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    서명
    Dragonfly-Based Joint Delay/Energy LTE Downlink Scheduling Algorithm
    TitleSource
    IEEE Access Access, IEEE. 8:35392-35402 2020
    Author
    Nashaat, H.
    Refaat, O.
    Zaki, F.W.
    Shaalan, I.E.
    Subject
    Aerospace / Bioengineering / Communication, Networking and Broadcast Technologies / Components, Circuits, Devices and Systems / Computing and Processing / Engineered Materials, Dielectrics and Plasmas / Engineering Profession / Fields, Waves and Electromagnetics / General Topics for Engineers / Geoscience / Nuclear Engineering / Photonics and Electrooptics / Power, Energy and Industry Applications / Robotics and Control Systems / Signal Processing and Analysis / Transportation / Quality of service / Scheduling algorithms / Long Term Evolution / Energy consumption / Scheduling / Resource management / Downlink / Dragonfly algorithm / LTE / resource allocation / scheduling
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    WeSAL: Applying Active Supervision to Find High-quality Labels at Industrial Scale
    Author
    Nashaat, Mona
    Ghosh, Aindrila
    Miller, James
    Quader, Shaikh
    Subject
    Collaboration for Data Science / active learning / human-in-the-loop / machine learning / supervised learning / weak supervision
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    BASE
    File Description
    10 pages
    Relation
    Proceedings of the 53rd Hawaii International Conference on System Sciences; http://hdl.handle.net/10125/63767
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    http://hdl.handle.net/10125/63767
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    COVID-19: An Updated Review ; COVID-19: ОБНОВЛЕННЫЙ ВЗГЛЯД
    TitleSource
    Russian Journal of Infection and Immunity; Online First ; Инфекция и иммунитет; Online First ; 2313-7398 ; 2220-7619 ; 10.15789/2220-7619-2019-0
    Author
    Fanar Isihak A.
    Mohammad Hamad Ali
    Nashaat Mustafa G.
    Ф. Исихак А.
    М. Хамад А.
    Н. Мустафа Г.
    Subject
    COVID-19 / SARS-CoV-2 / Vaccination / Virus Structure / Epidemiology / ACE2 / Spikes
    Database
    BASE
    File Description
    application/pdf
    Relation
    https://www.iimmun.ru/iimm/article/view/1443/957; https://www.iimmun.ru/iimm/article/downloadSuppFile/1443/5126; https://www.iimmun.ru/iimm/article/downloadSuppFile/1443/5127; https://www.iimmun.ru/iimm/article/downloadSuppFile/1443/5128; https://www.iimmun.ru/iimm/article/downloadSuppFile/1443/5129; https://www.iimmun.ru/iimm/article/downloadSuppFile/1443/5130; Tyrrell, D.A. and Bynoe, M.L. (1966) Cultivation of viruses from a high proportion of patients with colds. Lancet. 1,76–77.; Almeida, J.D. and Tyrrell, D.A.(1967) The morphology of three previously uncharacterized human respiratory viruses that grow in organ culture. J. Gen. Virol. 1,175–178.; Wang, L.F. et al (2006) Review of Bats and SARS. Emerging Infectious Diseases. 12, 12.; World Health Organization. Clinical management of severe acute respiratory infection when novel coronavirus (nCoV) infection is suspected https://www.who.int/publicationsdetail /clinical-management-of-severe-acute-respiratory-infection-when-novelcoronavirus-(ncov)-infection-is-suspected.; Lei , J. et al. (2018) Nsp3 of coronaviruses: Structures and functions of a large multi-domain protein. Antiviral Res. 149,58-74. [PubMed]; CDC Website: https://www.cdc.gov/coronavirus/2019-ncov/hcp/clinical-guidancemanagement-patients.html.; Lai, M.M. and Holmes, K.V. (2001b) Coronaviridae: the viruses and their replication. In: Knipe DM, Howley PM, eds. Fields Virology. Philadelphia, PA: Lippincott-Raven.; Lai, M.M. and Holmes, K.V. (2001a) Coronaviruses.p. 1163–1185. In D. M. Knipe, P. M. Howley, D. E. Griffin, R. A. Lamb, M. A. Martin, B. Roizman, and S. E. Straus (ed.), Fields virology. Lippincott Williams & Wilkins, Philadelphia, PA; Nour, R. and Houssam S. (2019) Middle East respiratory syndrome coronavirus (MERS-CoV): A review. Germs. 