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  1. 1
    Academic Journal

    Source: Technopark of universal pedagogical competencies; 250-253 ; Технопарк универсальных педагогических компетенций; 250-253

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    Relation: info:eu-repo/semantics/altIdentifier/isbn/978-5-907965-21-8; https://phsreda.com/e-articles/10711/Action10711-126927.pdf; Архипов В.И. Физиология человека: учебник для медицинских вузов / В.И. Архипов, П.А. Иванов. – М.: ГЭОТАР Медиа, 2007.; Басов В.В. Физическая активность и риск сердечно-сосудистых заболеваний: клинические данные / В.В. Басов // Российский журнал кардиологии. – 2017. – №42 (5). – С. 214–220.; Всемирная организация здравоохранения // Global Recommendations on Physical Activity for Health. Geneva: WHO.; Гайтон А.С. Физиология человека / А.С. Гайтон, Дж.Е. Холл. – М.: Медицина, 2011. – С. 13.; Глазунова Н.Е. Физиология физической активности / Н.Е. Глазунова. – М.: Медицина, 2010.; Макаров В.М. Физиология спорта / В.М. Макаров, Л.Н. Трофимова. – М.: Медицина, 2008.; Министерство здравоохранения Российской Федерации: основные показатели здоровья населения в 2019 году. – М.: Минздрав РФ, 2020.; Министерство здравоохранения Российской Федерации. Рекомендации по физической активности для профилактики сердечно-сосудистых заболеваний. – М.: Минздрав РФ, 2014.; Смирнова Е.В. Влияние интервального тренинга и йоги на сердечно-сосудистую систему / Е.В. Смирнова, М.С. Иванова // Вопросы спортивной медицины. – 18 (2). – С. 45–50.; https://phsreda.com/article/126927/discussion_platform

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    Academic Journal

    Source: Messenger of ANESTHESIOLOGY AND RESUSCITATION; Том 17, № 5 (2020); 80-86 ; Вестник анестезиологии и реаниматологии; Том 17, № 5 (2020); 80-86 ; 2541-8653 ; 2078-5658

