Εμφανίζονται 1 - 20 Αποτελέσματα από 150 για την αναζήτηση '"КОРОНАРОГРАФИЯ"', χρόνος αναζήτησης: 0,92δλ Περιορισμός αποτελεσμάτων
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    Συνεισφορές: Авторы заявляют об отсутствии финансирования исследования.

    Πηγή: Complex Issues of Cardiovascular Diseases; Online First ; Комплексные проблемы сердечно-сосудистых заболеваний; Online First ; 2587-9537 ; 2306-1278

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    Relation: https://www.nii-kpssz.com/jour/article/view/1689/1060; Ларионов А.А., Гапонов Д.П., Горбунов М.Г., и др. Ретроградная реканализация хронических тотальных окклюзий коронарных артерий. Креативная хирургия и онкология. 2017;7(1):10-15. https://doi.org/10.24060/2076-3093-2017-7-1-10-15; Бадоян А.Г., Хелимский Д.А., Шермук А.А., и др. Хронические окклюзии коронарных артерий: когда польза превышает риск? Российский кардиологический журнал. 2019;(8):116-123. https://doi.org/10.15829/1560-4071-2019-8-116-123; Othman H, Seth M, Zein R, et al. BMC2 Investigators. Percutaneous Coronary Intervention for Chronic Total Occlusion-The Michigan Experience: Insights From the BMC2 Registry. JACC Cardiovasc Interv. 2020;13(11):1357-1368. doi:10.1016/j.jcin.2020.02.025.; Brilakis ES, Mashayekhi K, Tsuchikane E, et al. Guiding Principles for Chronic Total Occlusion Percutaneous Coronary Intervention. Circulation. 2019;140(5):420-433. doi:10.1161/CIRCULATIONAHA.119.039797.; Хелимскии Д.А., Крестьянинов О.В., Бадоян А.Г., и др. Прогностическая модель для выбора методики реканализации хронических окклюзий коронарных артерий. Комплексные проблемы сердечно-сосудистых заболеваний. 2018;7(4):51-61. https://doi.org/10.17802/2306-1278-2018-7-4-51-61; Writing Committee Members; Lawton JS, Tamis-Holland JE, et al. 2021 ACC/AHA/SCAI Guideline for Coronary Artery Revascularization: A Report of the American College of Cardiology/American Heart Association Joint Committee on Clinical Practice Guidelines. J Am Coll Cardiol. 2022;79(2):e21-e129. doi:10.1016/j.jacc.2021.09.006.; Neumann FJ, Sousa-Uva M, Ahlsson A, et al. ESC Scientific Document Group. 2018 ESC/EACTS Guidelines on myocardial revascularization. Eur Heart J. 2019;40(2):87-165. doi:10.1093/eurheartj/ehy394.; Galassi AR, Boukhris M, Toma A, et al. Percutaneous Coronary Intervention of Chronic Total Occlusions in Patients With Low Left Ventricular Ejection Fraction. JACC Cardiovasc Interv. 2017;10(21):2158-2170. doi:10.1016/j.jcin.2017.06.058.; Juricic SA, Tesic MB, Galassi AR, et al. Randomized Controlled Comparison of Optimal Medical Therapy with Percutaneous Recanalization of Chronic Total Occlusion (COMET-CTO). Int Heart J. 2021;62(1):16-22. doi:10.1536/ihj.20-427; Obedinskiy AA, Kretov EI, Boukhris M, et al. The IMPACTOR-CTO Trial. JACC Cardiovasc Interv. 2018;11(13):1309-1311. doi:10.1016/j.jcin.2018.04.017.; Werner GS, Martin-Yuste V, Hildick-Smith D, et al. EUROCTO trial investigators. A randomized multicentre trial to compare revascularization with optimal medical therapy for the treatment of chronic total coronary occlusions. Eur Heart J. 2018;39(26):2484-2493. doi:10.1093/eurheartj/ehy220.; Lee SW, Lee PH, Ahn JM, et al. Randomized Trial Evaluating Percutaneous Coronary Intervention for the Treatment of Chronic Total Occlusion. Circulation. 2019;139(14):1674-1683. doi:10.1161/CIRCULATIONAHA.118.031313.; Kucukseymen S, Iannaccone M, Grantham JA, et al. Association of Successful Percutaneous Revascularization of Chronic Total Occlusions With Quality of Life: A Systematic Review and Meta-Analysis. JAMA Netw Open. 2023;6(7):e2324522. doi:10.1001/jamanetworkopen.2023.24522; Reddy RK, Howard JP, Jamil Y, et al. Percutaneous Coronary Revascularization Strategies After Myocardial Infarction: A Systematic Review and Network Meta-Analysis. J Am Coll Cardiol. 2024;84(3):276-294. doi:10.1016/j.jacc.2024.04.051.; Mehta SR, Wood DA, Storey RF, et al. COMPLETE Trial Steering Committee and Investigators. Complete Revascularization with Multivessel PCI for Myocardial Infarction. N Engl J Med. 2019;381(15):1411-1421. doi:10.1056/NEJMoa1907775.; Biscaglia S, Guiducci V, Escaned J, et al. FIRE Trial Investigators. Complete or Culprit-Only PCI in Older Patients with Myocardial Infarction. N Engl J Med. 2023;389(10):889-898. doi:10.1056/NEJMoa2300468; Farooq V, Serruys PW, Bourantas CV, et al. Quantification of incomplete revascularization and its association with five-year mortality in the synergy between percutaneous coronary intervention with taxus and cardiac surgery (SYNTAX) trial validation of the residual SYNTAX score. Circulation. 2013;128(2):141-51. doi:10.1161/CIRCULATIONAHA.113.001803.; Takahashi K, Serruys PW, Gao C, et al. SYNTAX Extended Survival Study Investigators. Ten-Year All-Cause Death According to Completeness of Revascularization in Patients With Three-Vessel Disease or Left Main Coronary Artery Disease: Insights From the SYNTAX Extended Survival Study. Circulation. 2021;144(2):96-109. doi:10.1161/CIRCULATIONAHA.120.046289.; Maestre-Luque LC, Gonzalez-Manzanares R, Suárez de Lezo J, et al. Complete vs. incomplete percutaneous revascularization in patients with chronic total coronary artery occlusion. Front Cardiovasc Med. 2024;11:1443258. doi:10.3389/fcvm.2024.1443258.; Megaly M, Saad M, Tajti P, et al. Meta-analysis of the impact of successful chronic total occlusion percutaneous coronary intervention on left ventricular systolic function and reverse remodeling. J Interv Cardiol. 2018 Oct;31(5):562-571. doi:10.1111/joic.12538.; Schumacher SP, Everaars H, Stuijfzand WJ, et al. Viability and functional recovery after chronic total occlusion percutaneous coronary intervention. Catheter Cardiovasc Interv. 2021;98(5):E668-E676. doi:10.1002/ccd.29888.; Iannaccone M, Nombela-Franco L, Gallone G, et al. Impact of Successful Chronic Coronary Total Occlusion Recanalization on Recurrence of Ventricular Arrhythmias in Implantable Cardioverter-Defibrillator Recipients for Ischemic Cardiomyopathy (VACTO PCI Study). Cardiovasc Revasc Med. 2022;43:104-111. doi:10.1016/j.carrev.2022.03.029.; Henriques JP, Hoebers LP, Råmunddal T, et al. EXPLORE Trial Investigators. Percutaneous Intervention for Concurrent Chronic Total Occlusions in Patients With STEMI: The EXPLORE Trial. J Am Coll Cardiol. 2016;68(15):1622-1632. doi:10.1016/j.jacc.2016.07.744.; Råmunddal T, Holck EN, Karim S, et al. International randomized trial on the effect of revascularization or optimal medical therapy of chronic total coronary occlusions with myocardial ischemia - ISCHEMIA-CTO trial - rationale and design. Am Heart J. 2023;257:41-50. doi:10.1016/j.ahj.2022.11.016.; Khan S, Fawaz S, Simpson R, et al. The challenges of a randomised placebo-controlled trial of CTO PCI vs. placebo with optimal medical therapy: The ORBITA-CTO pilot study design and protocol. Front Cardiovasc Med. 2023;10:1172763. doi:10.3389/fcvm.2023.1172763.; Christensen MK, Eftekhari A, Raungaard B, et al. Impact of Percutaneous Intervention Compared to Pharmaceutical Therapy on Complex Arrhythmias in Patients With Chronic Total Coronary Occlusion. Rationale and Design of the CTO-ARRHYTHMIA Study. Cardiovasc Revasc Med. 2023;54:69-72. doi:10.1016/j.carrev.2023.04.001.; Thomas M, Jones PG, Arnold SV, Spertus JA. Interpretation of the Seattle Angina Questionnaire as an Outcome Measure in Clinical Trials and Clinical Care: A Review. JAMA Cardiol. 2021;6(5):593-599. doi:10.1001/jamacardio.2020.7478.; Gorgulu S, Kostantinis S, ElGuindy AM, et al. Contemporary In-Hospital Outcomes of Chronic Total Occlusion Percutaneous Coronary Interventions: Insights from the MENATA (Middle East, North Africa, Turkey, and Asia) Chapter of the PROGRESS-CTO Registry. Am J Cardiol. 2023;206:221-229. doi:10.1016/j.amjcard.2023.08.103.; Simsek B, Kostantinis S, Karacsonyi J, et al. Predicting Periprocedural Complications in Chronic Total Occlusion Percutaneous Coronary Intervention: The PROGRESS-CTO Complication Scores. JACC Cardiovasc Interv. 2022;15(14):1413-1422. doi:10.1016/j.jcin.2022.06.007.; Allana SS, Kostantinis S, Simsek B, et al. Lesion complexity and procedural outcomes associated with ostial chronic total occlusions: Insights from the PROGRESS-CTO Registry. J Invasive Cardiol. 2023;35(12). doi:10.25270/jic/23.00034.; Allana SS, Kostantinis S, Simsek B, et al. Distal Target Vessel Quality and Outcomes of Chronic Total Occlusion Percutaneous Coronary Intervention. JACC Cardiovasc Interv. 2023;16(12):1490-1500. doi:10.1016/j.jcin.2023.03.007.; Alexandrou M, Kostantinis S, Rempakos A, et al. Outcomes of Chronic Total Occlusion Percutaneous Coronary Interventions in Patients With Previous Coronary Artery Bypass Graft Surgery. Am J Cardiol. 2023;205:40-49. doi:10.1016/j.amjcard.2023.07.112.; Allana SS, Kostantinis S, Rempakos A, et al. The Retrograde Approach to Chronic Total Occlusion Percutaneous Coronary Interventions: Technical Analysis and Procedural Outcomes. JACC Cardiovasc Interv. 2023;16(22):2748-2762. doi:10.1016/j.jcin.2023.08.031.; Tajti P, Xenogiannis I, Gargoulas F, et al. Technical and procedural outcomes of the retrograde approach to chronic total occlusion interventions. EuroIntervention. 2020;16(11):e891-e899. doi:10.4244/EIJ-D-19-00441.; Kostantinis S, Simsek B, Karacsonyi J, et al. Development and validation of a scoring system for predicting clinical coronary artery perforation during percutaneous coronary intervention of chronic total occlusions: the PROGRESS-CTO perforation score. EuroIntervention. 2023;18(12):1022-1030. doi:10.4244/EIJ-D-22-00593.; Azzalini L, Poletti E, Ayoub M, et al. Coronary artery perforation during chronic total occlusion percutaneous coronary intervention: epidemiology, mechanisms, management, and outcomes. EuroIntervention. 2019;15(9):e804-e811. doi:10.4244/EIJ-D-19-00282.; Kostantinis S, Rempakos A, Simsek B, et al. Incidence, mechanisms, treatment, and outcomes of donor vessel injury during percutaneous coronary interventions for chronic total occlusion. Catheter Cardiovasc Interv. 2023;102(4):585-593. doi:10.1002/ccd.30798.; Simsek B, Rempakos A, Kostantinis S, et al. Periprocedural Mortality in Chronic Total Occlusion Percutaneous Coronary Intervention: Insights From the PROGRESS-CTO Registry. Circ Cardiovasc Interv. 2023;16(6):e012977. doi:10.1161/CIRCINTERVENTIONS.123.012977.; Tajti P, Karmpaliotis D, Alaswad K, et al. The Hybrid Approach to Chronic Total Occlusion Percutaneous Coronary Intervention: Update From the PROGRESS CTO Registry. JACC Cardiovasc Interv. 2018;11(14):1325-1335. doi:10.1016/j.jcin.2018.02.036.; Sapontis J, Salisbury AC, Yeh RW, et al. Early Procedural and Health Status Outcomes After Chronic Total Occlusion Angioplasty: A Report From the OPEN-CTO Registry (Outcomes, Patient Health Status, and Efficiency in Chronic Total Occlusion Hybrid Procedures). JACC Cardiovasc Interv. 2017;10(15):1523-1534. doi:10.1016/j.jcin.2017.05.065; Meijers TA, Aminian A, Valgimigli M, et al. Vascular Access in Percutaneous Coronary Intervention of Chronic Total Occlusions: A State-of-the-Art Review. Circ Cardiovasc Interv. 2023;16(8):e013009. doi:10.1161/CIRCINTERVENTIONS.123.013009; Christakopoulos GE, Christopoulos G, Karmpaliotis D, et al. Predictors of Excess Patient Radiation Exposure During Chronic Total Occlusion Coronary Intervention: Insights From a Contemporary Multicentre Registry. Can J Cardiol. 2017;33(4):478-484. doi:10.1016/j.cjca.2016.11.002.; Vemmou E, Alaswad K, Khatri JJ, et al. Patient Radiation Dose During Chronic Total Occlusion Percutaneous Coronary Intervention: Insights From the PROGRESS-CTO Registry. Circ Cardiovasc Interv. 2020;13(10):e009412. doi:10.1161/CIRCINTERVENTIONS.120.009412.; Roguin A, Wu P, Cohoon T, et al. Update on Radiation Safety in the Cath Lab - Moving Toward a "Lead-Free" Environment. J Soc Cardiovasc Angiogr Interv. 