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1Academic Journal
المؤلفون: Yukina M.Y., Troshina E.A., Nuralieva N.F., Rebrova O.Y., Nikankina L.V., Mokrysheva N.G.
المساهمون: 0
المصدر: Almanac of Clinical Medicine; Vol 52, No 5 (2024); 259-268 ; Альманах клинической медицины; Vol 52, No 5 (2024); 259-268 ; 2587-9294 ; 2072-0505
مصطلحات موضوعية: insulinoma, chromogranin A, diagnostic efficacy, tumor marker, инсулинома, хромогранин А, диагностическая эффективность, опухолевый маркер
وصف الملف: application/pdf
Relation: https://almclinmed.ru/jour/article/view/17309/1688; https://almclinmed.ru/jour/article/view/17309/1692; https://almclinmed.ru/jour/article/downloadSuppFile/17309/160193; https://almclinmed.ru/jour/article/downloadSuppFile/17309/160194; https://almclinmed.ru/jour/article/view/17309
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2Academic Journal
المؤلفون: O. P. Kurnosova, V. S. Zaitsev, M. V. Arisov, О. П. Курносова, В. С. Зайцев, М. В. Арисов
المساهمون: The work was carried out within the framework of the Program of Fundamental Scientific Research in the Russian Federation for a long-term period (2021–2030), which forms the basis of state task No. FGUG-2022-0012., Работа выполнена в рамках Программы фундаментальных научных исследований в Российской Федерации на долгосрочный период (2021–2030 гг.), составляющей основу государственного задания № FGUG- 2022-0012.
المصدر: Russian Journal of Parasitology; Том 17, № 1 (2023); 91-98 ; Российский паразитологический журнал; Том 17, № 1 (2023); 91-98 ; 2541-7843 ; 1998-8435 ; 10.31016/1998-8435-2023-17-1
مصطلحات موضوعية: кошки, microscopy, combined flotation method, diagnostic efficacy, Giardia, Giardia spp, dogs, cats, микроскопия, комбинированный флотационный метод, диагностическая эффективность, гиардии, собаки
وصف الملف: application/pdf
Relation: https://vniigis.elpub.ru/jour/article/view/1011/742; Курносова О. П. Паразитарные заболевания домашних собак и кошек в мегаполисе Москва // Медицинская паразитология и паразитарные болезни. 2009. № 4. С. 31-35.; Сергиев В. П., Лобзин Ю. В., Козлова С. С. Паразитарные болезни человека. С.-Петербург, 2006. С. 124-131.; Adаm R. Biology of Giardia lamblia. Clin. Microbiol. Rev. 2001;14 (3): 447–475. https://doi.org/org/10.1128/CMR.14.3.447-475.2001; Adell-Aledón M., Köster P. C., de Lucio A., Puente P., Hernández-de-Mingo M., Sánchez-Thevenet P., DeaAyuela M. A., Carmena D. Occurrence and molecular epidemiology of Giardia duodenalis infection in dog populations in eastern Spain. Veterinary Research. 2018; 14 (1): 26. https://doi.org/10.1186/s12917-018-1353-z; Agresti F., Berrilli M., Maestrini I., Guadano Procesi E., Loretti N., Perrucci V. Prevalence, Risk Factors and Genotypes of Giardia duodenalis in Sheltered Dogs in Tuscany (Central Italy). Pathogens. 2021; 11 (1): 12. https://doi.org/10.3390/pathogens11010012.; Ahmad A., Asmaa M., Kady E., Hassan T. Genotyping of Giardia duodenalis in children in upper Egypt using assemblage- specific PCR technique. PLoS One. 2020; 15 (10): e0240119. https://doi.org/10.1371/journal.pone.0240119.; Balderrama-Carmona A. P., Gortáres-Moroyoqui P., Morán-Palacio E. F., Ulloa-Mercado R. G., Díaz-Tenorio L. M., Leyva-Soto L. A. RodriguezMorales A. J. Risk Assessment for Giardia in Environmental Samples. In book: In Current Topics in Giardiasis. 2017; 147–164. https://doi.org/10.5772/intechopen.70805.; Ballweber L. R., Xiao L. H., Bowman D. D., Kahn G., Cama V. A. Giardiasis in dogs and cats: update on epidemiology and public health significance. Trends Parasitol. 2010; 26 (4): 180-189. https://doi.org/10.1016/j.pt.2010.02.005.; Blanciardi P., Papini R., GlulianiI G., Cardini G. Prevalence of Giardia antigen in stool samples from dogs and cats. Revue Méd. Vét. 2004; 155 (8-9): 417-421.; Bouzid M., Halai K., Jeffreys D., Hunter P. R. The prevalence of Giardia infection in dogs and cats, a systematic review and meta-analysis of prevalence studies from stool samples. Veterinary Parasitology. 2015; 207 (3-4): 181-202. https://doi.org/10.1016/j.vetpar.2014.12.011.; Carlin E. P., Bowman D. D., Scarlett J. M., Garrett J., Lorentzen L. Prevalence of Giardia in symptomatic dogs and cats throughout the United States as determined by the IDEXX SNAP Giardia test. Veterinary Therapeutics. 2006; 7 (3): 199-206.; Demelash K., Abebaw M., Negash A., Alene B., Zemene M., Metadel Tilahun. A Review on Diagnostic Techniques in Veterinary Helminthоlogy Nature and Science. 2016; 14 (7): 109-118. https://doi.org/10.7537/marsnsj140716.15.; Elmendorf H., Dawson S., McCaffery J. The cytoskeleton of Giardia lamblia. Int. J. Parasitol. 2003; 33 (1): 3-28. https://doi.org/10.1016/s0020-7519(02)00228-x.; Feng Y., Xiao L. Zoonotic Potential and Molecular Epidemiology of Giardia Species and Giardiasis. American Society for Microbiology Clinical Microbiology Reviews. 2011; 24 (1): 110-140. https://doi.org/org/10.1128/CMR.00033-10.; Gates M. C., Thomas J. Nolan Comparison of Passive Fecal Flotation Run by Veterinary Students to ZincSulfate Centrifugation Flotation Run in a Diagnostic Parasitology Laboratory. J. of Parasitology. 2009; 95 (5): 1213-1214. https://doi.org/org/10.1645/GE-2058.1.; Geurden T., Berkvens D., Casaert S., Vercruysse J., Claerebout E. A Bayesian evaluation of three diagnostic assays for the detection of Giardia duodenalis in symptomatic and asymptomatic dogs. Vet. Parasitol. 