• Title/Summary/Keyword: U-healthcare System

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Development of u-Healthcare Agent System using of 3-Axis Accelerometer Sensor (3축 가속도 센서를 이용한 u-헬스케어 에이전트 시스템 개발)

  • Choi, Dong-Oun;Kim, Jin-Sung;Song, Haeng-Sook
    • The Journal of the Korea Contents Association
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    • v.10 no.4
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    • pp.98-105
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    • 2010
  • Health of the people involved in blood sugar, blood pressure, activity, and using bio-sensors to obtain biometric information, the system for monitoring health research for development is a lot. This paper analyzes the bio information by monitoring the u-health care agent system was developed. Activity measurement technology that uses 3-axis accelerometer sensor. 3-axis acceleration sensors, using information obtained from activity to activity analysis to calculate the exact algorithm was developed. More accurate than the existing system to calculate the calorie consumption, it is stored in the database management. and you can check your health status using of activity and bio-information.

Construction of Multi-agent-based Distributed Framework for Application Services of u-Hospital Information Systems (u-병원 정보 시스템의 응용 서비스를 위한 멀티에이전트 기반 분산 프레임워크 구축)

  • Jeong, Chang-Won;Shin, Chang-Sun;Joo, Su-Chong
    • Journal of KIISE:Computing Practices and Letters
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    • v.15 no.11
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    • pp.861-865
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    • 2009
  • As the hospital environment has been increasingly changed into a ubiquitous environment, the application services for the hospital environment are also faced with new requirements. In particular, the emergence of various mobile devices and the introduction of a wireless sensor network technology have accelerated the realization of the u-healthcare. The multi-agent paradigm has been introduced for satisfying both the integration of information and the various application scenarios established from various environments. This paper describes the software structure and u-applications for u-hospital information system based on ubiquitous environments. And it suggested the construction of a multi agent based distributed framework for supporting u-hospital information system. The suggested framework includes the JADE and distributed object group framework. And it implemented u-application services for supporting doctors and nurses, which provides the patient's health information and ward environment information. Especially, it is using a dynamic security mechanism on the security situation, which has not been emphasized in existing researches, and this paper shows the results for each user through the GUI.

A Simultaneous Real-Time Heart Rate Monitoring System for Multiple Users (다수 이용자를 위한 동시적 실시간 심박수 모니터링 시스템)

  • Ha, Sangho
    • KIPS Transactions on Computer and Communication Systems
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    • v.4 no.8
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    • pp.253-258
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    • 2015
  • From the point of view of u-healthcare, heart rate is so useful for both illness for taking care of patients and wellness for improving the level of health and wellbeing. It is because heart rate is a significant clinical variable for all kinds of diseases as well as an indicator of the intensity of exercise. Recently, a number of various wearable heart rate monitors have been released to check people's status in the body by monitoring their heart rates. In addition, a number of smartphone applications have been released to conveniently monitor the status of exercise by using heart rate monitors. However, all of these applications are limited to a personal usage. In this paper, we will design a system to simultaneously monitor heart rates coming from multiple users in a real-time, and develop an Android application to apply the system. The application mainly features a simultaneous monitoring of heart rates coming from multiple users, allowing to be effectively applied to fitness centers.

Design and Implementation of Healthcare System Based on Non-Contact Biosignal Measurement (비접촉 생체신호 측정 기반 헬스케어 시스템 설계 및 구현)

  • Hong, Seong-Pyo
    • The Journal of the Korea institute of electronic communication sciences
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    • v.15 no.1
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    • pp.185-190
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    • 2020
  • The rapid aging is increasing as the shortage of medical facilities and the resulting of decline in the quality of public health. In order to ease the burden of rising medical expenses, advanced medical institutions are expanding their remote medical care to lower the cost of services. U-healthcare detects the changes in physical and chemical phenomena occurring in the human body and converts them into electrical signals that can be processed and feeds back to the results through analytical and visualization processes to select only the desired information from the measured signals. The service is provided through a process of providing an alarm to a user. However, traditional biometric methods of attaching sensors directly to the body can be annoying and rejected in daily life. Therefore, there is a need for a method of continuously measuring biometric information without causing inconvenience to daily life. In this paper, we propose an IR-UWB-based non-contact and non-responsive respiratory measurement system that can continuously monitor biological information without any inconveniences to daily life.

A Study on the u-Healthcare System (u-헬스케어 시스템에 관한 연구)

  • Lee, Chang-Kyu;Lee, Jeong-Bae;Ryu, Dae-Hyun;Shin, Seoung-Jung
    • Proceedings of the Korea Information Processing Society Conference
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    • 2011.04a
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    • pp.1141-1142
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    • 2011
  • 유비쿼터스 기술의 결합을 통해 u-헬스케어라는 보건 의료의 새로운 패러다임을 탄생시켜가고 있으며, 원격에서 건강 상태를 검진하여 질병을 방지하거나 만성질환자의 건강상태를 장기적으로 관찰할 수 있는 IT 기술에 대한 연구가 진행되고 있으며 IT와 BT, NT 등의 관련 기술의 융합발전 등으로 U-헬스케어는 정보 네트워크로의 접근을 용이하게 하고 있다.

