Showing 1 - 5 results of 5 for search '"неотложные мероприятия"', query time: 0.60s Refine Results
  1. 1
    Academic Journal

    Authors: Yurii S. Alexandrovich, Ekaterina I. Alekseeva, Maya D. Bakradze, Alexander A. Baranov, Tatiana T. Batysheva, Nato D. Vashakmadze, Marina G. Vershinina, Elena A. Vishneva, Anastasia A. Glazyrina, Olga B. Gordeeva, Elena Yu. Dyakonova, Еlena S. Zholobova, Dmitry V. Zabolotsky, Nadezda N. Zvereva, Irina V. Zelenkova, Dmitry O. Ivanov, Elena V. Kaytukova, George A. Karkashadze, Ivan V. Konovalov, Daria S. Kruchko, Tatiana V. Kulichenko, Seda Kh. Kurbanova, Yliya G. Levina, Yuri V. Lobzin, Ludmila N. Mazankova, Tea V. Margieva, Leyla S. Namazova-Baranova, Yulia Yu. Novikova, Dmitry Yu. Ovsyannikov, Elena E. Petryaykina, Yuriy V. Petrenko, Nataliya V. Petrova, Dmitry V. Prometnoy, Konstantin V. Pshenisov, Gregory V. Revunenkov, Alexey Yu. Rtishchev, Dina S. Rusinova, Mukhammad A. Sayfullin, Ruslan F. Sayfullin, Liliya R. Selimzyanova, Vladimir K. Tatochenko, Rustem F. Tepaev, Aleksandr N. Uskov, Marina V. Fedoseenko, Andrey P. Fisenko, Andrey V. Khar’kin, Kamilla E. Efendieva, Alexey V. Yakovlev, Ю. С. Александрович, Е. И. Алексеева, М. Д. Бакрадзе, А. А. Баранов, Т. Т. Батышева, Н. Д. Вашакмадзе, М. Г. Вершинина, Е. А. Вишнева, А. А. Глазырина, О. Б. Гордеева, Е. Ю. Дьяконова, Е. С. Жолобова, Д. В. Заболотский, Н. Н. Зверева, И. В. Зеленкова, Д. О. Иванов, Е. В. Кайтукова, Г. А. Каркашадзе, И. В. Коновалов, Д. С. Крючко, Т. В. Куличенко, С. Х. Курбанова, Ю. Г. Левина, Ю. В. Лобзин, Л. Н. Мазанкова, Т. В. Маргиева, Л. С. Намазова-Баранова, Ю. Ю. Новикова, Д. Ю. Овсянников, Е. Е. Петряйкина, Ю. В. Петренко, Н. В. Петрова, Д. В. Прометной, К. В. Пшениснов, Г. В. Ревуненков, А. Ю. Ртищев, Д. С. Русинова, М. А. Сайфуллин, Р. Ф. Сайфуллин, Л. Р. Селимзянова, В. К. Таточенко, Р. Ф. Тепаев, А. Н. Усков, М. В. Федосеенко, А. П. Фисенко, А. В. Харькин, К. Е. Эфендиева, А. В. Яковлев

    Contributors: Not specified., Не указан.

    Source: Pediatric pharmacology; Том 17, № 3 (2020); 187-212 ; Педиатрическая фармакология; Том 17, № 3 (2020); 187-212 ; 2500-3089 ; 1727-5776

