Диссертация (1140697), страница 18
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1963–1969.131. Porcine coronary imaging in vivo by optical coherence tomography / G.Tearney, I. Jang, D. Kang (et al.) // Acta Cardiol. – 2000. – Vol. 55. – P. 233–237.132. Prevalence and characteristics of TCFA and degree of coronary arterystenosis: an OCT, IVUS, and angiographic study / J. Tian, H. Dauerman, C. Toma(et al.) // J. Am. Coll. Cardiol. – 2014. – Vol. 64, № 7. – P. 672-680.133. Prevalence and predictors of culprit plaque rupture at OCT in patientswith coronary artery disease: a meta-analysis / M. Iannaccone, G.
Quadri, S. Taha(et al.) // Eur. Heart J. Cardiovasc. Imaging. – 2016. – Vol. 17, № 10. – P. 1128-37.134. Prognostic influence of increased fibrinogen and C-reactive proteinlevels in unstable coronary artery disease / H. Toss, B. Lindah, A. Siegbahn, L.Wallentin // Circulation. – 1997. – Vol. 96.
– P. 4204-4210.135. Prognostic significance of the long pentraxin PTX3 in acute myocardialinfarction / R. Latini, A.P. Maggioni, G. Peri (et al.) // Circulation. – 2004. – Vol.110. – P. 2349—54.136. Prognostic value of pentraxin-3 level in patients with STEMI and itsrelationship with heart failure and markers of oxidative stress / M. Tomandlova, J.Jarkovsky, J. Tomandl (et al.) // Dis.
Markers. – 2015. – 2015. – P. 159051.125137. Prospective application of pre-defined intravascular ultrasound criteriafor assessment of intermediate left main coronary artery lesions results from themulticenter LITRO study / J.M. de la Torre Hernandez, F. Hernández Hernandez, F.Alfonso (et al.) // J. Am.
Coll. Cardiol. – 2011. – Vol. 58. – P. 351–58.138. PTX3, A prototypical long pentraxin, is an early indicator of acutemyocardial infarction in humans / G. Peri, M. Introna, D. Corradi (et al.) //Circulation. – 2000. – Vol. 102, № 6. – P. 636-41.139. Quantification of macrophage content in atherosclerotic plaques byoptical coherence tomography / G. Tearney, H. Yabushita, S.
Houser (et al.) //Circulation. – 2003. – Vol. 107. – P. 113-119.140. Recommendations for the use of cardiac troponin measurement in acutecardiac care / K. Thygesen, J. Mair, H. Katus (et al.) // Eur. Heart J. – 2010. – Vol.31, № 18. – P. 2197-204.141. Relation of ruptured plaque culprit lesion phenotype and outcomes inpatients with ST elevation acute myocardial infarction / S.W. Kim, Y.J. Hong, G.S.Mintz (et al.) // Am.
J. Cardiol. – 2012. – Vol. 109, № 6. – P. 794-9.142. Relationship between a systemic inflammatory marker, plaqueinflammation, and plaque characteristics determined by intravascular opticalcoherence tomography / O. Raffel, G. Tearney, D. Gauthier (et al.) // Arterioscler.Thromb. Vasc. Biol. – 2007. – Vol. 27, № 8. – P. 1820-1827.143. Relationship between high sensitive C reactive protein and coronaryplaque component in patients with acute coronary syndrome: Virtual Histologystudy / T. Sawada, J. Shite, T. Shinke (et al.) // J. Cardiol.
– 2006. – Vol. 48, № 3. –P. 141-150.144. Relationship of thrombus healing to underlying plaque morphology insudden coronary death / M.C. Kramer, S.Z. Rittersma, R.J. de Winter (et al.) // J.Am. Coll. Cardiol. – 2010. – Vol. 55. – P. 122-132.145. Relationships of elevated systemic pentraxin-3 levels with high-riskcoronary plaque components and impaired myocardial perfusion after percutaneous126coronary intervention in patients with ST-elevation acute myocardial infarction / S.Kimura, H. Inagaki, G. Haraguchi (et al.) // Circ. J.
– 2014. – Vol. 78, № 1. – P.159-69.146. Reproducibility of coronary optical coherence tomography for lumenand length measurements in humans / F. Sedele, G. Biondi-Zoccai, P. Kwiatkowski(et al.) // Am. J. Cardiol. – 2012. – Vol. 110, № 8. – P. 1106-12.147. Residual atherothrombotic material after stenting in acute myocardialinfarction--an optical coherence tomographic evaluation / M.
Magro, E. Regar, J.L.Gutiérrez-Chico (et al.) // Int. J. Cardiol. – 2013. – Vol. 167, № 3. – P. 656-63.148. Samoszuk, M. Effects of human mast cell tryptase and eosinophilgranule proteins on the kinetics of blood clotting / M. Samoszuk, M. Corwin, S.L.Hazen // Am. J. Hematol. – 2003. – Vol.
73. – P. 18-25.149. Serum pentraxin 3 levels are associated with the complexity andseverity of coronary artery disease in patients with stable angina pectoris / M.F.Karakas, E. Buyukkaya, M. Kurt (et al.) // J. Investig. Med. – 2013. – Vol. 61, № 2.– P. 278-85.150. Significance of intraplaque neovascularisation for vulnerability: opticalcoherence tomography study / J. Tian, J.
Hou, L. Xing (et al.) // Heart. – 2012. –Vol. 98, № 20. – P. 1504-9.151. Site of intimal rupture or erosion of thrombosed coronaryatherosclerotic plaques is characterized by an inflammatory process irrespective ofthe dominant plaque morphology / A.C. van der Wal, A.E.