2023;2(4):101040. doi:10.1016/j.jscai.2023.101040.; Danek BA, Karatasakis A, Karmpaliotis D, et al. Development and Validation of a Scoring System for Predicting Periprocedural Complications During Percutaneous Coronary Interventions of Chronic Total Occlusions: The Prospective Global Registry for the Study of Chronic Total Occlusion Intervention (PROGRESS CTO) Complications Score. J Am Heart Assoc. 2016;5(10):e004272. doi:10.1161/JAHA.116.004272; Virani SS, Newby LK, Arnold SV, et al. 2023 AHA/ACC/ACCP/ASPC/NLA/PCNA Guideline for the Management of Patients With Chronic Coronary Disease: A Report of the American Heart Association/American College of Cardiology Joint Committee on Clinical Practice Guidelines. Circulation. 2023;148(9):e9-e119. doi:10.1161/CIR.0000000000001168.; Young MN, Secemsky EA, Kaltenbach LA, Jaffer FA, Grantham JA, Rao SV, Yeh RW. Examining the Operator Learning Curve for Percutaneous Coronary Intervention of Chronic Total Occlusions. Circ Cardiovasc Interv. 2019 Aug;12(8):e007877. doi:10.1161/CIRCINTERVENTIONS.119.007877.; Brilakis ES, Banerjee S, Karmpaliotis D, et al. Procedural outcomes of chronic total occlusion percutaneous coronary intervention: a report from the NCDR (National Cardiovascular Data Registry). JACC Cardiovasc Interv. 2015;8(2):245-253. doi:10.1016/j.jcin.2014.08.014.; Zein R, Seth M, Othman H, et al. Association of Operator and Hospital Experience With Procedural Success Rates and Outcomes in Patients Undergoing Percutaneous Coronary Interventions for Chronic Total Occlusions: Insights From the Blue Cross Blue Shield of Michigan Cardiovascular Consortium. Circ Cardiovasc Interv. 2020;13(8):e008863. doi:10.1161/CIRCINTERVENTIONS.119.008863.; Karacsonyi J, Tsiafoutis I, Alaswad K, et al. Association of Annual Operator Volume With the Outcomes of Chronic Total Occlusion Percutaneous Coronary Intervention. J Invasive Cardiol. 2022;34(9):E645-E652. doi:10.25270/jic/22.00024.; Simsek B, Rempakos A, Kostantinis S, et al. Frequency and outcomes of ad hoc chronic total occlusion percutaneous coronary intervention: insights from the progress-cto registry. J Invasive Cardiol. 2023;35(7):E329-E340. doi:10.25270/jic/23.00070.; Бойраз Б., Аггул Б., Эртюрк Э., и др. Краткосрочные и отдаленные результаты чрескожных коронарных вмешательств, выполненных в больнице без отделения кардиохирургии, при поражениях высокого и низкого риска. Кардиология. 2021;61(12):66-71. https://doi.org/10.18087/cardio.2021.12.n1757; Сафонова О.О., Максимкин Д.А., Чепурной А.Г., Шугушев З.Х. Баллонные катетеры с лекарственным покрытием в лечении бифуркационных поражений ствола левой коронарной артерии. Кардиология и сердечно-сосудистая хирургия. 2022;15(6):554‑559. https://doi.org/10.17116/kardio202215061554; Стельмашок В.И., Полонецкий О.Л., Стриго Н.П., и др. Принципы выбора коронарного проводника при реканализации хронических окклюзионных поражений коронарных артерий антеградным доступом. Евразийский кардиологический журнал. 2017; (1): 16-23.; Vemmou E, Nikolakopoulos I, Xenogiannis I, et al. Recent advances in microcatheter technology for the treatment of chronic total occlusions. Expert Rev Med Devices. 2019;16(4):267-273. doi:10.1080/17434440.2019.1602039.; Пашаев Р.А., Ширяев А.А., Миронов. В.М., и др. Реваскуляризация миокарда у пациентов с кальцинозом коронарных артерий: систематический обзор и метаанализ. Российский кардиологический журнал. 2024;29(11S):5694. https://doi.org/10.15829/1560-4071-2024-5694; Зауралов О.Е., Ардеев В.Н., Демин В.В., и др. Роль внутрисосудистой визуализации и физиологической оценки коронарного кровотока в определении стратегии лечения у пациентов с острым коронарным синдромом. Анализ итогов работы Российского регистра по использованию внутрисосудистых методов визуализации и физиологии за 2021–2022 гг. Кардиологический вестник. 2024;19(3):43‑52. https://doi.org/10.17116/Cardiobulletin2024190314; Karacsonyi J, Deffenbacher K, Benzuly KH, et al. Use of Mechanical Circulatory Support in Chronic Total Occlusion Percutaneous Coronary Intervention. Am J Cardiol. 2023;189:76-85. doi:10.1016/j.amjcard.2022.10.049.; Васильев Д.К., Руденко Б.А., Шаноян А.С., и др. Предикторы безуспешной эндоваскулярной реканализации хронических окклюзий коронарного русла. Кардиоваскулярная терапия и профилактика. 2021;20(3):2725. https://doi.org/10.15829/1728-8800-2021-2725; Moroni A, Poletti E, Scott B, et al. Prevalence of Collateral Typology in Coronary Chronic Total Occlusion and Its Impact on Percutaneous Intervention Performance. Am J Cardiol. 2024;210:153-162. doi:10.1016/j.amjcard.2023.09.113.; Morino Y, Abe M, Morimoto T, et al. Predicting successful guidewire crossing through chronic total occlusion of native coronary lesions within 30 minutes: the J-CTO (Multicenter CTO Registry in Japan) score as a difficulty grading and time assessment tool. JACC Cardiovasc Interv. 2011 Feb;4(2):213-21. doi:10.1016/j.jcin.2010.09.024.; Nombela-Franco L, Urena M, Jerez-Valero M, et al. Validation of the J-chronic total occlusion score for chronic total occlusion percutaneous coronary intervention in an independent contemporary cohort. Circ Cardiovasc Interv. 2013;6(6):635-43. doi:10.1161/CIRCINTERVENTIONS.113.000447.; Wu EB, Brilakis ES, Mashayekhi K, et al. Global Chronic Total Occlusion Crossing Algorithm: JACC State-of-the-Art Review. J Am Coll Cardiol. 2021;78(8):840-853. doi:10.1016/j.jacc.2021.05.055.; Brilakis ES, Grantham JA, Rinfret S, et al. A percutaneous treatment algorithm for crossing coronary chronic total occlusions. JACC Cardiovasc Interv. 2012;5(4):367-79. doi:10.1016/j.jcin.2012.02.006.; McEntegart MB, Badar AA, Ahmad FA, et al. The collateral circulation of coronary chronic total occlusions. EuroIntervention. 2016;11(14):e1596-603. doi:10.4244/EIJV11I14A310.; Huang CC, Lee CK, Meng SW, et al. Collateral Channel Size and Tortuosity Predict Retrograde Percutaneous Coronary Intervention Success for Chronic Total Occlusion. Circ Cardiovasc Interv. 2018;11(1):e005124. doi:10.1161/CIRCINTERVENTIONS.117.005124.; Nagamatsu W, Tsuchikane E, Oikawa Y, et al. Successful guidewire crossing via collateral channel at retrograde percutaneous coronary intervention for chronic total occlusion: the J-Channel score. EuroIntervention. 2020;15(18):e1624-e1632. doi:10.4244/EIJ-D-18-00993.; Werner GS, Ferrari M, Heinke S, et al. Angiographic assessment of collateral connections in comparison with invasively determined collateral function in chronic coronary occlusions. Circulation. 2003;107(15):1972-7. doi:10.1161/01.CIR.0000061953.72662.3A.; Harding SA, Wu EB, Lo S, et al. A New Algorithm for Crossing Chronic Total Occlusions From the Asia Pacific Chronic Total Occlusion Club. JACC Cardiovasc Interv. 2017;10(21):2135-2143. doi:10.1016/j.jcin.2017.06.071.; J Ge. Strategic roadmap of percutaneous coronary intervention for chronic total occlusions. Cardiol Plus. 2018; 3: 30-37.; Galassi AR, Werner GS, Boukhris M, et al. Percutaneous recanalisation of chronic total occlusions: 2019 consensus document from the EuroCTO Club. EuroIntervention. 2019;15(2):198-208. doi:10.4244/EIJ-D-18-00826.; Christopoulos G, Wyman RM, Alaswad K, et al. Clinical Utility of the Japan-Chronic Total Occlusion Score in Coronary Chronic Total Occlusion Interventions: Results from a Multicenter Registry. Circ Cardiovasc Interv. 2015;8(7):e002171. doi:10.1161/CIRCINTERVENTIONS.114.002171.; Christopoulos G, Kandzari DE, Yeh RW, et al. Development and Validation of a Novel Scoring System for Predicting Technical Success of Chronic Total Occlusion Percutaneous Coronary Interventions: The PROGRESS CTO (Prospective Global Registry for the Study of Chronic Total Occlusion Intervention) Score. JACC Cardiovasc Interv. 2016;9(1):1-9. doi:10.1016/j.jcin.2015.09.022.; Szijgyarto Z, Rampat R, Werner GS, et al. Derivation and Validation of a Chronic Total Coronary Occlusion Intervention Procedural Success Score From the 20,000-Patient EuroCTO Registry: The EuroCTO (CASTLE) Score. JACC Cardiovasc Interv. 2019;12(4):335-342. doi:10.1016/j.jcin.2018.11.020.; Karacsonyi J, Stanberry L, Alaswad K, et al. Predicting Technical Success of Chronic Total Occlusion Percutaneous Coronary Intervention: Comparison of 3 Scores. Circ Cardiovasc Interv. 2021;14(1):e009860. doi:10.1161/CIRCINTERVENTIONS.120.009860.; Butala NM, Tamez H, Secemsky EA, et al. Predicting Residual Angina After Chronic Total Occlusion Percutaneous Coronary Intervention: Insights from the OPEN-CTO Registry. J Am Heart Assoc. 2022;11(10):e024056. doi:10.1161/JAHA.121.024056.; Hirai T, Grantham JA, Sapontis J, et al. Development and validation of a prediction model for angiographic perforation during chronic total occlusion percutaneous coronary intervention: OPEN-CLEAN perforation score. Catheter Cardiovasc Interv. 2022;99(2):280-285. doi:10.1002/ccd.29466.; Simsek B, Carlino M, Ojeda S, et al. Validation of the OPEN-CLEAN chronic total occlusion percutaneous coronary intervention perforation score in a multicenter registry. Am J Cardiol, 2023; 188: 30-35.; Simsek B, Tajti P, Carlino M, et al. External validation of the PROGRESS-CTO complication risk scores: Individual patient data pooled analysis of 3 registries. Int J Cardiol. 2023;375:14-20. doi:10.1016/j.ijcard.2022.12.036.; Karacsonyi J, Stanberry L, Simsek B, et al. Development of a Novel Score to Predict Urgent Mechanical Circulatory Support in Chronic Total Occlusion Percutaneous Coronary Intervention. Am J Cardiol. 2023;202:111-118. doi:10.1016/j.amjcard.2023.06.051.; Liu Y, Liu YH, Chen JY, et al. A simple pre-procedural risk score for contrast-induced nephropathy among patients with chronic total occlusion undergoing percutaneous coronary intervention. Int J Cardiol. 2015;180:69-71. doi:10.1016/j.ijcard.2014.11.133.; Choi JH, Kim EK, Kim SM, et al. Noninvasive Discrimination of Coronary Chronic Total Occlusion and Subtotal Occlusion by Coronary Computed Tomography Angiography. JACC Cardiovasc Interv. 2015;8(9):1143-1153. doi:10.1016/j.jcin.2015.03.042.; Werner GS. Use of Coronary Computed Tomographic Angiography to Facilitate Percutaneous Coronary Intervention of Chronic Total Occlusions. Circ Cardiovasc Interv. 2019;12(10):e007387. doi:10.1161/CIRCINTERVENTIONS.119.007387.; Simsek B, Jaffer FA, Kostantinis S, et al. Preprocedural coronary computed tomography angiography in chronic total occlusion percutaneous coronary intervention: Insights from the PROGRESS-CTO registry. Int J Cardiol. 2022;367:20-25. doi:10.1016/j.ijcard.2022.08.027.; Hong SJ, Kim BK, Cho I, et al. CT-CTO Investigators. Effect of Coronary CTA on Chronic Total Occlusion Percutaneous Coronary Intervention: A Randomized Trial. JACC Cardiovasc Imaging. 2021;14(10):1993-2004. doi:10.1016/j.jcmg.2021.04.013.; Opolski MP, Achenbach S. CT Angiography for Revascularization of CTO: Crossing the Borders of Diagnosis and Treatment. JACC Cardiovasc Imaging. 2015;8(7):846-58. doi:10.1016/j.jcmg.2015.05.001.; Rolf A, Werner GS, Schuhbäck A, et al. Preprocedural coronary CT angiography significantly improves success rates of PCI for chronic total occlusion. Int J Cardiovasc Imaging. 2013;29(8):1819-27. doi:10.1007/s10554-013-0258-y.; Yokoyama N, Yamamoto Y, Suzuki S, et al. Impact of 16-slice computed tomography in percutaneous coronary intervention of chronic total occlusions. Catheter Cardiovasc Interv. 2006;68(1):1-7. doi:10.1002/ccd.20734.; Opolski MP, Achenbach S, Schuhbäck A, et al. Coronary computed tomographic prediction rule for time-efficient guidewire crossing through chronic total occlusion: insights from the CT-RECTOR multicenter registry (Computed Tomography Registry of Chronic Total Occlusion Revascularization). JACC Cardiovasc Interv. 2015;8(2):257-267. doi:10.1016/j.jcin.2014.07.031.; Poletti E, Ohashi H, Sonck J, et al. Coronary CT-Guided Minimalistic Hybrid Approach for Percutaneous Chronic Total Occlusion Recanalization. JACC Cardiovasc Interv. 2023;16(9):1107-1108. doi:10.1016/j.jcin.2023.03.013.; Xenogiannis I, Jaffer FA, Shah AR, et al. Computed tomography angiography co-registration with real-time fluoroscopy in percutaneous coronary intervention for chronic total occlusions. EuroIntervention. 2021;17(5):e433-e435. doi:10.4244/EIJ-D-20-00175.

