• Title/Summary/Keyword: 무선 심전도

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Sensor Network-based u-Healthcare System (센서네트워크 기반 u-Healthcare 시스템)

  • Back, Yun-Suk;Lee, Bong-Hwan;Bang, Min-Young;Hwang, In-Chan
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2008.10a
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    • pp.312-315
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    • 2008
  • Recently, owing to the development of ubiquitous, RFID and local area wireless communication technology, many studies on the system which can measure biomedical signals are being carried out. In this paper, we have designed and implemented an u-Healthcare system based on sensor network using biomedical signal measurement sensors such as ECG, blood pressure, and heartbeats. The biomedical signals from sensor nodes pass through the gateway and are finally transmitted to a healthcare renter. The acquired biomedical signals are processed in the healthcare center and the analyzed results are transmitted to the patients to improve patients' health using either kinesitherapy or dietary treatment.

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Implementation of the Portable Remote Vital Signal Monitoring System for Home Healthcare (홈헬스케어를 위한 휴대형 원격 건강모니터링 시스템 구현)

  • Youn, Jeong-Yun;Jung, Hwan;Hwang, Jun-Heum;Jeong, Do-Un
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2008.10a
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    • pp.759-763
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    • 2008
  • 본 연구에서는 가정 내에서 보다 편리하게 건강모니터링을 수행하기 위한 홈헬스케어용 휴대형 건강모니터링 시스템을 구현하고자 하였다. 이를 위해 전문 의료인의 도움을 받지 않고도 일반인들이 쉽게 측정할 수 있으며, 많은 건강정보를 포함하고 있는 생체신호인 심전도, 맥파 그리고 체온을 동시에 모니터링 할 수 있는 다중생체 계측 시스템을 구현하였다. 구현된 생체계측 시스템은 신호검출을 위한 센서부, 각각의 생체신호를 증폭 및 필터링하기 위한 아날로그 신호처리부, 아날로그신호를 디지털로 변환하여 처리하고, 시스템 주변장치를 제어하기 위한 시스템제어부로 구성되었다. 또한 근거리 무선통신을 통해 시스템 자체에서의 생체신호 모니터링뿐만 PC등의 홈서버 상에서 무선모니터링이 가능하며, 웹을 통해 원격지에서도 생체신호의 모니터 링이 가능한 시스템을 구현하였다. 구현된 시스템의 성능평가 결과 홈헬스케어를 위한 원격 건강모니터링의 가능성을 확인하였다.

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A Study on the Implementation of Wireless LAN MAC(medium access control) Layer for a Medical Information Transmission (의료 정보(심전도 데이터) 전송을 위한 무선 LAN MAC 계층 구현에 관한 연구)

  • 류점수;고성일;김영길
    • Journal of the Korean Institute of Telematics and Electronics S
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    • v.34S no.12
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    • pp.50-59
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    • 1997
  • A wireless LAN medical information transmission system is useful for patients who need mobility in a local area environment. This paper proposes a method using WLAN(wireless local area network) and implements a stand-alone system with MAC(meidum access control) layer protocol referenced IEEE 802.11 draft standard. The system consists of a 8bit-microprocessor which handles media access control protocol and a WL100(GEC Plessey) chip which takes care of phsical layer specific routines and uses a RF module DE6003(GEC Plessey). The major features of the implemented system are the CSMA/CA protocol used a consecutive DATA-ACK trasmission method which yields more effective bandwidth allocation for asyncronous traffic transmission and the modified PCF protocol for time-bounded traffic transmission, which operates in ad-hoc network topology apart from IEEE 802.11 draft standard confirm PCF mode operate in infrastruture topology.