Becker, C.M. van derLoos (et al.) // Circulation. – 1994. – Vol. 89, № 1. – P. 36-44.152. Srikanth, S. Pathophysiology of coronary thrombus formation andadverse consequences of thrombus during PCI / S. Srikanth, J.A. Ambrose // Curr.Cardiol. Rev. – 2012. – Vol. 8, № 3.
– P. 168-76.153. SYNTAXScoreandPre-andPoststentOpticalCoherenceTomography Findings in the Left Anterior Descending Coronary Artery in PatientsWith Stable Angina Pectoris / K.L. Bryniarski, D.L. Walters, C.J. Kim (et al.) //Am. J. Cardiol. – 2017. – Vol. 120, № 6. – P. 898-903.127154. The humoral pattern recognition receptor PTX3 is stored in neutrophilgranules and localizes in extracellular traps / S. Jaillon, G. Peri, Y.
Delneste (et al.)// J. Exp. Med. – 2007. – Vol. 204, № 4. – P. 793-804.155. The inflammatory protein Pentraxin 3 in cardiovascular disease / F.Fornai, A. Carrizzo, M. Forte (et al.) // Immun. Ageing. – 2016. – Vol. 13, № 1. – P.25. doi: 10.1186/s12979-016-0080-1.156.
The pathogenesis of coronary artery disease and the acute coronarysyndromes / V. Fuster, L. Badimon, J.J. Badimon, J.H. Chesebro // N. Engl. J. Med.– 1992. – Vol. 326, № 4. – P. 242-50.157. The prognostic value of B-type natriuretic peptide in patients with acutecoronary syndromes / J.A. de Lemos, D.A. Morrow, J.H. Bentley (et al.) // N. Engl.J. Med. – 2001. – Vol. 345.
– P. 1014–1021.158. The prognostic value of C-reactive protein and serum amyloid a proteinin severe unstable angina / G. Liuzzo, L.M. Biasucci, J.R. Gallimore (et al.) // N.Engl. J. Med. – 1994. – Vol. 331. – P. 417–424.159. The significance of persistent ST elevation versus early resolution ofST segment elevation after primary PTCA / S. Matetzky, M. Novikov, L. Gruberg(et al.) // J. Am. Coll. Cardiol. – 1999. – Vol.
34, № 7. – P. 1932-8.160. Thrombolysis in Myocardial Infarction (TIMI) Trial, Phase I: Acomparison between intravenous tissue plasminogen activator and intravenousstreptokinase. Clinical findings through hospital discharge / J.H. Chesebro, G.Knatterud, R. Roberts (et al.) // Circulation. – 1987. – Vol. 76, № 1. – P. 142-54.161. Thrombus burden and myocardial damage during primary percutaneouscoronary intervention / M. Napodano, G. Dariol, A.H. Al Mamary (et al.) // Am. J.Cardiol. – 2014.
– Vol. 113, № 9. – P. 1449-56.162. TLR2 and neutrophils potentiate endothelial stress, apoptosis anddetachment: implications for superficial erosion / T. Quillard, H.A. Araújo, G.Franck (et l.) // Eur. Heart J. – 2015. – Vol. 36, № 22. – P. 1394-404.128163. TOTAL Investigators. Randomized trial of primary PCI with or withoutroutine manual thrombectomy / S.S. Jolly, J.A. Cairns, S. Yusuf (et al.) // N. Engl. J.Med. – 2015. – Vol. 372, № 15.
– P. 1389-98.164. Troponin and C-reactive protein have different relations to subsequentmortality and myocardial infarction after acute coronary syndrome: a GUSTO-IVsubstudy / S.K. James, P. Armstrong, E. Barnatan (et al.) // J. Am. Coll. Cardiol.
–2003. – Vol. 41. – P. 916–924.165. Type 2 diabetes mellitus is associated with a lower fibrous capthickness but has no impact on calcification morphology: an intracoronary opticalcoherence tomography study / A. Milzi, M. Burgmaier, K. Burgmaier (et al.) //Cardiovasc. Diabetol. – 2017. – Vol. 16, № 1. – P. 152. doi: 10.1186/s12933-0170635-2.166.
Update on acute coronary syndromes: the pathologists’ view / E. Falk,M. Nakano, J.F. Bentzon (et al.) // Eur. Heart J. – 2013. – Vol. 34. – P. 719–28.167. Visualization of coronary atherosclerotic plaques in patients usingoptical coherence tomography: comparison with intravascular ultrasound / I.K. Jang,B.E. Bouma, D.H.
Kang (et al.) // J. Am. Coll. Cardiol. – 2002. – Vol. 39, № 4. – P.604-9.168. Visualization of tissue prolapse between coronary stent struts by opticalcoherence tomography: comparison with intravascular ultrasound / I.K. Jang, G.Tearney, B. Bouma (et al.) // Circulation. – 2001.
– Vol. 104, № 22. – P. 2754.169. Willerson, J.T. Inflammation as a cardiovascular risk factor / J.T.Willerson, P.M. Ridker // Circulation. – 2004. – Vol. 109, № 21 Suppl. 1. – P. II210.170. Yang, W. Characterization of plaques using 18F-FDG PET/CT inpatients with carotid atherosclerosis and correlation with matrix metalloproteinase-1/ W. Yang // J. Nucl. Med.
– 2007. – Vol. 48. – P. 227–233.129.