Grossman W., Barry W.H. Diastolic pressure—volume relations in the diseased heart. Fed. Proc. 1980; 39: 148-55.
Vasan R.S., Larson M.G., Benjamin E.J. et al. Congestive heart failure in subjects with normal versus reduced left ventricular ejection fraction: prevalence and mortality in a population-based cohort. J. Am. Coll. Cardiol. 1999; 33: 1948-55.
Tsang T.S., Barnes M.E., Gersh B.J. et al. Left atrial volume as a morphophysiologic expression of left ventricular diastolic dysfunction and relation to cardiovascular risk burden. Am. J. Cardiol. 2002; 90: 1284-9.
Nishimura R.A., Tajik A.J. Evaluation of diastolic filling of left ventricle in health and disease: Doppler echocardiography is the clinician’s Rosetta Stone. J. Am. Coll. Cardiol. 1997; 30: 8-18.
Nagueh S.F., Kopelen H.A., Quinones M.A. Doppler estimation of left ventricular filling pressure in patients with atrial fibrillation. Circulation. 1996; 94: 2138-45.
Brun P., Tribouilloy C., Duval A.M. et al. Left ventricular flow propagation during early filling is related to wall relaxation: a color M-mode Doppler
analysis. J. Am. Coll. Cardiol. 1992; 20: 420-32.
Garcia M.J., Ares M.A., Asher C. et al. An index of early left ventricular filling that combined with pulsed Doppler peak E velocity may estimate capillary wedge pressure. J. Am. Coll. Cardiol. 1997; 29: 448-54.
Stugaard M., Risoe C., Ihlen H. et al. Intracavitary filling pattern in the failing left ventricle assessed by color M-mode Doppler echocardiography. J. Am. Coll. Cardiol. 1994; 24: 663-70.
Steine K., StugaardM., Smiseth O.A. Mechanisms of retarded apical filling in acute ischemic left ventricular failure. Circulation. 1999; 99: 2048-54.
Аверина И.И. Оценка ремоделирования левого желудочка у пациентов с аортальными пороками до и после оперативного лечения: Д иа ... канд. мед. наук. М.; 2008.
Бокерия Л.А., Бокерия О.Л., Макаренко В.Н. и др. Использование показателей ремоделирования в качестве предикторов сохранения сердечной недостаточности в послеоперационном периоде у пациентов с аортальными пороками. Бюллетень НЦССХ им. А.Н. Бакулева РАМН. 2008; 9 (3, Прилож.): 21.
Какучая Т.Т. Тканевой допплер, деформация и скорость деформации миокарда в оценке функции миокарда - концептуальные технические основы и применение в клинике. Креативная кардиология. 2008; 1: 73-93.
Nagueh S.F., Middleton K.J., Kopelen H.A. et al. Doppler tissue imaging: a noninvasive technique for evaluation of left ventricular relaxation and estimation of filling pressures. J. Am. Coll. Cardiol. 1997; 30: 1527-33.
Ommen S.R., Nishimura R.A., Appleton C.P. et al. Clinical utility of Doppler echocardiography and tissue Doppler imaging in the estimation of left ventricular filling pressures: a comparative simultaneous Doppler-catheterization study. Circulation. 2000; 102: 1788-94.
Nagueh S.F., Mikati I., Kopelen H.A. et al. Doppler estimation of left ventricular filling pressure in sinus tachycardia. A new application of tissue Doppler imaging. Circulation. 1998; 98: 1644-50.
Rivas-Gotz C., Manolios M., Thohan V. et al. Impact of left ventricular ejection fraction on estimation of left ventricular filling pressures using tissue Doppler and flow propagation velocity. Am. J. Cardiol. 2003; 91: 780-4.
Sohn D.W., Kim Y.J., Kim H.C. et al. Evaluation of left ventricular diastolic function when mitral E and A waves are completely fused: role of assessing mitral annulus velocity. J. Am. Soc. Echocardiogr. 1999; 12: 203-8.
Sohn D.W., Song J.M., Zo J.H. et al. Mitral annulus velocity in the evaluation of left ventricular diastolic function in atrial fibrillation. J. Am. Soc.
Echocardiogr. 1999; 12: 927-31.
Nagueh S.F., Lakkis N.M., Middleton K.J. et al. Doppler estimation of left ventricular filling pressures in patients with hypertrophic cardiomyopathy. Circulation. 1999; 99: 254-61.
Sundereswaran L., Nagueh S.F., Vardan S. et al. Estimation of left and right ventricular filling pressures after heart transplantation by tissue Doppler imaging. Am. J. Cardiol. 1998; 82: 352-7.
Firstenberg M.S., Levine B.D., Garcia M.J. et al. Relationship of echocardiographic indices to pulmonary capillary wedge pressures in healthy volunteers. J. Am. Coll. Cardiol. 2000; 36: 1664-9.
