1.KSNM/KSID/KOSHIC Guidance for Nuclear Medicine Department Against the Coronavirus Disease 2019 (COVID-19) Pandemic
Ji-In BANG ; Ho-Young LEE ; Young Seok CHO ; Hongyoon CHOI ; Ari CHONG ; Jae Sun EO ; Ji Young KIM ; Tae Sung KIM ; Hyun-Woo KWON ; Eun Jeong LEE ; Eun Seong LEE ; Hye Lim PARK ; Soo Bin PARK ; Hye-kyung SHIM ; Bong-Il SONG ; Ik Dong YOO ; Kyung Jae LEE ; Hong Jae LEE ; Su Ha HAN ; Jin Seo LEE ; Jung Mi PARK ; Sung Hoon KIM
Nuclear Medicine and Molecular Imaging 2020;54(4):163-167
The dramatic spread of Coronavirus Disease 2019 (COVID-19) has profound impacts on every continent and life. Due to humanto-human transmission of COVID-19, nuclear medicine staffs also cannot escape the risk of infection from workplaces. Everystaff in the nuclear medicine department must prepare for and respond to COVID-19 pandemic which tailored to the characteristicsof our profession. This article provided the guidance prepared by the Korean Society of Nuclear Medicine (KSNM) incooperation with the Korean Society of Infectious Disease (KSID) and Korean Society for Healthcare-Associated InfectionControl and Prevention (KOSHIC) in managing the COVID-19 pandemic for the nuclear medicine department.We hope that thisguidance will support every practice in nuclear medicine during this chaotic period.
2.Evaluation of marginal and internal gap of three-unit metal framework according to subtractive manufacturing and additive manufacturing of CAD/CAM systems.
Dong Yeon KIM ; Eo Bin KIM ; Hae Young KIM ; Ji Hwan KIM ; Woong Chul KIM
The Journal of Advanced Prosthodontics 2017;9(6):463-469
PURPOSE: To evaluate the fit of a three-unit metal framework of fixed dental prostheses made by subtractive and additive manufacturing. MATERIALS AND METHODS: One master model of metal was fabricated. Twenty silicone impressions were made on the master die, working die of 10 poured with Type 4 stone, and working die of 10 made of scannable stone. Ten three-unit wax frameworks were fabricated by wax-up from Type IV working die. Stereolithography files of 10 three-unit frameworks were obtained using a model scanner and three-dimensional design software on a scannable working die. The three-unit wax framework was fabricated using subtractive manufacturing (SM) by applying the prepared stereolithography file, and the resin framework was fabricated by additive manufacturing (AM); both used metal alloy castings for metal frameworks. Marginal and internal gap were measured using silicone replica technique and digital microscope. Measurement data were analyzed by Kruskal-Wallis H test and Mann-Whitney U-test (α=.05). RESULTS: The lowest and highest gaps between premolar and molar margins were in the SM group and the AM group, respectively. There was a statistically significant difference in the marginal gap among the 3 groups (P < .001). In the marginal area where pontic was present, the largest gap was 149.39 ± 42.30 µm in the AM group, and the lowest gap was 24.40 ± 11.92 µm in the SM group. CONCLUSION: Three-unit metal frameworks made by subtractive manufacturing are clinically applicable. However, additive manufacturing requires more research to be applied clinically.
Alloys
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Bicuspid
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Dental Prosthesis
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Denture, Partial, Fixed
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Molar
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Replica Techniques
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Silicon
;
Silicones

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