  3. 3
    Academic Journal

    Πηγή: Diagnostic radiology and radiotherapy; Том 16, № 1 (2025); 107-112 ; Лучевая диагностика и терапия; Том 16, № 1 (2025); 107-112 ; 2079-5343

    Περιγραφή αρχείου: application/pdf

    Relation: https://radiag.bmoc-spb.ru/jour/article/view/1071/683; Игнатенко Г.А., Ватутин Н.Т., Тарадин Г.Г. и др. Аортальная регургитация: эпидемиологические, этиологические и патофизиологические особенности // Клиницист. 2021. Т. 14, № 3–4. С. 57–68. doi:10.17650/1818-8338-2020-14-3-4-K639.; Qamar S.R., Wu Y., Nicolaou S., Murray N. State of the Art Imaging Review of Blunt and Penetrating Cardiac Trauma // Canadian Association of Radiologists Journal = Journal l’Association Canadienne Des Radiologistes. 2020. Vol. 71, No. 3. Р. 301–312. doi:10.1177/0846537119899200.; De Castro D., Rasines-Rodríguez A., Usano A., Mingo S. Acute Post-Traumatic Aortic Regurgitation // JACC: Case Reports. 2022. Vol. 4, No. 21. H. 1432–1434. doi:10.1016/j.jaccas.2022.07.018.; Карпова Н.Ю., Рашид М.А., Казакова Т.В., Шостак Н.А. Аортальная регургитация // РМЖ. 2014. № 12. С. 883.; Eghbalzadeh K., Sabashnikov A., Zeriouh M., Choi Y.-H. et al. Wahlers T. Blunt chest trauma: a clinical chameleon // Heart (British Cardiac Society). 2018. Vol. 104, No. 9. Р. 719–724. doi:10.1136/heartjnl-2017-312111.; Prêtre R., Chilcott M. Blunt trauma to the heart and great vessels // The New England Journal of Medicine. 1997. Vol. 336, No. 9. Р. 626–632. doi:10.1056/NEJM199702273360906; Tateishi K., Asselin C.Y., Elmann E.M., De Gregorio J. Delayed Aortic Valve Perforation Caused by Blunt Trauma // Diagnostics (Basel, Switzerland). 2023. Vol. 13, No. 3. Р. 549. doi:10.3390/diagnostics13030549.; Saremi F., Channual S., Krishnan S., Gurudevan S.V. et al. Bachmann Bundle and its arterial supply: imaging with multidetector CT-implications for interatrial conduction abnormalities and arrhythmias // Radiology. 2008. Vol. 248, No. 2. Р. 447–457. doi:10.1148/radiol.2482071908.

  4. 4
    Academic Journal

    Πηγή: Российский кардиологический журнал, Vol 29, Iss 9 (2024)

    Περιγραφή αρχείου: electronic resource

    Σύνδεσμος πρόσβασης: https://doaj.org/article/51086c955f2c4759a14206567dd582dc

  5. 5
  6. 6
  7. 7
  8. 8
    Academic Journal

    Συνεισφορές: Авторы заявляют об отсутствии финансирования исследования.