2008; 157 (1-2): 14-20. https://doi.org/10.1016/j.vetpar.2008.07.002.; Giangaspero A., Berrilli F., Brandonisio O. Giardia and Cryptosporidium and public health: the epidemiological scenario from the Italian perspective. Parasitol. Res. 2007; 101: 1169–1182. https://doi.org/10.1007/s00436-007-0598-4.; Hussein E. M., Ismail O. A., Mokhtar A. B., Mohamed S. E., Saad R. M. Nested PCR targeting intergenic spacer (IGS) in genotyping of Giardia duodenalis isolated from symptomatic infected Egyptian school children. Parasitol. Res. 2017; 116 (2): 763–771. https://doi.org/10.1007/s00436-016-5347-0.; Jiménez-Cardoso E., Eligio-García L., CortésCampos A., Cano-Estrada A. Genotyping of Giardia intestinalis isolates from dogs by analysis of gdh, tpi, and bg genes. In books: Parasitology. 2012; 67-76. https://doi.org/10.5772/38326.; Kurnosova О. P., Arisov M. V., Odoyevskaya I. M. Intestinal parasites of pets and other house-kept animals in Moscow. Helmintologia. 2019; 56 (2): 108-117. https://doi.org/10.2478/helm-2019-0007.; Kurnosova O., Odoevskaya I., Khrustalev A., Petkova S., Dilcheva V. Comparative efficacy of different diagnostic methods for detection of Giardia (Gardia) in animals. Compt. rends Acad. bulg. Sci. 2017; 70 (3): 443-452.; Marshall M. M., Naumovitz D., Ortega Y., Sterling C. R. Waterborne protozoan pathogens. Clin. Microbiol. Rev. 1997; 10: 67–85. https://doi.org/10.1128/CMR.10.1.67.; Mircean V., Györke A., Cozma V. Prevalence and risk factors of Giardia duodenalis in dogs from Romania. Vet. Parasitol. 2012; 184 (2-4): 325-329. doi:10.1016/j.vetpar.2011.08.022. Epub 2011 Aug 19.; Molina N., Polverino D., Milvielle M., Basualdo J. PCR amplification of triosephosphate isomerase gene of Giardia lamblia in formalin-fixed feces. Rev. Latinoam. Microbiol. 2007; 49 (1-2): 6-11.; Mravcova K., Strkolcova G., Goldova M. The Prevalence and Assemblages of Giagdia Duodenalis in Dogs: A Systematic Review in Europe. Folia Veterinaria. 2019; 63 (4): 38-45. https://doi.org/10.2478/fv-2019-0036.; Nikolic A., Dimitijevic S., Djurkovic Diakovic O., Bobic B., Maksimovic Mihajlovic O. Giardiasis in dogs and cats in the Belgrade area. Acta Vet. Beograd. 2002; 52: 43-47. https://doi.org/10.2298/AVB0201043N.; Olson M. E., Leonard N. J., Strout J. Prevalence and diagnosis of Giardia infection in dogs and cats using a fecal antigen test and fecal smear. The Canadian Vet. J. 2010; 51 (6): 640-642.; Paradies P., Iarussi F., Paradies P., Iarussi F., Sasanelli M., Capogna A., Lia R., Zucca D., Greco B., Cantacessi C., Otranto D. Otranto Occurrence of strongyloidiasis in privately owned and sheltered dogs: clinical presentation and treatment outcome. Parasites & Vectors. 2017; 10: 345. https://doi.org/10.1186/s13071-017-2275-5.; Piekara-Stępińska A., Piekarska J., Gorczykowski M., Bania J. Genotypes of Giardia duodenalis in Household Dogs and Cats from Poland. Acta Parasitol. 2021; 66 (2): 428-435. https://doi.org/10.1007/s11686-020-00292-1.; https://vniigis.elpub.ru/jour/article/view/1011
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3Academic Journal
المؤلفون: I. V. Anisimova, И. В. Анисимова
المصدر: Medical Genetics; Том 20, № 2 (2021); 3-20 ; Медицинская генетика; Том 20, № 2 (2021); 3-20 ; 2073-7998
مصطلحات موضوعية: диагностическая эффективность, intellectual disability, prevalence, chromosomal microarray analysis, next generation sequencing, diagnostic efficiency, нарушения интеллекта, распространенность, хромосомный микроматричный анализ, секвенирование нового поколения
وصف الملف: application/pdf
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Challenges in molecular diagnosis of X-linked Intellectual disability. Br Med Bull. 2020;00:1-13.; Drews C.D., Yeargin-Allsopp M., Decoufle P., et al. Variation in the influence of selected sociodemographic risk factors for mental retardation. Am J Public Health. 1995;85:329-334.; Harris, J. C. Intellectual disability: Understanding its development, causes, classification, evaluation, and treatment. New York: Oxford University Press. 2006;42-98.; King B.H., Toth K.E., Hodapp R. M. et al. Intellectual disability. Comprehensive textbook of psychiatry. Philadelphia: Lippincott Williams & Wilkins. 2009 (9th ed.);3444-3474.; Stromme P., Magnus P. Correlations between socioeconomic status, IQ and aetiology in mental retardation: a population-based study of Norwegian children. Soc Psychiatry Psychiatr Epidemiol. 2000;35:12-18.; Croen L.A., Grether J.K., Selvin S. 2001. The epidemiology of mental retardation of unknown cause. Pediatrics. 2001;107:E86.; Stromme P. Aetiology in severe and mild mental retardation: a population-based study of Norwegian children. Dev Med Child Neurol. 2000;42:76-86.; Tasman A., Kay J., Lieberman J.A. et al. Psychiatry (3rd ed.). John Wiley & Sons. 2008. 689-746.; Moeschler J.B., Shevell M. Committee on Genetics. Comprehensive evaluation of the child with intellectual disability or global and developmental delays. Pediatrics. 2014;134(3):e903-e918.; Puri R.D., Tuteja M., Verma I.C. Genetic Approach to Diagnosis of Intellectual Disability [published correction appears in Indian J Pediatr. 2017 Mar;84(3):256]. Indian J Pediatr. 2016;83(10):1141-1149.; Vickers R.R., Gibson J.S. A review of the genomic analysis of children presenting with developmental delay/intellectual disability and associated dysmorphic features. Cureus. 2019;11(1):e3873.; Miclea D., Peca L., Cuzmici Z. et al. Genetic testing in patients with global developmental delay/intellectual disabilities. A review. Clujul Med. 2015;88(3):288-292.; Ilyas M., Mir A., Efthymiou S. et al. The genetics of intellectual disability: advancing technology and gene editing. F1000Res. 2020;9:22.; Stevenson R.E., Procopio-Allen A.M., Schroer R.J. et al. Genetic syndromes among individuals with mental retardation. Am J Med Genet A. 2003;123A(1):29-32.; Huertas R. Between doctrine and clinical practice: nosography and semiology in the work of Jean-Etienne-Dominique Esquirol (1772-1840). Hist Psychiatry. 2008;19(74 Pt 2):123-140.; Гуровец Г.В. Психопатология детского возраста. Изд-во: Владос, 2008.- 359c.; Горюнов А.В., Лазарева И.И., Шевченко Ю.С. Г.