Nagueh S.F., Sun H., Kopelen H.A. et al. Hemodynamic determinants of the mitral annulus diastolic
velocities by tissue Doppler. J. Am. Coll. Cardiol. 2001; 37: 278-85.
Hasegawa H., Little W.C., Ohno M. et al. Diastolic mitral annular velocity during the development of heart failure. J. Am. Coll. Cardiol. 2003; 41: 1590-7.
Nagueh S.F., Rao L., Soto J. et al. Haemodynamic insights into the effects of ischaemia and cycle length on tissue Doppler-derived mitral annulus diastolic velocities. Clin. Sci. (Lond.). 2004; 106: 147-54.
Беленков Ю.Н., Мареев В.Ю., Агеев Ф.Т. Хроническая сердечная недостаточность. Избранные лекции по кардиологии. М.: ГЭОТАР - Медиа; 2006.
Алехин М.Н. Тканевой допплер в клинической эхокардиографии. Монография. М.: МедиаСфера; 2005.
Diwan A., McCulloch M., Lawrie G. et al. Doppler estimation of left ventricular filling pressures in patients with mitral valve disease. Circulation. 2005; 111: 3281-9.
Bruch C., Stypmann J., Gradaus R. et al. Usefulness of tissue Doppler imaging for estimation of filling pressures in patients with primary or secondary pure mitral regurgitation. Am. J. Cardiol. 2004; 83: 324-8.
Rivas-Gotz C., Khoury D.S., Manolios M. et al. Time interval between onset of mitral inflow and onset of early diastolic velocity by tissue Doppler: a novel index of left ventricular relaxation: experimental studies and clinical application. J. Am. Coll. Cardiol. 2003; 42: 1463-70.
Oki T., Tabata T., Yamada H. et al. Left ventricular diastolic properties of hypertensive patients measured by pulsed tissue Doppler imaging. J. Am. Soc. Echocardiogr. 1998; 11: 1106-12.
Agricola E., Galderisi M., Oppizzi M. et al. Afieri pulsed tissue Doppler imaging detects early myocardial dysfunction in asymptomatic patients
with severe mitral regurgitation. Heart. 2004; 90: 406-10.
Przewlocka-Kosmala M., Kosmala W., Mazurek W. Left ventricular circumferential function in patients with essential hypertension. J. Hum. Hypertens. 2006; 20: 666-71.
Steine K., Larsen J.R., Stugaard M. et al. Left ventricular systolic impairment in patients with asymptomatic coronary heart disease and type 1 diabetes is related to coronary atherosclerosis, glycaemic control and advanced glication endproducts. Eur. J. Heart Fail. 2007; 9: 1044-50.
Hansen A., Johansson B.L., Wahren J. et al. C-peptide exerts beneficial effects on myocardial blood flow and function in patients with type 1 diabetes. Diabetes. 2002; 51: 3077-82.
Fang Z.Y., Yuda S., Anderson V. et al. Echocardiographic detection of early diabetic myocardial disease. J. Am. Coll. Cardiol. 2003; 41: 611-7.
Garcia-Fernandez M.A., Azevedo J., Moreno M. Regional diastolic function in ischaemic heart disease using pulsed wave Doppler tissue imaging. Eur. Heart J. 1999; 20: 496-505.
Bountioukos M., SchincelA.F., Bax J.J. et al. Pulsed wave tissue Doppler imaging for the quantification of contractile reserve in stunned, hibernation and scarred myocardium. Heart. 2004; 90: 506—10.
MogelvangR., SogaardP., Pedersen S.A. et al. Tissue Doppler echocardiography in persons with hypertension, diabetes, or ischaemic heart disease: the Copenhagen City Heart Study. Eur. Heart J. 2009; 30: 731-9.
Бокерия О.Л., Аверина И.И., Берсенева М .И .и др. Возможности тканевого допплера в раннем выявлении дисфункции миокарда у лиц с сердечно-сосудистыми заболеваниями. Бюллетень НЦССХ им. А.Н. Бакулева РАМН. 2011; 12 (3): 21-31.
Алехин М.Н. Ультразвуковые методики оценки деформации миокарда и их клиническое значение. Клиническое значение показателей деформации и вращения миокарда (лекция 3). Ультразвуковая и функциональная диагностика. 2012; 1: 95-114.
Бокерия О.Л., Мироненко М.Ю., Шадания Я.Р. Отбор пациентов на сердечную ресинхронизирующую терапию с использованием современных методов эхокардиографической оценки механической и электромеханической диссинхронии. Анналы аритмологии. 2011; 2: 24-9.
Fraser A.G. Echocardiographic epidemiology — an emerging tool for early diagnosis, studying pathophysiology, predicting prognosis and testing treatments. Eur. Heart J. 2009; 30: 642—4.
Алехин М.Н. Ультразвуковые методики оценки деформации миокарда и их клиническое значение, двухмерное отслеживание пятен серой шкалы ультразвукового изображения миокарда в оценке его деформации и скручивания (лекция 2). Ультразвуковая и функциональная диагностика. 2011; 3: 107—20.