9, 35–42. DOI:10.18683/germs.2019.1155; Chan, J.F. et al. (2020) Genomic characterization of the 2019 novel human-pathogenic coronavirus isolated from a patient with atypical pneumonia after visiting Wuhan. Emerg. Microbes Infect. 9, 221–36.; Tang, X. et al. (2020) On the origin and continuing evolution of SARS-CoV-2. National Science Review 2020.; Song, W. et al. (2018) Cryo-EM structure of the SARS coronavirus spike glycoprotein in complex with its host cell receptor ACE2. PLoS Pathog. 14(8), e1007236. [PMC free article] [PubMed]; Zhou, P. et al. (2020) pneumonia outbreak associated with a new coronavirus of probable bat origin. Nature 2020.; Kahn, J. et al. (2005) The Pediatric Infectious Disease Journal. 24,S223-S227. DOI:10.1097/01.inf.0000188166.17324.60.; Andersen, K.G. et al. (2020) The proximal origin of SARS-CoV-2. Nat Med. https://DOI.org/10.1038/s41591-020-0820-9.; Wilson, M.E. and Chen, L.H. (2020) Travelers give wings to novel coronavirus (2019-nCoV). J. Travel Med. DOI:10.1093/jtm/taaa015.; Wilder-Smith, A. et al. (2005) Asymptomatic SARS coronavirus infection among healthcare workers, Singapore. Emerg. Infect. Dis. 11,1142–45; Huang, C. et al (2020) Clinical features of patients infected with 2019 novel coronavirus in Wuhan, China. Lancet . 395,497–506. https://DOI.org/10.1016/S0140-6736(20)30183-5.; Fehr, A.R. and Perlman, S.(2015) Coronaviruses: an overview of their replication and pathogenesis. Methods Mol .Biol. 1282,1–23. DOI:10.1007/978-1-4939-2438-7-1.; Forni, D. et al. (2017) Molecular Evolution of Human Coronavirus Genomes. Trends Microbiol. 25, 35–48. DOI:10.1016/j.tim.2016.09.001.; Flint , J. et al. (2015). Principles of virology. 4th ed. ASAM Press, Washington DC.; Su, S. et al. (2016) Epidemiology, genetic recombination, and pathogenesis of coronaviruses. Trends Microbiol. 24, 490–502; Subissi, L. et al. (2014) SARS-CoV ORF1b-encoded nonstructural proteins 12-16: replicative enzymes as antiviral targets. Antiviral Res. 101, 122–130. DOI:10.1016/j.antiviral.2013.11.006.; Lu, H. (2020) Drug treatment options for the 2019-new coronavirus (2019-nCoV), Biosci. Trends. 14, 69-71. https://DOI.org/10.5582/bst.2020.01020.; Sah, R. et al. (2020) Complete Genome Sequence of a 2019 Novel Coronavirus (SARS-CoV-2) Strain Isolated in Nepal. Microbiol. Resour. Announc. 9, e00169-20. DOI:10.1128/MRA.00169-20.; Letko, M. et al. (2020) Functional assessment of cell entry and receptor usage for SARS-CoV-2 and other lineage B betacoronaviruses .Nat. Microbiol. 10, 1038/s41564-020-0688-y. doi:10.1038/s41564-020-0688-y.; Lu, R. et al. (2020) Genomic characterisation and epidemiology of 2019 novel coronavirus: implications for virus origins and receptor binding. Lancet. 395,565–574. DOI:10.1016/S0140-6736(20)30251-8.; Li, F.(2016) Structure, Function, and Evolution of Coronavirus Spike Proteins. Annu. Rev. Virol. 3,237–261. DOI:10.1146/annurev-virology-110615-042301.; Bosch, B.J.et al. (2003) The coronavirus spike protein is a class I virus fusion protein: structural and functional characterization of the fusion core complex. J. Virol. 77, 8801–8811. DOI:10.1128/jvi.77.16.8801-8811.2003.; Wrapp, D. et al. (2020) Cryo-EM structure of the 2019-nCoV spike in the prefusion conformation. Science. 