Е. Сухарева: жизненный путь и научно-педагогическое наследие (к 125-летию со дня рождения). Журнал неврологии и психиатрии им. С.С. Корсакова. 2017;4;59-63.; Приказ Министерства здравоохранения Российской федерации №170 от 27 мая 1997 года «О переходе органов и учреждений здравоохранения Российской Федерации на Международную статистическую классификацию болезней и проблем, связанных со здоровьем X пересмотра». https://normativ.kontur.ru/document?moduleId=1&documentId=73815; D’Arrigo S., Gavazzi F., Alfei E. et al. The Diagnostic Yield of Array Comparative Genomic Hybridization Is High Regardless of Severity of Intellectual Disability/Developmental Delay in Children. J Child Neurol. 2016;31(6):691-699.; The Deciphering Developmental Disorders Study. Large-scale discovery of novel genetic causes of developmental disorders. Nature 519, 223-228 (2015).; de la Paz M.P. Rare diseases epidemiology: update and overview, advances in experimental medicine and biology. 2017.; Wellesley D.G., Hockey K.A., Montgomery P.D. et al. 1992. Prevalence of intellectual handicap in Western Australia: a community study. Med J Aust. 1992;156:94-102.; Chelly J., Khelfaoui M., Francis F. et al. Genetics and pathophysiology of mental retardation. Eur J Hum Genet. 2006;14(6):701-713.; Гинтер Е.К. Медицинская генетика. Изд-во: Медицина Москва 2003.; Linden M.G., Bender B.G., Robinson A. Sex chromosome tetrasomy and pentasomy. Pediatrics. 1995, 96:672-682.; Devriendt K., Holvoet M., Fryns J. An etiological diagnostic survey in children attending a school for special education. Genet Couns. 2003;14:125.; Rauch A., Hoyer J., Guth S. et al. Diagnostic yield of various genetic approaches in patients with unexplained developmental delay or mental retardation. Am J Med Genet Part A. 2006;140A:2063-74.; Michelson D.J., Shevell M.I., Sherr E.H. et al. Evidence report: genetic and metabolic testing on children with global developmental delay: report of the Quality Standards Subcommittee of the American Academy of Neurology and the Practice Committee of the Child Neurology Society. Neurology. 2011;77:1629-35.; Gilissen C., Hehir-Kwa J.Y., Thung D.T. et al. Genome sequencing identifies major causes of severe intellectual disability. Nature. 2014;511(7509):344-347.; Desai S.S. Down syndrome: a review of the literature. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 1997;84(3):279-285.; van Karnebeek C.D., Jansweijer M.C., Leenders A.G. et al. Diagnostic investigations in individuals with mental retardation: a systematic literature review of their usefulness. Eur J Hum Genet. 2005;13:6-25.; Shevell M., Ashwal S., Donley D. et al. Practice parameter: evaluation of the child with global developmental delay: report of the Quality Standards Subcommittee of the American Academy of Neurology and The Practice Committee of the Child Neurology Society. Neurology. 2003;60:367-380.; Beaudet A.L. The utility of chromosomal microarray analysis in developmental and behavioral pediatrics. Child Dev. 2013;84(1): 121-132.; Miller D.T., Adam M.P., Aradhya S. et al. Consensus statement: chromosomal microarray is a first-tier clinical diagnostic test for individuals with developmental disabilities or congenital anomalies. Am J Hum Genet. 2010;86:749-764.; Stankiewicz P., Beaudet A.L. Use of array CGH in the evaluation of dysmorphology, malformations, developmental delay, and idiopathic mental retardation. Curr Opin Genet Dev. 2007;17(3):182-192.; Blyth M., Maloney V., Beal S. et al. Pallister-Killian syndrome: a study of 22 British patients. J Med Genet. 2015;52(7):454-464.; Shaw-Smith C., Redon R., Rickman L. et al. Microarray based comparative genomic hybridisation (array-CGH) detects submicroscopic chromosomal deletions and duplications in patients with learning disability/mental retardation and dysmorphic features. J Med Genet. 2004;41:241-248.; Наследственные болезни: национальное руководство / Под ред. Н. П. Бочкова, Е. К. Гинтера, В. П. Пузырева - Москва: ГЭОТАР-Медиа, 2012. - 936 с.; Berisha S.Z., Shetty S., Prior T.W. et al. Cytogenetic and molecular diagnostic testing associated with prenatal and postnatal birth defects. Birth Defects Res. 2020;112(4):293-306.; Shin S., Yu N., Choi J.R. et al. Routine chromosomal microarray analysis is necessary in Korean patients with unexplained developmental delay/mental retardation/autism spectrum disorder. Ann Lab Med. 2015;35(5):510-518.; Han J.Y., Lee I.G. Genetic tests by next generation sequencing in children with developmental delay and/or intellectual disability. Clin Exp Pediatr. 2020;10.; Патофизиология, т.1 / под ред. В.В. Новицкого, Е.Д. Гольдберга, О.И. Уразовой. Изд-во: ГЭОТАР-Медиа 2013.; Morton N., Rao D.C., Lang-Brown H. et al. Colchester revisited: a genetic study of mental defect. J. Med. Genet. 1977;14:1-9.; Binaafar S., Razmara E., Mahdieh N. et al. A novel missense variant in GPT2 causes non-syndromic autosomal recessive intellectual disability in a consanguineous Iranian family. Eur J Med Genet. 2020;63(5):103853.; Williams et al. Genetic disorders sourcebook. Omnigraphics (7th edition). 2019.; Hoffmann G.F., Zschocke J., Nyhan W.L. Inherited metabolic diseases. Springer. 2010.; Волгина С.Я., Асанов А.Ю., Соколов А.А. Современные аспекты диагностики, лечения и наблюдения детей с галактоземией I типа. Российский вестник перинатологии и педиатрии. 2015;5:179-187.; Bagni C., Greenough W.T. From mRNP trafficking to spine dysmorphogenesis: the roots of fragile X syndrome. Nat Rev Neurosci. 2005;6:376-387.; Marin-Padilla M. Structural abnormalities of the cerebral cortex in human chromosomal aberrations: a Golgi study. Brain Res. 1972;44:625-629.; Purpura D.P. Dendritic spine ‘dysgenesis’ and mental retardation. Science. 