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A Study of Biosignal Analysis System for Sensibility Evaluation (감성을 평가하기 위한 생체신호 분석 시스템에 관한 연구)

  • Lee, Ji-Hyeoung;Kim, Kyung-Ho
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2010.07a
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    • pp.35-38
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    • 2010
  • 본 논문에서는 일상생활 속에서 무자각적으로 생체신호를 측정하고 분석하여 감성을 평가할 수 있는 임베디드 시스템에 관하여 연구하였다. 지속적으로 변화하는 감성을 일관적이며 신뢰성이 높은 생리적인 방법으로 평가하기 위해 심전도(ECG:Electrocardiogram), 맥파(PPG:Photoplethysmogram)의 두 가지 생체신호를 측정하고, 무선전송(Bluetooth) 장치를 이용하여 측정한 생체신호를 실시간으로 노트북PC로 전송하여 분석하였다. 생체신호의 분석방법은 FFT(Fast Fourier Transform)과 전력스펙트럼밀도(Power Spectrum Density)를 이용한 주파수 분석방법으로 두 생체신호의 특정 주파수 대역이 가지는 자율신경계의 활성도의 비율을 분석하여 비교 연구하였다. 또한 보다 빠르고 정확한 감성을 평가하기 위하여 분석알고리즘의 연산을 최소화 하였으며 그래프를 이용한 분석결과의 시각화를 하였다. 본 논문에서는 무자각적인 생체신호 측정 시스템을 이용하여 다양한 상황에서 생체신호를 측정하고, 개발한 분석 알고리즘으로 분석한 결과의 차이를 연구하여 정확도 및 신뢰도를 기준으로 감성을 평가하기 위한 분석 시스템을 평가하였다.

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Detection of Sleep Apnea Using ZigBee (ZigBee를 이용한 수면 무호흡 검출)

  • Kim Hong-Yoon;Lee Jae-Yong
    • Journal of Korea Society of Industrial Information Systems
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    • v.11 no.3
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    • pp.90-95
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    • 2006
  • Polysomonography, a way of diagnosing patients for Sleep Apnea, measures several kinds of bio-signal simultaneously. So it makes patients' behavior restricted and the examination more expensive. In this paper, presents another way of examining patients' ECGs, which are transferred to a computer system through a new wireless communication, Zigbee. This way of using Zigbee has solved restrictions of places and time for Polysomonography; and thus it is possible to reduce the cost, as well as improving patients' liberty.

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The Measurement System of ECG, Temperature and Humidity Using RF wireless Communication Technique (RF 무선통신 기술을 이용한 심전도 및 온.습도 측정 시스템)

  • Lim, Jin-Hee;Nam, Hyo-Duck;Jung, Woo-Chul
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2007.11a
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    • pp.356-357
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    • 2007
  • In this paper, we developed an integrated miniaturized device which acquires and transmits the signal of ECG an interested heartbeat and body's temperature and humidity. Using an amplifier circuit on the electrodes and the radio frequency transmission, the developed system dispenses with the use of cables among the electrodes, amplifier, and the post processing system. The sensor signals are transmitted to the RF-wireless terminal that was developed using the micro controller Aduc812, LCD, RF-module (frequency 424MHz, 9600-bps). In results, the developed system improves not only the signal-to-noise ration in dynamic ECG & and body's temperature and humidity measurement, but also the user convenience.

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Multimodal biosignal measurement sensor and analysis system (멀티모달 바이오신호 측정센서 및 분석 시스템)

  • Jeong, Kwanmoon;Moon, Chanki;Nam, Yunyoung;Lee, Jinsook
    • Proceedings of the Korea Information Processing Society Conference
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    • 2015.04a
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    • pp.1049-1050
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    • 2015
  • e-health보드를 이용하여 측정한 생체신호를 실시간으로 블루투스통신을 통한 무선통신을 함으로서 PC와 연결한다. PC에서 송신된 데이터를 텍스트로 저장한 뒤 c#으로 체온, 심전도, 근전도, 피층 전기 반응, 호흡 5가지의 결과 값을 그래프로 보여준다.

