• Title/Summary/Keyword: 의료정보 기술

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Research Analysis on Generating Summary Reports of DICOM Image Information Based on LLM (LLM 기반 DICOM 이미지 정보 요약 리포트 생성에 대한 연구 분석)

  • In-sik Yun;Il-young Moon
    • Journal of Advanced Navigation Technology
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    • v.28 no.5
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    • pp.738-744
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    • 2024
  • The goal of this system is to effectively summarize and visualize important DICOM image data in the medical field. Using React and Node.js, the system collects and parses DICOM images, extracting critical medical information in the process. It then employs a large language model (LLM) to generate automatic summary reports, providing users with personalized medical information. This approach enhances accessibility to medical data and leverages web technologies to process large-scale data quickly and reliably. The system also aims to improve communication between patients and doctors, enhancing the quality of care and enabling medical staff to make faster, more accurate decisions. Additionally, it seeks to improve patients' medical experiences and overall satisfaction. Ultimately, the system aims to improve the quality of healthcare services.

포장과 법률 - 의료기기 표시기재 가이드라인 ②

  • (사)한국포장협회
    • The monthly packaging world
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    • s.288
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    • pp.109-116
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    • 2017
  • 식품의약품안전처 의료기기안전국 의료기기관리과는 인구 고령화, 기술 발전의 급속도화 등 환경변화에 따른 의료기기 사용 증가에 따른 부작용 등 소비자 피해를 최소화하기 위한 일환으로 '의료기기 표시기재 가이드라인'을 마련했다. 의료기기 표시기재 내용 및 방법 등을 제시함으로서 소비자의 올바른 정보사항 제공 및 업계의 혼선을 사전예방하기 위한 것이다. 지난호에 이어 '의료기기 표시기재 가이드라인'의 주요 내용에 대해 살펴보도록 한다.

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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.

The Effect of Doctor's Payment Method on Patient's Medical Care Use: Revisit of the Patient's Asymmetric Information Problem (환자의 의료이용에 대한 의사의 지불방식의 효과: 재방문 환자의 비대칭적 정보의 문제)

  • Jo, Changik;Lim, Jae-Young
    • KDI Journal of Economic Policy
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    • v.33 no.1
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    • pp.125-148
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    • 2011
  • Although the patient's problem with access to health information has been improved due to rapidly developing information technologies, such as the internet, some patients still do not have enough ability to understand, interpret, and analyze the health information. Given this view on the patient's asymmetric information problem, if a doctor provides sufficient effort to help patients understand and interpret medical information, the efficiency of patient's medical care use could be improved. This paper shows firstly that the patient's inefficient use of medical care originates from his information problems, such as the misperception of the effectiveness of medical care and secondly suggests that if the doctor makes sufficient effort to correct patient's information problems, the inefficiency can be ameliorated. This paper also suggests the manipulation of a doctor's payment method can lead a doctor to provide optimal level of efforts which can in turn lead patients to use the optimal level of medical care. With an optimal level of effort, a doctor can more easily achieve a patient's compliance with the newly recommended amount of medical care.

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A MFER Generator Module for Bio-Radar Signals (원격 바이오 레이더 신호를 위한 MFER 모듈 개발)

  • Son, Jae Gi;Park, Chang Won
    • Annual Conference of KIPS
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    • 2009.04a
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    • pp.932-933
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    • 2009
  • 최근 의료기기의 디지털화와 더불어 IT 기술의 융복합화에 따라 다양한 의료기기들이 등장하고 있다. 특히 의료분야에서 발생하는 파형을 디지털화 시킴으로써 컴퓨터 등과 같은 기기를 통하여 정확한 분석이 가능하며 장기적으로 보관이 가능하다. 또한 디지털 파형의 포맷 규격을 정형화 함으로써 HL7 이나 DICOM 과 같이 상호 호환성, 정보교환이 가능하다. 특히 ECG, EEG 등과 같은 파형들은 개개인의 건강정보를 분석하기 위해 필수적인 요소이다. 본 논문에서는 ISO/TS 11073-92001 규격으로 제정된 MFER (Medical waveform description Format Encoding Rules)를 기반으로 바이오 레이더 신호를 저장할 수 있는 모듈에 관하여 기술한다.