1976;186:1126-1128.; Hinton V.J., Brown W.T., Wisniewski K. et al. Analysis of neocortex in three males with the fragile X syndrome. Am J Med Genet. 1991;41:289-294.; Irwin S.A., Patel B., Idupulapati M. et al. Abnormal dendritic spine characteristics in the temporal and visual cortices of patients with fragile-X syndrome: a quantitative examination. Am J Med Genet. 2001;98:161-167.; Comery T.A., Harris J.B., Willems P.J. et al. Abnormal dendritic spines in fragile X knockout mice: maturation and pruning deficits. Proc Natl Acad Sci USA. 1997;94:5401-5404.; Huttenlocher P.R., Dabholkar A.S. Regional differences in synaptogenesis in human cerebral cortex. J Comp Neurol. 1997;387:167-178.; Boda B., Alberi S., Nikonenko I. et al. The mental retardation protein PAK3 contributes to synapse formation and plasticity in hippocampus. J Neurosci. 2004;24:10816-10825.; Govek E.E., Newey S.E., Akerman C.J. et al. The X-linked mental retardation protein oligophrenin-1 is required for dendritic spine morphogenesis. Nat Neurosci. 2004;7:364-372.; Meng J., Meng Y., Hanna A. et al. Abnormal long-lasting synaptic plasticity and cognition in mice lacking the mental retardation gene Pak3. J Neurosci. 2005;25:6641-6650.; Nodé-Langlois R., Muller D., Boda B. Sequential implication of the mental retardation proteins ARHGEF6 and PAK3 in spine morphogenesis. J Cell Sci. 2006;119(Pt 23):4986-4993.; Fischer M., Kaech S., Wagner U. et al. Glutamate receptors regulate actin-based plasticity in dendritic spines. Nat Neurosci. 2000;3:887-894.; Genot E., Daubon T., Sorrentino V. et al. FGD1 as a central regulator of extracellular matrix remodeling lessons from faciogenital dysplasia. J Cell Sci. 2012;125(Pt 14):3265-3270.; Qadir M.I., Parveen A., Ali M. Cdc42: Role in cancer management. Chem Biol Drug Des. 2015;86(4): 432-439.; des Portes V., Soufir N., Carrié A. et al. Gene for nonspecific X-linked mental retardation (MRX 47) is located in Xq22.3-q24. Am J Med Genet. 1997;72(3):324-328.; Schwartz C.E. X-linked mental retardation: in pursuit of a gene map. Am J Hum Genet. 1993;52(6):1025-1031.; van Karnebeek C.D., Stockler S. Treatable inborn errors of metabolism causing intellectual disability: a systematic literature review. Mol Genet Metab. 2012;105(3):368-381.; Harripaul R., Noor A., Ayub M. et al. The use of next-generation sequencing for research and diagnostics for intellectual disability. Cold Spring Harb Perspect Med. 2017;7(3):a026864.; Hamdan F.F., Gauthier J., Araki Y. et al. Excess of de novo deleterious mutations in genes associated with glutamatergic systems in nonsyndromic intellectual disability [published correction appears in Am J Hum Genet. 2011 Apr 8;88(4):516]. Am J Hum Genet. 2011;88(3):306-316.; Tarpey P.S., Smith R., Pleasance E. et al. A systematic, large-scale resequencing screen of X-chromosome coding exons in mental retardation. Nat Genet. 2009;41:535-543.; Jensen L.R., Lenzner S., Moser B. et al. X-linked mental retardation: A comprehensive molecular screen of 47 candidate genes from a 7.4 Mb interval in Xp11. Eur J Hum Genet. 2007;15: 68-75.; Boycott K.M., Vanstone M.R., Bulman, D. E. et al. Rare-disease genetics in the era of next-generation sequencing: discovery to translation. Nat. Rev. Genet. 2013;14:681-691.; Najmabadi H., Hu H., Garshasbi M. et al. Deep sequencing reveals 50 novel genes for recessive cognitive disorders. Nature. 2011;478:57-63.; Tzschach A., Grasshoff U., Beck-Woedl S. et al. Next-generation sequencing in X-linked intellectual disability. Eur J Hum Genet. 2015;23:1513-1518.; Choi M., Scholl U.I., Ji W. et al. Genetic diagnosis by whole exome capture and massively parallel DNA sequencing. Proc Natl Acad Sci USA. 2009;106(45):19096-19101.; Clark M.M., Stark Z., Farnaes L. et al. Meta-analysis of the diagnostic and clinical utility of genome and exome sequencing and chromosomal microarray in children with suspected genetic diseases. Npj Genom Med. 2018;3:16.; Harripaul R., Vasli N., Mikhailov A. et al. Mapping autosomal recessive intellectual disability: combined microarray and exome sequencing identifies 26 novel candidate genes in 192 consanguineous families. Mol Psychiatry. 2018;23(4):973-984.; de Ligt J, Willemsen M.H., van Bon B.W.M. Diagnostic exome sequencing in persons with severe intellectual disability. N Engl J Med. 2012;367:1921-1929.; Wright C.F., Fitzgerald T.W., Jones W.D. et al. Genetic diagnosis of developmental disorders in the DDD study: a scalable analysis of genome-wide research data. Lancet. 2015;385:1305-1314.; Lee H., Deignan J.L., Dorrani N. et al. Clinical exome sequencing for genetic identification of rare Mendelian disorders. JAMA. 2014;312:1880-1887.; Lindstrand A., Eisfeldt J., Pettersson M. et al. From cytogenetics to cytogenomics: whole-genome sequencing as a first-line test comprehensively captures the diverse spectrum of disease-causing genetic variation underlying intellectual disability. Genome Med. 2019;11(1):68.; https://www.medgen-journal.ru/jour/article/view/1874
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4Academic Journal
المؤلفون: Владзимирський, А., Голубєва, Т., Попова, Т.
المصدر: Bukovinian Medical Herald; Vol. 14 No. 2 (54) (2010); 33-36 ; Буковинский медицинский вестник; Том 14 № 2 (54) (2010); 33-36 ; Буковинський медичний вісник; Том 14 № 2 (54) (2010); 33-36 ; 2413-0737 ; 1684-7903
مصطلحات موضوعية: порушення постави, телемедицина, скринінг, діагностична ефективність, ROC, нарушение осанки, скрининг, диагностическая эффективность, carriage abnormalities, telemedicine, screening, diagnostic efficacy
وصف الملف: application/pdf
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5Academic Journal
المؤلفون: Polushina, L. G., Svetlakova, E. N., Sementsova, E. A., Mandra, Yu. V., Bazarny, V. V., Полушина, Л. Г., Светлакова, Е. Н., Семенцова, Е. А., Мандра, Ю. В., Базарный, В. В.
