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Myocardial Strain Properties in Patients with Chronic Heart Failure

https://doi.org/10.18087/cardio.2019.8.2579

Abstract

Chronic heart failure is the cause of hospitalization of every fifth cardiological patient. Number of patients with heart failure symptoms that have preserved or intermediate left ventricle ejection fraction increases, i.e. grows portion of diastolic heart failure grows. Gray scale myocardial strain techniques provide an opportunity to detect myocardial dysfunction on early stages when absence of clinically significant symptoms are absent and conventional echocardiography is not informative. The goal of this study is to review parameters of myocardial strain and its clinical applicability in patients with chronic heart failure.

About the Authors

A. G. Obrezan
St.-Petersburg State University; International Medical Center “SOGAZ”
Russian Federation

Obrezan Andrey G. - MD, PhD, SciD, professor



D. Z. Baranov
St.-Petersburg State University
Russian Federation


References

1. Mirsky I, Parmley WW. Assessment of passive elastic stiffness for isolated heart muscle and the intact heart. Circulation Research. 1973;33(2):233-43. PMID: 4269516

2. Alekhin M.N. Ultrasound methods of evaluation of myocardial deformation and their clinical significance. Two-dimensional tracking of gray scale spots of the ultrasound image of the myocardium in the evaluation of its deformation and twisting (lecture 2). Ultrasonic and functional diagnostics. 2011;3:107-20.

3. Alekhin M.N. Ultrasound methods of evaluation of myocardial deformation and their clinical significance. Doppler imaging of tissues in the evaluation of myocardial deformation (lecture 1). Ultrasonic and functional diagnostics. 2011;1:105-17.

4. Sohibnazarova V.Kh., Saidova M.A., Tereshchenko S.N. Application of new echocardiographic technologies of non-Doppler myocardium imaging in 2d and 3d modes in patients with CHF with preserved and reduced left ventricular ejection fraction. Eurasian Cardiology Journal. 2017;2:42-7.

5. GalimskayaV.A., Donchenko I. A., Romanovskaya E.M., Oleynikov V.E. The Features of Myocardial Deformation of Left Ventricle in Patients With Ischemic Heart Disease Defined by the Two Dimensional Strain Method. Kardiologiia. 2014;54(9):11-6.

6. Oleynikov V.E., Galimskaya V.A., Donchenko I.A. Evaluation of the deformation characteristics of the myocardium in healthy individuals of different age groups by the echocardiographic X-Strain method. Kardiologiia. 2012;52(2):65-9.

7. Kosheleva N.A., Meldina Yu.N., Rebrov A.P. Prognostic value of speckl-tracking echocardiography in acute myocardial infarction. Archive of internal medicine. 2016;6(5): 19-22.

8. Malev E.G., Pankova I.A., Reeva S.V., Tsay N.V., Zemtsovsky E.V. Evaluation of violations of local contractility of the left ventricle in young adults with mitral valve prolapse. Health, demography, ecology of Finno-Ugric peoples. 2013;2:41-3.

9. Alekhin M.N. Ultrasound methods for assessment of myocardial deformation and their clinical significance. -М.: Vidar-M; 2012. 88p. ISBN 978-5-88429-164-5

10. Khadzegova A.B., Yushchuk E.N., Gabitova R.G., Sinitsina I.A., Ivanova S.V., Vasyuk Yu.A. Evaluation of systolic function of the left ventricle with ultrasound 2D-strain technology in patients with arterial hypertension. Russian Journal of Cardiology. 2016;21(12):7-11.

11. Nikiforov V.S., Nikishchenkova Yu.V. Modern Possibilities of Speckle Tracking Echocardiography in Clinical Practice. Rational Pharmacotherapy in Cardiology. 2017;13(2):248-55.

12. Murtaza G, Virk HUH, Khalid M, Rahman Z, Sitwala P, Schoondyke J et al. Role of Speckle Tracking Echocardiography in Dilated Cardiomyopathy: A Review. Cureus. 2017;9(6):e1372. DOI: 10.7759/cureus.1372

13. Alekhin M.N. Ultrasound methods of evaluation of myocardial deformation and their clinical significance. Clinical significance of the parameters of deformation and rotation of the myocardium (lecture 3). Ultrasonic and functional diagnostics. 2012;1:95-114.

14. Nikiforov V.S., Marsalskaya O.A., Novikov V.I. Echocardiographic evaluation of myocardial deformation in clinical practice: tutorial. -SPb: Kul'tInformPress; 2015. 28p. ISBN 978-5-8392-0503-1

15. Muraru D, Niero A, Rodriguez-Zanella H, Cherata D, Badano L. Three-dimensional speckle-tracking echocardiography: benefits and limitations of integrating myocardial mechanics with threedimensional imaging. Cardiovascular Diagnosis and Therapy. 2018;8(1):101-17. DOI: 10.21037/cdt.2017.06.01

16. Trache T, Stobe S, Tarr A, Pfeiffer D, Hagendorff A. The agreement between 3D, standard 2D and triplane 2D speckle tracking: effects of image quality and 3D volume rate. Echo Research and Practice. 2014;1(2):71-83. DOI: 10.1530/ERP-14-0025

17. Khan SG, Klettas D, Kapetanakis S, Monaghan MJ. Clinical utility of speckle-tracking echocardiography in cardiac resynchronisation therapy. Echo Research and Practice. 2016;3(1):R1-11. DOI: 10.1530/ERP-15-0032

18. Chang S-N, Lai Y-H, Yen C-H, Tsai C-T, Lin J-W, Bulwer BE et al. Cardiac Mechanics and Ventricular Twist by Three-Dimensional Strain Analysis in Relation to B-Type Natriuretic Peptide as a Clinical Prognosticator for Heart Failure Patients. PLoS ONE. 2014;9(12):e115260. DOI: 10.1371/journal.pone.0115260

19. Nagata Y, Wu VC-C, Otsuji Y, Takeuchi M. Normal range of myocardial layer-specific strain using two-dimensional speckle tracking echocardiography. PLOS ONE. 2017;12(6):e0180584. DOI: 10.1371/journal.pone.0180584

20. Kalinkina TV., Lareva N.V., Chistyakova M.V. Modern methods of diagnosing diastolic dysfunction of the left ventricle in patients with essential hypertension. Transbaikalian Medical Bulletin. 2016;2:115-20.