An Architecture of u-LifeCare Middleware in Ubiquitous Computing (유비쿼터스 컴퓨팅 기술에 기반한 u-LifeCare Middleware 구조 설계)

  • Choi, Ki-Moon;Huh, Eui-Nam
    • Annual Conference of KIPS
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    • 2007.05a
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    • pp.826-828
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    • 2007
  • 건강과 복지에 대한 사람들의 관심이 증대함에 따라 고령층 인구를 중심으로 병원에서 건강 점검 및 진료가 이루어졌던 기존의 Health산업 패러다임에서 연령층에 관계없이 언제, 어디서나 진료를 받을 수 있는 u-Health산업 패러다임으로 변화하고 있다. 이러한 흐름에 발맞추어 유비쿼터스 컴퓨팅 환경에서 혈압, 맥박, 심전도 등과 같은 의료정보뿐만 아니라 일상생활에서 획득한 정보를 통해 건강증진, 질병예방, 진료를 가능하게 하는 u-LifeCare 의료체계가 필요하다. u-LifeCare 를 지원하는 미들웨어는 유비쿼터스 환경에서 필수적인 기술 요소인 센서 네트워크 미들웨어와 상황인지 미들웨어를 통합하는 미들웨어이며, 라이프케어의 특성을 고려한 '초경량(LightWeight)의, 확장성(Scalability)있는, 보안성(Security)을 갖춘' 미들웨어이다.

Medical Information Dynamic Access System in Smart Mobile Environments (스마트 모바일 환경에서 의료정보 동적접근 시스템)

  • Jeong, Chang Won;Kim, Woo Hong;Yoon, Kwon Ha;Joo, Su Chong
    • Journal of Internet Computing and Services
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    • v.16 no.1
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    • pp.47-55
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    • 2015
  • Recently, the environment of a hospital information system is a trend to combine various SMART technologies. Accordingly, various smart devices, such as a smart phone, Tablet PC is utilized in the medical information system. Also, these environments consist of various applications executing on heterogeneous sensors, devices, systems and networks. In these hospital information system environment, applying a security service by traditional access control method cause a problems. Most of the existing security system uses the access control list structure. It is only permitted access defined by an access control matrix such as client name, service object method name. The major problem with the static approach cannot quickly adapt to changed situations. Hence, we needs to new security mechanisms which provides more flexible and can be easily adapted to various environments with very different security requirements. In addition, for addressing the changing of service medical treatment of the patient, the researching is needed. In this paper, we suggest a dynamic approach to medical information systems in smart mobile environments. We focus on how to access medical information systems according to dynamic access control methods based on the existence of the hospital's information system environments. The physical environments consist of a mobile x-ray imaging devices, dedicated mobile/general smart devices, PACS, EMR server and authorization server. The software environment was developed based on the .Net Framework for synchronization and monitoring services based on mobile X-ray imaging equipment Windows7 OS. And dedicated a smart device application, we implemented a dynamic access services through JSP and Java SDK is based on the Android OS. PACS and mobile X-ray image devices in hospital, medical information between the dedicated smart devices are based on the DICOM medical image standard information. In addition, EMR information is based on H7. In order to providing dynamic access control service, we classify the context of the patients according to conditions of bio-information such as oxygen saturation, heart rate, BP and body temperature etc. It shows event trace diagrams which divided into two parts like general situation, emergency situation. And, we designed the dynamic approach of the medical care information by authentication method. The authentication Information are contained ID/PWD, the roles, position and working hours, emergency certification codes for emergency patients. General situations of dynamic access control method may have access to medical information by the value of the authentication information. In the case of an emergency, was to have access to medical information by an emergency code, without the authentication information. And, we constructed the medical information integration database scheme that is consist medical information, patient, medical staff and medical image information according to medical information standards.y Finally, we show the usefulness of the dynamic access application service based on the smart devices for execution results of the proposed system according to patient contexts such as general and emergency situation. Especially, the proposed systems are providing effective medical information services with smart devices in emergency situation by dynamic access control methods. As results, we expect the proposed systems to be useful for u-hospital information systems and services.