مصطلحات موضوعية: PERIODONTITIS, ORAL FLUID, CYTOKINES, DIAGNOSTIC EFFICACY, ПАРОДОНТИТ, РОТОВАЯ ЖИДКОСТЬ, ЦИТОКИНЫ, ДИАГНОСТИЧЕСКАЯ ЭФФЕКТИВНОСТЬ
وصف الملف: application/pdf
Relation: Scopus; Л.Г. Полушина, Е.Н. Светлакова, Е.А. Семенцова, Ю.В. Мандра, В.В. Базарный «Клинико-патогенетическое значение некоторых цитокинов при пародонтите» // Медицинская иммунология, 2017. Т. 19, № 6. С. 803-806.; http://elib.usma.ru/handle/usma/7143
الاتاحة: http://elib.usma.ru/handle/usma/7143
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6Academic Journal
المؤلفون: L. G. Polushina, E. N. Svetlakova, E. A. Sementsova, Yu. V. Mandra, V. V. Bazarnyi, Л. Г. Полушина, Е. Н. Светлакова, Е. А. Семенцова, Ю. В. Мандра, В. В. Базарный
المصدر: Medical Immunology (Russia); Том 19, № 6 (2017); 803-806 ; Медицинская иммунология; Том 19, № 6 (2017); 803-806 ; 2313-741X ; 1563-0625 ; 10.15789/1563-0625-2017-6
مصطلحات موضوعية: диагностическая эффективность, oral fluid, cytokines, diagnostic efficacy, ротовая жидкость, цитокины
وصف الملف: application/pdf
Relation: https://www.mimmun.ru/mimmun/article/view/1405/996; Базарный В.В., Ваневская Е.А., Полушина Л.Г., Мандра Ю.В., Цвиренко С.В. Характеристика секреторного иммуни- тета при герпетическом стоматите // Клиническая лабораторная диагностика, 2013. № 9. С. 72. [Bazarny V.V., Vanevskaya E.A.; Polyshina L.G., Mandra Yu.V., Tsvirenko S.V. Characteristics of secretory immunity in herpetic stomatitis. Klinicheskaya laboratornaya diagnostika = Russian Clinical Laboratory Diagnostics, 2013, no. 9, p. 72. (In Russ.)]; Базарный В.В., Журавлев В.П., Мандра Ю.В., Николаева А.А., Ваневская Е.А., Полушина Л.Г. Иммунологиче- ские особенности ротовой жидкости у пациентов с герпетической инфекцией // Уральский медицинский журнал, 2013. № 5 (110). С. 5-8. [Bazarny V.V., Zhuravleva V.P., Mandra Yu.V., Nikolaeva A.A., Vanevskaya E.A., Polyshina L.G. Immunological features of oral fluid of patients with herpes virus infection. Uralskiy meditsinskiy zhurnal = Ural Medical Journal, 2013, no. 5 (110). pp. 5-8. (In Russ.)]; Базарный В.В., Журавлев В.П., Мандра Ю.В., Николаева А.А., Ваневская Е.А., Полушина Л.Г. Лактоферрин в ротовой жидкости пациентов с герпесвирусной инфекцией // Вестник Уральской медицинской академической науки, 2014. № 1. С. 48-49. [Bazarny V.V., Zhuravleva V.P., Mandra Yu.V., Nikolaeva A.A., Vanevskaya E.A., Polyshina L.G. Lactoferrin in the oral fluid of patients with herpes virus infection. Vestnik Uralskoy meditsinskoy akademicheskoy nauki = Journal of Ural Medical Academic Science, 2014, no. 1, pp. 48-49. (In Russ.)]; Базарный В.В., Полушина Л.Г., Ваневская Е.А. Иммунологический анализ ротовой жидкости как потенциаль- ный диагностический инструмент // Российский иммунологический журнал, 2014. Т. 8 (17), № 3. С. 769-771. [Bazarny V.V., Vanevskaya E.A., Polyshina L.G. Immunological assay oral fluid as potential diagnostic tool. Rossiyskiy immunologicheskiy zhurnal = Russian Journal of Immunology, 2014, Vol. 8 (17), no. 3, pp. 769-771. (In Russ.)]; Дмитриева Л.А., Максимовский Ю.М. Терапевтическая стоматология: национальное руководство. М: ГЭОТАР-Медиа, 2009. С. 125-128. [Dmitrieva L.A., Maksimovskiy Yu.M. Therapeutic dentistry: national leadership]. Moscow: GEOTARMedia, 2009, pp. 125-128.; Лепилин А.В., Дубровская М.В. Иммунологические нарушения в формировании заболеваний пародонта у беремен- ных // Саратовский научно-медицинский журнал, 2010. Т. 6, № 2. С. 392-396. [Lepilin A.V., Dubrovskaya M.V. Immunological disorders in formation of periodontal diseases at pregnant women. Saratovskiy nauchno-meditsinskiy zhurnal = Saratov Journal of Medical Scientific Research, 2010, Vol. 6, no. 2, pp. 392-396. (In Russ.)]; AlMoharib H.S., Mubarak A.A., Rowis R.A., Geevarghese A., Preethanath R.S. Oral Fluid Based Biomarkers in Periodontal. Disease: Part 1. Saliva. J. Int. Oral Health, 2014, no. 6 (4), рр. 95-103.; Ertugrul A.S., Sahin H., Dikilitas A., Alpaslan N., Bozoglan A. Comparison of CCL28, interleukin-8, interleukin-1β and tumor necrosis factor-alpha in subjects with gingivitis, chronic periodontitis and generalized aggressive periodontitis. J. Periodontal Res., 2013, no. 48 (1), рр. 44-51.; de Campos B.O., Fischer R.G., Gustafsson A., Figueredo C.M. Effectiveness of non-surgical treatment to reduce il-18 levels in the gingival crevicular fluid of patients with periodontal disease. J. Braz. Dent., 2012, no. 23 (4), рр. 428-432.; Fawcett T. ROC graphs: Notes and practical considerations for researchers. Kluwer Academic Publishers, 2004, рр. 2-7.; Polepalle T., Moogala S., Boggarapu S., Pesala D.S., Palagi F.B. Acute phase proteins and their role in periodontitis: a review. J. Clin. Diagn. Res., 2015, no. 9 (11), ZE01-ZE05. doi:10.7860/JCDR/2015/15692.6728; Maney P., Leigh J. Interleukin polymorphisms in aggressive periodontitis: a literature review. J. Indian Soc. Periodontol., 2015, no. 19 (2), рр. 131-141.; Suk J., Youngnim C. Point-of-care diagnosis of periodontitis using saliva: technically feasible but still a challenge. J. List Front. Cell. Infect. Microbiol., 2015, Vol. 5.; Taylor J. Protein biomarkers of periodontitis in saliva. ISRN Inflamm., 2014, p.18.; Yoshizawa J.M., Schafer C.A., Schafer J.J., Farrell J.J., Paster B.J., Wong D.T. Salivary biomarkers: toward future clinical and diagnostic utilities. Clin. Microbiol., 2013, no. 26 (4), pp. 781-791.; https://www.mimmun.ru/mimmun/article/view/1405
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7Academic Journal
المؤلفون: L. V. Sayapina, A. S. Abdrashitova, R. N. Lobach, A. V. Komratov, A. N. Malakhaeva, O. Yu. Lyashova, T. V. Valova, M. V. Khramov, N. G. Gefan
المصدر: Проблемы особо опасных инфекций, Vol 0, Iss 4(114), Pp 92-96 (2012)
مصطلحات موضوعية: bacillus anthracis, bacillus spp, иммуноглобулины диагностические флуоресцирующие вегетативные сибиреязвенные, диагностическая эффективность, anthrax vegetative fluorescent diagnostic immunoglobulins, diagnostic efficiency, Infectious and parasitic diseases, RC109-216
وصف الملف: electronic resource