367,1260–1263. DOI:10.1126/science.abb2507.; Walls, A.C. et al. (2017) Tectonic conformational changes of a coronavirus spike glycoprotein promote membrane fusion. Proc. Natl. Acad. Sci. 114,11157–11162. DOI:10.1073/pnas.1708727114.; Liu, C. et al. (2015) Receptor usage and cell entry of porcine epidemic diarrhea coronavirus. J. Virol. 89, 6121–25.; Du, L. et al.(2013) Identification of a receptor-binding domain in the S protein of the novel human coronavirus Middle East respiratory syndrome coronavirus as an essential target for vaccine development. J. Virol. 87,9939–42.; Promkuntod ,N. et al. (2014) Mapping of the receptor-binding domain and amino acids critical for attachment in the spike protein of avian coronavirus infectious bronchitis virus. Virology. 448, 26–32.; Hofmann, H. et al. (2006) Highly conserved regions within the spike proteins of human coronaviruses 229E and NL63 determine recognition of their respective cellular receptors. J. Virol. 80,8639–52.; Li, F. (2008) Structural analysis of major species barriers between humans and palm civets for severe acute respiratory syndrome coronavirus infections. J. Virol. 82,6984–91; Li ,W. et al. (2017) Identification of sialic acid-binding function for the Middle East respiratory syndrome coronavirus spike glycoprotein. Proc. Natl. Acad. Sci. 114, E8508–E8517. DOI:10.1073/pnas.1712592114.; Zhou, P. et al. (2020) A pneumonia outbreak associated with a new coronavirus of probable bat origin. Nature.; Raj, V.S. et al. (2013) Dipeptidyl peptidase 4 is a functional receptor for the emerging human coronavirus-EMC. Nature 495, 251–54.; Yang, Y. et al. (2014) Receptor usage and cell entry of bat coronavirus HKU4 provide insight into bat-to-human transmission of MERS coronavirus. PNAS 111, 12516–21.; Lewicki, D.N. and Gallagher, T.M. (2002) Quaternary structure of coronavirus spikes in complex with carcino embryonic antigen-related cell adhesion molecule cellular receptors. J. Biol. Chem. 277, 19727–19734. DOI:10.1074/jbc.M201837200.; Li, S.W. et al. (2016) SARS Coronavirus Papain-Like Protease Inhibits the TLR7 Signaling Pathway through Removing Lys63-Linked Polyubiquitination of TRAF3 and TRAF6. Int J Mol Sci.;17(5):678. Published 2016 May 5. doi:10.3390/ijms17050678.; Peng, G. et al. (2012) Crystal structure of bovine coronavirus spike protein lectin domain. J. Biol. Chem. 287,41931–41938. DOI:10.1074/jbc.M112.418210.; Mou, H. et al. (2013) The receptor binding domain of the new MERS coronavirus maps to a 231-residue region in the spike protein that efficiently elicits neutralizing antibodies. J. Virol. 87 , 9379-83. DOI:10.1128/JVI.01277-13.; Lin, H.X. et al. ( 2008) Identification of residues in the receptor-binding domain (RBD) of the spike protein of human coronavirus NL63 that are critical for the RBD–ACE2 receptor interaction. J. Gen. Virol. 89,1015–24.; Snijder , E.J. et al. (2016) The Nonstructural Proteins Directing Coronavirus RNA Synthesis and Processing. Adv. Virus Res. 96, 59–126. DOI:10.1016/bs.aivir.2016.08.008.; Niemeyer, D. et al. (2018) Mösbauer K, Klein EM, et al. The papain-like protease determines a virulence trait that varies among members of the SARS-coronavirus species. PLoS. Pathog. 14, e1007296. DOI:10.1371/journal.ppat.1007296.; Báez-Santos, Y.M. et al. (2015) The SARS-coronavirus papain-like protease: structure, function and inhibition by designed antiviral compounds. Antiviral Res. 115, 21–38. DOI:10.1016/j.antiviral.2014.12.015.; Yuan, L. et al. (2015) p53 degradation by a coronavirus papain-like protease suppresses type I interferon signaling. J. Biol. Chem. 290,3172–3182. DOI:10.1074/jbc.M114.619890.; Verschueren, K. H. et al. (2008) "A Structural View of the Inactivation of the SARS Coronavirus Main Proteinase by Benzotriazole Esters." Chemistry & Biology 15, 597-606.; Muramatsu, T. et al. (2016) SARS-CoV 3CL protease cleaves its C-terminal autoprocessing site by novel subsite cooperativity. Proc. Natl. Acad. Sci. U S A. 113, 12997–13002. DOI:10.1073/pnas.1601327113.; Wu, F. et al. (2020) A new coronavirus associated with human respiratory disease in China. Nature. 