    Πηγή: Complex Issues of Cardiovascular Diseases; Том 13, № 2 (2024); 165-175 ; Комплексные проблемы сердечно-сосудистых заболеваний; Том 13, № 2 (2024); 165-175 ; 2587-9537 ; 2306-1278

    Περιγραφή αρχείου: application/pdf

    Relation: https://www.nii-kpssz.com/jour/article/view/1493/905; https://www.nii-kpssz.com/jour/article/downloadSuppFile/1493/1679; https://www.nii-kpssz.com/jour/article/downloadSuppFile/1493/1680; https://www.nii-kpssz.com/jour/article/downloadSuppFile/1493/1681; Tonino P.A., De Bruyne B., Pijls N.H., Siebert U., Ikeno F., van' t Veer M., Klauss V., Manoharan G., Engstrøm T., Oldroyd K.G., Ver Lee P.N., MacCarthy P.A., Fearon W.F.; FAME Study Investigators. Fractional flow reserve versus angiography for guiding percutaneous coronary intervention. N Engl J Med. 2009;360(3):213-24. doi:10.1056/NEJMoa0807611.; Pijls N.H., Fearon W.F., Tonino P.A., Siebert U., Ikeno F., Bornschein B., van't Veer M., Klauss V., Manoharan G., Engstrøm T., Oldroyd K.G., Ver Lee P.N., MacCarthy P.A., De Bruyne B.; FAME Study Investigators. Fractional flow reserve versus angiography for guiding percutaneous coronary intervention in patients with multivessel coronary artery disease: 2-year follow-up of the FAME (Fractional Flow Reserve Versus Angiography for Multivessel Evaluation) study. J Am Coll Cardiol. 2010;56(3):177-84. doi:10.1016/j.jacc.2010.04.012.; Davies J.E., Sen S., Dehbi H.M., Al-Lamee R., Petraco R., Nijjer S.S., Bhindi R., Lehman S.J., Walters D., Sapontis J., Janssens L., Vrints C.J., Khashaba A., Laine M., Van Belle E., Krackhardt F., Bojara W., Going O., Härle T., Indolfi C., Niccoli G., Ribichini F., Tanaka N., Yokoi H., Takashima H., Kikuta Y., Erglis A., Vinhas H., Canas Silva P., Baptista S.B., Alghamdi A., Hellig F., Koo B.K., Nam C.W., Shin E.S., Doh J.H., Brugaletta S., Alegria-Barrero E., Meuwissen M., Piek J.J., van Royen N., Sezer M., Di Mario C., Gerber R.T., Malik I.S., Sharp A.S.P., Talwar S., Tang K., Samady H., Altman J., Seto A.H., Singh J., Jeremias A., Matsuo H., Kharbanda R.K., Patel M.R., Serruys P., Escaned J. Use of the instantaneous wave-free ratio or fractional flow reserve in PCI. N Engl J Med. 2017;376:1824–1834. doi:10.1056/NEJMoa1700445.; Götberg M., Christiansen E.H., Gudmundsdottir I.J., Sandhall L., Danielewicz M., Jakobsen L., Olsson S.E., Öhagen P., Olsson H., Omerovic E., Calais F., Lindroos P., Maeng M., Tödt T., Venetsanos D., James S.K., Kåregren A., Nilsson M., Carlsson J., Hauer D., Jensen J., Karlsson A.C., Panayi G., Erlinge D., Fröbert O.; iFR-SWEDEHEART. Investigators. Instantaneous wave-free ratio versus fractional flow reserve to guide PCI. N Engl J Med. 2017;376:1813–1823. doi:10.1056/NEJMoa1616540.; Katritsis D.G., Ioannidis J.P. Percutaneous coronary intervention versus conservative therapy in nonacute coronary artery disease: A meta-analysis. Circulation 2005;111:2906–2912.; Boden W.E., O'Rourke R.A., Teo K.K., Hartigan P.M., Maron D.J., Kostuk W.J., Knudtson M., Dada M., Casperson P., Harris C.L., Chaitman B.R., Shaw L., Gosselin G., Nawaz S., Title L.M., Gau G., Blaustein A.S., Booth D.C., Bates E.R., Spertus J.A., Berman D.S., Mancini G.B., Weintraub W.S.; COURAGE Trial Research Group. Optimal medical therapy with or without PCI for stable coronary disease. N Engl J Med. 2007;356(15):1503-16. doi:10.1056/NEJMoa070829.; De Bruyne B., Pijls N.H., Kalesan B., Barbato E., Tonino P.A., Piroth Z., Jagic N., Möbius-Winkler S., Rioufol G., Witt N., Kala P., MacCarthy P., Engström T., Oldroyd K.G., Mavromatis K., Manoharan G., Verlee P., Frobert O., Curzen N., Johnson J.B., Jüni P., Fearon W.F.; FAME 2 Trial Investigators. Fractional flow reserve-guided PCI versus medical therapy in stable coronary disease. N Engl J Med. 2012;367(11):991-1001. doi:10.1056/NEJMoa1205361.; Fearon W.F., Zimmermann F.M., De Bruyne B., Piroth Z., van Straten A.H.M., Szekely L., Davidavičius G., Kalinauskas G., Mansour S., Kharbanda R., Östlund-Papadogeorgos N., Aminian A., Oldroyd K.G., Al-Attar N., Jagic N., Dambrink J.E., Kala P., Angerås O., MacCarthy P., Wendler O., Casselman F., Witt N., Mavromatis K., Miner S.E.S., Sarma J., Engstrøm T., Christiansen E.H., Tonino P.A.L., Reardon M.J., Lu D., Ding V.Y., Kobayashi Y., Hlatky M.A., Mahaffey K.W., Desai M., Woo Y.J., Yeung A.C., Pijls N.H.J.; FAME 3 Investigators. Fractional Flow Reserve-Guided PCI as Compared with Coronary Bypass Surgery. N Engl J Med. 2022;386(2):128-137. doi:10.1056/NEJMoa2112299.; Puymirat E., Cayla G., Simon T., Steg P.G., Montalescot G., Durand-Zaleski I., le Bras A., Gallet R., Khalife K., Morelle J.F., Motreff P., Lemesle G., Dillinger J.G., Lhermusier T., Silvain J., Roule V., Labèque J.N., Rangé G., Ducrocq G., Cottin Y., Blanchard D., Charles Nelson A., De Bruyne B., Chatellier G., Danchin N.; FLOWER-MI Study Investigators. Multivessel PCI Guided by FFR or Angiography for Myocardial Infarction. N Engl J Med. 2021;385(4):297-308. doi:10.1056/NEJMoa2104650.; Rioufol G., Dérimay F., Roubille F., Perret T., Motreff P., Angoulvant D., Cottin Y., Meunier L., Cetran L., Cayla G., Harbaoui B., Wiedemann J.Y., Van Belle É., Pouillot C., Noirclerc N., Morelle J.F., Soto F.X., Caussin C., Bertrand B., Lefèvre T., Dupouy P., Lesault P.F., Albert F., Barthelemy O., Koning R., Leborgne L., Barnay P., Chapon P., Armero S., Lafont A., Piot C., Amaz C., Vaz B., Benyahya L., Varillon Y., Ovize M., Mewton N., Finet G.; FUTURE Trial Investigators. Fractional Flow Reserve to Guide Treatment of Patients With Multivessel Coronary Artery Disease. J Am Coll Cardiol. 2021;78(19):1875-1885. doi:10.1016/j.jacc.2021.08.061.; Stables R.H., Mullen L.J., Elguindy M., Nicholas Z., Aboul-Enien Y.H., Kemp I., O'Kane P., Hobson A., Johnson T.W., Khan S.Q., Wheatcroft S.B., Garg S., Zaman A.G., Mamas M.A., Nolan J., Jadhav S., Berry C., Watkins S., Hildick-Smith D., Gunn J., Conway D., Hoye A., Fazal I.A., Hanratty C.G., De Bruyne B., Curzen N. Routine Pressure Wire Assessment Versus Conventional Angiography in the Management of Patients With Coronary Artery Disease: The RIPCORD 2 Trial. Circulation. 2022;146(9):687-698. doi:10.1161/CIRCULATIONAHA.121.057793.; Califf R.M., Phillips H.R. 3rd, Hindman M.C., Mark D.B., Lee K.L., Behar V.S., Johnson R.A., Pryor D.B., Rosati R.A., Wagner G.S. Prognostic value of a coronary artery jeopardy score. J Am Coll Cardiol. 1985;5(5):1055-63. doi:10.1016/s0735-1097(85)80005-x.; McLellan C.S., Ghali W.A., Labinaz M., Davis R.B., Galbraith P.D., Southern D.A., Shrive F.M., Knudston M.L.;Alberta Provincial Project for Outcomes Assessment in Coronary Heart Disease (APPROACH) Investigators. Association between completeness of percutaneous coronary revascularization and postprocedure outcomes. Am Heart J. 2005;150(4):800-6. doi:10.1016/j.ahj.2004.10.037.

  9. 9
    Academic Journal

    Πηγή: МЕДИЦИНА НЕВІДКЛАДНИХ СТАНІВ; Том 16, № 4 (2020); 31-38
    МЕДИЦИНА НЕОТЛОЖНЫХ СОСТОЯНИЙ; Том 16, № 4 (2020); 31-38
    EMERGENCY MEDICINE; Том 16, № 4 (2020); 31-38

    Θεματικοί όροι: комп'ютерна томографія з контрастуванням, магнітно-резонансна томографія з контрастуванням, урографія, ангіографія, коронарографія, рентгеноконтрастні йодовмісні препарати для внутрішньосудинного введення, контраст-індуковане гостре ниркове ураження, гостра ниркова недостатність, епітелій ниркових к, 03 medical and health sciences, 0302 clinical medicine, computer tomography with contrast, magnetic resonance tomography with contrast, urography, angiography, coronarography, radiopaque iodine-containing drugs for intravenous administration, contrast-induced acute kidney injury, acute kidney failure, renal tubule epithelium, glomerular filtration rate, компьютерная томография с контрастированием, магнитно-резонансная томография с контрастированием, урография, ангиография, коронарография, рентгеноконтрастные йодсодержащие препараты для внутрисосудистого введения, контраст-индуцированное острое почечное повреждение, острая почечная недостаточность, 3. Good health

    Περιγραφή αρχείου: application/pdf

    Σύνδεσμος πρόσβασης: http://emergency.zaslavsky.com.ua/article/view/207930

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  11. 11
  12. 12
    Academic Journal

    Πηγή: Siberian journal of oncology; Том 22, № 5 (2023); 161-172 ; Сибирский онкологический журнал; Том 22, № 5 (2023); 161-172 ; 2312-3168 ; 1814-4861

