• Title/Summary/Keyword: Personal Medical Information

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Patient Authentication System for Medical Information Security using RFID (의료정보보호를 위한 RFID를 이용한 환자 인증 시스템)

  • Yoon, Eun-Jun;Yoo, Kee-Young
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.35 no.6B
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    • pp.962-969
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    • 2010
  • Recently, RFID technology can successfully be used to reduce medical errors. This technology can aid in the accurate matching of patients with their medications and treatments. The enthusiasm for using RFID technology in medical settings has been tempered by privacy concerns. In this paper, we propose a secure and efficient RFID authentication system to not only authenticate patients' authenticity but also protect patients' personal medical informations. The proposed system consists of RFID-based patient authentication protocol and database security protocol. As a result, since the proposed RFID authentication system provides strong security and efficiency, it can be used practically for patient authentication and personal medical information protection on the high technology medical environments such as u-Hospital and u-Healthcare.

A Study on Reliable Electronic Medical Record Systems (신뢰할 수 있는 전자의무기록에 관한 연구)

  • Kim, Yong-Young;Shin, Seung-Soo
    • Journal of Digital Convergence
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    • v.10 no.2
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    • pp.193-200
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    • 2012
  • The existing EMR method placing computer servers in hospitals could expose patients' personal information to hospital officers and people for wrong purposes. In addition, if medical malpractice occurs, the possibility of distorting medical records might be higher because patients' medical records are stored in hospitals. This study provides an electronic medical record with a security system to solve patients' information disclosure. The electronic medical record system could be utilized as an important information when medical malpractice occurs. This system can provide higher security services certifying patients safely and efficiently as well as protecting patients' personal information.

The effect of wearing a helmet on head injury risks among personal mobility vehicle riders: A study of patients who visited a regional emergency medical center due to traffic accidents (개인형 이동수단별 헬멧 착용 유무가 두부 손상에 미치는 영향: 일개 권역응급의료센터에 교통사고로 내원한 환자를 대상으로)

  • So-Yeon An;Yong-Joon Kim;Kyoung-Yul Sim;Kyoung-Youl Lee
    • The Korean Journal of Emergency Medical Services
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    • v.27 no.2
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    • pp.7-17
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    • 2023
  • Purpose: This study aimed to identify the factors that contribute to head injuries among drivers of personal mobility devices and provide insights into safety perceptions. Methods: This retrospective study analyzed data of 221 trauma patients obtained from electronic medical records and the National Emergency Department Information System (NEDIS) over one year, from August 1, 2021, to July 31, 2022. The patients, all in their 20s and 30s, presented to a single emergency medical center following personal mobility device accidents (motorcycles, electric scooters, and bicycles). Results: Among motorcycle riders, 18.2% were not wearing helmets, while the percentage of e-scooter riders not wearing helmets was 87.5%. Wearing a helmet was associated with a 71.2% lower likelihood of head injuries (OR=0.288, CI=0.163 to 0.509, p=0.000). Of the personal mobility devices, motorcycles had a 0.431 times lower odds ratio for head injury compared to e-scooters (p=0.009), and there was no significant difference between e-scooters and bicycles (p=0.776). Conclusion: It is imperative to strengthen safety regulations by mandating helmet use for riders of personal mobility devices. A system to enhance driving enforcement for electric scooters, which are increasingly popular among young adults, should also be established.

Classification for a Standardization System for the Elderly's Necessities (고령친화용품 표준화를 위한 분류)

  • Kim, Yi-Soon;Kwon, Ja-Youn;Shin, Soon-Shik;Moon, In-Hyuk;Hwang, Lee-Cheol;Kim, Gyeong-Cheol
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.20 no.2
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    • pp.328-332
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    • 2006
  • This study aims to provide definitions and standardization for necessities that elderly people can use conveniently and properly in their daily lives and classify necessities for different purposes. First, standard terminologies were defined by reviewing the literature and the relevant laws related to daily necessities for the elders. Secondly, a concept for necessities for the elders was also defined through consultation with experts. Lastly, the elderly's necessities were selected and classified. The elderly's necessities are defined as aids that ordinary elderly people in normal aging process need for the purpose of the convenience of life and aids they wear or use to maintain or improve their health. In this study, the elderly's necessities are divided into three categories: necessities of health, necessities of Oriental medical aids and necessities of daily living. Each category is further classified as follows: Necessities of health include aids for personal medical treatment, aids for personal care and protection and aids for recreation. Necessities of Oriental medical aids include aids for personal medical treatment, aids for personal care and protection and others. Necessities of daily living include aids for personal care and protection, aids for personal mobility, aids for housekeeping, furnishings, aids for communication, information and signalling, aids for handling products and goods and aids for recreation. The classification of the elderly's necessities in this study can be used as basic information for further studies of demand for necessities for the elderly. The results will lay the foundation for a standardization system for the elderly's necessities and the development of silver industry.