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    Relation: https://www.vair-journal.com/jour/article/view/469/449; Белобородова Н. В., Острова И. В. Сепсис-ассоциированная энцефалопатия (обзор) // Общая реаниматология. – 2017. – Т. 13, № 5. – С. 121–139.; Боткин С. П. Курс клиники внутренних болезней и клинические лекции: в 2 т. / С. П. Боткин; вступ. ст. А. Л. Мясникова; сост. К. А. Розова. – М.: Медгиз, 1950. – 944 с.; Мещеряков Г. Н., Радаев С. М., Закс И. О. и др. Системы оценки тяжести – компонент методологии лечебной работы (обзор литературы) // Реаниматология и интенсивная терапия. – 2009. – № 1. – С. 19–28.; Насонкин О. С., Цыган В. Н. Исторические вехи эволюции учения о шоке в отечественной медицине // Вестник Российской Военно-медицинской академии. – 2012. – № 1. – С. 314–320.; Никифорова (Постникова) Т. А., Песков С. А., Доронина О. Б. Анализ современного состояния клинико-экспериментальных данных о взаимодействии нервной и иммунной систем // Бюллетень сибирской медицины. – 2014. – Т. 13, № 6. – С. 72–80.; Саенко В. Ф., Десятерик В. И., Перцева Т. А. и др. Сепсис и нозокомиальная инфекция. – Кривой рог: Минерал, 2002. – 256 с.; Черных Е. Р., Леплина О. Ю., Тихонова М. А. и др. Цитокиновый баланс в патогенезе системного воспалительного ответа: новая мишень иммунотерапевтических воздействий при лечении сепсиса // Медицинская иммунология. – 2001. – Т. 3, № 3. – С. 415–429.; Andonegui G., Zelinski E. L., Schubert C. L. et al. Targeting inflammatory monocytes in sepsis-associated encephalopathy and long-term cognitive impairment // JCI Insight. – 2018. – Vol. 3, № 9. URL: https://insight.jci.org/articles/view/99364.; Bedirli N., Bagriacik E. U., Yilmaz G. et al. Sevoflurane exerts brain-protective effects against sepsis-associated encephalopathy and memory impairment through caspase 3/9 and Bax/Bcl signaling pathway in a rat model of sepsis // J. Int. Med. Res. – 2018. – Vol. 46, № 7. – P. 2828–2842.; Carmeliet P., Van Damme J., Denef C. Interleukin-1 beta inhibits acetylcholine synthesis in the pituitary corticotropic cell line AtT20 // Brain Res. ‒ 1989. Vol. 491. – P. 199–203.; Chaudhry N., Duggal A. K. Sepsis associated encephalopathy // Advances in Medicine. – 2014. – P. 1–16. URL: https://doi.org/10.1155/2014/762320.; Chung H. Y., Wickel J., Brunkhorst F. M. et al. Sepsis-associated encephalopathy: from delirium to dementia? // J. Clin. Med. – 2020. – Vol. 9, № 3. – P. 703.; Ebersoldt M., Sharshar T., Annane D. Sepsis-associated delirium // Intens. Care Med. – 2007. – Vol. 33. – P. 941–950.; Ehler J., Petzold A., Wittstock M. et al. The prognostic value of neurofilament levels in patients with sepsis-associated encephalopathy – A prospective, pilot observational study // PLoS One. – 2019. – Vol. 14, № 1. URL: https://www.researchgate.net/publication/330662647_The_prognostic_value_of_neurofilament_levels_in_patients_with_sepsis-associated_encephalopathy-A_prospective_pilot_observational_study.; Eidelman L. A., Putterman D., Putterman C. et al. The spectrum of septic encephalopathy. Definitions, etiologies, and mortalities // JAMA. – 1996. Vol. 275, № 6. – P. 470–473.; Fu Q., Wu J., Zhou X. Y. et al. NLRP3/Caspase-1 pathway-induced pyroptosis mediated cognitive deficits in a mouse model of sepsis-associated encephalopathy // Inflammation. – 2019. – Vol. 42, № 1. – P. 306–318.; Gofton T. E., Young G. B. Sepsis-associated encephalopathy // Nat. Rev. Neurol. 2012. – Vol. 8, № 10. – P. 557–566.; Heming N., Mazeraud A., Verdonk F. et al. Neuroanatomy of sepsis-associated encephalopathy // Crit. Care (London, England). – 2017. – Vol. 21, № 1. – P. 65.; Iacobone E., Bailly-Salin J., Polito A. et al. Sepsis-associated encephalopathy and its differential diagnosis // Crit. Care Med. – 2009. – Vol. 37 (10 suppl.). P. 331–336.; Karnatovskaia L. V., Festic E. Sepsis // Neurohospitalist. – 2012. – Vol. 2, № 4. P. 144–153.; Kuperberg S. J., Wadgaonkar R. Sepsis-associated encephalopathy: the blood-brain barrier and the sphingolipid rheostat // Front Immunol. 2017. – Vol. 8. – P. 597.; Li S., Lv J., Li J. et al. Intestinal microbiota impact sepsis associated encephalopathy via the vagus nerve // Neurosci. Lett. – 2018. – Vol. 662. – P. 98–104.; Li Y., Liu L., Kang J. et al. Neuronal-glial interactions mediated by interleukin-1 enhance neuronal acetylcholinesterase activity and mRNA expression // J. Neurosci. – 2000. – Vol. 20. – P. 149–155.; Molnar L., Fülesdi B., Németh N. et al. Sepsis-associated encephalopathy: A review of literature // Neurol. India. –2018. – Vol. 66. – P. 352–361.; Quan N., Banks W. A. Brain-immune communication pathways // Brain Behav Immun. – 2007. – Vol. 21. – P. 727–735.; Ren C., Yao R. Q., Zhang H. et al. Sepsis-associated encephalopathy: a vicious cycle of immunosuppression // J. Neuroinflammation. – 2020. – Vol. 17, № 1. – P. 14.; Robba C., Crippa I. A., Taccone F. S. Septic Encephalopathy // Curr. Neurol. 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    Academic Journal

    Source: Rheumatology Science and Practice; Vol 57, No 4 (2019); 445-451 ; Научно-практическая ревматология; Vol 57, No 4 (2019); 445-451 ; 1995-4492 ; 1995-4484