    Περιγραφή αρχείου: application/pdf

    Relation: https://www.siboncoj.ru/jour/article/view/2770/1166; Болдуева С.А., Евдокимов Д.С. Кардиомиопатия такоцубо. Обзор данных литературы: понятие, эпидемиология, патогенез. Часть I. Российский кардиологический журнал. 2022; 27(3s): 4993. doi:10.15829/1560-4071-2022-4993.; Ghadri J.R., Kato K., Cammann V.L., Gili S., Jurisic S., Di Vece D., Candreva A., Ding K.J., Micek J., Szawan K.A., Bacchi B., Bianchi R., Levinson R.A., Wischnewsky M., Seifert B., Schlossbauer S.A., Citro R., Bossone E., Münzel T., Knorr M., Heiner S., D’Ascenzo F., Franke J., Sarcon A., Napp L.C., Jaguszewski M., Noutsias M., Katus H.A., Burgdorf C., Schunkert H., Thiele H., Bauersachs J., Tschöpe C., Pieske B.M., Rajan L., Michels G., Pfister R., Cuneo A., Jacobshagen C., Hasenfuß G., Karakas M., Koenig W., Rottbauer W., Said S.M., Braun-Dullaeus R.C., Banning A., Cuculi F., Kobza R., Fischer T.A., Vasankari T., Airaksinen K.E.J., Opolski G., Dworakowski R., MacCarthy P., Kaiser C., Osswald S., Galiuto L., Crea F., Dichtl W., Empen K., Felix S.B., Delmas C., Lairez O., El-Battrawy I., Akin I., Borggrefe M., Horowitz J., Kozel M., Tousek P., Widimský P., Gilyarova E., Shilova A., Gilyarov M., Winchester D.E., Ukena C., Bax J.J., Prasad A., Böhm M., Lüscher T.F., Ruschitzka F., Templin C. Long-Term Prognosis of Patients With Takotsubo Syndrome. J Am Coll Cardiol. 2018; 72(8): 874–82. doi:10.1016/j.jacc.2018.06.016.; Deshmukh A., Kumar G., Pant S., Rihal C., Murugiah K., Mehta J.L. Prevalence of Takotsubo cardiomyopathy in the United States. Am Heart J. 2012; 164(1): 66–71. doi:10.1016/j.ahj.2012.03.020.; Kato K., Lyon A.R., Ghadri J.R., Templin C. Takotsubo syndrome: aetiology, presentation and treatment. Heart. 2017; 103(18): 1461–9. doi:10.1136/heartjnl-2016-309783.; Vitale C., Rosano G.M., Kaski J.C. Role of Coronary Microvascular Dysfunction in Takotsubo Cardiomyopathy. Circ J. 2016; 80(2): 299–305. doi:10.1253/circj.CJ-15-1364.; Rawish E., Stiermaier T., Santoro F., Brunetti N.D., Eitel I. Current Knowledge and Future Challenges in Takotsubo Syndrome: Part 1-Pathophysiology and Diagnosis. J Clin Med. 2021; 10(3): 479. doi:10.3390/jcm10030479.; Del Buono M.G., Montone R.A., Camilli M., Carbone S., Narula J., Lavie C.J., Niccoli G., Crea F. Coronary Microvascular Dysfunction Across the Spectrum of Cardiovascular Diseases: JACC State-of-theArt Review. J Am Coll Cardiol. 2021; 78(13): 1352–71. doi:10.1016/j.jacc.2021.07.042.; Ghadri J.R., Wittstein I.S., Prasad A., Sharkey S., Dote K., Akashi Y.J., Cammann V.L., Crea F., Galiuto L., Desmet W., Yoshida T., Manfredini R., Eitel I., Kosuge M., Nef H.M., Deshmukh A., Lerman A., Bossone E., Citro R., Ueyama T., Corrado D., Kurisu S., Ruschitzka F., Winchester D., Lyon A.R., Omerovic E., Bax J.J., Meimoun P., Tarantini G., Rihal C., Y-Hassan S., Migliore F., Horowitz J.D., Shimokawa H., Lüscher T.F., Templin C. International Expert Consensus Document on Takotsubo Syndrome (Part II): Diagnostic Workup, Outcome, and Management. Eur Heart J. 2018; 39(22): 2047–62. doi:10.1093/eurheartj/ehy077.; Kotsiou O.S., Douras A., Makris D., Mpaka N., Gourgoulianis K.I. Takotsubo cardiomyopathy: A known unknown foe of asthma. J Asthma. 2017; 54(8): 880–6. doi:10.1080/02770903.2016.1276586.; Jin Q., Luo Q., Zhao Z., Zhao Q., Yu X., Yan L., Gao L., Liu Z. Takotsubo syndrome with pulmonary embolism: a case report and literature review. BMC Cardiovasc Disord. 2018; 18(1): 229. doi:10.1186/s12872-018-0953-7.; Agarwal S., Bean M.G., Hata J.S., Castresana M.R. Perioperative Takotsubo Cardiomyopathy: A Systematic Review of Published Cases. Semin Cardiothorac Vasc Anesth. 2017; 21(4): 277–90. doi:10.1177/1089253217700511.; Desai A., Noor A., Joshi S., Kim A.S. Takotsubo cardiomyopathy in cancer patients. Cardiooncology. 2019; 5: 7. doi:10.1186/s40959-019-0042-9.; Ayoub C., Chang M., Kritharides L. A case report of ventricular dysfunction post pericardiocentesis: stress cardiomyopathy or pericardial decompression syndrome? Cardiovascular Ultrasound. 2015; 13: 32. doi:10.1186/s12947-015-0026-3.; Lyon A.R., López-Fernández T., Couch L.S., Asteggiano R., Aznar M.C., Bergler-Klein J., Boriani G., Cardinale D., Cordoba R., Cosyns B., Cutter D.J., de Azambuja E., de Boer R.A., Dent S.F., Farmakis D., Gevaert S.A., Gorog D.A., Herrmann J., Lenihan D., Moslehi J., Moura B., Salinger S.S., Stephens R., Suter T.M., Szmit S., Tamargo J., Thavendiranathan P., Tocchetti C.G., van der Meer P., van der Pal H.J.H.; ESC Scientific Document Group. 2022 ESC Guidelines on cardio-oncology developed in collaboration with the European Hematology Association (EHA), the European Society for Therapeutic Radiology and Oncology (ESTRO) and the International Cardio-Oncology Society (IC-OS). Eur Heart J. 2022; 43(41): 4229–361. doi:10.1093/eurheartj/ehac244. Erratum in: Eur Heart J. 2023; 44(18): 1621.; Станоевич У.С., Горелик С.Г., Звягин И.Н., Полянский М.Б., Рукавишников А.С. Распространенность колоректального рака у пациентов старших возрастных групп. Современные проблемы здравоохранения и медицинской статистики. 2021; 4: 235–50.; Botto F., Alonso-Coello P., Chan M.T., et al. Myocardial injury after noncardiac surgery: a large, international, prospective cohort study establishing diagnostic criteria, characteristics, predictors, and 30-day outcomes. Anesthesiology. 2014; 120(3): 564–78. doi:10.1097/ALN.0000000000000113.; Akashi Y.J., Nef H.M., Lyon A.R. Epidemiology and pathophysiology of Takotsubo syndrome. Nat Rev Cardiol. 2015; 12(7): 387–97. doi:10.1038/nrcardio.2015.39.; Watanabe M., Izumo M., Akashi Y., J. Novel Understanding of Takotsubo Syndrome. Int Heart J. 2018; 59(2): 250–5. doi:10.1536/ihj.17-586.; Станоевич У. Коррекция факторов риска колоректального рака – путь к первичной патогенетической профилактике. Вестник Российского научного центра рентгенорадиологии. 2016; 16(3): 8.; https://www.siboncoj.ru/jour/article/view/2770

  13. 13
    Academic Journal

    Πηγή: Russian Sklifosovsky Journal "Emergency Medical Care"; Том 12, № 3 (2023); 464-470 ; Журнал им. Н.В. Склифосовского «Неотложная медицинская помощь»; Том 12, № 3 (2023); 464-470 ; 2541-8017 ; 2223-9022