579, 265–269 https://DOI.org/10.1038/s41586-020-2008-3.; Zhang, C. et al. (2019) NKG2A is a NK cell exhaustion checkpoint for HCV persistence. Nat. Commun. 10(1): 1507. doi:10.1038/s41467-019-09212-y.; Zheng, et al. (2020) Functional exhaustion of antiviral lymphocytes in COVID-19 patients. Cellular & Molecular Immunology; https://doi.org/10.1038/s41423-020-0402-2.; Shi, Y. et al. (2020) COVID-19 infection: the perspectives on immune responses. Cell Death Differ. https://doi.org/10.1038/s41418-020-0530-3; André, P. et al. (2018) Anti-NKG2A mAb is a checkpoint inhibitor that promotes anti-tumor immunity by unleashing both T and NK cells. Cell. 7,1731–1743. DOI:10.1016/j.cell.2018.10.014.; Kikkert, M. (2020) Innate Immune Evasion by Human Respiratory RNA Viruses. J. Innate Immun. 12,4–20. DOI:10.1159/000503030.; Shanmugaraj, B. et al. (2020) Perspectives on monoclonal antibody therapy as potential therapeutic intervention for Coronavirus disease-19 (COVID-19). Asian Pac. J. Allergy Immunol. 38, 10-18. DOI 10.12932/AP-200220-0773.; Centers for Disease Control and Prevention. Available at http://www.cdc.gov/ ncidod/ sars/index.htm.; FDA Website: https://www.fda.gov/emergency-preparedness-and-response/mcmissues/ coronavirus-disease-2019-covid-19.; Lu, R et al. (2020) Genomic characterisation and epidemiology of 2019 novel coronavirus: implications for virus origins and receptor binding. Lancet;395(10224):565–574. doi:10.1016/S0140-6736(20)30251-8.; Rothana, H.A. and Byrareddy, S.N. (2020) The epidemiology and pathogenesis of coronavirus disease (COVID-19) outbreak. Journal of Autoimmunity. in press. DOI:10.1016/j.jaut.2020.102433. www.elsevier.com/locate/jautimm.; Mupapa, K. et al. (1999) Massamba M, Kibadi K, Kuvula K, Bwaka A, Kipasa M, et al. Treatment of Ebola hemorrhagic fever with blood transfusions from convalescent patients. International Scientific and Technical Committee. J. Infect. Dis. 179,18-23.; Yeh, K.M. et al. (2005) Experience of using convalescent plasma for severe acute respiratory syndrome among healthcare workers in a Taiwan hospital. J. Antimicrob. Chemother. 56, 919-22.; Luke, T.C. et al. (2006) Meta-analysis: convalescent blood products for Spanish influenza pneumonia: a future H5N1 treatment? Ann Intern Med. 145, 599-609.; Chan, K.H. et al. (2013) Cross-reactive antibodies in convalescent SARS patients’ sera against the emerging novel human coronavirus EMC (2012) by both immunofluorescent and neutralizing antibody tests. J. Infect. 67, 130-40.; Arabi, Y. et al.(2015) Feasibility, safety, clinical, and laboratory effects of convalescent plasma therapy for patients with Middle East respiratory syndrome coronavirus infection: a study protocol. Springer plus. 4,709.; Mair-Jenkins, J. et al.(2015) The effectiveness of convalescent plasma and hyperimmune immunoglobulin for the treatment of severe acute respiratory infections of viral etiology: a systematic review and exploratory meta-analysis. J. Infect. Dis. 211, 80-90.; Casadevall, A. and Pirofski, L.(2020) The convalescent sera option for containing COVID-19. J Clin. Invest. https://doi.org/10.1172/JCI138003.; Gralinski, L.E. and Menachery, V.D. (2020) Return of the coronavirus: 2019-nCoV.Viruses. 