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      • 현장 변동성에 대응하는 rule 기반 최적화 시스템 설계방법

        방찬석,정재우 대한산업공학회 2015 대한산업공학회 춘계학술대회논문집 Vol.2015 No.4

        Including heat, dust, vibration, noise, and humidity, unstructured and qualitative factors at a work-site in steel industry widen the gap between an OR(operations research) theory and its industrial practice. Bridging the theory and its practice, this paper proposes a new design approach based on a rule-based optimization system that is highly adaptive to changes in a steel shop floor. One of the biggest advantages of this approach is that it could simplify a mathematical model by utilizing intuitive rules involved in a decision making problem. The rule-based optimization system developed by the new design approach was applied successfully for solving an alloy blending optimization problem in an actual steel plant of POSCO, one of the leading global steel makers.

      • 현장 변동성에 대응하는 rule 기반 최적화 시스템 설계방법

        방찬석,정재우 한국경영과학회 2015 한국경영과학회 학술대회논문집 Vol.2015 No.4

        Including heat, dust, vibration, noise, and humidity, unstructured and qualitative factors at a work-site in steel industry widen the gap between an OR(operations research) theory and its industrial practice. Bridging the theory and its practice, this paper proposes a new design approach based on a rule-based optimization system that is highly adaptive to changes in a steel shop floor. One of the biggest advantages of this approach is that it could simplify a mathematical model by utilizing intuitive rules involved in a decision making problem. The rule-based optimization system developed by the new design approach was applied successfully for solving an alloy blending optimization problem in an actual steel plant of POSCO, one of the leading global steel makers.

      • KCI등재후보

        장치산업에서 원가절감방법론(ICM)개발 적용에 관한 연구

        김종욱,방찬석,김창은 대한안전경영과학회 2016 대한안전경영과학회지 Vol.18 No.2

        IPS(Ideal Production System) is a strategic cost management establishing ideal target cost, innovating cost structure and reduction. However, IPS was commonly used in assembly industry acquiring components and using them to assemble vehicles etc. Applying IPS to steel industry is a new try and not easy because cost elements in flow manufacturing are clustered and obfuscated in a complicated way. This paper proposes ICM (Ideal Cost Management) method adaptive to steel industry. One of the biggest advantages is that ICM could classify and categorize costs in detail according to accounts and manufacturing machines. Based on ICM information, steps of extracting and maximizing ideas are followed effectively. From 2013, ICM was applied successfully to POSCO Pohang Steel Works 38 factories.

      • 허혈성 심장 질환의 One-stop Evaluation Protocol: Myocardial Fusion PET Study

        김경목,이병욱,이동욱,김정수,장영도,방찬석,백종훈,이인수,Kim, Kyong-Mok,Lee, Byung-Wook,Lee, Dong-Wook,Kim, Jeong-Su,Jang, Yeong-Do,Bang, Chan-Seok,Baek, Jong-Hun,Lee, In-Su 대한핵의학기술학회 2010 핵의학 기술 Vol.14 No.2