    Περιγραφή αρχείου: application/pdf

    Relation: https://www.jnmp.ru/jour/article/view/1679/1343; https://www.jnmp.ru/jour/article/view/1679/1404; Virani SS, Alonso A, Benjamin EJ, Bittencourt MS, Callaway CW, Carson AP, et al.; American Heart Association Council on Epidemiology and Prevention Statistics Committee and Stroke Statistics Subcommittee. Heart Disease and Stroke Statistics-2020 Update: A Report from the American Heart Association. Circulation. 2020;141(9):e139–e596. https://doi.org/10.1161/CIR.0000000000000757 PMID: 31992061; Chiarito M, Cao D, Nicolas J, Roumeliotis A, Power D, Chandiramani R, et al. Radial versus femoral access for coronary interventions: An updated systematic review and meta-analysis of randomized trials. Catheter Cardiovasc Interv. 2021;97(7):1387–1396. https://doi.org/10.1002/ccd.29486 PMID: 33507598; Campeau L. Percutaneous radial artery approach for coronary angiography. Cathet Cardiovasc Diagn. 1989;16(1):3–7. https://doi.org/10.1002/ccd.1810160103 PMID: 2912567; Kiemeneij F, Laarman GJ. Percutaneous transradial artery approach for coronary stent implantation. Cathet Cardiovasc Diagn. 1993;30(2):173– 178. https://doi.org/10.1002/ccd.1810300220 PMID: 8221875; Agostoni P, Biondi-Zoccai GG, de Benedictis ML, Rigattieri S, Turri M, Anselmi M, et al. Radial versus femoral approach for percutaneous coronary diagnostic and interventional procedures; Systematic overview and meta-analysis of randomized trials. J Am Coll Cardiol. 2004;44(2):349–356. https://doi.org/10.1016/j.jacc.2004.04.034 PMID: 15261930; Rao SV, Cohen MG, Kandzari DE, Bertrand OF, Gilchrist IC. The transradial approach to percutaneous coronary intervention: historical perspective, current concepts, and future directions. J Am Coll Cardiol. 2010;55(20):2187–2195. https://doi.org/10.1016/j.jacc.2010.01.039 PMID: 20466199; Valgimigli M, Gagnor A, Calabró P, Frigoli E, Leonardi S, Zaro T, et al.; MATRIX Investigators. Radial versus femoral access in patients with acute coronary syndromes undergoing invasive management: a randomised multicentre trial. Lancet. 2015;385(9986):2465–2476. https://doi.org/10.1016/S0140-6736(15)60292-6 PMID: 25791214; Babunashvili A, Dundua D. Recanalization and reuse of early occluded radial artery within 6 days after previous transradial diagnostic procedure. Catheter Cardiovasc Interv. 2011;77(4):530–536. https://doi.org/10.1002/ccd.22846 PMID: 20939038; Коротких А.В., Бондарь В.Ю. Использование глубокой ладонной ветви лучевой артерии в области анатомической табакерки при проведении ангиографических исследований. Дальневосточный медицинский журнал. 2016;(1):24–27.; Каледин А.Л., Кочанов И.Н., Селецкий С.С., Архаров И.В., Бурак Т.Я., Козлов К.Л. Особенности артериального доступа в эндоваскулярной хирургии у больных пожилого возраста. Успехи геронтологии. 2014;27(1):115–119.; Коротких А.В. Новые возможности использования лучевой артерии при проведении ангиографических исследований. В кн.: Современные аспекты диагностики и лечения в кардиохирургии: материалы научно-практической конференции с международным участием. Хабаровск; 2015. c. 56–60.; Davies RE, Gilchrist IC. Back hand approach to radial access: The snuff box approach. Cardiovasc Revasc Med. 2018;19(3 Pt B):324–326. https://doi.org/10.1016/j.carrev.2017.08.014 PMID: 29055660; Bernat I, Aminian A, Pancholy S, Mamas M, Gaudino M, Nolan J, et al; RAO International Group. Best Practices for the Prevention of Radial Artery Occlusion After Transradial Diagnostic Angiography and Intervention: An International Consensus Paper. JACC Cardiovasc Interv. 2019;12(22):2235–2246. https://doi.org/10.1016/j.jcin.2019.07.043 PMID: 31753298; Коротких А.В., Бабунашвили А.М., Каледин А.Л., Ахрамович Р.В., Деркач В.В., Портов В.М., и др. Анализ промежуточных результатов сравнительного многоцентрового рандомизированного исследования TENDERA по изучению дистального лучевого доступа. Новости хирургии. 2021;29(3):285–295.; Hadjivassiliou A, Kiemeneij F, Nathan S, Klass D. Ultrasound-guided access to the distal radial artery at the anatomical snuffbox for catheterbased vascular interventions: a technical guide. EuroIntervention. 2021;16(16):1342–1348. https://doi.org/10.4244/EIJ-D-19-00555 PMID: 31380781; Cai G, Huang H, Li F, Shi G, Yu X, Yu L. Distal transradial access: a review of the feasibility and safety in cardiovascular angiography and intervention. BMC Cardiovasc Disord. 2020;20(1):356. https://doi.org/10.1186/s12872-020-01625-8 PMID: 32758150; Kotowycz MA, Dzavík V. Radial artery patency after transradial catheterization. Circ Cardiovasc Interv. 2012;5(1):127–133. https://doi.org/10.1161/CIRCINTERVENTIONS.111.965871 PMID: 22338002; Norimatsu K, Kusumoto T, Yoshimoto K, Tsukamoto M, Kuwano T, Nishikawa H, et al. Importance of measurement of the diameter of the distal radial artery in a distal radial approach from the anatomical snuffbox before coronary catheterization. Heart Vessels. 2019;34(10):1615–1620. https://doi.org/10.1007/s00380-019-01404-2 PMID: 30972548; Sgueglia GA, Di Giorgio A, Gaspardone A, Babunashvili A. Anatomic Basis and Physiological Rationale of Distal Radial Artery Access for Percutaneous Coronary and Endovascular Procedures. JACC Cardiovasc Interv. 2018;11(20):2113–2119. https://doi.org/10.1016/j.jcin.2018.04.045 PMID: 30336816; Seto AH, Roberts JS, Abu-Fadel MS, Czak SJ, Latif F, Jain SP, et al. Real-time ultrasound guidance facilitates transradial access: RAUST (Radial Artery access with Ultrasound Trial). JACC Cardiovasc Interv. 2015;8(2):283–291. https://doi.org/10.1016/j.jcin.2014.05.036 PMID: 25596790; Коротких А.В., Бабунашвили А.М. Дистальный лучевой доступ – современные тенденции. Эндоваскулярная хирургия. 2021;8(2):135– 143.; Kiemeneij F. Left distal transradial access in the anatomical snuffbox for coronary angiography (ldTRA) and interventions (ldTRI). EuroIntervention. 2017;13(7):851–857. https://doi.org/10.4244/EIJ-D17-00079 PMID: 28506941; Lee JW, Park SW, Son JW, Ahn SG, Lee SH. Real-world experience of the left distal transradial approach for coronary angiography and percutaneous coronary intervention: a prospective observational study (LeDRA). EuroIntervention. 2018;14(9):e995–e1003. https://doi.org/10.4244/EIJ-D-18-00635 PMID: 30222122; Gasparini GL, Garbo R, Gagnor A, Oreglia J, Mazzarotto P. First prospective multicentre experience with distal transradial approach for coronary chronic total occlusion interventions using a 7 Fr Glidesheath Slender. EuroIntervention. 2019;15(1):126–128. https://doi.org/10.4244/EIJ-D-18-00648 PMID: 30277464; Al-Azizi KM, Grewal V, Gobeil K, Maqsood K, Haider A, Mohani A, et al. The Left Distal Transradial Artery Access for Coronary Angiography and Intervention: A US Experience. Cardiovasc Revasc Med. 2019;20(9):786– 789. https://doi.org/10.1016/j.carrev.2018.10.023 PMID: 30413346; Mizuguchi Y, Izumikawa T, Hashimoto S, Yamada T, Taniguchi N, et al. Efficacy and safety of the distal transradial approach in coronary angiography and percutaneous coronary intervention: a Japanese multicenter experience. Cardiovasc Interv Ther. 2020;35(2):162–167. https://doi.org/10.1007/s12928-019-00590-0 PMID: 31127474; Bi XL, Fu XH, Gu XS, Wang YB, Li W, Wei LY, et al. Influence of Puncture Site on Radial Artery Occlusion After Transradial Coronary Intervention. Chin Med J (Engl). 2016;129(8):898–902. https://doi.org/10.4103/0366-6999.179795 PMID: 27064032; Ziakas A, Koutouzis M, Didagelos M, Tsiafoutis I, Kouparanis A, Gossios T, et al. Right arm distal transradial (snuffbox) access for coronary catheterization: Initial experience. Hellenic J Cardiol. 2020;61(2):106– 109. https://doi.org/10.1016/j.hjc.2018.10.008 PMID: 30389385; Soydan E, Akın M. Coronary angiography using the left distal radial approach – An alternative site to conventional radial coronary angiography. Anatol J Cardiol. 2018;19(4):243–248. https://doi.org/10.14744/AnatolJCardiol.2018.59932 PMID: 29578203; Valsecchi O, Vassileva A, Cereda AF, Canova P, Satogami K, Fiocca L, et al. Early Clinical Experience with Right and Left Distal Transradial Access in the Anatomical Snuffbox in 52 Consecutive Patients. J Invasive Cardiol. 2018;30(6):218–223. PMID: 29543187; Kang JS, Lee TR, Cha WC, Shin TG, Sim MS, Jo IJ, et al. Finger necrosis after accidental radial artery puncture. Clin Exp Emerg Med. 2014;1(2):130–133. https://doi.org/10.15441/ceem.14.045 eCollection 2014 Dec. PMID: 27752565; Al-Azizi KM, Lotfi AS. The distal left radial artery access for coronary angiography and intervention: A new era. Cardiovasc Revasc Med. 2018;19(8S):35–40. https://doi.org/10.1016/j.carrev.2018.03.020 PMID: 29628223; Kontopodis E, Rigatou A, Tsiafoutis I, Lazaris E, Koutouzis M. Snuffbox to the rescue: distal transradial approach for cardiac catheterisation after failed ipsilateral radial puncture. Kardiol Pol. 2018;76(10):1491. https://doi.org/10.5603/KP.2018.0208 PMID: 30338838; Schulte-Hermes M, Klein-Wiele O, Vorpahl M, Seyfarth M. Feasibility of Transradial Access for Coronary Interventions Via Percutaneous Angioplasty of the Radial Artery in Cases of Functional Radial Occlusion. J Invasive Cardiol. 2018;30(10):355–359. PMID: 30108190; Koutouzis M, Kontopodis E, Tassopoulos A, Tsiafoutis I, Katsanou K, Rigatou A, et al. Distal Versus Traditional Radial Approach for Coronary Angiography. Cardiovasc Revasc Med. 2019;20(8):678–680. https://doi.org/10.1016/j.carrev.2018.09.018 PMID: 30314833; Oliveira MDP, Navarro EC, Kiemeneij F. Distal transradial access as default approach for coronary angiography and interventions. Cardiovasc Diagn Ther. 2019;9(5):513–519. https://doi.org/10.21037/cdt.2019.09.06 PMID: 31737522; Kim Y, Lee JW, Lee SY, Bae JW, Lee SJ, Jeong MH, et al. Feasibility of primary percutaneous coronary intervention via the distal radial approach in patients with ST-elevation myocardial infarction. Korean J Intern Med. 2021;36(Suppl 1):S53–S61. https://doi.org/10.3904/kjim.2019.420 PMID: 32122114; Бондарь Н.В., Пушкарев А.И., Лысов С.Е., Поляков К.В., Гончаров Е.И., Коротких А.В., и др. Выполнение диагностической коронарошунтографии через левый трансрадиальный доступ в сравнении с трансфеморальным доступом у пациентов после операции аортокоронарного шунтирования. Оценка эффективности и безопасности. Дальневосточный медицинский журнал. 2016;(2):15–19.; McCarthy DJ, Chen SH, Brunet MC, Shah S, Peterson E, Starke RM. Distal Radial Artery Access in the Anatomical Snuffbox for Neurointerventions: Case Report. World Neurosurg. 2019;122:355–359. https://doi.org/10.1016/j.wneu.2018.11.030 PMID: 30447446; Goland J, Domitrovic L, Doroszuk G, Garbugino S, Ypa P. Distal radial approach for neurointerventional diagnosis and therapy. Surg Neurol Int. 2019;10:211. https://doi.org/10.25259/SNI_410_2019 eCollection 2019. PMID: 31768291; Maitra S, Ray BR, Bhattacharjee S, Baidya DK, Dhua D, Batra RK. Distal radial arterial cannulation in adult patients: A retrospective cohort study. Saudi J Anaesth. 2019;13(1):60–62. https://doi.org/10.4103/sja.SJA_700_18 PMID: 30692890; van Dam L, Geeraedts T, Bijdevaate D, van Doormaal PJ, The A, Moelker A. Distal Radial Artery Access for Noncoronary Endovascular Treatment Is a Safe and Feasible Technique. J Vasc Interv Radiol. 2019;30(8):1281–1285. https://doi.org/10.1016/j.jvir.2019.01.011 PMID: 31142436; https://www.jnmp.ru/jour/article/view/1679