    File Description: application/pdf

    Relation: https://www.pedpharma.ru/jour/article/view/1865/1157; Технические руководящие указания ВОЗ. Наименование заболевания, вызванного коронавирусом (COVID-19), и вирусного возбудителя. Доступно по: https://www.who.int/ru/emergencies/diseases/novel-coronavirus-2019/technical-guidance/naming-the-coronavirus-disease-(covid-2019)-and-the-virus-that-causes-it. Ссылка активна на 12.04.2020.; Постановление Правительства Российской Федерации от 31 января 2020 N 66 «О внесении изменения в перечень заболеваний, представляющих опасность для окружающих». Доступно по: http://publication.pravo.gov.ru/Document/View/0001202002030005. Ссылка активна на 12.04.2020.; New study on COVID-19 estimates 5.1 days for incubation period. The Johns Hopkins Bloomberg School of Public Health, March 9, 2020. Available online: https://www.jhsph.edu/news/news-releases/2020/new-study-on-COVID-19-estimates-5-daysfor-incubation-period.html.; Lauer SA, Grantz KH, Bi Q, et al. The incubation period of Coronavirus Disease 2019 (COVID-19) from publicly reported confirmed cases: estimation and application. Ann Intern Med. 2020;172(9):577–582. doi:10.7326/M20-0504.; Министерство здравоохранения Российской Федерации. Временные методические рекомендации «Профилактика, диагностика и лечение новой коронавирусной инфекции (COVID-19)». Версия 4 (27.03.2020). Доступно по: https://static-3.rosminzdrav.ru/system/attachments/attaches/000/049/881/original/COVID19_recomend_v4.pdf. Ссылка активна на 12.04.2020.; To KK-W, Tsang OT-Y, Leung W-S, et al. Temporal profiles of viral load in posterior or opharyngeal saliva samples and serum antibody responses during infection by SARS-CoV-2: an observational cohort study. Lancet Infect Dis. 2020;20(5):565–574. doi:10.1016/S1473-3099(20)30196-1.; Shen K, Yang Y. Diagnosis and treatment of 2019 novel coronavirus infection in children: a pressing issue. World J Pediatr. 2020;16(3)219–221. doi:10.1007/s12519-020-00344-6.; Scott D. The Covid-19 risks for different age groups, explained. Vox. 23.03.2020. Available online: https://www.vox.com/2020/3/23/21190033/coronavirus-covid-19-deaths-by-age.; Huang C, Wang Y, Li X, et al. Clinical features of patients infected with 2019 novel coronavirus in Wuhan, China. Lancet. 2020;395(10223):497–506. doi:10.1016/S0140-6736(20)30183-5.; Zhu N, Zhang D, Wang W, et al. A novel Coronavirus from patients with Pneumonia in China, 2019. N Engl J Med. 2020;382(8):727–733. doi:10.1056/NEJMoa2001017.; Guan W, Ni Z, Hu Y, et al. Clinical Characteristics of Coronavirus Disease 2019 in China. N Engl J Med. 2020;382(18):1708–1720. doi:10.1056/NEJMoa2002032.; Baez D. Clinical findings of 6 children with COVID-19, risks factors associated with COVID- 19 death, and detection of SARSCoV-2 in different clinical specimens. Mar 13, 2020. Available online: http://www.anmco.it/uploads/u_cms/media/2020/3/b0f67d369884729177067cdc663b497c.pdf.; Dong Y, Mo X, Hu Y, et al. Epidemiological characteristics of 2143 pediatric patients with 2019 Coronavirus Disease in China. Pediatrics. 2020. Available online: https://pediatrics.aappublications.org/content/pediatrics/early/2020/03/16/peds.2020-0702.full.pdf.; Lu X, Liqiong Zhang L, Du H, et al. SARS-CoV-2 infection in children. N Engl J Med. 2020;382(17):1663–1665. doi:10.1056/NEJMc2005073.; Chan J-W, Yuan S, Kok K, et al. A familial cluster of pneumonia associated with the 2019 novel coronavirus indicating person-to-person transmission: a study of a family cluster. Lancet. 2020;395(10223):514–523. doi:10.1016/S0140-6736(20)30154-9.; Zhou F, Yu T, Du R, et al. Clinical course and risk factors for mortality of adult in patients with COVID-19 in Wuhan, China: a retrospective cohort study. Lancet. 2020;395(10229):1054–1062. doi:10.1016/S0140-6736(20)30566-3.; Zhang J, Dong X, Cao Y, et al. Clinical characteristics of 140 patients infected with SARS-CoV-2 in Wuhan, China. Allergy. 2020;75(7):1730–1741. doi:10.1111/all.14238.; Boulos MN, Geraghty EM. Geographical tracking and mapping of coronavirus disease COVID-19/severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) epidemic and associated events around the world: how 21st century GIS technologies are supporting the global fight against outbreaks and epidemics. Int J Health Geogr. 2020;19(1):8. doi:10.1186/s12942-020-00202-8.; Wang S, Guo L, Chen L, et al. A case report of neonatal COVID-19 infection in China. Clin Infect Dis. 2020;ciaa225. doi:10.1093/cid/ciaa225.; Chen H, Guo J, Wang C, et al. Clinical characteristics and intrauterine vertical transmission potential of COVID-19 infection in nine pregnant women: a retrospective review of medical records. Lancet. 