Zacytuj

1. Billinger, S.A, Arena R., Bernhardt, et al. Stroke, 45, nr.8, 2014, p.2532-2553.10.1161/STR.000000000000002224846875 Search in Google Scholar

2. Parviz Y, Vijayan, S., Lavi S., Cardiovasc Revasc Med, 18, nr.5, 2017, p.374-383.10.1016/j.carrev.2017.02.00428214140 Search in Google Scholar

3. Mezzani A, Gielen S. Cardiac rehabilitation and exercise training. Oxford, Oxford University Press, 2018 p. 882–892.10.1093/med/9780198784906.003.0211 Search in Google Scholar

4. Piepoli MF, Corrà U, Adamopoulos S, et al. Secondary prevention in the clinical management of patients with cardiovascular diseases. Core components, standards and outcome measures for referral and delivery: a policy statement from the cardiac rehabilitation section of the European Association for Cardiovascular Prevention & Rehabilitation. Endorsed by the Committee for Practice Guidelines of the European Society of Cardiology. Eur J Prev Cardiol 2014; 21(6): 664–681.10.1177/204748731244959722718797 Search in Google Scholar

5. Price KJ, Gordon BA, Bird SR, Benson AC. A review of guidelines for cardiac rehabilitation exercise programmes: Is there an international consensus? Eur J Prev Cardiol 2016; 23(16): 1715–1733. Search in Google Scholar

6. Sascău R, Zota IM, Stătescu C, et al. Review of Echocardiographic Findings in Patients with Obstructive Sleep Apnea. Can Respir J 2018; 2018: 1–9.10.1155/2018/1206217627639630581512 Search in Google Scholar

7. Fletcher, G.F., Balady, G.J., Amsterdam, E.A., et al., Circulation, 104, nr.14, 2001, p.1694-1670.10.1161/hc3901.09596011581152 Search in Google Scholar

8. Mezzani, A., Hamm, L.F., Jones, A.M., et al., Eur J Prev Cardiol, 20, nr.3, 2013, p.442-467.10.1177/204748731246048423104970 Search in Google Scholar

9. Thompson, P.D., Buchner, D., Pina, I.L., et al., Circulation, 107, nr.24, 2003,p. 3109-3116.10.1161/01.CIR.0000075572.40158.7712821592 Search in Google Scholar

10. Eagle, K.A., Guyton, R.A., Davidoff, R., et al., Circulation,110, nr.14, 2004, p.340-437. Search in Google Scholar

11. Dutcher JR, Kahn J, Grines C, Franklin B. Comparison of left ventricular ejection fraction and exercise capacity as predictors of two- and five-year mortality following acute myocardial infarction. Am J Cardiol. 2007 Feb 15;99(4):436–41.10.1016/j.amjcard.2006.08.05317293179 Search in Google Scholar

12. Frick MH, Katila M. Hemodynamic Consequences of Physical Training after Myocardial Infarction. Circulation. 1968 Feb;37(2):192–202.10.1161/01.CIR.37.2.192 Search in Google Scholar

13. Clausen JP, Trap-Jensen J. Effects of training on the distribution of cardiac output in patients with coronary artery disease. Circulation. 1970 Oct;42(4):611–24.10.1161/01.CIR.42.4.611 Search in Google Scholar

14. Adachi H, Koike A, Obayashi T, Umezawa S, Aonuma K, Inada M, et al. Does appropriate endurance exercise training improve cardiac function in patients with prior myocardial infarction? Eur Heart J. 1996 Oct;17(10): 1511–21.10.1093/oxfordjournals.eurheartj.a014715 Search in Google Scholar

15. Haddadzadeh MH, Maiya AG, Padmakumar R, Shad B, Mirbolouk F. Effect of exercise-based cardiac rehabilitation on ejection fraction in coronary artery disease patients: a randomized controlled trial. Heart Views Off J Gulf Heart Assoc. 2011 Apr;12(2):51–7.10.4103/1995-705X.86013 Search in Google Scholar

16. Sadeghi M, Garakyaraghi M, Khosravi M, Taghavi M, Sarrafzadegan N, Roohafza H. The impacts of cardiac rehabilitation program on echocardiographic parameters in coronary artery disease patients with left ventricular dysfunction. Cardiol Res Pract. 2013;2013: 201713.10.1155/2013/201713 Search in Google Scholar

17. Kim C, Kim DY, Lee DW. The impact of early regular cardiac rehabilitation program on myocardial function after acute myocardial infarction. Ann Rehabil Med. 2011 Aug;35(4):535–40.10.5535/arm.2011.35.4.535 Search in Google Scholar

18. Soleimannejad K, Nouzari Y, Ahsani A, Nejatian M, Sayehmiri K. Evaluation of the effect of cardiac rehabilitation on left ventricular diastolic and systolic function and cardiac chamber size in patients undergoing percutaneous coronary intervention. J Tehran Heart Cent. 2014;9(2):54–8. Search in Google Scholar

19. Detry JM, Rousseau M, Vandenbroucke G, Kusumi F, Brasseur LA, Bruce RA. Increased arteriovenous oxygen difference after physical training in coronary heart disease. Circulation. 1971 Jul;44(1):109–18.10.1161/01.CIR.44.1.109 Search in Google Scholar

20. Giallauria F, Cirillo P, Lucci R, Pacileo M, De Lorenzo A, D’Agostino M, et al. Left ventricular remodelling in patients with moderate systolic dysfunction after myocardial infarction: favourable effects of exercise training and predictive role of N -terminal pro brain natriuretic peptide. Eur J Cardiovasc Prev Rehabil. 2008 Feb;15(1):113–8.10.1097/HJR.0b013e3282f00990 Search in Google Scholar

21. Kusunose K, Seno H, Yamada H, Nishio S, Torii Y, Hirata Y, et al. Right Ventricular Function and Beneficial Effects of Cardiac Rehabilitation in Patients With Systolic Chronic Heart Failure. Can J Cardiol. 2018 Oct;34(10):1307–15.10.1016/j.cjca.2018.06.003 Search in Google Scholar

22. Kaul S, Tei C, Hopkins JM, Shah PM. Assessment of right ventricular function using two-dimensional echocardiography. Am Heart J. 1984 Mar;107(3):526–31.10.1016/0002-8703(84)90095-4 Search in Google Scholar

23. Zoroufian A, Taherian A, Hosseini SK, Sardari A, Sheikhvatan M. Effects of cardiac rehabilitation program on right ventricular function after coronary artery bypass graft surgery. J Tehran Heart Cent. 2012;7(1):25–9. Search in Google Scholar

eISSN:
1220-5818
Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Medicine, Clinical Medicine, Internal Medicine, other, Cardiology, Gastroenterology, Pneumology