  14. 14
  15. 15
  16. 16
  17. 17
    Academic Journal

    Πηγή: Medical Visualization; Том 26, № 3 (2022); 57-64 ; Медицинская визуализация; Том 26, № 3 (2022); 57-64 ; 2408-9516 ; 1607-0763

    Περιγραφή αρχείου: application/pdf

    Relation: https://medvis.vidar.ru/jour/article/view/1112/750; https://medvis.vidar.ru/jour/article/downloadSuppFile/1112/1427; https://medvis.vidar.ru/jour/article/downloadSuppFile/1112/1428; https://medvis.vidar.ru/jour/article/downloadSuppFile/1112/1429; https://medvis.vidar.ru/jour/article/downloadSuppFile/1112/1430; https://medvis.vidar.ru/jour/article/downloadSuppFile/1112/1433; Jiang X., Li J., Zhang X., Chen H. Acute coronary syndrome in a young woman with a giant coronary aneurysm and mitral valve prolapse: a case report and literature review. J. Int. Med. Res. 2021; 49 (3): 1–8. https://doi.org/10.1177/0300060521999525; Blackman A., Mohammed W. Giant coronary artery aneurysm at autopsy. BMJ Case Rep. 2018; 2018: bcr2017222816. https://doi.org/10.1136/bcr-2017-222816; Baman T.S., Cole J.H., Devireddy C.M., Sperling L.S. Risk factors and outcomes in patients with coronary artery aneurysms. Am. J. Cardiol. 2004; 93: 1549–1551. https://doi.org/10.1016/j.amjcard.2004.03.011; Lazar J.F., Compton M., Li F., Knight P. Excising a giant: report of a 7-cm coronary artery aneurysm. Tex. Heart Inst. J. 2013; 40 (2): 173–175.; Crawley P.D., Mahlow W.J., Huntsinger D.R. et al. Giant coronary artery aneurysms: review and update. Tex. Heart Inst. J. 2014; 41 (6): 603–608. https://doi.org/10.14503/thij-13-3896; ElGuindy M.S., ElGuindy A.M. Aneurismal coronary artery disease: An overview. Global Cardiology Science & Practice. 2017; 26 (3): e201726. https://doi.org/10.21542/gcsp.2017.26; JCS Joint Working Group. Guidelines for diagnosis and management of cardiovascular sequelae in Kawasaki disease. Pediatr. Int. 2005; 47: 711–732. https://doi.org/10.1253/circj.cj-66-0096; Suda K., Iemura M., Nishiono H. et al. Long-term prognosis of patients with Kawasaki disease complicated by giant aneurysms clinical perspective. Circulation. 2011; 123 (17): 1836–1842. https://doi.org/10.1161/circulationaha.110.978213; Keyser A., Hilker M.K., Husser O. et al. Giant coronary aneurysms exceeding 5 cm in size. Interact. Cardiovasc. Thorac. Surg. 2012; 15 (1): 33–36. https://doi.org/10.1093/icvts/ivs111; Mata K.M. et al. In: Novel strategies in ischemic heart disease. Lakshmanadoss U., editor. Intech; 2012; 381–404.; Tuncer E., Onsel Turk U., Alioglu E. Giant saccular aneurysm of the left main coronary artery. J. Geriatr Cardiol. 2013; 10 (1): 110–112. https://doi.org/10.3969/j.issn.1671-5411.2013.01.016; Fang C., Fang Y., Huang Y. et al. Epidemiology and risk factors of coronary artery aneurysm in Taiwan: a population based case control study. BMJ Open. 2017; 7: e014424. https://doi.org/10.1136/bmjopen-2016-014424; Aoki J., Kirtane A., Leon M.B. et al. Coronary Artery Aneurysms After Drug-Eluting Stent Implantation. JACC: Cardiovasc. Interv. 2008; 14–21. https://doi.org/10.1016/j.jcin.2007.10.004; Carino D., Agarwal A., Singh M. et al. Coronary aneurysm: an enigma wrapped in a mystery. Aorta (Stamford). 2019; 7 (3): 71–74. https://doi.org/10.1055/s-0039-1688467; Daniels L.B., Tjajadi M.S., Walford H.H. et al. Prevalence of Kawasaki disease in young adults with suspected myocardial ischemia. Circulation. 2012; 2447–2453. https://doi.org/10.1161/circulationaha.111.082107; Demopoulos V.P., Olympios C.D., Fakiolas C.N. et al. The natural history of aneurysmal coronary artery disease. Heart. 1997; 78 (2): 136–141. https://doi.org/10.1136/hrt.78.2.136; McCrindle B.W., Rowley H.A., Newburger J.W. et al. Diagnosis, treatment, and long-term management of Kawasaki disease: a scientific statement for health professionals from the American Heart Association. Circulation. 2017; 135: 927–999. https://doi.org/10.1161/01.cir.0000145143.19711.78; Dimitrades D. van S-B., Planken R.N., Groenink M. et al. Coronary artery assessment in Kawasaki disease with dual-source CT angiography to uncover vascular pathology. 2020. Eur. Radiol. 2020; 30 (1): 432–441. https://doi.org/10.1007/s00330-019-06367-6; Pham V., Hemptinne Q., Grinda J.M. et al. Giant coronary aneurysms, from diagnosis to treatment: A literature review. Arch. Cardiovasc. Dis. 2020; 113 (1): 59–69. https://doi.org/10.1016/j.acvd.2019.10.008; Черногривов А.Е., Черногривов И.Е., Базылев В.В. Аномальное отхождение левой коронарной артерии от правой ветви легочной артерии. Грудная и сердечнососудистая хирургия. 2016; 58 (5): 258–267.; Парамонова Т.И., Бурко П.А., Венедиктова Н.В. Аневризма ствола левой коронарной артерии (клиническое наблюдение). Диагностическая и интервенционная радиология. 2019; 13 (2): 66–73.; Kawsara A., Núñez Gil I.J., Alqahtani F. et al. Management of Coronary Artery Aneurysms. JACC: Cardiovasc. Interv. 2018; 1211–1223. https://doi.org/10.1016/j.jcin.2018.02.041; Kitamura S., Tsuda E., Kobayashi J. et al. Twenty-five-year outcome of pediatric coronary artery bypass surgery for Kawasaki disease. Circulation. 2009; 120 (1): 60–68. https://doi.org/10.1161/circulationaha.108.840603; Yamauchi H., Ochi M., Fujii M. Optimal time of surgical treatment for Kawasaki coronary artery disease. J. Nippon Med. Sch. 2004; 71 (4): 279–286. https://doi.org/10.1272/jnms.71.279; https://medvis.vidar.ru/jour/article/view/1112

  18. 18
    Academic Journal

    Πηγή: Medical Visualization; Том 26, № 2 (2022); 113-124 ; Медицинская визуализация; Том 26, № 2 (2022); 113-124 ; 2408-9516 ; 1607-0763

    Περιγραφή αρχείου: application/pdf

    Relation: https://medvis.vidar.ru/jour/article/view/986/727; https://medvis.vidar.ru/jour/article/downloadSuppFile/986/1051; https://medvis.vidar.ru/jour/article/downloadSuppFile/986/1052; https://medvis.vidar.ru/jour/article/downloadSuppFile/986/1053; https://medvis.vidar.ru/jour/article/downloadSuppFile/986/1054; https://medvis.vidar.ru/jour/article/downloadSuppFile/986/1055; https://medvis.vidar.ru/jour/article/downloadSuppFile/986/1056; https://medvis.vidar.ru/jour/article/downloadSuppFile/986/1057; https://medvis.vidar.ru/jour/article/downloadSuppFile/986/1058; https://medvis.vidar.ru/jour/article/downloadSuppFile/986/1059; https://medvis.vidar.ru/jour/article/downloadSuppFile/986/1060; Архипова И.М., Мершина Е.А., Синицын В.Е. Роль КТкоронарографии в диагностике ИБС на амбулаторном этапе. Поликлиника. 2013; (3–1).; Iribarren C., Molloi S. Breast Arterial Calcification: a New Marker of Cardiovascular Risk? Curr. Cardiovasc. Risk Rep. 2013; 7 (2): 126–135. http://doi.org/10.1007/s12170-013-0290-4; Chadashvili T., Litmanovich D., Hall F., Slanetz P.J. Do breast arterial calcifications on mammography predict elevated risk of coronary artery disease? Eur. J. Radiol. 2016; 85 (6): 1121–1124. http://doi.org/10.1016/j.ejrad.2016.03.006; Breast Imaging Reporting & Data System. https://www.acr.org/Clinical-Resources/Reporting-and-Data-Systems/Bi-Rads; Crystal P., Zelingher J., Crystal E. Breast arterial calcifications as a cardiovascular risk marker in women. Expert Rev. Cardiovasc. Ther. 2004; 2 (5): 753–760. http://doi.org/10.1586/14779072.2.5.753; Amann K. Media calcification and intima calcification are distinct entities in chronic kidney disease. Clin. J. Am. Soc. Nephrol. 2008; 3 (6): 1599–1605. http://doi.org/10.2215/CJN.02120508; Duhn V., D’Orsi E.T., Johnson S. et al. Breast arterial calcification: a marker of medial vascular calcification in chronic kidney disease. Clin. J. Am. Soc. Nephrol. 2011; 6 (2): 377–382. http://doi.org/10.2215/CJN.07190810; Hendriks E.J.E., de Jong P.A., van der Graaf Y. et al. Breast arterial calcifications: a systematic review and meta-analysis of their determinants and their association with cardiovascular events. Atherosclerosis. 2015; 239 (1): 11–20. http://doi.org/10.1016/j.atherosclerosis.2014.12.035; Mostafavi L., Marfori W., Arellano C. et al. Prevalence of coronary artery disease evaluated by coronary CT angiography in women with mammographically detected breast arterial calcifications. PloS One. 2015; 10 (4): e0122289. http://doi.org/10.1371/journal.pone.0122289; Bui Q.M., Daniels L.B. A Review of the Role of Breast Arterial Calcification for Cardiovascular Risk Stratification in Women. Circulation. 2019; 139 (8): 1094–1101. http://doi.org/10.1161/CIRCULATIONAHA.118.038092; Matsumura M.E., Maksimik C., Martinez M.W. et al. Breast artery calcium noted on screening mammography is predictive of high risk coronary calcium in asymptomatic women: a case control study. VASA Z. Gefasskrankheiten. 2013; 42 (6): 429–433. http://doi.org/10.1024/0301-1526/a000312; Margolies L., Salvatore M., Hecht H.S. et al. Digital Mammography and Screening for Coronary Artery Disease. JACC Cardiovasc. Imaging. 2016; 9 (4): 350–360. http://doi.org/10.1016/j.jcmg.2015.10.022; Yoon Y.E., Kim K.M., Han J.S. et al. Prediction of Subclinical Coronary Artery Disease With Breast Arterial Calcification and Low Bone Mass in Asymptomatic Women: Registry for the Women Health Cohort for the BBC Study. JACC Cardiovasc. Imaging. 2019; 12 (7 Pt 1): 1202–1211. http://doi.org/10.1016/j.jcmg.2018.07.004; МУ 2.6.1.2944–11 Контроль эффективных доз облучения пациентов при проведении медицинских рентгенологических исследований (с изменениями) от 19 июля 2011. docs.cntd.ru; Jiang X., Clark M., Singh R.K. et al. Association of breast arterial calcification with stroke and angiographically proven coronary artery disease: a meta-analysis. Menopause. 2015; 22 (2): 136–143. http://doi.org/10.1097/gme.0000000000000300; Newallo D., Meinel F.G., Schoepf U.J. et al. Mammographic detection of breast arterial calcification as an independent predictor of coronary atherosclerotic disease in a single ethnic cohort of African American women. Atherosclerosis. 2015; 242 (1): 218–221. http://doi.org/10.1016/j.atherosclerosis.2015.07.004; Moradi M., Adibi A., Abedi M. Relationship between breast arterial calcification on mammography with CT Calcium scoring and coronary CT angiography results. Advanced Biomed. Res. 2014; 3. http://doi.org/10.4103/2277-9175.127992; Sedighi N., Radmard A.R., Radmehr A. et al. Breast arterial calcification and risk of carotid atherosclerosis: focusing on the preferentially affected layer of the vessel wall. Eur. J. Radiol. 2011; 79 (2): 250–256. http://doi.org/10.1016/j.ejrad.2010.04.007; Iribarren C., Go A.S., Tolstykh I. et al. Breast vascular calcification and risk of coronary heart disease, stroke, and heart failure. J. Women's Health. 2004; 13 (4): 381–389. http://doi.org/10.1089/154099904323087060; Schnatz P.F., Marakovits K.A. O'Sullivan D.M. The association of breast arterial calcification and coronary heart disease. Obst. Gynecol. 2011; 117 (2): 233–241. http://doi.org/10.1097/aog.0b013e318206c8cb; Bairey Merz C.N., Shaw L.J., Reis S.E. et al. Insights from the NHLBI-Sponsored Women’s Ischemia Syndrome Evaluation (WISE) Study: Part II: gender differences in presentation, diagnosis, and outcome with regard to gender-based pathophysiology of atherosclerosis and macrovascular and microvascular coronary disease. J. Am. Coll. Cardiol. 2006; 47 (3, Suppl.): S21–29. http://doi.org/10.1016/j.jacc.2004.12.084; https://medvis.vidar.ru/jour/article/view/986