2020;395(10226):809–815. doi:10.1016/S0140-6736(20)30360-3.; The Daily Star. Coronavirus suspicion: 7-month-old baby sent to Dhaka from isolation ward in Kushtia. Mar 26, 2020. Available online: https://www.thedailystar.net/coronavirus-suspicion-inkushtia-7-month-old-baby-isolation-ward-1886209.; WHO recommendation. Getting your workplace ready for COVID-19. Feb 26, 2020. Available online: https://www.who.int/docs/default-source/coronaviruse/getting-workplace-ready-forcovid-19.pdf?sfvrsn=359a81e7_6.; National Health Commission & State Administration of Traditional Chinese Medicine. Diagnosis and Treatment Protocol for Novel Coronavirus Pneumonia (Trial Version 7), Chin Med J (Engl). 2020;133(9):1087–1095. doi:10.1097/CM9.0000000000000819.; Cao B, Wang Y, Wen D, et al. A trial of Lopinavir-Ritonavir in adults hospitalized with Severe Covid-19. N Engl J Med. 2020;382(19):1787–1799. doi:10.1056/NEJMoa2001282.; Velthuis AJ, van den Worm, Sims AC, et al. Zn(2+) inhibits coronavirus and arterivirus RNA polymerase activity in vitro and zinc ionophores block the replication of these viruses in cell culture. PLoSPathog. 2010;6(11):e1001176. doi:10.1371/journal.ppat.1001176.; Gautret P, Lagier J, Parola P, et al. Hydroxychloroquine and azithromycin as a treatment of COVID-19: results of an open-label non-randomized clinical trial. Int J Antimicrob Agents. 2020;105949. doi:10.1016/j.ijantimicag.2020.105949.; Chang R, Sun W. Repositioning chloroquine as ideal antiviral prophylactic against COVID-19 — time is now. Preprints. 2020;2020030279. doi:10.20944/preprints202003.0279.v1.; Advisory on the use of hydroxy-chloroquine as prophylaxis for SARS-CoV-2 infection. Recommendation. Mar 22, 2020. Available online: https://www.mohfw.gov.in/pdf/AdvisoryontheuseofHydroxychloroquinasprophylaxisforSARSCoV2infection.pdf.; National Taskforce for COVID-19 Advisory on the use of hydroxychloroquine as prophylaxis for SARS-CoV-2 infection. 2020. Available online: https://www.mohfw.gov.in/pdf/AdvisoryontheuseofHydroxychloroquinasprophylaxisforSARSCoV2infection.pdfWorcester S. COVID-19 characteristics differ in children vs adults. 2020. Available online: https://www.medscape.com/viewarticle/926805.; Sarma P, Prajapat M, Avti P, et al. Therapeutic options for the treatment of 2019-novel coronavirus: An evidence-based approach. Indian J Pharmacol. 2020;52(1):1–5. doi:10.4103/ijp.IJP_119_20.; Ong SW, Tan YK, Chia PY, et al. Air, surface environmental, and personal protective equipment contamination by severe acute respiratory syndrome Coronavirus 2 (SARS-CoV-2) from a symptomatic patient. JAMA. 2020;323(16):1610–1612. doi:10.1001/jama.2020.3227.; Xu Y, Li X, Zhu B, et al. Characteristics of pediatric SARS-CoV-2 infection and potential evidence for persistent fecal viral shedding. Nat Med. 2020;26(4):502–505. doi:10.1038/s41591-020-0817-4.; Zeng L, Xia S, Yuan W, et al. Neonatal early-onset infection with SARS-CoV-2 in 33 neonates born to mothers with COVID-19 in Wuhan, China. JAMA Pediatr. 2020;e200878. doi:10.1001/jamapediatrics.2020.0878.; Wang J, Qi H, Bao L, et al. A contingency plan for the management of the 2019 novel coronavirus outbreak in neonatal intensive care units. Lancet Child Adolesc Health. 2020;4(4):258–259. doi:10.1016/S2352-4642(20)30040-7.; Qin C, Zhou L, Hu Z, at al. Dysregulation of immune response in patients with COVID-19 in Wuhan, China. Clin Infect Dis. 2020;ciaa248. doi:10.1093/cid/ciaa248.; Rodriguez-Morales AJ, Cardona-Ospina JA, Gutiérrez-Ocampo E, et al; Latin American Network of Coronavirus Disease 2019-COVID-19 Research (LANCOVID-19). Electronic address: https://www.lancovid.org.Clinical, laboratory and imaging features of COVID-19: A systematic review and meta-analysis. Travel Med Infect Dis. 2020;101623. doi:10.1016/j.tmaid.2020.101623.; Henry BM, Lippi G, Plebani M. Laboratory abnormalities in children with novel coronavirus disease 2019. Clin Chem Lab Med. 2020;58(7):1135–1138. doi:10.1515/cclm-2020-0272.; Guo L, Ren L, Yang S, et al. Profiling early humoral response to diagnose novel Coronavirus Disease (COVID-19). Clin Infect Dis. 2020;ciaa310. doi:10.1093/cid/ciaa310.; Soldati G, Smargiassi A, Inchingolo R, et al. Is there a role for lung ultrasound during the COVID-19 pandemic? J Ultrasound Med. 2020;39(7):1459–1462. doi:10.1002/jum.15284.; Islam M, Levitus M, Eisen L, et al. Lung ultrasound for the diagnosis and management of acute respiratory failure. Lung. 2020;198(1):1–11. doi:10.1007/s00408-019-00309-1.; Chen ZM, Fu JF, Shu Q, et al. Diagnosis and treatment recommendations for pediatric respiratory infection caused by the 2019 novel coronavirus. World J Pediatr. 2020;16(3):240–246. doi:10.1007/s12519-020-00345-5.; COVID-19 and breastfeeding. WHO Position Paper. Available online: https://www.euro.who.int/__data/assets/pdf_file/0010/437788/breastfeeding-COVID-19.pdf.; Ludvigsson JF. Systematic review of COVID-19 in children shows milder cases and a better prognosis than adults. Acta Paediatr. 2020;109(6):1088–1095. doi:10.1111/apa.15270.; Shen K, Yang Y, Wang T, et al. Diagnosis, treatment, and prevention of 2019 novel coronavirus infection in children: experts’ consensus statement. World J Pediatr. 