Application of Biosignal Data Compression for u-Health Sensor Network System (u-헬스 센서 네트워크 시스템의 생체신호 압축 처리)

  • Lee, Yong-Gyu;Park, Ji-Ho;Yoon, Gil-Won
    • Journal of Sensor Science and Technology
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    • v.21 no.5
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    • pp.352-358
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    • 2012
  • A sensor network system can be an efficient tool for healthcare telemetry for multiple users due to its power efficiency. One drawback is its limited data size. This paper proposed a real-time application of data compression/decompression method in u-Health monitoring system in order to improve the network efficiency. Our high priority was given to maintain a high quality of signal reconstruction since it is important to receive undistorted waveform. Our method consisted of down sampling coding and differential Huffman coding. Down sampling was applied based on the Nyquist-Shannon sampling theorem and signal amplitude was taken into account to increase compression rate in the differential Huffman coding. Our method was successfully tested in a ZigBee and WLAN dual network. Electrocardiogram (ECG) had an average compression ratio of 3.99 : 1 with 0.24% percentage root mean square difference (PRD). Photoplethysmogram (PPG) showed an average CR of 37.99 : 1 with 0.16% PRD. Our method produced an outstanding PRD compared to other previous reports.

A New Method for Unconstrained Pulse Arrival Time (PAT) Measurement on a Chair

  • Kim Ko-Keun;Chee Young-Joon;Lim Yong-Gyu;Choi Jin-Wook;Park Kwang-Suk
    • Journal of Biomedical Engineering Research
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    • v.27 no.3
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    • pp.83-88
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    • 2006
  • A new method of measuring pulse arrival time (PAT), which is usually used for the estimation of systolic blood pressure, in an unconstrained manner using a chair, is proposed. The capacitive-coupled ECG (CC-ECG) measurement system and the air cushion with balancing tubes system were used for unconstrained PAT measurement. Firstly, the correlation between the standard PAT (S-PAT) from the photoplethysmography (PPG) and the PAT measured in an unconstrained manner (U-PAT) was evaluated. It was observed that U-PAT, which is the time delay from the R-peak of ECG to the steepest decent point of air cushion pressure wave, is significantly correlated with the S-PAT. Secondly, systolic blood pressure (SBP) measured by the radial tonometer is compared to the U-PAT. The ten-beat averaged U-PAT removed respiration effects and demonstrated a high intra-subject correlation with SBP in all participants. Finally, the tonometry SBP was estimated from these U-PAT values for one participant intermittently during half a day.

The traffic performance evaluation between remote server and mobile for applying to encryption protocol in the Wellness environment (웰니스 환경에서 암호화 프로토콜 적용을 위한 모바일과 원격 서버간 트래픽 성능 평가)

  • Lee, Jae-Pil;Kim, Young-Hyuk;Lee, Jae-Kwang
    • Journal of Digital Convergence
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    • v.11 no.11
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    • pp.415-420
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    • 2013
  • U-WHS refers to a means of remote health monitoring service to combine fitness with wellbing. U-WHS is a system which can measure and manage biometric information of patients without any limitation on time and space. In this paper, we performed in order to look into the influence that the encryption module influences on the communication evaluation in the biometric information transmission gone to the smart mobile device and Hospital Information System.In the case of the U-WHS model, the client used the Objective-c programming language for software development of iOS Xcode environment and SEED and HIGHT encryption module was applied. In the case of HIS, the MySQL which is the Websocket API of the HTML5 and relational database management system for the client and inter-server communication was applied. Therefore, in WIFI communication environment, by using wireshark, data transfer rate of the biometric information, delay and loss rate was checked for the evaluation.

Design and Implementation of U-Health System for Active Oxygen Measurement Data based on Mobile Phone (활성산소 측정 데이터를 위한 모바일 기반의 U헬스 시스템 설계 및 구현)

  • Lee, Chang Moo;Oh, Seung Kyo;Choi, Deok Jai
    • Smart Media Journal
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    • v.1 no.4
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    • pp.52-58
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    • 2012
  • In recent years the combination of IT and BT for U-Healthcare Medical Services has attracted popular attention as an alternative for solving health problems due to aging issue. Active oxygen as free radicals causes unstable state of the body resulting to other disease on which approximate 90% of the diseases are associated with active oxygen. The severity is even higher along with increasing age. Therefore, there is a need for systematic management of active oxygen saturation for the elderly and chronic patients. In this paper, the data about active oxygen measurements from the body measurement is sent to the data storage of medical facilities by the service provider. Medical information is measured by devices provided complying with the standard, support and information using Bluetooth communication. Users can check their health status themselves using the proposed system through 3G/4G mobile devices like smart phone to medical institutions in which the smart phone act as a gateway for medical data transferred from patient to medical institutions and vice versa. Users can get and experience a diagnosis and effective U-Environmental Health Services from Medical institutions anywhere using the proposed built system.

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Motion Artifacts reduction from the PPG based on the Improved PMAF for the U-Healthcare System (U-헬스케어 시스템을 위한 개선된 PMAF 기반의 PPG 신호의 동잡음 제거)

  • Lee, Han-Wook;Lee, Ju-Won;Jeong, Won-Geun;Jun, Jae-Chul;Lee, Gun-Ki
    • Journal of the Institute of Electronics Engineers of Korea SC
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    • v.45 no.5
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    • pp.28-34
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    • 2008
  • The real-time biomedical signal monitoring is a very important factor to realize the ubiquitous healthcare environment. Most of these devices for monitoring the biomedical information get the PPG signal from the user, and these signals are utilized for monitoring their health. It is inconvenient to get the PPG because the user should wear the finger probe with his finger for measuring the PPG signal. Also it is difficult to get the PPG correctly, because of the motion artifacts from the movement of the user. In this paper, we develop the watch type biomedical signal monitoring system without the finger probe, and propose the new algorithm for reducing the motion artifacts from the PPG signal. We designed the system which gets the PPG from the sensor on the wrist band strip. As compared with the finger probe type, this system we proposed is more affected by the motion artifacts. So to filter this motion artifacts, we propose the new method; the improved PMAF(Periodic Moving Average Filter) method.