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[PB-0038] QTL-seq identified a locus controlling lignan content in sesame
Eunsoo Lee(Eunsoo Lee),Sungup Kim(Sungup Kim),Jeongeun Lee(Jeongeun Lee),Jung In Kim(Jung In Kim),Eunyoung Oh(Eunyoung Oh),Min Young Kim(Min Young Kim),Sang Woo Kim(Sang Woo Kim),Kwang-Soo Cho(Kwang-S 한국육종학회 2022 한국육종학회 공동학술발표집 Vol.2022 No.-
[PG-0011] A Sesame variety ‘Haniall’ with non-shattering capsule and early maturity
Sung-Up Kim(Sung-Up Kim ),Jeongeun Lee(Jeongeun Lee ),Eunyoung Oh(Eunyoung Oh ),Jung In Kim(Jung In Kim ),Sang Woo Kim(Sang Woo Kim ),Min Young Kim(Min Young Kim ),Eunsoo Lee(Eunsoo Lee ),Kwang-Soo Ch 한국육종학회 2022 한국육종학회 공동학술발표집 Vol.2022 No.-
[PE-0017] A Peanut Variety, ’Da-Ol’ with High Oleic Acid and Large Grain
Eunyoung Oh(Eunyoung Oh ),Sungup Kim(Sungup Kim),Jung In Kim(Jung In Kim),Min Young Kim(Min Young Kim),Sang Woo Kim(Sang Woo Kim),Jeongeun Lee(Jeongeun Lee),Eunsoo Lee(Eunsoo Lee),Rizwana Begum Syed N 한국육종학회 2022 한국육종학회 공동학술발표집 Vol.2022 No.-
Lee, Kun-Joon,Lee, Jong-Han,Jung, Chi-Young,Choi, Eunsoo Elsevier 2018 COMPOSITE STRUCTURES -BARKING THEN OXFORD- Vol.202 No.-
<P><B>Abstract</B></P> <P>This study evaluated the crack-closing performance of NiTi and NiTiNb shape memory alloy (SMA) fibers in cement mortar beams. In addition, the effects of the geometry and number of SMA fibers were evaluated. For this purpose, material tests were performed to assess the mechanical and thermal properties of the SMA fibers, as well as the components and shape recovery ratios. Three-point bending tests were then carried out to generate a crack approximately 0.5 mm wide in cement mortar beams with the SMA fibers, which were placed along an artificial crack in the bottom of the beam at mid-span. The crack-closing performance of the SMA fibers was evaluated with the increase in temperatures and the number of fibers. The crack-closing ratios were more efficient in straight-shape and NiTi fibers.</P>
( Eunsoo Lim ),( Sunah Hyun ),( Jae Myeong Lee ),( Seirhan Kim ),( Min-jeong Lee ),( Sun-mi Lee ),( Ye-sung Oh ),( Inwhee Park ),( Gyu-tae Shin ),( Heungsoo Kim ),( Donald E. Morisky ),( Jong Cheol Je 대한신장학회 2018 Kidney Research and Clinical Practice Vol.37 No.1
Background: For phosphate control, patient education is essential due to the limited clearance of phosphate by dialysis. However, well-designed randomized controlled trials about dietary and phosphate binder education have been scarce. Methods: We enrolled maintenance hemodialysis patients and randomized them into an education group (n = 48) or a control group (n = 22). We assessed the patients’ drug compliance and their knowledge about the phosphate binder using a questionnaire. Results: The primary goal was to increase the number of patients who reached a calcium-phosphorus product of lower than 55. In the education group, 36 (75.0%) patients achieved the primary goal, as compared with 16 (72.7%) in the control group (P = 0.430). The education increased the proportion of patients who properly took the phosphate binder (22.9% vs. 3.5%, P = 0.087), but not to statistical significance. Education did not affect the amount of dietary phosphate intake per body weight (education vs. control: -1.18 ± 3.54 vs. -0.88 ± 2.04 mg/kg, P = 0.851). However, the dietary phosphate-to-protein ratio tended to be lower in the education group (-0.64 ± 2.04 vs. 0.65 ± 3.55, P = 0.193). The education on phosphate restriction affected neither the Patient-Generated Subjective Global Assessment score (0.17 ± 4.58 vs. -0.86 ± 3.86, P = 0.363) nor the level of dietary protein intake (-0.03 ± 0.33 vs. -0.09 ± 0.18, P = 0.569). Conclusion: Education did not affect the calcium-phosphate product. Education on the proper timing of phosphate binder intake and the dietary phosphate-to-protein ratio showed marginal efficacy.
Lee, Eunsoo,Kim, Minjae,Ju, Jaechul,Jang, Seokhoon,Baeck, Sung Hyeon,Shim, Sang Eun Elsevier Sequoia 2017 Synthetic metals Vol.226 No.-
<P><B>Abstract</B></P> <P>Aligned carbon nanofibers (ACNFs) were fabricated by electrospinning using a high speed of rotary collector (2000rpm). To achieve a synergy effect of the electron double layer and redox faradaic reaction, NiCo<SUB>2</SUB>O<SUB>4</SUB> was deposited on the surface of the ACNFs using an electrodeposition method. The improved electrochemical performance of the electrodes was investigated by cyclic voltammetry, galvanostatic charge-discharge testing, and electrochemical impedance analysis. Among the prepared electrodes, which were deposited for different times (5, 10, 20, and 30s), the sample deposited by NiCo<SUB>2</SUB>O<SUB>4</SUB> for 10s had the highest specific capacitance (90.1Fg<SUP>−1</SUP> at 5mVs<SUP>−1</SUP>), good rate capability (64.7%), and cycle stability (85.2% after 1000 cycles). In addition, to examine the effects of the alignment and redox faradaic reaction of NiCo<SUB>2</SUB>O<SUB>4,</SUB> the ACNFs covered with NiCo<SUB>2</SUB>O<SUB>4</SUB> for 10s (NC-ACNFs) were compared with the ACNFs deposited by Co<SUB>3</SUB>O<SUB>4</SUB> (C-ACNFs) and randomly oriented carbon nanofibers covered with NiCo<SUB>2</SUB>O<SUB>4</SUB> (NC-RCNFs)<SUB>.</SUB> The NC-ACNFs had a 15.8% and 11.3% higher specific capacitance than that of the C-ACNFs and NC-RCNFs, respectively. These results suggested that the electrochemical properties of carbon nanofibers could be improved through the structural effects of aligned nanofibers and a redox faradaic reaction of NiCo<SUB>2</SUB>O<SUB>4</SUB>.</P> <P><B>Highlights</B></P> <P> <UL> <LI> Supercapacitor using CNFs’ aligned structure and deposition of NiCo<SUB>2</SUB>O<SUB>4</SUB> is proposed. </LI> <LI> Alignment of carbon nanofibers improves the electrochemical properties. </LI> <LI> Mixed transition metal oxides, NiCo<SUB>2</SUB>O<SUB>4,</SUB> can offer rich redox faradaic reactions. </LI> <LI> Availability of aligned carbon nanofiber as supercapacitor’s electrode is proposed. </LI> </UL> </P>