2020;16(3):223–231. doi:10.1007/s12519-020-00343-7.; Karimi A, RafieiTabatabaei S, Rajabnejad M, et al. An algorithmic approach to diagnosis and treatment of Coronavirus Disease 2019 (COVID-19) in children: iranian expert’s consensus statement. Arch Pediatr Infect Dis. 2020;8(2):e102400. doi:10.5812/pedinfect.102400.; Alder Hey Children’s Hospital: Clinical management of children admitted to hospital with COVID-19. March 2020. Version 1. Available online: https://alderhey.nhs.uk/application/files/1815/8422/1173/COVID_19_IN_CHILDREN_CLINICAL_GUIDANCE_v1.pdf.; Michigan Medicine University of Michigan. Inpatient Guidance for treatment of COVID-19 in adults and children. Available online: http://www.med.umich.edu/asp/pdf/adult_guidelines/COVID-19-treatment.pdf.; WHO Coronavirus disease (COVID-2019) situation reports. Available online: https://www.who.int/emergencies/diseases/novel-coronavirus-2019/situation-reports/.; Приказ Министерства здравоохранения Российской Федерации от 19.03.2020 N 198н «О временном порядке организации работы медицинских организации в целях реализации мер по профилактике и снижению рисков распространения новой коронавирусной инфекции COVID-19» (с изменениями от 27 марта 2020 г. N 246н). Доступно по: https://rg.ru/2020/03/20/minzdravprikaz198-site-dok.html. Ссылка активна на 12.04.2020.; Whittaker E. et al., Clinical Characteristics of 58 Children With a Pediatric Inflammatory Multisystem Syndrome Temporally Associated With SARS-CoV-2. JAMA. 2020;e2010369. doi:10.1001/jama.2020.10369/.; Toubiana J, Poirault C, Corsia A, et al. Outbreak of Kawasaki disease in children during COVID-19 pandemic: a prospective observational study in Paris, France. medRxiv. Preprint posted May 2020. doi:10.1101/2020.05.10.20097394.; Riphagen S, Gomez X, Gonzalez-Martinez C, et al. Hyperinflammatory shock in children during COVID-19 pandemic. Lancet. 2020;395(10237):1607–1608. doi:10.1016/S01406736(20)31094-1.; Belhadjer Z, Méot M, Bajolle F, et al. Acute heart failure in multisystem inflammatory syndrome in children (MIS-C) in the context of global SARS-CoV-2pandemic. Circulation. 2020;382:137022. doi:10.1161/CIRCULATIONAHA.120.048360.; Verdoni L, Mazza A, Gervasoni A, et al. An outbreak of severe Kawasaki-like disease at the Italian epicenter of the SARS-CoV-2 epidemic: an observational cohort study. Lancet. Published online May 13, 2020. doi:10.1016/S0140-6736(20)31103-X.; Viner RM, Whittaker E. Kawasaki-like disease: emerging complication during the COVID-19 pandemic comment. Lancet. Published online May 13, 2020. doi:10.1016/S0140-6736(20)31129-6.; European Centre for Disease Prevention and Control. Rapid risk assessment: paediatric inflammatory multisystem syndrome and SARS -CoV-2 infection in children. Published May 15, 2020. Available online: https://www.ecdc. europa.eu/en/publicationsdata/paediatricinflammatory-multisystem-syndrome-and-sarscov-2-rapid-risk-assessment. Accessed on May 22, 2020.; Royal College of Paediatrics and Child Health. Guidance: paediatric multisystem inflammatory syndrome temporally associated with COVID-19. https://www.rcpch.ac.uk/resources/guidance-paediatric-multisysteminflammatory-syndrometemporally-associatedcovid-19. Accessed on May 22, 2020.; World Health Organization. Multisystem inflammatory syndrome in children and adolescents with COVID-19. Published May 15, 2020. https://www.who.int/publications-detail/multisysteminflammatorysyndrome-in-children-and-adolescents-withcovid-19. Accessed on May 22, 2020.; Pediatric Acute Respiratory Distress Syndrome: Consensus Recommendations From the Pediatric Acute Lung Injury Consensus Conference. Pediatr Crit Care Med. 2015;16(5):428–439. doi:10.1097/PCC.0000000000000350.; Delaney M, Bell M, Smith K, et al. Severe COVID-19 in Children and Young Adults in the Washington, DC Metropolitan Region. J Pediatr. 2020;223:199–203.e1. doi:10.1016/j.jpeds.2020.05.007.; Belhadjer Z, Méot M, Bajolle F, et al. Acute heart failure in multisystem inflammatory syndrome in children (MIS-C) in the context of global SARS-CoV-2 pandemic. Circulation. 2020 May 17. doi:10.1161/CIRCULATIONAHA.120.048360.; Verdoni L, Mazza A, Gervasoni A, et al. An outbreak of severe Kawasaki-like disease at the Italian epicentre of the SARS-CoV-2 epidemic: an observational cohort study. Lancet. 2020 May 13. doi:10.1016/S0140-6736(20)31103-X.; Riphagen S, Gomez X, Gonzalez-Martinez C, et al. Hyperinflammatory shock in children during COVID-19 pandemic. Lancet. 2020;395(10237):1607–1608. doi:10.1016/S0140-6736(20)31094-1.; Hennon TR, Penque MD, Abdul-Aziz R, et al. COVID-19 associated Multisystem Inflammatory Syndrome in Children (MIS-C) guidelines; a Western New York approach. Prog Pediatr Cardiol. 2020 May 23:101232. doi:10.1016/j.ppedcard.2020.101232. Epub ahead of print. PMCID: PMC7244417; Kanegaye JT, Wilder MS, Molkara D, et al. Recognition of a Kawasaki disease shock syndrome. Pediatrics. 2009;123(5):e783–e789. doi:10.1542/peds.2008-1871.; https://www.pedpharma.ru/jour/article/view/1865

