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The Results of Femorofemoral Bypass Using a Saphenous Vein Graft as an Alternative to PTFE Grafts
Gibeom Kwon,Ki Hyuk Park,Sang Gyu Kwak,Jaehoon Lee 대한혈관외과학회 2023 Vascular Specialist International Vol.39 No.1
Purpose: This study aimed to report the results of femorofemoral bypass (FFB) using a great saphenous vein (GSV) graft as an alternative to polytetrafluoroethylene (PTFE) grafts. Materials and Methods: From January 2012 to December 2021, 168 patients who underwent FFB (PTFE, 143; GSV, 25) were included. The patients’ demographic features and surgical intervention results were retrospectively reviewed. Results: There were no intergroup differences in patients’ demographic features. In GSV vs. PTFE grafts, the superficial femoral artery provided statistically significant inflow and outflow (P<0.001 for both), and redo bypass was more common (P=0.021). The mean follow-up duration was 24.7±2.3 months. The primary patency rates at 3 and 5 years were 84% and 74% for PTFE grafts and 82% and 70% for GSV grafts, respectively. There was no significant intergroup difference in primary patency (P=0.661) or clinically driven target lesion revascularization (CD-TLR)-free survival (P=0.758). Clinical characteristics, disease details, and procedures were analyzed as risk factors for graft occlusion. Multivariate analysis revealed that none of the factors was associated with an increased risk of FFB graft occlusion. Conclusion: FFB using PTFE or GSV grafts is a useful method with an approximately 70% 5-year primary patency rate. The GSV and PTFE grafts showed no difference in primary patency or CD-TLR–free survival during follow-up; however, FFB using GSV may be an option in selective situations.
[PB-0080] Identification of a novel locus (C2) controlling canary yellow flesh in watermelons
Girim Park(Girim Park),Yunseo Choi(Yunseo Choi),Seoyeon Park(Seoyeon Park),Kaeun Jang(Kaeun Jang),Yongjae Kim(Yongjae Kim),Gibeom Kwon(Gibeom Kwon),Younghoon Park(Younghoon Park) 한국육종학회 2022 한국육종학회 공동학술발표집 Vol.2022 No.-
The Preliminary Study of Probabilistic Safety Assessment for Intermediate Storage Facility
Dohun Kwon,Heejong Yoo,Sungmin Yang,Kyusik Oh,Gibeom Kim,Sejin Baek,Yujeong Hwang,Jiye Jeong,Gyunyoung Heo 한국방사성폐기물학회 2022 한국방사성폐기물학회 학술논문요약집 Vol.20 No.1
In South Korea, the master plan for high-level radioactive waste management, announced in 2016, suggested the construction and operation of intermediate storage facilities on a permanent disposal site and specified the adoption of dry storage in consideration of the ease of operation and expansion. As of 2021, the government is again reviewing its overarching policy on the back-end fuel cycles, including intermediate storage and permanent disposal. In the case of dry storage facilities, safety evaluation is being conducted using a combination of deterministic and probabilistic approaches, similar to that of nuclear power plants. The two methods are complementary, of which Probabilistic Safety Assessment (PSA) has the advantage of being able to identify key scenarios affecting safety, but its use in storage facilities has not been highlighted so far. However, depending on the spent fuel management phases such as loading, transportation, and storage, it may be not enough to capture effective and efficient safety evaluation only deterministically, and probabilistic methods may contribute to the evaluation of long-term operation or external events such as an earthquake. There have already been cases where PSA has been performed on a part of the nuclear fuel cycle through previous studies. This paper created the safety assessment model based on open sources such as the released EPRI reports, by targeting arbitrary intermediate storage facilities. The model considered the scenarios for loading, transportation, and storage, with human error respectively. It will be able to be modified and improved to fit domestic and specific intermediate storage facilities in the future.
NVIDIA Tegra와 Tesla GPU에서의 CPU-GPU 데이터 전송성능 연구
권오경 ( Oh-kyoung Kwon ),구기범 ( Gibeom Gu ) 한국정보처리학회 2021 한국정보처리학회 학술대회논문집 Vol.28 No.2
최근 HPC, 인공지능에서 GPU 성능이 향상되면서 사용이 보편화되고 있지만 GPU 프로그래밍은 난이도 측면에서 여전히 큰 장애물이다. 특히 호스트(host) 메모리와 GPU 메모리를 따로 관리해야 하는 어려움 때문에 편의성과 성능 측면에서 연구가 활발히 진행되고 있으며, 다양한 CPU-GPU 메모리 전송 프로그래밍 방법들이 제시되고 있다. 본 연구는 NVIDIA Tegra 장치들과 NVIDIA SMX 기반 V100 GPU 카드에서 CPU-GPU 데이터 전송 기법별로 성능비교를 하고자 한다. 특히 NVIDIA Tegra 장치는 CPU와 GPU 통합메모리를 제공하고 있어서 CPU-GPU 메모리 전송방법의 관점에서 기존 GPU 장치와 다른 성능 특징을 보여준다. 성능비교를 위한 실험 워크로드는 HPC 응용프로그램에서 빈번하게 사용하는 2차원 행렬 전치 예제를 사용하였다. 실험을 통해 각 GPU 장치별로 CPU-GPU 메모리 전송 방법에 따른 GPU 커널 성능차이, 페이지 잠긴 메모리와 페이지 가능 메모리의 전송 성능차이, 마지막으로 전체 성능비교를 하였다.