Implementation and Evaluation of Chair-type ECG Monitoring System using Unconstraint Electrode (무구속 전극을 이용한 의자형 심전도 모니터링 시스템의 구현 및 평가)

  • Noh, Yun-Hong;Jeong, Do-Un
    • Journal of the Institute of Convergence Signal Processing
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    • v.16 no.2
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    • pp.56-62
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    • 2015
  • In this study, we implemented an unconstraint ECG monitoring system on a chair. Nowadays, modern people spend most of their time sitting on the chair. Therefore, it is necessary to have an unconstraint ECG monitoring system that can be used for a long time. The implemented system can perform measurement even with clothes on and it has great advantage on motion artifacts. A pair of unconstraint electrodes are placed on the back of the chair. Amplifier and filters are designed to remove motion artifacts, The baseline noise and power line noise are filtered and very low level of bio-signal is amplified to give a final measurement. Control unit and wireless transmission unit are implemented. Analog signal is converted into digital signal and transmits biological signal to the PC and the smart phone. Therefore continuous ECG monitoring in daily life is made possible. A comparison experiment between Ag / AgCl electrode and unconstraint electrode is conducted to evaluate the performance of the implemented system. As a result, we confirm our unconstraint system can be used for daily life ECG monitoring.

A Study on Wearable Emergency Medical Alarm System (착용형 응급의료 경보시스템 구현에 관한 연구)

  • Kim, Dong-Wan;Beack, Seung-Hwa
    • Journal of IKEEE
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    • v.10 no.1 s.18
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    • pp.55-61
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    • 2006
  • In modern society, development of medical technology has extended the human life span. However, it has also caused some side-effects. Mostly old people who live alone are not available the medical service quickly when they are in emergency situations. Moreover heart related diseases as well are rapidly increasing with aging. This study proposes the emergency medical alarm system. This system measures the physiological signals such as ECG(electrocardiogram), temperature, and motion data, analyzes those data automatically, and sends the urgent message to the Emergency Medical Center and to their family. There are two main parts in the system. In the first part, physiological data acquisition part, the troublesome addition and deletion of body signals on existing proposed systems have been supplemented, which led to the modulized production by means of ECG sensor module, temperature sensor module, acceleration sensor module. The other part is mobile unit, which includes signal processing and transmission functions. And bluetooth allows two parts to communicate with each other. Data that are processed in the mobile unit are stored in the PC database through the WLAN using TCP/IP protocol.

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Development of Wireless Electronic Cardiogram and Stethoscope (ECGS) to Measure ECG Signal and Heart Sound (심전도와 심음을 측정하기 위한 무선 전자 심전도-심음 청진기 개발)

  • Cho, Han Seok;Kang, Young-Hwan;Park, Jae-Soon;Choi, Jin Gyu;Joung, Yeun-Ho;Koo, Chiwan
    • Journal of Biomedical Engineering Research
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    • v.43 no.2
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    • pp.124-130
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    • 2022
  • In this paper, we proposed a portable electronic cardiogram and stethoscope (ECGS) that can simultaneously perform the electrocardiogram (ECG) and auscultation tests to increase the reliability of diagnosis of heart disease. To measure the ECG and heart sound (HS) at the same time, three ECG electrodes and a microphone sensor were combined into a triangular shape with a width of 90 mm and a height of 97 mm that can be held in one hand. In order to prevent skin problems when they contact the patient's skin, a capacitive coupled electrode was selected as the ECG electrode and a silicone material was used in a chest piece with the microphone sensor. For the signals measured from the electrodes and the chest piece, filters were respectively configured to pass only the signals of 0.01-100 Hz and 20-250 Hz, which are frequency bands for ECG and HS. The filtered ECG and HS analog signals were converted into digital signals and transmitted to a PC using wireless communication for monitoring them. The HS could be auscultated simultaneously using an earphone. The monitored ECG had an SNR of about 34 dB and a P-QRS-T waveform is clearly visible. In addition, the HS had an SNR of about 28 dB and both S1 and S2 are clearly visible. It is expected that it can aid doctors' inexperience in analyzing the ECG and HS.