  2. 2
    Academic Journal

    Contributors: Not specified., Не указан.

    Source: Pediatric pharmacology; Том 17, № 2 (2020); 103-118 ; Педиатрическая фармакология; Том 17, № 2 (2020); 103-118 ; 2500-3089 ; 1727-5776

    File Description: application/pdf

    Relation: https://www.pedpharma.ru/jour/article/view/1833/1138; Технические руководящие указания ВОЗ. Наименование заболевания, вызванного коронавирусом (COVID-19), и вирусного возбудителя. Доступно по: https://www.who.int/ru/emergencies/diseases/novel-coronavirus-2019/technical-guidance/naming-the-coronavirus-disease-(covid-2019)-and-the-virus-that-causes-it. Ссылка активна на 12.04.2020.; Постановление Правительства Российской Федерации от 31 января 2020 № 66 «О внесении изменения в перечень заболеваний, представляющих опасность для окружающих». Доступно по: http://publication.pravo.gov.ru/Document/View/0001202002030005. Ссылка активна на 12.04.2020.; New study on COVID-19 estimates 5.1 days for incubation period. The Johns Hopkins Bloomberg School of Public Health, March 9, 2020. Available from:https://www.jhsph.edu/news/news-releases/2020/new-study-on-COVID-19-estimates-5-days-for-incubation-period.html.; Lauer SA, Grantz KH, Bi Q, et al. The incubation period of Coronavirus Disease 2019 (COVID-19) from publicly reported confirmed cases: estimation and application. Ann Intern Med. 2020;172(9):577–582. doi:10.7326/M20-0504.; Министерство здравоохранения Российской Федерации. Временные методические рекомендации «Профилактика, диагностика и лечение новой коронавирусной инфекции (COVID-19)». Версия 4 (27.03.2020). Доступно по: https://static-3.rosminzdrav.ru/system/attachments/attaches/000/049/881/original/COVID19_recomend_v4.pdf. Ссылка активна на 12.04.2020.; Kelvin Kai-Wang To, Owen Tak-Yin Tsang, Wai-Shing Leung, et al. Temporal profiles of viral load in posterior or opharyngeal saliva samples and serum antibody responses during infection by SARS - CoV-2: an observational cohort study. Lancet Infect Dis. 2020;20(5):565–574. doi:10.1016/S1473-3099(20)30196-1.; Shen K, Yang Y. Diagnosis and treatment of 2019 novel coronavirus infection in children: a pressing issue. World J Pediatr. 2020;1–3. doi:10.1007/s12519-020-00344-6.; Scott D. The Covid-19 risks for different age groups, explained. Vox. 23.03.2020.Available from: https://www.vox.com/2020/3/23/21190033/coronavirus-covid-19-deaths-by-age.; Huang C, Wang Y, Li X, et al. Clinical features of patients infected with 2019 novel coronavirus in Wuhan, China. Lancet. 2020;395(10223):497–506. doi:10.1016/S0140-6736(20)30183-5.; Zhu N , Zhang D, Wang W, et al. A novel Coronavirus from patients with Pneumonia in China, 2019. N Engl J Med. 2020;382(8):727–733. doi:10.1056/NEJMoa2001017.; Guan W, Ni Z, Hu Y, et al. Clinical Characteristics of Coronavirus Disease 2019 in China. N Engl J Med. 2020;382(18):1708–1720. doi:10.1056/NEJMoa2002032.; Baez D. Clinical findings of 6 children with COVID-19, risks factors associated with COVID-19 death, and detection of SARS-CoV-2 in different clinical specimens. Mar 13,2020.; Dong Y, Mo X, Hu Y, et al. Epidemiological characteristics of 2143 pediatric patients with 2019 Coronavirus Disease in China. Pediatrics. 2020. Available at https://pediatrics.aappublications.org/content/pediatrics/early/2020/03/16/peds.2020-0702.full.pdf.; Lu X, Liqiong Zhang L, Du H, et al. SARS-CoV-2 infection in children. N Engl J Med. 2020;382(17):1663–1665. doi:10.1056/NEJMc2005073.; Chan J-W, Yuan S, Kok K, et al. A familial cluster of pneumonia associated with the 2019 novel coronavirus indicating person-to-person transmission: a study of a family cluster. Lancet. 2020;395(10223):514–523. doi:10.1016/S0140-6736(20)30154-9.; Zhou F, Yu T, Du R, et al. Clinical course and risk factors for mortality of adult in patients with COVID-19 in Wuhan, China: a retrospective cohort study. Lancet. 2020;395(10229):1054–1062. doi:10.1016/S0140-6736(20)30566-3.; Zhang J, Dong X, Cao Y, et al. Clinical characteristics of 140 patients infected with SARS-CoV-2 in Wuhan, China. 2020. doi:10.1111/all.14238.; Boulos MN, Geraghty EM. Geographical tracking and mapping of coronavirus disease COVID-19/severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) epidemic and associated events around the world: how 21st century GIS technologies are supporting the global fight against outbreaks and epidemics. Int J Health Geogr.2020;19(1):8. doi:10.1186/s12942-020-00202-8.; Wang S, Guo L, Chen L, et al. A case report of neonatal COVID-19 infection in China. Clin Infect Dis. 2020;ciaa225. doi:10.1093/cid/ciaa225.; Chen H, Guo J, Wang C, et al. Clinical characteristics and intra-uterine vertical transmission potential of COVID-19 infection in nine pregnant women: a retrospective review of medical records. Lancet. 2020;395(10226):809–815. doi:10.1016/S0140-6736(20)30360-3.; The Daily Star. Coronavirus suspicion: 7-month-old baby sent to Dhaka from isolation ward in Kushtia. Mar 26,2020. Available at: https://www.thedailystar.net/coronavirus-suspicion-in-kushtia-7-month-old-baby-isolation-ward-1886209; WHO recommendation. Getting your workplace ready for COVID-19. Feb 26, 2020. Available at: https://www.who.int/docs/default-source/coronaviruse/getting-workplace-ready-for-covid-19.pdf?sfvrsn=359a81e7_6.; (Released by National Health Commission & National Administration of Traditional Chinese Medicine on March 3, 2020). Diagnosis and Treatment Protocol for Novel Coronavirus Pneumonia (Trial Version 7). Chin Med J (Engl). 