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8Academic Journal
المؤلفون: A. P. Kourazhov, V. D. Zavadovskaya, O. Yu. Kilina, M. A. Zorkaltsev, Ye. L. Choinzonov, V. I. Chernov, Ye. M. Slonimskaya, A. V. Bogoutdinova, I. I. Anisenya, A. A. Titskaya, R. V. Zelchan, I. G. Frolova, L. S. Sapunova, V. D. Udodov
المصدر: Бюллетень сибирской медицины, Vol 11, Iss 3, Pp 120-131 (2012)
مصطلحات موضوعية: сцинтиграфия, 199tl-хлорид, 99mtc-миби, воспалительные процессы, опухолевые процессы, индекс ретенции, диагностическая эффективность, Medicine
وصف الملف: electronic resource
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9Academic Journal
المصدر: RUDN Journal of Medicine, Vol 0, Iss 4, Pp 386-389 (2010)
مصطلحات موضوعية: врачебный контроль, функциональное состояние спины, диагностическая эффективность, Medicine
وصف الملف: electronic resource
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10Academic Journal
المؤلفون: Е. А. Glushkov, A. G. Kislichenko, М. S. Ramazanova, Е. А. Глушков, А. Г. Кисличко, М. С. Рамазанова
المصدر: Siberian journal of oncology; № 6 (2015); 19-25 ; Сибирский онкологический журнал; № 6 (2015); 19-25 ; 2312-3168 ; 1814-4861 ; undefined
مصطلحات موضوعية: рак молочной железы, рак предстательной железы, метастазы в кости, радионуклидная диагностика, диагностическая эффективность
وصف الملف: application/pdf
Relation: https://www.siboncoj.ru/jour/article/view/197/199; Алиев М.Д., Степанова А.М., Мусаев Э.Р., Валиев А.К., Гуторов С.Л. Метастатическое поражение позвоночника у больных раком молочной железы. Факторы прогноза // Сибирский онкологический журнал. 2015. № 3. С. 61–67.; Каприн А.Д., Старинский В.В., Петрова Г.В. Злокачественные новообразования в России в 2012 году (заболеваемость и смертность). М., 2014. 250 с.; Brenner A.I., Koshy J., Morey J., Lin C., Di Poce J. The Bone Scan // Semin. Nucl. Med. 2012. Vol. 42 (1). P. 11–26. doi:10.1053/j.semnuclmed.2011.07.005.; Buck A.K., Nekolla S., Ziegler S., Beer A., Krause B.J., Herrmann K., Scheidhauer K., Wester H.-J., Rummeny E.J., Schwaiger M., Drzezga A. SPECT/CT // J. Nucl. Med. 2008. Vol. 49 (8). P. 1305–1319. doi:10.2967/jnumed.107.050195.; Callstrom M.R., Charboneau J.W. Image-guided palliation of painful metastases using percutaneous ablation // Tech. Vasc. Interv. Radiol. 2007. Vol. 10 (2). P. 120–131.; Gnanasegaran G., Barwick T., Adamson K., Mohan H., Sharp D., Fogelman I. Multislice SPECT/CT in Benign and Malignant Bone Disease: When the Ordinary Turns Into the Extraordinary // Semin. Nucl. Med. 2009. Vol. 39 (6). P. 431–442. doi:10.1053/j.semnuclmed.2009.07.005.; Gnanasegaran G., Cook G., Adamson K., Fogelman I. Patterns, Variants, Artifacts, and Pitfalls in Conventional Radionuclide Bone Imaging and SPECT/CT // Semin. Nucl. Med. 2009. Vol. 39 (6). P. 380–395. doi:10.1053/j.semnuclmed.2009.07.003.; Hassan F.U., Mohan H.K., Gnanasegaran G., Vijayanathan S., Fogelman I. Beware of the focal uptake at the ischium on the bone scan in prostate cancer // Nucl. Med. Commun. 2011. Vol. 32 (4). P. 320–323. doi:10.1097/MNM.0b013e328342ff50.; Helyar V., Mohan H.K., Barwick T., Livieratos L., Gnanasegaran G., Clarke S.E., Fogelman I. The added value of multislice SPECT/CT in patients with equivocal bony metastasis from carcinoma of the prostate // Eur. J. Nucl. Med. Mol. Imaging. 2010. Vol. 37 (4). P. 706–713. doi:10.1007/s00259-009-1334-3.; Iqbal B., Currie G.M., Wheat J.M., Raza H., Kiat H. The Incremental Value of SPECT/CT in Characterizing Solitary Spine Lesions // J. Nucl. Med. Technol. 2011. Vol. 39 (3). P. 201–207. doi:10.2967/jnmt.111.088351.; Jambor I., Kuisma A., Ramadan S., Huovinen R., Sandell M., Kajander S., Kemppainen J., Kauppila E., Auren J., Merisaari H., Saunavaara J., Noponen T., Minn H., Aronen H.J., Seppänen M. Prospective evaluation of planar bone scintigraphy, SPECT, SPECT/CT, 18F-NaF PET/CT and whole body 1.5T MRI, including DWI, for the detection of bone metastases in high risk breast and prostate cancer patients: SKELETA clinical trial // Acta Oncol. 2015. Vol. 2. P. 1–9. [Epub ahead of print]; Mari Aparici C., Seo Y. Functional Imaging for Prostate Cancer: Therapeutic Implications // Semin. Nucl. Med. 2012. Vol. 42 (5). P. 328–342. doi:10.1053/j.semnuclmed.2012.04.004.; Papathanassiou D., Bruna-Muraille C., Jouannaud C., Gagneux- Lemoussu L., Eschard J.P., Liehn J.C. Single-photon emission computed tomography combined with computed tomography (SPECT/CT) in bone diseases // Joint Bone Spine. 2009. Vol. 76 (5). P. 474–480. doi:10.1016/j.jbspin.2009.01.016.; Zhang Y., Shi H., Cheng D., Jiang L., Xiu Y., Li B., Gu Y., Chen S. Added value of SPECT/spiral CT versus SPECT in diagnosing solitary spinal lesions in patients with extraskeletal malignancies // Nucl. Med. Commun. 2013. Vol. 34 (5). P. 451–458. doi:10.1097/MNM.0b013e32835fa552.; Zhang Y., Shi H., Gu Y., Xiu Y., Li B., Zhu W., Chen S., Yu H. Differential diagnostic value of single-photon emission computed tomography/ spiral computed tomography with Tc-99m-methylene diphosphonate in patients with spinal lesions // Nucl. Med. Commun. 2011. Vol. 32 (12). P. 1194–1200. doi:10.1097/MNM.0b013e32834bd82e.; Zhao Z., Li L., Li F., Zhao L. Single photon emission computed tomography/spiral computed tomography fusion imaging for the diagnosis of bone metastasis in patients with known cancer // Skeletal Radiol. 2010. Vol. 39 (2). P. 147–153. doi:10.1007/s00256-009-0764-0; https://www.siboncoj.ru/jour/article/view/197; undefined
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11
المصدر: Bukovinian Medical Herald; Vol. 14 No. 2 (54) (2010); 33-36
Буковинский медицинский вестник; Том 14 № 2 (54) (2010); 33-36
Буковинський медичний вісник; Том 14 № 2 (54) (2010); 33-36مصطلحات موضوعية: порушення постави, телемедицина, скринінг, діагностична ефективність, ROC, нарушение осанки, скрининг, диагностическая эффективность, carriage abnormalities, telemedicine, screening, diagnostic efficacy
وصف الملف: application/pdf
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12Academic Journal
المؤلفون: ЕФИМОВ Г.Е., МАВЗЮТОВ АЙРАТ РАДИКОВИЧ, ТИТОВА Т.Н., МУХАМАДИЕВА Р.Р.