        Purpose: In the early stage of using PET/CT, it was used to damper revision but recently shows that CT with MDCT is commonly used and works well for an anatomical diagnosis. This hospital makes the accuracy and convenience more higher in the diagnosis and evaluate of coronary heart disease through concurrently running myocardial perfusion SPECT examination, myocardial PET examination with FDG, and CT coronary artery CT angiography(coronary CTA) used PET/CT with 64-slice. This report shows protocol and image based on results from about 400 coronary heart disease examinations since having 64 channels PET/CT in July 2007. Materials and Methods: An Equipment for this examination is 64-slice CT and Discovery VCT (DVCT) that is consisted of PET with BGO ($Bi_4Ge_3O_{12}$) scintillation crystal by GE health care. First myocardial perfusion SPECT with pharmacologic stress test to reduce waiting time of a patient and get a quick diagnosis and evaluation, and right after it, myocardial FDG PET examination and coronary CTA run without a break. One-stop evaluation protocol of ischemic heart disease is as follows. 1)Myocardial perfusion SPECT with pharmacologic stress: A patient is injected with $^{99m}Tc$-MIBI 10 mCi and does not have any fatty food for myocardial PET examination and drink natural water with ursodeoxcholic acid 100 mg and we get SPECT image in an hour. 2)Myocardial FDG PET: To reduce blood fatty content and to increase uptake of FDG, we used creative oral glucose load using insulin and Acipimox to according to blood acid content. A patient is injected with $^{18}F$-FDG 5 mCi for reduction of his radiation exposure and we get a gated image an hour later and get delay image when we need. 3) Coronary CTA: The most important point is to control heart rate and to get cooperation of patient's breath. In order to reduce a heart rate of him or her below 65 beats, let him or her take beta blocker 50 mg ~ 200 mg after a consultation with a doctor about it and have breath-practices then have the examination. Right before the examination, we spray isosorbide dinitrate 3 to 5 times to lower tension of bessel wall and to extension a blood wall of a patient. It makes to get better the shape of an anatomy. At filming, a patient is injected CT contrast with high pressure and have enough practices before the examination in order to have no problem. For reduction of his radiation exposure, we have to do ECG-triggered X-ray tube modulation exposure. Results: We evaluate coronary artery stenosis through coronary CTA and study correlation (culprit vessel check) of a decline between stenosis and perfusion from the myocardial perfusion SPECT with pharmacologic stress, coronary CTA, and can check viability of infarction or hibernating myocardium by FDG PET. Conclusion: The examination makes us to set up a direction of remedy (drug treatment, PCI, CABG) because we can estimate of effect from remedy, lesion site and severity. In addition, we have an advantage that it takes just 3 hours and one-stop in that all of process of examinations run in succession and at the same time. Therefore it shows that the method is useful in one stop evaluation of ischemic heart disease. 관상동맥질환의 진단 및 평가에 있어서 myocardial perfusion SPECT검사와 FDG를 이용한 myocardial PET검사 그리고 PET/CT에 장착된 64-slice CT를 이용한 coronary CT angiography를 동시에 실행함으로 검사의 신뢰도와 편의성을 한층 더 높이고자 한다. 먼저 약물부하 myocardial perfusion SPECT검사를 먼저 시행한다. 환자의 피폭경감을 위해서 $^{99m}Tc$-MIBI 10 mCi 로 주사하며 myocardial PET검사를 위해서 지방식을 먹지 않고 ursodeoxcholic acid 100 mg을 생수와 함께 복용하게 하여 1시간 후에 SPECT 영상을 얻는다. 이어서 myocardial FDG PET검사를 시행한다. 혈중의 지방산 농도를 낮추고 심장의 FDG섭취율을 증가시키기 위해 혈중 포도당 농도치에 따라 insulin과 Acipimox를 함께 사용하는 독창적인 경구 당 부하법을 사용하였으며, 환자의 피폭 경감을 위해서 $^{18}F$-FDG 5 mCi를 주사하고 1시간 후에 10분간 gated 영상을 얻으며 필요시 delay 영상을 얻는다. PET검사가 끝남과 동시에 환자는 동일한 position을 하고 연속해서 coronary CTA를 시행한다. 이 검사에서 가장 중요한 것은 심박동수 조절과 환자의 호흡협조이다. 심박동수를 65회 이하로 낮추기 위해 beta blocker 50 mg~200 mg을 의사와 상의하여 복용케 하고 호흡법을 충분히 연습을 시키다. 검사 직전에 isosorbide dinitrate를 3~5회 분무하여 혈관벽의 긴장을 낮추고 혈관을 확장시켜서 coronary artery의 해부학적 형태를 더욱 잘 나타낼 수 있게 한다. 촬영 시 CT 조영제를 4.0~5.0 mL/sec의 압력으로 주입하며 촬영을 한다. Coronary CTA를 이용하면 coronary artery stenosis가 잘 보이며, 약물부하 myocardial perfusion SPECT로 coronary CTA에서 보인 stenosis와 perfusion저하의 상관관계를 검토(culprit vessel 확인)할 수 있으며, FDG PET으로 hibernating myocardium 또는 infarction site의 viability를 확인할 수 있다. 한 가지 검사로 lesion site와 severity 및 치료에 대한 반응 예측이 가능함으로 약물치료, PCI, CABG 등 치료방향을 설정할 수 있다. 또한 모든 검사 과정들이 연속적으로 동시에 이루어지기 때문에 짧은 시간(3시간) 내에 one-stop으로 검사를 종료할 수 있는 큰 장점을 가지게 된다. 그러므로 이 검사법은 ischemic heart disease의 one-stop evaluation에 있어서 유용한 protocol로 보여진다.

      • PET검사 작업환경에 있어서 APRON의 방어에 대한 고찰

        이성욱,김승현,지봉근,이동욱,김정수,김경목,장영도,방찬석,백종훈,이인수,Lee, Seong-wook,Kim, Seung-hyun,Ji, Bong-geun,Lee, Dong-wook,Kim, Jeong-soo,Kim, Gyeong-mok,Jang, Young-do,Bang, Chan-seok,Baek, Jong-hoon,Lee, In-soo 대한핵의학기술학회 2014 핵의학 기술 Vol.18 No.1