2020;133(9):1087–1095. doi:10.1097/CM9.0000000000000819; Cao B, Wang Y, Wen D, et al. A trial of Lopinavir-Ritonavir in adults hospitalized with Severe Covid-19. N Engl J Med. 2020;382(19):1787–1799. doi:10.1056/NEJMoa2001282.; Velthuis AJ, van den Worm, Sims AC, et al. Zn2+ inhibits coronavirus and arterivirus RNA polymerase activity in vitro and zinc ionophores block the replication of these viruses in cell culture. PLoSPathog. 2010;6(11):e1001176. doi:10.1371/journal.ppat.1001176.; Gautret P, Lagier J, Parola P, et al. Hydroxychloroquine and azithromycin as a treatment of COVID-19: results of an open-label non-randomized clinical trial. Int J Antimicrob Agents. 2020;105949. doi:10.1016/j.ijantimicag.2020.105949.; Chang R, Sun W. Repositioning chloroquine as ideal antiviral prophylactic against COVID-19 – time is now. Preprints. 2020;2020030279. doi:10.20944/preprints202003.0279.v1.; Advisory on the use of hydroxy-chloroquine as prophylaxis for SARS-CoV-2 infection. Recommendation. Mar 22, 2020. Available at: https://www.mohfw.gov.in/pdf/AdvisoryontheuseofHydroxychloroquinasprophylaxisforSARSCoV2infection.pdf; National task force for COVID-19 of Indian Council of Medical Research & Recommendations for Prophylaxis (30.03.2020). Available from: https://main.icmr.nic.in/content/covid-19+&cd=1&hl=ru&ct=clnk&gl=ru; Worcester S. COVID-19 characteristics differ in children vs adults. 2020. Available at: https://www.medscape.com/viewarticle/926805.; Sarma P, Prajapat M, Avti P, et al. Therapeutic options for the treatment of 2019-novel coronavirus: An evidence-based approach. Indian J Pharmacol. 2020;52(1):1–5. doi:10.4103/ijp.IJP_119_20.; Ong SW, Tan YK, Chia PY, et al. Air, surface environmental, and personal protective equipment contamination by severe acute respiratory syndrome Coronavirus 2 (SARS-CoV-2) from a symptomatic patient. JAMA. 2020;323(16):1610–1612. doi:10.1001/jama.2020.3227.; Xu Y, Li X, Zhu B, et al. Characteristics of pediatric SARS-CoV-2 infection and potential evidence for persistent fecal viral shedding. Nat Med. 2020;26(4):502–505. doi:10.1038/s41591-020-0817-4.; Zeng L, Xia S, Yuan W, et al. Neonatal early-onset infection with SARS-CoV-2 in 33 neonates born to mothers with COVID-19 in Wuhan, China. JAMA Pediatr. 2020;e200878. doi:10.1001/jamapediatrics.2020.0878.; Wang J, Qi H, Bao L, et al. A contingency plan for the management of the 2019 novel coronavirus outbreak in neonatal intensive care units. Lancet Child Adolesc Health. 2020;4(4):258–259. doi:10.1016/S2352-4642(20)30040-7.; Qin C, Zhou L, Hu Z, at al. Dysregulation of immune response in patients with COVID-19 in Wuhan, China. Clin Infect Dis. 2020;pii:ciaa248. doi:10.1093/cid/ciaa248.; Rodriguez-Morales AJ, Cardona-Ospina JA, Gutiérrez-Ocampo E, et al; Latin American Network of Coronavirus Disease 2019-COVID-19 Research (LANCOVID-19). Electronic address: https://www.lancovid.org. Clinical, laboratory and imaging features of COVID-19: A systematic review and meta-analysis. Travel Med Infect Dis. 2020;101623. doi:10.1016/j.tmaid.2020.101623.; Henry BM, Lippi G, Plebani M. Laboratory abnormalities in children with novel coronavirus disease 2019.Clin Chem Lab Med. 2020. doi:10.1515/cclm-2020-0272.; Guo L, Ren L, Yang S, et al. Profiling early humoral response to diagnose novel Coronavirus Disease (COVID-19). Clin Infect Dis. 2020. doi:10.1093/cid/ciaa310.; Soldati G, Smargiassi A, Inchingolo R, et al. Is there a role for lung ultrasound during the COVID-19 pandemic? J Ultrasound Med. 2020. doi:10.1002/jum.15284.; Islam M, Levitus M, Eisen L, et al. Lung ultrasound for the diagnosis and management of acute respiratory failure. Lung. 2020;198(1):1–11. doi:10.1007/s00408-019-00309-1.; Chen ZM, Fu JF, Shu Q, et al. Diagnosis and treatment recommendations for pediatric respiratory infection caused by the 2019 novel coronavirus. World J Pediatr. 2020;1–7. doi:10.1007/s12519-020-00345-5.; COVID-19 and breastfeeding. WHO Position Paper. Available from: http://www.euro.who.int/en/health-topics/Life-stages/maternal-and-newborn-health/publications/2020/covid-19-and-breastfeeding-position-paper,-8-april-2020; Ludvigsson JF. Systematic review of COVID-19 in children shows milder cases and a better prognosis than adults. ActaPaediatr. 2020;109(6):1088–1095. doi:10.1111/apa.15270.; Shen K, Yang Y, Wang T, et al. Diagnosis, treatment, and prevention of 2019 novel coronavirus infection in children: experts’ consensus statement. World J Pediatr. 2020;1–9. doi:10.1007/s12519-020-00343-7.; Karimi A, RafieiTabatabaei S, Rajabnejad M, et al. An algorithmic approach to diagnosis and treatment of Coronavirus Disease 2019 (COVID-19) in children: iranian expert’s consensus statement. Arch Pediatr Infect Dis. 2020;8(2):e102400. doi:10.5812/pedinfect.102400.; Alder Hey Children’s Hospital: Clinical management of children admitted to hospital with COVID-19. March 2020. Version 1. Available from: https://alderhey.nhs.uk/application/files/1815/8422/1173/COVID_19_IN_CHILDREN_CLINICAL_GUIDANCE_v1.pdf; Michigan Medicine University of Michigan. Inpatient Guidance for treatment of COVID-19 in adults and children. Available from: http://www.med.umich.edu/asp/pdf/adult_guidelines/COVID-19-treatment.pdf.; WHO Coronavirus disease (COVID-2019) situation reports. Available from:https://www.who.int/emergencies/diseases/novel-coronavirus-2019/situation-reports/.; Приказ Министерства здравоохранения Российской Федерации от 19.03.2020№ 198н «О временном порядке организации работы медицинских организации в целях реализации мер по профилактике и снижению рисков распространения новой коронавирусной инфекции COVID-19» (с изменениями от 27 марта 2020 г. № 246н). Доступно по: https://rg.ru/2020/03/20/minzdrav-prikaz198-site-dok.html. Ссылка активна на 12.04.2020.; https://www.pedpharma.ru/jour/article/view/1833