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    Relation: https://rsp.mediar-press.net/rsp/article/view/2758/1869; Гусева НГ. Системная склеродермия: ранняя диагностика и прогноз. Научно-практическая ревматология. 2007;45(1):39-45; Ананьева ЛП. Новые классификационные критерии системной склеродермии (лекция). Научно-практическая ревматология. 2013;51(5):539-44 doi:10.14412/1995-4484-2013-1546; Конева ОА, Овсянникова ОБ, Старовойтова МН и др. Определение чувствительности новых критериев системной склеродермии на российской популяции пациентов. Научно-практическая ревматология. 2015;53(4):361-6 doi:10.14412/1995-4484-2015-361-366; Wollheim FA. Classification of systemic sclerosis: visions and reality. Rheumatology (Oxford). 2005;44:1212-6. doi:10.1093/rheumatology/keh671; Van den Hoogen F, Khanna D, Fransen J, et al. 2013 Classification Criteria For Systemic Sclerosis: an American College of Rheumatology / European League Against Rheumatism collaborative initiative. Ann Rheum Dis. 2013 Nov;72(11):1747-55. doi:10.1136/annrheumdis-2013-204424; Furue M, Mitoma C, Mitoma H, et al. Pathogenesis of systemic sclerosis-current concept and emerging treatments. Immunol Res. 2017 Aug;65(4):790-7. doi:10.1007/s12026-017-8926-y; Ананьева ЛП, Александрова ЕН. Аутоантитела при системной склеродермии: спектр, клинические ассоциации и прогностическое значение. Научно-практическая ревматология. 2016;54(1):86-99 doi:10.14412/1995-4484-2016-86-99; Бутусова СВ, Шилкина НП. Ранняя диагностика поражения эндотелия у пациентов с ревматоидным артритом. Врач. 2014;(5):67-9; Klimek E, Skalska A. Differential associations of inflammatory and endothelial biomarkers with disease activity in rheumatoid arthritis of short duration. Mediators Inflamm. 2014;2014:ID681635. doi:10.1155/2014/681635; Routledge FS, Hinderliter AL. Endothelial function in postmenopausal women with nighttime systolic hypertension. Menopause. 2015;8:857-63. doi:10.1097/GME.0000000000000405; Small HY, Migliatino S, Czesnikiewicz-Guzik M, Guzik TJ. Hypertension: Focus on autoimmunity and oxidative stress. Free Radic Biol Med. 2018 Sep;125:104-15. doi:10.1016/j.freeradbiomed.2018.05.085; Weber T, Wassertheurer S. Relationship between 24-hour ambulatory central blood pressure and left ventricular mass – a prospective multicenter study. J Hypertens. 2016;34 Suppl. 1):Abstract Book: 210-11.; Реброва НВ, Анисимова ЕА, Саркисова ОЛ и др. Реактивность сосудов головного мозга у больных ревматоидным артритом в сочетании с артериальной гипертонией и без нее. Терапевтический архив. 2015;87(4):24-9 doi:10.17116/terarkh201587424-29; Chen CT, Li Y. Association between ambulatory systolic blood pressure during the day and asymptomatic intracranial arterial stenosis. J Hypertens. 2014;63:61-7. doi:10.1161/HYPERTENSIONAHA.113.01838; Черемухина ЕО, Ананьева ЛП, Новикова ДС, Алекперов РТ. Вариабельность сердечного ритма при системной склеродермии. Клиническая фармакология и терапия. 2015;24(1):61-5; Хусаинова ДК, Трегулов ЮЭ, Салихов ИГ и др. Эндотелиальная дисфункция и артериальная гипертензия у больных ревматоидным артритом. Научно-практическая ревматология. 2006;44(3):27-32; Старовойтова МН, Десинова ОВ. Терапия дигитальных язв у больных системной склеродермией. Научно-практическая ревматология. 2018;56(6):777-81 doi:10.14412/1995-4484-2018-777-781; Herrick AL. Management of Raynaud’s phenomenon and digital ischemia. Curr Rhеumatol Rep. 2013;15:303. doi:10.1007/s11926-012-0303-1; Silva I, Teixeira A, Oliveira J, et al. Endothelial dysfunction, microvascular damadge and ischemic peripheral vasculopathy in systemic sclerosis. Clin Hemorheol Microcirc. 