  19. 19
    Academic Journal

    Πηγή: Aterotromboz = Atherothrombosis; Том 12, № 1 (2022); 70-82 ; Атеротромбоз; Том 12, № 1 (2022); 70-82 ; 2658-5952 ; 2307-1109 ; 10.21518/2307-1109-2022-1

    Περιγραφή αρχείου: application/pdf

    Relation: https://www.aterotromboz.ru/jour/article/view/272/289; Aboyans V., Ricco J.-B., Bartelink M.-L.E.L., Björck M., Brodmann M., Cohnert T. et al. 2017 ESC Guidelines on the Diagnosis and Treatment of Peripheral Arterial Diseases, in collaboration with the European Society for Vascular Surgery (ESVS): Document covering atherosclerotic disease of extracranial carotid and vertebral, mesenteric, renal, upper and lower extremity arteries Endorsed by: the European Stroke Organization (ESO)The Task Force for the Diagnosis and Treatment of Peripheral Arterial Diseases of the European Society of Cardiology (ESC) and of the European Society for Vascular Surgery (ESVS). Eur Heart J. 2018;39(9):763–816. https://doi.org/10.1093/eurheartj/ehx095.; Рекомендации ESC/EACTS по реваскуляризации миокарда 2018. Российский кардиологический журнал. 2019;(8):151–226. https://doi.org/10.15829/1560-4071-2019-8-151-226.2018; Алекян Б.Г., Покровский А.В., Карапетян Н.Г., Ревишвили А.Ш. Мультидисциплинарный подход в определении частоты выявления ишемической болезни сердца и стратегии лечения у пациентов с патологией аорты и периферических артерий. Российский кардиологический журнал. 2019;(8):8–16. https://doi.org/10.15829/1560-4071-2019-8-8-16.; Былов К.В., Дроздов С.А., Дундуа Д.П., Бабунашвили А.М., Карташов Д.В., Кавтеладзе З.А. Место ангиопластики при лечении окклюзированных (длиной более 10 см) бедренных артерий. Международный журнал интервенционной кардиоангиологии. 2004;(5):26–31. Режим доступа: https://cyberleninka.ru/article/n/mestoangioplastiki-pri-lechenii-okklyuzirovannyh-dlinoy-bolee-10-sm-bedrennyh-arteriy/viewer.; Сандриков В.А., Кулагина Т.Ю., Варданян А.А., Гаврилов А.В., Архипов И.В. Новый подход к оценке систолической и диастолической функций левого желудочка у больных ишемической болезнью сердца. Ультразвуковая и функциональная диагностика. 2007;(1):44–54. Режим доступа: http://vidar.ru/article.asp?fid=USFD_2007_1_44.; Banerjee A., Newman D.R., van den Bruel A., Heneghan C. Diagnostic accuracy of exercise stress testing for coronary artery disease: a systematic review and meta-analysis of prospective studies. Int J Clin Pract. 2012;66(5):477–492. https://doi.org/10.1111/j.1742-1241.2012.02900.x.; Корок Е.В., Сумин А.Н., Синьков М.А., Нагирняк О.А., Чичкова Т.Ю., Барбараш Л.С. Частота выявления интактных коронарных артерий в зависимости от показаний для плановой коронарной ангиографии. Российский кардиологический журнал. 2016;(2):52–59. https://doi.org/10.15829/1560-4071-2016-2-52-59.; Dormandy J., Mahir M., Ascady J., Balsano F., De Leeuw P., Blombery P. et al. Fate of the patients with chronic leg ischemia. A review article. J Cardiovasc Surg (Torino). 1989;30(1):50–57. Available at: https://pubmed.ncbi.nlm.nih.gov/2647761/.; Покровский А.В., Акчурин Р.С., Алекян Б.Г., Апханова Т.В., Аракелян В.С., Ахмеджанов Н.М. и др. Национальные рекомендации по ведению пациентов с заболеваниями артерий нижних конечностей. М.; 2019. 89 с. Режим доступа: https://www.angiolsurgery.org/library/recommendations/2019/recommendations_LLA_2019.pdf.; Окороков А.Н. Диагностика болезней внутренних органов. М.: Медицинская литература; 2002. 464 с.; Оболенский В.Н., Яншин Д.В., Исаев Г.А., Плотников А.А. Хронические облитерирующие заболевания артерий нижних конечностей – диагностика и тактика лечения. РМЖ. 2010;18(17):1049–1054. Режим доступа: https://www.rmj.ru/articles/khirurgiya/Hronicheskie_obliteriruyuschie_zabolevaniya_arteriy__nighnih_konechnostey__diagnostika_i_taktika_lecheniya/; Рекомендации ЕОК/ЕОСХ по диагностике и лечению заболеваний периферических артерий 2017. Российский кардиологический журнал. 2018;(8):164–221. https://doi.org/10.15829/1560-4071-2018-8-164-221.; Abola M.T.B., Golledge J., Miyata T., Rha S.-W., Yan B.P., Dy T.C. et al. Asia-Pacific Consensus Statement on the Management of Peripheral Artery Disease: A Report from the Asian Pacific Society of Atherosclerosis and Vascular Disease Asia-Pacific Peripheral Artery Disease Consensus Statement Project Committee. J Atheroscler Thromb. 2020;27(8):809–907. https://doi.org/10.5551/jat.53660.; Fleisher L.A., Fleischmann K.E., Auerbach A.D., Barnason S.A., Beckman J.A., Bozkurt B. et al. 2014 ACC/AHA guideline on perioperative cardiovascular evaluation and management of patients undergoing noncardiac surgery: a report of the American College of Cardiology/American Heart Association Task Force on Practice Guidelines. Circulation. 2014;130(24):e278–e333. https://doi.org/10.1161/CIR.0000000000000105.; Satiroglu O., Kocaman S.A., Karadag Z., Temiz A., Çetin M., Canga A. et al. Relationship of the angiographic extent of peripheral arterial disease with coronary artery involvement. J Pak Med Assoc. 2012;62(7):644–649. Available at: https://pubmed.ncbi.nlm.nih.gov/23866506/.; Chen I.-Ch., Lee Ch.-H., Chao T.-H., Tseng W.-K., Lin T.-H., Chung W.-J. et al. Impact of routine coronary catheterization in low extremity artery disease undergoing percutaneous transluminal angioplasty: study protocol for a multi-center randomized controlled trial. Trials. 2016;17(1):112. https://doi.org/10.1186/s13063-016-1237-0.; Cho S.W., Kim B.G., Kim D.H., Kim B.O., Byun Y.S., Rhee K.J. et al. Prediction of Coronary Artery Disease in Patients With Lower Extremity Peripheral Artery Disease. J Int Heart. 2015;56(2):209–212. https://doi.org/10.1536/ihj.14-284.; Vuruskan E., Saracoglu E., Polat M., Duzen I.V. Prediction of coronary artery disease severity in lower extremity artery disease patients: A correlation study of TASC II classification, Syntax and Syntax II scores. Cardiol J. 2017;24(5):495–501. https://doi.org/10.5603/CJ.a2017.0033.; Krievins D., Zellans E., Latkovskis G., Erglis A., Zvaigzne L., Kumsars I. et al. Pre-operative Diagnosis of Silent Coronary Ischaemia May Reduce Post-operative Death and Myocardial Infarction and Improve Survival of Patients Undergoing Lower Extremity Surgical Revascularisation. Eur J Vasc Endovasc Surg. 2020;60(3):411–420. https://doi.org/10.1016/j.ejvs.2020.05.027.; https://www.aterotromboz.ru/jour/article/view/272

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