• Title/Summary/Keyword: SCEs

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A STUDY ON THE CYTOTOXICITY OF CYTOSINE ARABINOSIDE AND VINBLASTINE ON CULTURED MOUSE FIBROBLASTS (섬유모세포에 미치는 세포 독성에 관한 연구)

  • Kim, Jae-Min;Kim, Ki-Won;Chung, Yeun-Tai
    • Toxicological Research
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    • v.6 no.1
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    • pp.29-40
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    • 1990
  • Cytotoxic effects of cytosine arabinoside and vinblastine on cultured fibroblasts were determined by colorimetric assays of neutral red (NR) and tetrazolium MTT, and by mutagenicity tests . Cytosine arabinoside and vinblastine were highly toxic by showing that concentrations of NR-50 and MTT-50 of two drugs were lower than 100 ${\mu}$M. At mid-point cytotoxicityvalue of two drugs, frequencies of micronuclei and SCEs were very high and chromosome showed structural abnormalities. The sizes of micronuclei formed by vinblastine were larger than those induced by cytosine arabinoside. These results suggest that cytosine arabinoside and vinblastine have highy mutagenic and severe cytotoxic effects on the cultured mouse fibroblasts.

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Optimizing Effective Channel Length to Minimize Short Channel Effects in Sub-50 nm Single/Double Gate SOI MOSFETs

  • Sharma, Sudhansh;Kumar, Pawan
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.8 no.2
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    • pp.170-177
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    • 2008
  • In the present work a methodology to minimize short channel effects (SCEs) by modulating the effective channel length is proposed to design 25 nm single and double gate-source/drain underlap MOSFETs. The analysis is based on the evaluation of the ratio of effective channel length to natural/ characteristic length. Our results show that for this ratio to be greater than 2, steeper source/drain doping gradients along with wider source/drain roll-off widths will be required for both devices. In order to enhance short channel immunity, the ratio of source/drain roll-off width to lateral straggle should be greater than 2 for a wide range of source/drain doping gradients.

A New Scaling Theory for the Effective Conducting Path Effect of Dual Material Surrounding Gate Nanoscale MOSFETs

  • Balamurugan, N.B.;Sankaranarayanan, K.;Suguna, M.
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.8 no.1
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    • pp.92-97
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    • 2008
  • In this Paper, we present a scaling theory for dual material surrounding gate (DMSGTs) MOSFETs, which gives a guidance for the device design and maintaining a precise subthreshold factor for given device parameters. By studying the subthreshold conducting phenomenon of DMSGTs, the effective conductive path effect (ECPE) is employed to acquire the natural length to guide the design. With ECPE, the minimum channel potential is used to monitor the subthreshold behavior. The effect of ECPE on scaling factor significantly improves the subthreshold swing compared to conventional scaling rule. This proposed model offers the basic designing guidance for dual material surrounding gate MOSFETs.

Antigenotoxicity of Quercetin and its Glycosides (Quercetin 및 Quercetin 배당체들의 유전독성억제효과)

  • 허문영;김정한
    • Journal of Food Hygiene and Safety
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    • v.11 no.2
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    • pp.115-121
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    • 1996
  • In order to compare the suppressive effect of quercetin and several its glycosides, such as quercitrin (quercetin-3-rhamnoside), isoquercitrin (quercetin-3-glucoside), hyperin (quercetin-3-galactoside) and tutin (quercetin-3-rhamnosyl glucoside), on the genotoxicity by N-methyl-N-nitrosourea(MNU), in vitro sister chromatid exchange(SCE) test using mouse spleen lymphocytes and in vivo micronucleus test using mouse peripheral blood were performed. MNU-induced SCEs in vitro were not decreased by the simultaneous treatment of test compounds. Among them, quercetin and hyperin showed significant suppressive effects at high dose(10-5M). On the other hand, MNU-induced micronucleated reticulocytes(MNRETS) in vivo were significantly decreased with good dose-dependent manner in all compound tested. However, there were not significant differences between quercetin aglycone and its glycosides in the suppressive aglycone and its glycosides may act as an antigenotoxic agent in vivo and may be useful as a chemopreventive agent of alkylating agent.

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2D Transconductance to Drain Current Ratio Modeling of Dual Material Surrounding Gate Nanoscale SOl MOSFETs

  • Balamurugan, N.B.;Sankaranarayanan, K.;John, M.Fathima
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.9 no.2
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    • pp.110-116
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    • 2009
  • The prominent advantages of Dual Material Surrounding Gate (DMSG) MOSFETs are higher speed, higher current drive, lower power consumption, enhanced short channel immunity and increased packing density, thus promising new opportunities for scaling and advanced design. In this Paper, we present Transconductance-to-drain current ratio and electric field distribution model for dual material surrounding gate (DMSGTs) MOSFETs. Transconductance-to-drain current ratio is a better criterion to access the performance of a device than the transconductance. This proposed model offers the basic designing guidance for dual material surrounding gate MOSFETs.

The Sister Chromatid Exchange Frequencies and Chromosome Aberrations in Mouse Lymphocyte by X-Ray Irradiation (X-선 조사에 의한 마우스 淋巴球의 SCE 경도와 염색체이상)

  • 황인담;기노석;이정상;김남송;이재형;이준배
    • Journal of Environmental Health Sciences
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    • v.16 no.1
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    • pp.55-65
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    • 1990
  • This study was carried out to investigate the effects on sister chromatid exchanges (SCEs) and chromosome aberrations in PHA or LPS stimulated mouse spleen and bone marrow lymphocytes after an acute whole body irradiation. Frequencies of sister chromatid exchanges were significantly increased with the increased dose(from zero to 400tad) but there was no differences between B-cell and T-cell. By times, the maximum induced SCE levels was observed at 12 hours after irradiation and then returned to base level at one day in 100rad group and three day in 400rad group. There was a significant difference in chromosome aberration with increasing exposure. X-ray irradiated chromosome aberration was long lived relative to SCE. This results show that counting the incidence of SCE may not provide a sensitive system for detecting X-ray exposure.