Van der Rest M., Garrone R. Collagen family of proteins. FASEB J.1991; 5: 2814-23.
Carver W., Nagpal M.L., Nachtigal M. et al. Collagen expression in mechanically stimulated cardiac fibroblasts. Circ. Res. 1991; 69: 116-22.
Krayenbuehl H.P., Hess O.M., Monrad E.S. et al. Left ventricular myocardial structure in aortic valve disease before, intermediate, and late after
aortic valve replacement. Circulation. 1989; 79: 744-55.
Picano E., Pelosi G., Marzilli M. In vivo quantitative ultrasonic evaluation of myocardial fibrosis in humans. Circulation. 1990; 81: 58-64.
Lin Y.H., Shiau Y.C., Yen R.F. The relation between myocardial cyclic variation of integrated backscatter and serum concentrations of procollagen propeptides in hypertensive patients. Ultrasound Med. Biol. 2004; 30: 885-91.
Ferri C., Di Bello V., Martini A. Heart involvement in systemic sclerosis: an ultrasonic tissue characterisation study. Ann. Rheum. Dis. 1998; 57: 296-302.
Fang Z.Y., Leano R., Marwick T.H. Relationship between longitudinal and radial contractility in subclinical diabetic heart disease. Clin. Sci. (Lond.). 2004; 106: 53-60.
Fang Z.Y., Schull-Meade R., Downey M. et al. Determinants of subclinical diabetic heart disease. Diabetologia. 2005; 48: 394-402.
Shan K., BickR.J., PoindexterB.J. Relation of tissue Doppler derived myocardial velocities to myocardial structure and beta-adrenergic receptor density in humans. J. Am. Coll. Cardiol. 2000; 36: 891-6.
Mori K., Hayabuchi Y., Inoue M. Myocardial strain imaging for early detection of cardiac involvement in patients with Duchenne’s progressive muscular dystrophy. Echocardiography. 2007; 24: 598-608.
Mottram P.M., Haluska B., Leano R. et al. Effect of aldosterone antagonism on myocardial dysfunction in hypertensive patients with diastolic heart failure. Circulation. 2004; 110: 558-65.
Weidemann F., Niemann M., Herrmann S. A new echocardiographic approach for the detection of non-ischaemic fibrosis in hypertrophic myocardium. Eur. Heart J. 2007; 28: 3020-6.
Ahmed S.H., Clark L.L., Pennington W.R. et al. Matrix metalloproteinases tissue inhibitors of metalloproteinases: relationship between changes in proteolytic determinants of matrix composition and structural, functional, and clinical manifestations of hypertensive heart disease. Circulation. 2006; 113: 2089-96.
Nadar S., Tayebjee M., Lip G.Y. Diastolic dysfunction in hypertensives as assessed by tissue Doppler: relation to matrix metalloproteinases.
Echocardiography. 2004; 21: 485-96.
Huysman J.A., Vliegen H.W., Van Der Laarse A. et al. Changes in nonmyocyte tissue composition associated with pressure overload of hypertrophic human hearts. Pathol. Res. Pract. 1989; 184: 577-81.
Querejeta R., Varo N., Lopez B. et al. Serum carboxyterminal propeptide of procollagen type I is a marker of myocardial fibrosis in hypertensive heart disease. Circulation. 2000; 101: 1729-35.
Schafer S., Kelm M., Mingers S. et al. Left ventricular remodeling impairs coronary flow reserve in hypertensive patients. J. Hypertens. 2002; 20: 1431-7.
Cai L., Li W., Wang G. et al. Hyperglycemiainduced apoptosis in mouse myocardium: mitochondrial cytochrome C-mediated caspase-3 activation pathway. Diabetes. 2002; 51: 1938-48.
Bojunga J., Nowak D., Mitrou P.S. et al. Antioxidative treatment prevents activation of death-receptor and mitochondrion-dependent
apoptosis in the hearts of diabetic rats. Diabetologia. 2004; 47: 2072-80.
MankadS., Murali S., Kormos R.L. et al. Evaluation of the potential role of color-coded tissue Doppler echocardiography in the detection of allograft rejection in heart transplant recipients. Am. Heart J. 1999; 138: 721-30.
Sun J.P., Abdalla I.A., Asher C.R. et al. Non-invasive evaluation of orthotopic heart transplant rejection by echocardiography. J. Heart Lung Transplant. 2005; 24 (2): 160-5.
Resende V., Vieira V., Bacal F. et al. Tissue Doppler echocardiography in the diagnosis of heart transplantation rejection. Arq. Brasil. Cardiol. 2011; 97: 135-43.
Sawaya H., Sebag I.A., Plana J.C. et al. Assessment of echocardiography and biomarkers for the extended prediction of cardiotoxicity in patients treated with anthracyclines, taxanes, and trastuzumab. Circ. Cardiovasc. Imaging. 2012; 5 (5): 596-603.