  3. 3
    Academic Journal

    Source: General Reanimatology; Том II № 3 2006 г.; 49-51 ; Общая реаниматология; Том II № 3 2006 г.; 49-51 ; 2411-7110 ; 1813-9779 ; 10.15360/1813-9779-2006-3

    File Description: application/pdf

    Relation: https://www.reanimatology.com/rmt/article/view/1151/562; Брюсов П. Г. Военно-полевая хирургия на современном этапе. Актуальные вопросы организации хирургической помощи раненым в локальных конфликтах. В кн.: Науч.-практ. конф., посвящ. 15-летию каф. хирургии. М.; 1996. 17—20.; Соколович Г. Е., Бауэр В. А., Фидаров Э. З. Неотложная хирургическая помощь при огнестрельных ранениях и закрытых травмах живота. Воен-мед. журн. 1998; 7: 88.; Левшанков А. И., Шанин В. Ю. Анестезиологическое обеспечение операций при современной боевой травме. Л.: ВмедА; 1989. 19.; Полушин Ю. С., Богомолов Б. Н. Анестезиологическая и реаниматологическая помощь раненым в вооруженном конфликте. Воен.-мед. журн. 1999; 9 (11): 26—32.; Цибуляк В. Н., Цибуляк Г. Н. Травма, боль, анестезия. М.: Медицина; 1994.; Полушин Ю. С., Богомолов Б. Н. Анестезиологическая и реаниматологическая помощь в чрезвычайных ситуациях: проблемы и пути их решения. В кн.: Актуал. вопр. анестезиологии и реаниматологии. Материалы 9 Всерос. науч. конф. СПб.; 1998. 21—28.; Никитаев В. Е., Захаров М. Н., Кайсин К. Д. Анализ причин смерти у пострадавших с минно-взрывной травмой. В кн.: Актуал. вопр. медицинского обеспечения сотрудников органов внутренних дел и военнослужащих внутренних войск МВД России. Материалы науч.-практ. конф., посвящ. 70-летию мед. службы ГУВД СПб. и Ленингр. обл., 8—9 июня 2001 г. СПб.; 2001. 275—276.; Сидоркин В. С. Тр. Ленингр. общ. патологоанат. 1991; 32: 146—149.; Величко М. А., Лихачев Л. В. Особенности минно-взрывной травмы по патологоанатомическим данным. В кн.: Тез. докл. науч.-практ. конф. М: Воениздат; 1991. 4—42.; Рогачев М. В., Тимофеев И. В. Структура непосредственных причин смерти при взрывной травме в зависимости от сроков наступления летальных исходов. В кн.: Тез. докл. Науч-практ. конф. М: Воениздат; 1991. 230—231.; Kroll W., List W. F. Analgesia and anesthesia in emergency and disaster medicine. Wehrmed. Wehrpharm 1994; 1: 8—12.; Stergiopoulos S., Peros G., Androulakis G. Preventetable prehopital trauma deaths in a Hellenic urban health region: an audit of prehopital trauma care. J. Trauma 1996; 41 (5): 864—869.; Meislin H., Conroy C., Conn K. et al. Fatal injury: characteristics and prevention of deaths at the scene. J. Trauma 1999; 46 (3): 457—461.; Tsubo T., Hashimoto Y., Araki I. et al. Cortisol and catecholamine kinetics during continuous hemodiafiltration in patients with multiple organ dysfunction syndrome. Intensive Care Med. 1996; 22 (11): 1176—1178.; West J. G., Murdock M. A., Baldwin L. C. et al. A method of evaluationg field triage criteria J. Trauma 1986; 26: 655—659.; Yoshii H., Sato M., Yamamoto S. et al. Usefulness and limitations of ultrasonography in the initial evaluation of blunt abdominal trauma. J. Trauma 1998; 45 (1): 45—50.; Ефименко Н. А., Гуманенко Е. К., Самохвалов И. М., Трусов А. А. Хирургическая помощь раненым в вооруженном конфликте: проблемы и пути совершенствования районов вооруженных конфликтов. Воен.-мед. журн. 2000; 2: 31.; Антипов А. Б., Шанин В. Ю., Будко А. А. Реаниматологическое пособие при доврачебной и врачебной помощи пострадавшим с тяжелыми травмами, полученными в чрезвычайных ситуациях. Воен.-мед. журн. 1993; 9: 20.; https://www.reanimatology.com/rmt/article/view/1151

