이석 교수
Lee Suk
경희대학교 건축학과 · 의학
연구실 소개
이석 교수의 연구실은 통신 네트워크의 지능적 성능 최적화와 의료 영상 및 치료 계획의 정밀화를 핵심으로 삼고 있습니다. 특히 IoT 환경에서의 네트워크 아키텍처 분석, 제약 조건 하에서의 실시간 메시지 처리 성능 향상 기술, 그리고 방사선 치료 계획에서의 부정맥적 움직임 보정 기법 개발에 주력하고 있습니다. 의료 분야에서는 신장 기능 이상, 간 재생 인자, 방사선 치료의 정량적 평가 등 임상적 문제에 기초한 기술적 해결 방안을 모색하고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15The introduction of mobile devices has changed our daily lives. They enable users to obtain information even in a nomadic environment and provide information without limitations. A decade after the introduction of this technology, we are now facing the next innovation that will change our daily lives. With the introduction of the Internet of Things (IoT), our communication ability will not be restricted to only mobile devices. Rather, it will expand to all things with which we coexist. Many stud
Evidence of mild renal involvement is present in approximately 16% of patients with infectious mononucleosis as gauged by abnormalities in urinary sediment. Serious renal involvement including renal failure is very rare, our incidence was only 1.6%. There are only six cases reported in the literature during the last 25 years. The mechanism of renal involvement is probably multifactorial and includes both a direct viral cytopathic effect with other factors including hemolysis, hyperuricemia, and
This paper focuses on performance management of communication networks serving various manufacturing systems. The performance management aims to improve the network performance in handling various types of messages by online adjustment of protocol parameters such as timers and queue capacities. The principles of fuzzy logic, genetic algorithms, and neural networks have been combined in formulating the performance management rules and fine-tuning the manager. In order to demonstrate the efficacy
Radiation treatment planning plays an important role in modern radiation therapy; it could simulate to plan the geometric, radiobiological, and dosimetric aspects of the therapy using radiation transport simulations and optimization. In this chapter, we have reviewed several quantitative methods used for evaluating radiation treatment plans and discussed some important considering points. For the purpose of quantitative plan evaluation, we reviewed dosimetrical indexes like PITV, CI, TCI, HI, MH
General recognition of the presence of a specific hepatotrophic factor in portal blood that is necessary for liver regeneration was delayed by two major problems. First, there was a long period of confusion regarding liver atrophy, liver hypertrophy, and cellular hyperplasia. Second, because only exposure to other liver tissue destroys the hepatotrophic activity, all of the studies that were based on bypassing the portal blood into the systemic circulation merely diluted the active substance, wh
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