Smart Device based ECG Sensing IoT Applications (스마트 디바이스 기반 ECG 감지 IoT 응용 서비스에 관한 연구)

  • Mariappan, Vinayagam;Lee, Seungyoun;Lee, Junghoon;Lee, Juyoung;Cha, Jaesang
    • Journal of Satellite, Information and Communications
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    • v.11 no.3
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    • pp.18-23
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    • 2016
  • Internet of things (IoT) is revolutionizing in the patient-Centered medical monitoring and management by authorizing the Smartphone application and data analysis with medical centers. The network connectivity is basic requirement to collect the observed human beings' health information from Smartphone to monitor the health from IoT medical devices in personal healthcare. The IoT environment built in Smartphone is very effective and does not demand infrastructure. This paper presents the smart phone deployed personal IoT architecture for Non-Invasive ECG Capturing. The adaptable IoT medical device cum Gateway is used for personal healthcare with big data storage on cloud configuration. In this approach, the Smartphone camera based imaging technique used to extract the personal ECG waveform and forward it to the cloud based big data storage connectivity using IoT architecture. Elaborated algorithm allows for efficient ECG registration directly from face image captured from Smartphone or Tablet camera. The profound technique may have an exceptional value in monitoring personal healthcare after adequate enhancements are introduced.

Study on Building Smart Home Testbed for Collecting Daily Health Condition based on Internet of Things (사물인터넷 기반의 일상 건강정보 수집을 위한 스마트 홈 테스트베드 구축)

  • Chae, Myungsu;Kim, Yongrok;Kim, Sangsik;Kim, Sangtae;Jung, Sungkwan
    • KIISE Transactions on Computing Practices
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    • v.23 no.5
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    • pp.284-292
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    • 2017
  • With the development of Internet of Things (IoT) technology, the combination of ICT and medical services has been increasing to improve the quality of medical services. Using the IoTs, we can collect personal health information continuously in a patient's everyday life. We expect that this will improve the quality of medical service through analysis. However, the problem of ensuring the protection of personal information within the personal health information has been hampering the research, development, and application of such services. Other problems include lack of IoT devices and lack of user convenience for collecting health information about a patient's everyday life. Therefore, in this study, we construct a daily health information management service that can collect the health related information at any time and store this data in personal storage. This data is then only provided to the healthcare worker when necessary. We built a test bed for an IoT-based smart home platform and are currently conducting user experiments. Based on the results of this study, we are attempting to provide a high quality medical trial service based on daily health information through linkage with medical device manufacturers, medical clinics, insurance companies, etc. We expect the proposed health information management service will contribute to the revitalization of smart health care services via activating various health related IoT devices and analyzing daily health information.

Personal Health Record/Electronic Medical Record Data Trading Model for Medical My Data Environments (마이데이터 환경에서 개인의 전자 건강/의료 데이터 활용을 위한 데이터 거래모델)

  • Oh, Hyeon-Taek;Yang, Jin-Hong
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.13 no.3
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    • pp.250-261
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    • 2020
  • Today, data subjects should be considered to utilize various personal data. To support this paradigm, the concept of "My Data" has proposed and has realized in various industrial sectors, including medial sectors. Based on the concept of the medical My Data, this paper proposes a personal health record (PHR) and an electronic medical record (EMR) data trading model. Particularly, this paper proposes a system model to support the medical My Data environment and relevant procedure among stakeholders for PHR/EMR data trading that ensures the rights of data subjects. Based on the proposed system model, this paper also proposes various mathematical models to analyze the behavior of stakeholders and shows the feasibility of the proposed data trading model that satisfies the requirements of both data subjects and data consumers.

Healthcare service analysis using big data

  • Park, Arum;Song, Jaemin;Lee, Sae Bom
    • Journal of the Korea Society of Computer and Information
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    • v.25 no.4
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    • pp.149-156
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    • 2020
  • In the Fourth Industrial Revolution, successful cases using big data in various industries are reported. This paper examines cases that successfully use big data in the medical industry to develop the service and draws implications in value that big data create. The related work introduces big data technology in the medical field and cases of eight innovative service in the big data service are explained. In the introduction, the overall structure of the study is mentioned by describing the background and direction of this study. In the literature study, we explain the definition and concept of big data, and the use of big data in the medical industry. Next, this study describes the several cases, such as technologies using national health information and personal genetic information for the study of diseases, personal health services using personal biometric information, use of medical data for efficiency of business processes, and medical big data for the development of new medicines. In the conclusion, we intend to provide direction for the academic and business implications of this study, as well as how the results of the study can help the domestic medical industry.

An Efficient Personal Information Collection Model Design Using In-Hospital IoT System (병원내 구축된 IoT 시스템을 활용한 효율적인 개인 정보 수집 모델 설계)

  • Jeong, Yoon-Su
    • Journal of Convergence for Information Technology
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    • v.9 no.3
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    • pp.140-145
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    • 2019
  • With the development of IT technology, many changes are taking place in the health service environment over the past. However, even if medical technology is converged with IT technology, the problem of medical costs and management of health services are still one of the things that needs to be addressed. In this paper, we propose a model for hospitals that have established the IoT system to efficiently analyze and manage the personal information of users who receive medical services. The proposed model aims to efficiently check and manage users' medical information through an in-house IoT system. The proposed model can be used in a variety of heterogeneous cloud environments, and users' medical information can be managed efficiently and quickly without additional human and physical resources. In particular, because users' medical information collected in the proposed model is stored on servers through the IoT gateway, medical staff can analyze users' medical information accurately regardless of time and place. As a result of performance evaluation, the proposed model achieved 19.6% improvement in the efficiency of health care services for occupational health care staff over traditional medical system models that did not use the IoT system, and 22.1% improvement in post-health care for users who received medical services. In addition, the burden on medical staff was 17.6 percent lower on average than the existing medical system models.