  4. 4
    Academic Journal

    Source: Педиатрическая фармакология

  5. 5
    Electronic Resource

    Additional Titles: Неотложные мероприятия на догоспитальном этапе при боевой травме

    Source: General Reanimatology; Том II № 3 2006 г.; 49-51; Общая реаниматология; Том II № 3 2006 г.; 49-51; 2411-7110; 1813-9779; 10.15360/1813-9779-2006-3

    URL: https://www.reanimatology.com/rmt/article/view/1151/562
    https://www.reanimatology.com/rmt/article/view/1151/562
    Брюсов П. Г. Военно-полевая хирургия на современном этапе. Актуальные вопросы организации хирургической помощи раненым в локальных конфликтах. В кн.: Науч.-практ. конф., посвящ. 15-летию каф. хирургии. М.; 1996. 17—20.
    Соколович Г. Е., Бауэр В. А., Фидаров Э. З. Неотложная хирургическая помощь при огнестрельных ранениях и закрытых травмах живота. Воен-мед. журн. 1998; 7: 88.
    Левшанков А. И., Шанин В. Ю. Анестезиологическое обеспечение операций при современной боевой травме. Л.: ВмедА; 1989. 19.
    Полушин Ю. С., Богомолов Б. Н. Анестезиологическая и реаниматологическая помощь раненым в вооруженном конфликте. Воен.-мед. журн. 1999; 9 (11): 26—32.
    Цибуляк В. Н., Цибуляк Г. Н. Травма, боль, анестезия. М.: Медицина; 1994.
    Полушин Ю. С., Богомолов Б. Н. Анестезиологическая и реаниматологическая помощь в чрезвычайных ситуациях: проблемы и пути их решения. В кн.: Актуал. вопр. анестезиологии и реаниматологии. Материалы 9 Всерос. науч. конф. СПб.; 1998. 21—28.
    Никитаев В. Е., Захаров М. Н., Кайсин К. Д. Анализ причин смерти у пострадавших с минно-взрывной травмой. В кн.: Актуал. вопр. медицинского обеспечения сотрудников органов внутренних дел и военнослужащих внутренних войск МВД России. Материалы науч.-практ. конф., посвящ. 70-летию мед. службы ГУВД СПб. и Ленингр. обл., 8—9 июня 2001 г. СПб.; 2001. 275—276.
    Сидоркин В. С. Тр. Ленингр. общ. патологоанат. 1991; 32: 146—149.
    Величко М. А., Лихачев Л. В. Особенности минно-взрывной травмы по патологоанатомическим данным. В кн.: Тез. докл. науч.-практ. конф. М: Воениздат; 1991. 4—42.
    Рогачев М. В., Тимофеев И. В. Структура непосредственных причин смерти при взрывной травме в зависимости от сроков наступления летальных исходов. В кн.: Тез. докл. Науч-практ. конф. М: Воениздат; 1991. 230—231.
    Kroll W., List W. F. Analgesia and anesthesia in emergency and disaster medicine. Wehrmed. Wehrpharm 1994; 1: 8—12.
    Stergiopoulos S., Peros G., Androulakis G. Preventetable prehopital trauma deaths in a Hellenic urban health region: an audit of prehopital trauma care. J. Trauma 1996; 41 (5): 864—869.
    Meislin H., Conroy C., Conn K. et al. Fatal injury: characteristics and prevention of deaths at the scene. J. Trauma 1999; 46 (3): 457—461.
    Tsubo T., Hashimoto Y., Araki I. et al. Cortisol and catecholamine kinetics during continuous hemodiafiltration in patients with multiple organ dysfunction syndrome. Intensive Care Med. 1996; 22 (11): 1176—1178.
    West J. G., Murdock M. A., Baldwin L. C. et al. A method of evaluationg field triage criteria J. Trauma 1986; 26: 655—659.
    Yoshii H., Sato M., Yamamoto S. et al. Usefulness and limitations of ultrasonography in the initial evaluation of blunt abdominal trauma. J. Trauma 1998; 45 (1): 45—50.
    Ефименко Н. А., Гуманенко Е. К., Самохвалов И. М., Трусов А. А. Хирургическая помощь раненым в вооруженном конфликте: проблемы и пути совершенствования районов вооруженных конфликтов. Воен.-мед. журн. 2000; 2: 31.
    Антипов А. Б., Шанин В. Ю., Будко А. А. Реаниматологическое пособие при доврачебной и врачебной помощи пострадавшим с тяжелыми травмами, полученными в чрезвычайных ситуациях. Воен.-мед. журн. 1993; 9: 20.