12,2. DOI:10.3390/v12020135.; Durbin, R.K. et al. (2013) Interferon induction and function at the mucosal surface. Immunol. Rev. 255, 25–39. DOI:10.1111/imr.12101.; Samuel, C.E . (2001) Antiviral actions of interferons. Clin. Microbiol. Rev. 14,778–809. DOI: 10. 1128/CMR.14.4.778-809.2001.; Newton, A.H. et al. (2016) The host immune response in respiratory virus infection: balancing virus clearance and immunopathology. Semin. Immunopathol. 38, 471–482. DOI 10.1007/s00281-016-0558-0.; Chen, N. et al. (2020) Epidemiological and clinical characteristics of 99 cases of 2019 novel coronavirus pneumonia in Wuhan, China: a descriptive study, Lancet. 395 , 507–513 https://DOI.org/ 10.1016/S0140-6736(20)30211-7.; Caly, L. et al. (2020) The FDA approved Drug Ivermectin inhibits the replication of SARS-CoV-2 in vitro, Antiviral Research, https://doi.org/10.1016/j.antiviral. 2020.104787.; Reddy, K.V. et al. (2004) "Antimicrobial peptides: premises and promises". International Journal of Antimicrobial Agents. 24 ,536-47. DOI:10.1016/j.ijantimicag.2004.09. 005PMID15555874.; González-García, M. et al (2019). Antimicrobial peptides in multiresistant respiratory infections. Inicio. 71, 2.; Beisswenger, C. and Bals, R.(2005) Antimicrobial peptides in lung inflammation. Chem. Immunol. Allergy. 86, 55-71. DOI:10.1159/000086651.; Agier, J. et al. (2015) Cathelicidin impact on inflammatory cells. Cent. Eur. J. Immunol. 40, 225– 235. [CrossRef] [PubMed].; De la Fuente-Nunez, C. et al. (2017) Antimicrobial peptides: Role in human disease and potential as immunotherapies. Pharmacol. Ther. 178, 132–140. [CrossRef] [PubMed]; Hsieh, N. and Hartshorn, K.L. (2016) The Role of Antimicrobial Peptides in Influenza Virus Infection and Their Potential as Antiviral and Immunomodulatory Therapy. Pharmaceuticals (Basel).9 ,3. doi:10.3390/ph9030053.; Ahmed, A. et al. (2019) Human Antimicrobial Peptides as Therapeutics for Viral Infections. Viruses. 11 704. DOI:10.3390/v11080704.; Yount, N.Y. et al. (2007) The gamma-core motif correlates with antimicrobial activity in cysteine-containing kaliocin-1 originating from transferrins. Biochim. Biophys. Acta. 1768, 2862-72.; Fine, P. et al. (2011) ‘‘Herd Immunity’’: A Rough Guide. Clin. Infect. Dis. 52, 911-6. DOI:10.1093/cid/cir007.; Jin, Y. H. et al.( 2020) A rapid advice guideline for the diagnosis and treatment of 2019 novel coronavirus (2019-nCoV) infected pneumonia (standard version), Mil. Med. Res. 7, 4. DOI:10.1186/s40779-020-0233-6.; Li, Q. et al. (2020) Early transmission dynamics in wuhan, China, of novel coronavirus-infected pneumonia, N. Engl. J. Med. https://DOI.org/10.1056/NEJMoa 2001316.; Wang, W. et al. (2020) Updated understanding of the outbreak of 2019 novel coronavirus (2019-nCoV) in Wuhan, China, J. Med. Virol. 92 , 441–447. https://DOI.org/ 10.1002/jmv.25689.; https://www.iimmun.ru/iimm/article/view/1443
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    Neurogranin Regulates Metaplasticity
    TitleSource
    Frontiers in Molecular Neuroscience, Vol 12 (2020)
    Author
    Ling Zhong
    Nashaat Z. Gerges
    Subject
    LTP / LTD / synaptic plasticity / calmodulin / neurogranin / CaMKII / Neurosciences. Biological psychiatry. Neuropsychiatry / RC321-571
    Database
    BASE
    Relation
    https://www.frontiersin.org/article/10.3389/fnmol.2019.00322/full; https://doaj.org/toc/1662-5099; https://doaj.org/article/0927477260a84b2bac7c0ceba3532992
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    https://doaj.org/article/0927477260a84b2bac7c0ceba3532992
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    Microwave induced tunable subharmonic steps in superconductor-ferromagnet-superconductor Josephson junction
    Author
    Nashaat, M.