2017;66 (2):117-30. doi:10.3233/CH-150044; Jung C, Drummer K, Oelzner P, et al. The association between endothelial microparticles and inflammation in patients with systemic sclerosis and Raynaud's phenomenon as detected by functional imaging. Clin Hemorheol Microcirc. 2015;61(3):549-57. doi:10.3233/CH-151956; Алекперов РТ, Ананьева ЛП, Черкасова МВ. Клинические ассоциации сосудистого эндотелиального фактора роста и его рецептора 2-го типа при системной склеродермии. Научно-практическая ревматология. 2018;56(5):569-73 doi:10.14412/1995-4484-2018-569-573; Ребров АП, Патрикеева ДА, Захарова НБ и др. Диагностическое значение определения факторов ангиогенеза и показателей цитокинового состава в сыворотке крови и в моче у пациентов с системной склеродермией. Терапевтический архив. 2014;(5):19-25; Liakouli V, Cipriani P, Marrelli A, et al. Angiogenic cytokines and growth factors in systemic sclerosis. Autoimmune Rev. 2011;10(10):641-6. doi:10.1016/j.autrev.2011.04.019; Varga J, Abraham D. Systemic sclerosis: a prototypic multisystem fibrotic disorder. 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Nat Rev Nephrol. 2016 Nov;12(11):678-91. doi:10.1038/nrnerh.2016.124; Si Ahmed-Bouali D, Bouali F, Haddoum F, et al. Hypertension in scleroderma: A vital emergency. Ann Cardiol Angeiol. 2015;64(3):192-8. doi:10.1016/ancard.2015.04.009; Kowal-Bielecka O, Fransen J, Avouac J, et al. EUSTAR Coauthors. Update of EULAR recommendations for the treatment of systemic sclerosis. Ann Rheum Dis. 2017;0:1-12. doi:10.1136/annrheumdis-2016-209909; Korn JH, Mayes M, Matucci-Cerenic M, for the RAPIDS-1 study group. Digital ulcers in systemic sclerosis. Prevention by treatment with bosentan, an oral endothelin receptor antagonist. Arthritis Rhеum. 2004;50:3985-93. doi:10.1002/art.20676; Кляус НА, Симакова МА, Маслянский АЛ, Моисеева ОМ. Поиск клинических предикторов легочной гипертензии у пациентов с системной склеродермией. Научно-практическая ревматология. 2018;56(5):586-90 doi:10.14412/1995-4484-2018-586-590; Corallo C, Cutolo M, Kahaleh B, et al. Bosentan and macitentan prevent the endothelial-to-mesenchymal transition (EndoMT) in systemic sclerosis: in vitro study. Arthritis Res Ther. 2016 Oct 6;18(1):228. doi:10.1186/s13075-016-1122-y; Волков АВ, Мартынюк ТВ, Юдкина НН и др. Первый российский опыт применения ингибитора рецепторов эндотелина 1 траклира у пациентов с легочной артериальной гипертензией, ассоциированной с системными заболеваниями соединительной ткани. Научно-практическая ревматология. 2011;49(6):22-7 doi:10.14412/1995-4484-2011-515; Невская ТА, Ананьева ЛП, Быковская СЮ и др. Нарушения ангиогенеза и клеточные методы их коррекции при системной склеродермии. В кн.: V съезд ревматологов России: Сб. мат. съезда (тезисы). Москва; 2009; Pokeerbux MR, Giovannelli J, Dauchet L, et al. Survival and prognosis factors in systemic sclerosis: data of a French multicenter cohort, systematic review, and metaanalysis of the literature. Arthritis Res Ther. 2019;21:86 doi:10.1186/s13075-019-1867-1

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    Academic Journal

    Source: Siberian Journal of Clinical and Experimental Medicine; Том 30, № 1 (2015); 7-16 ; Сибирский журнал клинической и экспериментальной медицины; Том 30, № 1 (2015); 7-16 ; 2713-265X ; 2713-2927 ; 10.29001/2073-8552-2015-30-1

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