 24 hours, both monitoring techniques identified the same number of paroxysmal A-fib in 7 out of 39 patients. After 24 hours of monitoring, during the additional 48-hour assessment using the patch-type ECG device, an increase in A-fib burden (9%→38%) was observed in 1 patient. Most patients reported no significant discomfort while using the MobiCARE device. Conclusion: In patients who underwent cardiac surgery, the mobiCARE device demonstrated diagnostic accuracy comparable to that of the conventional Holter monitoring system.