The Study on HL7 Message Improvement for Supporting of Efficient Healthcare Service (효율적인 헬스케어서비스 제공을 위한 HL7 메시지 개선에 관한 연구)

  • Heo, Sung-Uk;Choi, Sung-Wook;Kim, Gwan-Hyung;Oh, Am-Suk
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.18 no.6
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    • pp.1388-1394
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    • 2014
  • Recently, medical expenses are increasing because of the accelerated aging phenomenon, thus study for the medical service of high quality and reduction of medical expenses should be continued as yet. Especially, U-health is performed by intelligent medical service which is derived by smart devices, wireless network, sensing technology and it could be more extensible in the medical fields as time goes on. On this study, we analyze message transmission structure of HL7 standard and will suggest improved processing methodology of HL7 message.

국내외 모바일 바이오인식 신융합기술 연구사례 분석

  • Kim, Jason
    • Review of KIISC
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    • v.22 no.4
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    • pp.7-13
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    • 2012
  • 전통적으로 바이오인식기술은 출입국심사(전자여권, 승무원 승객 신원확인), 출입통제(도어락, 출입 근태관리), 행정(무인민원발급, 전자조달), 사회복지(미아찾기, 복지기금관리), 의료(원격의료, 의료진 환자 신원확인), 정보통신(휴대폰인증, PC 인터넷 로그인), 금융(온라인 뱅킹, ATM 현금인출) 등 전세계적으로 다방면에서 폭넓게 보급되어 실생활 깊숙이 자리잡게 되었다. 최근 들어서는 2,000만명의 스마트폰 보급이 폭증하고 NFC칩을 이용한 모바일 지급결제서비스가 개시됨에 따라서, 다양한 모바일 응용서비스 출현과 함께 모바일 기기인증 및 모바일 신융합 응용서비스에 대한 보다 강력한 인증수단을 요구하고 있다. 이에 따라, 본 고에서는 스마트폰을 포함한 모바일기기에 적용된 바이오인식 융합기술, 출입국심사에 적용한 모바일 바이오인식기술, 원격진료를 위한 메디컬 바이오인식기술, 지능형 CCTV에 얼굴인식기술 적용 등 국내외 모바일 바이오인식기술 개발동향과 및 표준화 동향을 살펴보고, 향후 모바일 바이오인식 신융합기술 개발 및 국제표준화 추진방향을 모색하고자 한다.

A Design of Service Improvement Model for Emergency Medical System using Augmented Reality (증강현실을 이용한 응급환자 의료서비스 향상 모델 설계)

  • Jeong, Yoon-Su;Kim, Yong-Tae;Park, Gil-Cheol
    • Journal of Convergence for Information Technology
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    • v.7 no.1
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    • pp.17-24
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    • 2017
  • In the medical field, augmented reality is being used for surgical and medical education. However, augmented reality technology is not applied to emergency patients. In this paper, we propose a medical service support model that can support rapid medical service to emergency patients through an augmented reality - based IT device. The proposed model has the function of collecting the information necessary for the first aid simply through the IT equipment based on the reality of reality, and also receiving the first aid method appropriate for the emergency situation to the medical staff and supporting the service. In addition, the proposed model hierarchically collects information related to emergency patient information inquiry, emergency patient status and emergency treatment based on Analytic Hierarchy Process (AHP). The collected information uses a pair of comparison matrices to compensate for the ambiguity between the information. In particular, the collected information is stored in the server of the medical staff, and in addition to the unique information of the collected information, the collected information can be reflected in the medical service of the medical staff.