مصطلحات موضوعية: ПОЛИМЕРАЗНАЯ ЦЕПНАЯ РЕАКЦИЯ, ЧУВСТВИТЕЛЬНОСТЬ, СПЕЦИФИЧНОСТЬ, ДИАГНОСТИЧЕСКАЯ ЭФФЕКТИВНОСТЬ
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13Academic Journal
المؤلفون: ЭМАНУЭЛЬ ЮЛИЯ ВЛАДИМИРОВНА, КОЧЕТОВ А.Г., ВАВИЛОВА Т.В., ИВАНОВ А.М., КАРПИЩЕНКО А.И., ЛЯНГ О.В., КОВАЛЬЧУК Ю.П., ЭМАНУЭЛЬ В.Л.
مصطلحات موضوعية: КЛИНИЧЕСКАЯ ЛАБОРАТОРНАЯ ДИАГНОСТИКА, ДИАГНОСТИЧЕСКАЯ ЭФФЕКТИВНОСТЬ, АНАЛИТИК, АЛГОРИТМ ДИАГНОСТИКИ, ПРОФЕССИОНАЛЬНЫЕ СТАНДАРТЫ ДЕЯТЕЛЬНОСТИ
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14Academic Journal
المؤلفون: ГЛУШКОВ ЕВГЕНИЙ АЛЕКСАНДРОВИЧ, КИСЛИЧКО АНАТОЛИЙ ГРИГОРЬЕВИЧ, РАМАЗАНОВА МАДИНА СУЛТАНОВНА
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15Academic Journal
المصدر: Medical Visualization; № 6 (2014); 108-118 ; Медицинская визуализация; № 6 (2014); 108-118 ; 2408-9516 ; 1607-0763
مصطلحات موضوعية: рентгеноконтрастные средства, йоверсол, МСКТ, побочное воздействие, сравнительные исследования, диагностическая эффективность, X-ray contrast media, ioversol, MDCT, adverse effect, comparative trails, diagnostic efficacy
وصف الملف: application/pdf
Relation: https://medvis.vidar.ru/jour/article/view/318/319; Кармазановский Г.Г. Спиральная компьютерная томография: болюсное контрастное усиление. Монография. М.: Видар-М., 2005. 376 с.; Callahan M.J., Poznauskis L., Zurakowski D., Taylor G.A. Nonionic iodinated intravenous contrast material-related reactions: incidence in large urban children's hospital-retrospective analysis of data in 12,494 patients. Radiology. 2009; 250 (3): 674-681.; Gomi T., Nagamoto M., Hasegawa M. et al. Are there any differences in acute adverse reactions among five low-osmolar non-ionic iodinated contrast media? Eur Radiol. 2010; 20 (7): 1631-1635.; Rossi C., Reginelli A., D'Amora M. et al. Safety profile and protocol prevention of adverse reactions to uroangiographic contrast media in diagnostic imaging. J. Biol. Regul. Homeost. Agents. 2014; 28 (1): 155-165.; Seong J.M., Choi N.K., Lee J. et al. Comparison of the safety of seven iodinated contrast media. J. Korean. Med. Sci. 2013; 28 (12): 1703-1710.; Torres M.J., Gomez F., Dona I. et al. Diagnostic evaluation of patients with nonimmediate cutaneous hypersensitivity reactions to iodinated contrast media. Allergy. 2012; 67 (7): 929-935.; Lovborg H., Eriksson L.R., Jonsson A.K. et al. A prospective analysis of the preventability of adverse drug reactions reported in Sweden. Eur. J. Clin. Pharmacol. 2012; 68 (8): 1183-1189.; Trout A.T., Dillman J.R., Ellis J.H. et al. Patterns of intravenous contrast material use and corticosteroid premedication in children - a survey of Society of Chairs of Radiology in Children's Hospitals (SCORCH) member institutions. Pediatr. Radiol. 2011; 41 (10): 1272-1283.; Rudnick M.R., Davidson C., Laskey W. et al. VALOR Trial Investigators. Collaborators (38) Nephrotoxicity of iodixanol versus ioversol in patients with chronic kidney disease: the Visipaque Angiography/Interventions with Laboratory Outcomes in Renal Insufficiency (VALOR) Trial. Am. Heart. J. 2008; 156 (4): 776-782.; Aspelin P., Aubry P., Fransson S.G. et al. Nephrotoxicity in High-Risk Patients Study of Iso-Osmolar and Low-Osmolar Non-Ionic Contrast Media Study Investigators. Nephrotoxic effects in high-risk patients undergoing angiography. N. Engl. J. Med. 2003; 348 (6): 491-499.; Sharma S.K. Iodinated contrast media and contrastinduced nephropathy: is there a preferred cost-effective agent? J. Invasive Cardiol. 2008; 20 (5): 245-248.; Heinrich M.C., Haberle L., Muller V. et al. Nephrotoxicity of iso-osmolar iodixanol compared with nonionic low-osmolar contrast media: meta-analysis of randomized controlled trials. Radiology. 2009; 250 (1): 68-86.; Hernandez F., Mora L., Garcia-Tejada J. et al. Comparison of iodixanol and ioversol for the prevention of contrast-induced nephropathy in diabetic patients after coronary angiography or angioplasty. Rev. Esp. Cardiol. 2009; 62 (12): 1373-1380.; Zhao J., Huang Y., Song Y. et al. Low osmolar contrast medium induces cellular injury and disruption of calcium homeostasis in rat glomerular endothelial cells in vitro. Toxicol. Lett. 2009; 185 (2): 124-131.; Reed M., Meier P., Tamhane U.U. et al. The relative renal safety of iodixanol compared with low-osmolar contrast media: a meta-analysis of randomized controlled trials. JACC Cardiovasc. Interv. 2009; 2 (7): 645-654.; Biondi-Zoccai G., Lotrionte M., Thomsen H.S. et al. Nephropathy after administration of iso-osmolar and low-osmolar contrast media: evidence from a network meta-analysis. Int. J. Cardiol. 