21. Chevplyanskaya O.N., Dudarev M.V., Mel'nikov A.V. Longitudinal strain of the left ventricle and coronary blood flow in patients with high normal blood pressure. Arterial Hypertension. 2016;22(3):282-90.

22. Amarzhargal B., Beresten N.F., Tkachenko S.B. Deformation parameters of hypertrophied left ventricular myocardium in arterial hypertension. Cardiovascular Therapy and Prevention. 2008;7(3):8-13.

23. Loskutova A.S., Saidova M.A., Shitov V.N., Rogoza A.N. Echocardiographic evaluation of right ventricular dysfunction in comparison with left ventricle in patients with essential hypertension. Russian Heart Journal. 2013;12(5):316-9.

24. Ancona R, Comenale Pinto S, Caso P, DAndrea A, Di Salvo G, Arenga F et al. Left Atrium by Echocardiography in Clinical Practice: From Conventional Methods to New Echocardiographic Techniques. The Scientific World Journal. 2014;2014:451042. DOI: 10.1155/2014/451042

25. Goudar SP, Baker GH, Chowdhury SM, Reid KJ, Shirali G, Scheurer MA. Interpreting measurements of cardiac function using vendor-independent speckle tracking echocardiography in children: a prospective, blinded comparison with catheter-derived measurements. Echocardiography. 2016;33(12):1903-10. DOI: 10.1111/echo.13347

26. Tuaeva Z.R., Kirichenko T.I. Clinical significance ofmyocardial strain indices in CAD patients (literature review). Bulletin of new medical technologies. Digital edition. 2014;1:164.

27. Petrova E.B. Possibilities of the VVI technique in assessing the systolic function of the left ventricle and all its segments. Modern technologies in medicine. 2013;5(4):56-63.

28. Molodan A.V., Fushtey I.M., Ivashchuk V.A. Strain of the left ventricle myocardium in patients with coronary artery disease with moderate dilatation of the left ventricle cavity, not complicated by myocardial infarction. Zaporozhye Medical Journal. 2014;1(82):37-9.

29. Kercheva M.A., Ryabova T.R., Ryabov VV., Karpov R.S. The dynamics of standard and 2D speckle tracking echocardiography in patients with acute primary anterior myocardial infarction with ST segment elevation. Siberian Medical Journal (Tomsk). 2016;31(2):43-7.

30. Zhang KW, French B, May Khan A, Plappert T, FangJC, Sweitzer NK et al. Strain Improves Risk Prediction Beyond Ejection Fraction in Chronic Systolic Heart Failure.Journal of the American Heart Association. 2014;3(1):e000550. DOI: 10.1161/JAHA.113.000550

31. Shakhova E.B., Shakhov B.E., Budkina M.L., Fedorova M.V. Experience of application of the Velocity Vector Imaging program for evaluation of systolic function of the left ventricle in healthy volunteers and patients with dilated cardiomyopathy. Modern technologies in medicine. 2012;(3):78-81.

32. Bokeria O.L., Shadaniya Ya.R., Averina I.I., Mironenko M.Yu., Dontsova V.I., Soboleva N.N. The use of the myocardial strain indices to select patients for cardiac resynchronization therapy. Annals of arrhythmology. Annals of Arrhythmology. 2011;8(1):30-4.

33. Kurlianskaya E.K., Ostrovsky Yu. P., Trophimova T.A., Ratchok L.V., Denisevitch T.L., Semyonova N.V. Possibilities ofnoninvasive evaluation of strain properties of the myocardium. Eurasian cardiology journal. 2013;2:61-5.

34. Stavenchuk T.V., Kosmachova E.D., Shelestova I.A., Barbuhatty K.O., Porhanov V.A. Speckle tracking echocardiography as a predictor of heart rejection in patients after orthotopic cardiac transplantation. Creative Cardiology. 2015;3:56-66. DOI: 10.15275/kreatkard.2015.03.05

35. Buggey J, Alenezi F, Yoon HJ, Phelan M, DeVore AD, Khouri MG et al. Left ventricular global longitudinal strain in patients with heart failure with preserved ejection fraction: outcomes following an acute heart failure hospitalization: LV GLS in Acute HFpEF. ESC Heart Failure. 2017;4(4):432-9. DOI: 10.1002/ehf2.12159

36. Morris DA, Ma X-X, Belyavskiy E, Aravind Kumar R, Kropf M, Kraft R et al. Left ventricular longitudinal systolic function analysed by 2D speckle-tracking echocardiography in heart failure with preserved ejection fraction: a meta-analysis. Open Heart. 2017;4(2):e000630. DOI: 10.1136/openhrt-2017-000630


Review

For citations:


Obrezan A.G., Baranov D.Z. Myocardial Strain Properties in Patients with Chronic Heart Failure. Kardiologiia. 2019;59(8):88-96. (In Russ.) https://doi.org/10.18087/cardio.2019.8.2579

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