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Analysis of Quantum Effects Concerning Ultra-thin Gate-all-around Nanowire FET for Sub 14nm Technology

  • Lee, Han-Gyeol;Kim, Seong-Yeon;Park, Jae-Hyeok
    • Proceeding of EDISON Challenge
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    • 2015.03a
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    • pp.357-364
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    • 2015
  • In this work, we investigate the quantum effects exhibited from ultra-thin GAA(gate-all-around) Nanowire FETs for Sub 14nm Technology. We face designing challenges particularly short channel effects (SCE). However traditional MOSFET SCE models become invalid due to unexpected quantum effects. In this paper, we investigated various performance factors of the GAA Nanowire FET structure, which is promising future device. We observe a variety of quantum effects that are not seen when large scale. Such are source drain tunneling due to short channel lengths, drastic threshold voltage increase caused by quantum confinement for small channel area, leakage current through thin gate oxide by tunneling, induced source barrier lowering by fringing field from drain enhanced by high k dielectric, and lastly the I-V characteristic dependence on channel materials and transport orientations owing to quantum confinement and valley splitting. Understanding these quantum phenomena will guide to reducing SCEs for future sub 14nm devices.

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Selenium Effect on the Frequency of SCEs Induced by Heavy Metals in Human Lymphocytes (Selenium이 mercury, cadmium 및 chromium에 의한 자매염색분체교환(姉妹染色分體交換)의 빈도(頻度)에 미치는 영향(影響))

  • Koh, Dai-Ha;Ki, No-Suk
    • Journal of Preventive Medicine and Public Health
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    • v.23 no.1 s.29
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    • pp.1-10
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    • 1990
  • The protective effect of sodium selenite($Na_2SeO_3$) against the cytogenetic toxicity of heavy metals was investigated on human whole-blood cultures in relation to induction of sister chromatid exchange (SCE) in secondary metaphase chromosome. Methylmercury chloride($CH_3HgCl$), cadmium chloride($CdCl_2$), potassium dichromate($K_2Cr_2O_7$), and sodium selenite caused to the typically dose-dependent increase in sister chromatid exchanges (SCEs) by the concentrations ranging from $0.3{\mu}M\;to\;10{mu}M$. However, the inductions of sister chromatid exchanges by methylmercury chloride or cadmium chloride were inhibited by the simultaneous addition of sodium selenite $1.2{mu}M$. The frequencies of SCE were decreased to the level of control in the molar ratios as 2:1, 1:1, 1:2, and 1:4 of selenium selenite vs. methylmercury chloride, and as 1:1 and 1:2 of selenium selenite vs. cadmium chloride, while the frequencies of SCE induced by potassium dichromate were not changed by the addition of sodium selenite in culture condition. Mitotic indices were decreased in the higher concentrations of chemicals and not significantly changed by the simultaneous addition of sodium selenite to the culture condition containing each chemicals.

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Analytical Modeling and Simulation for Dual Metal Gate Stack Architecture (DMGSA) Cylindrical/Surrounded Gate MOSFET

  • Ghosh, Pujarini;Haldar, Subhasis;Gupta, R.S.;Gupta, Mridula
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.12 no.4
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    • pp.458-466
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    • 2012
  • A Dual metal gate stack cylindrical/ surrounded gate MOSFET (DMGSA CGT/SGT MOSFET) has been proposed and an analytical model has been developed to examine the impact of this structure in suppressing short channel effects and in enhancing the device performance. It is demonstrated that incorporation of gate stack along with dual metal gate architecture results in improvement in short channel immunity. It is also examined that for DMGSA CGT/SGT the minimum surface potential in the channel reduces, resulting increase in electron velocity and thereby improving the carrier transport efficiency. Furthermore, the device has been analyzed at different bias point for both single material gate stack architecture (SMGSA) and dual material gate stack architecture (DMGSA) and found that DMGSA has superior characteristics as compared to SMGSA devices. The analytical results obtained from the proposed model agree well with the simulated results obtained from 3D ATLAS Device simulator.

Antigenotoxicity of Galangin and its Action Mechanism (Galangin의 유전독성 억제효과와 작용기전)

  • 허문영;류재천
    • Environmental Mutagens and Carcinogens
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    • v.18 no.2
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    • pp.77-82
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    • 1998
  • In order to compare the suppressive effect of galangin on the genotoxicity by N-methyl-N-nitrosourea (MNU) or benzo[a]pyrene B(a)P, in vivo micronycleus test using mouse peripheral blood and in vitro sister chromatid exchange(SCE) test using mouse spleen lymphocytes were performed. MNU or B(a)P-induced micronucleated reticulocytes in vivo was decreased by the simultaneous treatment of galangin. MNU or B(a)P-induced SCEs in vitro was also decreased by the simultaneous treatment of galangin. On the other hand, the determinations of [$^3$H]MNU-induced total DNA binding and methylated DNA were performed to find out the mechanism of action. [$^3$H]MNU-induced total DNA binding was inhibited by the treatment of galangin in calf thymus DNA. HPLC analysis of DNA hydrolysates showed that galangin caused a decrease of 7-methyl guanine and $O^{6}$-methyl guanine in calf thymus DNA. To elucidate the action mechanism of galangin against B(a)P, alteration of B(a)P metabolism was studied. Galangin inhibited B(a)P metabolism in the presence of S-9 mix and decreased B(a)P-DNA binding in calf thymus DNA with S-9 mix.

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