        PET/CT기기의 발달로 인한 검사시간의 단축과 대중화로 인해 검사건수도 꾸준히 증가하고 있다. 이는 방사선 작업종사자의 피폭선량도 함께 증가시키는 결과를 초래한다. 본 연구는 PET/CT 검사에 있어서 에너지가 강한 $^{18}F-FDG$를 apron을 착용 시 방사선 차폐율을 측정하고 차폐효과를 알아보고자 하였다. 또한 $^{99m}TC$과의 차폐율을 비교하여 방사선 작업종사자의 피폭선량을 최소화하는 것에 목적을 두고 진행하였다. 실험방법은 2013년 5월 2일부터 5월 10일까지 8일간 PET/CT 검사를 위해 본원을 방문한 10명의 환자를 대상으로 하였고 PET/CT 주요 작업공간인 $^{18}F-FDG$ 분배실, 환자 안정실($^{18F}$주사 후 환자 대기장소), PET/CT 검사실 모두 3곳을 선정하여 Apron장착 전과 apron장착 후로 나누어 선량율 변화를 측정하였다. 정확한 측정을 위해서 환자 또는 Source부터의 거리는 1 m로 고정하였다. 또한 Apron의 선량감소율을 비교하고자 $^{99m}TC$의 source에도 같은 방법을 적용하여 측정하였다. 측정결과 $^{18F}FDG$ 분배실에서 L-BLOCK만 있는 경우 평균 $0.32{\mu}Sv$였고 L-block+apron의 경우 $0.23{\mu}Sv$이였으며 두 경우의 선량과 선량율의 차이는 각각 $0.09{\mu}Sv$, 26%로 나타났다. 안정실에서 apron이 없는 경우 평균 $33.1{\mu}Sv$였고 apron이 있는 경우 평균 $22.3{\mu}Sv$였다. 두 경우의 선량과 선량율의 차이는 각각 $10.8{\mu}Sv$, 33%로 나타났다. PET/CT실에서의 apron이 없는 경우 평균 $6.9{\mu}Sv$였고 apron이 있는 경우 평균 $5.5{\mu}Sv$였다. 두 경우의 선량과 선량율의 차이는 각각 $1.4{\mu}Sv$, 25%로 나타났다. $^{99m}TC$은 apron이 없는 경우 평균 $23.7{\mu}Sv$였고 apron이 있는 경우 평균 $5.5{\mu}Sv$였다. 두 경우의 선량과 선량율의 차이는 각각 $18.2{\mu}Sv$, 77%나타났다. 실험결과 환자에게 투여한 후의 $^{99m}TC$의 경우 평균 77%의 차폐율을 나타내었고 $^{18}F-FDG$의 경우 평균 27%의 비교적 낮은 차폐율을 보였다. source 자체만을 비교하였을 때에 $^{18}F-FDG$는 17%의 차폐율을 보였고 $^{99m}TC$은 77%의 차폐율을 보였다. $^{99m}TC$에 비해 낮은 차폐효과이지만 $^{18}F-FDG$ 역시 apron에 대한 차폐효과가 있음을 알 수 있었다. 그러므로 PET/CT 검사에 있어서 $^{18}F-FDG$과 같은 고에너지에 맞는 apron을 착용한다면 방사선 작업종사자의 피폭선량을 최소화 할 수 있을 것으로 사료된다. Purpose: The advancement in PET/CT test devices has decreased the test time and popularized the test, and PET/CT tests have continuously increased. However, this increases the exposure dose of radiation workers, too. This study aims to measure the radiation shielding rate of $^{18}F-FDG$ with a strong energy and the shielding effect when worker wore an apron during the PET/CT test. Also, this study compared the shielding rate with $^{99m}TC$ to minimize the exposure dose of radiation workers. Materials and Methods: This study targeted 10 patients who visited in this hospital for the PET/CT test for 8 days from May 2nd to 10th 2013, and the $^{18}F-FDG$ distribution room, patient relaxing room (stand by room after $^{18}F-FDG$ injection) and PET/CT test room were chosen as measuring spots. Then, the changes in the dose rate were measured before and after the application of the APRON. For an accurate measurement, the distance from patients or sources was fixed at 1M. Also, the same method applied to $^{99m}TC's$ Source in order to compare the reduction in the dose by the Apron. Results: 1) When there was only L-block in the $^{18}F-FDG$ distribution room, the average dose rate was $0.32{\mu}Sv$, and in the case of L-blockK+ apron, it was $0.23{\mu}Sv$. The differences in the dose and dose rate between the two cases were respectively, $0.09{\mu}Sv$ and 26%. 2) When there was no apron in the relaxing room, the average dose rate was $33.1{\mu}Sv$, and when there was an apron, it was $22.3{\mu}Sv$. The differences in the dose and dose rate between them were respectively, $10.8{\mu}Sv$ and 33%. 3) When there was no APRON in the PET/CT room, the average dose rate was $6.9{\mu}Sv$, and there was an APRON, it was $5.5{\mu}Sv$. The differences in the dose and dose rate between them were respectively, $1.4{\mu}Sv$ and 25%. 4) When there was no apron, the average dose rate of $^{99m}TC$ was $23.7{\mu}Sv$, and when there was an apron, it was $5.5{\mu}Sv$. The differences in the dose and dose rate between them were respectively, $18.2{\mu}Sv$ and 77%. Conclusion: According to the result of the experiment, $^{99m}TC$ injected into patients showed an average shielding rate of 77%, and $^{18F}FDG$ showed a relatively low shielding rate of 27%. When comparing the sources only, $^{18F}FDG$ showed a shielding rate of 17%, and $^{99m}TC$'s was 77%. Though it had a lower shielding effect than $^{99m}TC$, $^{18}F-FDG$ also had a shielding effect on the apron. Therefore, it is considered that wearing an apron appropriate for high energy like $^{18}F-FDG$ would minimize the exposure dose of radiation workers.

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