    Shukrinov, Yu. M.
    Irie, A.
    Ellithi, A. Y.
    Sherbini, Th. M. El
    Subject
    Condensed Matter - Superconductivity / Condensed Matter - Mesoscale and Nanoscale Physics
    Database
    arXiv
    Access URL
    http://arxiv.org/abs/1909.08004
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    Optimized silica-based hybrid coatings for the protection of aluminum against chloride-rich environment
    TitleSource
    Journal of Sol-Gel Science and Technology. 94(2):257-269
    Author
    Zoriany, Mahmoud Y.Aff1, Aff2
    Nashaat, Ahmed
    El-Shaer, Yasser
    Naeem, Ibrahim
    Elzahed, Osama
    Gobara, Mohamed
    Subject
    Sol–gel / Silica / Anticorrosion / Epoxy / Hybrid / Aluminum
    Database
    Springer Nature Journals
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    Highly-efficient technique for automatic segmentation of X-ray bone images based on fuzzy logic and an edge detection technique
    TitleSource
    Multidimensional Systems and Signal Processing: An International Journal. 31(2):591-617
    Author
    Hussain Hassan, Nashaat M.Aff1
    Subject
    X-ray images / Classic operators / Fuzzy controller / Image segmentation techniques / Gradient image techniques / Image edge detection techniques
    Database
    Springer Nature Journals
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    학술지논문
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    Correlation between diffusion tensor imaging measures and the reading and cognitive performance of Arabic readers: dyslexic children perspective
    TitleSource
    Neuroradiology: A Journal Dedicated to Neuroimaging and Interventional Neuroradiology. 62(4):525-531
    Author
    El-Sady, Safaa
    Mohammad, Shaimaa Abdelsattar
    Aboualfotouh Ahmed, Khaled
    Khattab, Ahmed Nabil
    Nashaat, Neveen HassanAff3
    Orabi, Ghada
    Abdelraouf, Ehab Ragaa
    Subject
    DTI / Dyslexia / Arcuate fasciculus / Corona radiata / Spelling
    Database
    Springer Nature Journals
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    IPSO Task Scheduling Algorithm for Large Scale Data in Cloud Computing Environment
    TitleSource
    IEEE Access Access, IEEE. 7:5412-5420 2019
    Author
    Saleh, H.
    Nashaat, H.
    Saber, W.
    Harb, H.M.
    Subject
    Aerospace / Bioengineering / Communication, Networking and Broadcast Technologies / Components, Circuits, Devices and Systems / Computing and Processing / Engineered Materials, Dielectrics and Plasmas / Engineering Profession / Fields, Waves and Electromagnetics / General Topics for Engineers / Geoscience / Nuclear Engineering / Photonics and Electrooptics / Power, Energy and Industry Applications / Robotics and Control Systems / Signal Processing and Analysis / Transportation / Task analysis / Scheduling / Scheduling algorithms / Cloud computing / Resource management / Heuristic algorithms / task scheduling / load balancing / particle swarm optimization
    Database
    IEEE Xplore Digital Library
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    Mismatch-Aware Placement of Device Arrays Using Genetic Optimization
    TitleSource
    2018 15th International Conference on Synthesis, Modeling, Analysis and Simulation Methods and Applications to Circuit Design (SMACD) Synthesis, Modeling, Analysis and Simulation Methods and Applications to Circuit Design (SMACD), 2018 15th International Conference on. :177-180 Jul, 2018
    Author
    Nashaat, Islam
    Mohammed, Inas
    Dessouky, Mohamed
    Said, Hazem
    Subject
    Bioengineering / Communication, Networking and Broadcast Technologies / Components, Circuits, Devices and Systems / Computing and Processing / Power, Energy and Industry Applications / Layout / Optimization / Systematics / Sociology / Statistics / Mirrors / Tools / Automation / Systematic / Mismatch / STI / LDE / Genetic / Matching / Current mirror / Placement / Modeling
    Database
    IEEE Xplore Digital Library
    Relation
    2018 15th International Conference on Synthesis, Modeling, Analysis and Simulation Methods and Applications to Circuit Design (SMACD)
    Publication Type
    Conference
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