2014; 172 (2): 375-380.; Jensen H., Doughty R.W., Grant D., Myhre O. The effects of the iodinated X-ray contrast media iodixanol, iohexol, iopromide, and ioversol on the rat kidney epithelial cell line NRK 52-E. Ren Fail. 2011; 33 (4): 426-433.; Karlsberg R.P., Dohad S.Y., Sheng R. Iodixanol Peripheral CTA Study Investigator Panel. Collaborators (29). Contrast-induced acute kidney injury (CI-AKI) following intra-arterial administration of iodinated contrast media. J. Nephrol. 2010; 23 (6): 658-666.; Jost G., Lengsfeld P., Lenhard D.C. et al. Viscosity of iodinated contrast agents during renal excretion. Eur. J. Radiol. 2011; 80 (2): 373-377.; George M., Shannon M. Intravenous contrast agents and associated changes in serum osmolality. Pediatr. Emerg. Care. 2009; 25 (9): 555-557.; Brunette J., Mongrain R., Rodes-Cabau J. et al. Comparative rheology of low- and iso-osmolarity contrast agents at different temperatures. Catheter Cardiovasc. Interv. 2008; 71 (1): 78-83.; Fagerstam J.P., Ostberg A.K., Eriksson A.C. et al. Similar inhibition of platelet adhesion, P-selectin expression and plasma coagulation by ioversol, iodixanol and ioxaglate. Br. J. Radiol. 2010; 83 (989): 401-410.; Mrowietz C., Franke R.P., Jung F. Influence of different radiographic contrast media on the echinocyte formation of human erythrocytes. Clin. Hemorheol. Microcirc. 2012; 50 (1-2): 35-47.; Киселева О.А., Усенко А.Н., Шимановский Н.Л., Фирсов Н.Н. Аггрегация, деформация и морфология эритроцитов у пациентов с кардиоишемией после инъекции йоверсола, йодиксанола и гадобутрола. Эксперментаотная и клиническая фармакология. 2010; 73 (12): 36-38.; Campbell K.L., Hud L.M., Adams S. et al. Safety of iodinated intravenous contrast medium administration in sickle cell disease. Am. J. Med. 2012; 125 (1): 100. e11-6.; Goble E.W., Abdulkarim J.A. CT pulmonary angiography using a reduced volume of high-concentration iodinated contrast medium and multiphasic injection to achieve dose reduction. Clin. Radiol. 2014; 69 (1): 36-40.; Nijhof W.H., van der Vos C.S., Anninga B. et al. Reduction of contrast medium volume in abdominal aorta CTA: multiphasic injection technique versus a test bolus volume. Eur. J. Radiol. 2013; 82 (9): 1373-1378.; Vogl T.J., Wessling J., Buerke B. An observational study to evaluate the efficiency and safety of ioversol pre-filled syringes compared with ioversol bottles in contrast-enhanced examinations. Acta Radiol. 2012; 53 (8): 914-920.; LaBounty T.M., Shah M., Raman S.V. et al. Within-hospital and 30-day outcomes in 107,994 patients undergoing invasive coronary angiography with different low-osmolar iodinated contrast media. Am. J. Cardiol. 2012; 109 (11): 1594-1599.; Короткина Р.Н., Кармазановский Г.Г., Шуракова А.Б., Никитаев Н.С., Дикова О.Н., Синицын Г.С., Соколова Г.В., Бурцева Н.А., Ермолюк И.М., Курочкина А.И., Карелин А.А. Исследование побочного действия некоторых рентгеноконтрастных веществ на функцию клеток печени и почек с помощью клеток печени и почек с помощью органоспецифических ферментов. Медицинская визуализация. 2004; 5: 125-129.; https://medvis.vidar.ru/jour/article/view/318
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16Academic Journal
المؤلفون: Коханов, А., Ямпольская, И., Бисалиева, Р., Мамиев, О., Мяснянкин, А.
مصطلحات موضوعية: ПЛАЦЕНТАРНАЯ ЩЕЛОЧНАЯ ФОСФАТАЗА, УДЕЛЬНАЯ АКТИВНОСТЬ, БЕРЕМЕННОСТЬ, ПЛАЦЕНТАРНАЯ НЕДОСТАТОЧНОСТЬ, РАННЯЯ ДИАГНОСТИКА, ДИАГНОСТИЧЕСКАЯ ЭФФЕКТИВНОСТЬ ТЕСТА
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17Academic Journal
المؤلفون: Коршунов, Геннадий, Павленко, Н., Пучиньян, Д., Гладкова, Е., Шахмартова, С., Марков, Д.
وصف الملف: text/html
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18Academic Journal
المؤلفون: Куражов, Алексей, Завадовская, В., Килина, О., Зоркальцев, М., Чойнзонов, Е., Чернов, В., Слонимская, Е., Богоутдинова, А., Анисеня, И., Тицкая, А., Зельчан, Р., Фролова, И., Сапунова, Л., Удодов, В.
مصطلحات موضوعية: СЦИНТИГРАФИЯ, 199TL-ХЛОРИД, 99MTC-МИБИ, ВОСПАЛИТЕЛЬНЫЕ ПРОЦЕССЫ, ОПУХОЛЕВЫЕ ПРОЦЕССЫ, ИНДЕКС РЕТЕНЦИИ, ДИАГНОСТИЧЕСКАЯ ЭФФЕКТИВНОСТЬ
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19Academic Journal
المؤلفون: Шишло, И., Наркевич, В.
مصطلحات موضوعية: ОНКОЛОГИЧЕСКИЕ БОЛЬНЫЕ, ПОСЛЕОПЕРАЦИОННЫЙ ПЕРИТОНИТ, ДИАГНОСТИКА ДЕФЕКТА ПОЛОГО ОРГАНА, ДИАГНОСТИЧЕСКАЯ ЭФФЕКТИВНОСТЬ
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20Academic Journal
المؤلفون: Осадшая, Людмила, Богачев, Александр, Грецкая, Ирина
مصطلحات موضوعية: ВРАЧЕБНЫЙ КОНТРОЛЬ, ФУНКЦИОНАЛЬНОЕ СОСТОЯНИЕ СПИНЫ, ДИАГНОСТИЧЕСКАЯ ЭФФЕКТИВНОСТЬ
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