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Prolonged Asynchronous Left Ventricular Isovolumic Relaxation Constant in Ascending Compared to Descending Thoracic Aortic Stenosis for Chronic Early Left Ventricular Afterload and Late Left Ventricular Afterload Increase


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1. Ong G, Pibarot P, Redfords B, et al. Diastolic Function and Clinical Outcomes After Transcatheter Aortic Search in Google Scholar

2. Valve Replacement. JACC, 2020;76(25), 2940–2951. Doi: 10.1016/j.jacc.2020.10.032 Open DOISearch in Google Scholar

3. Hori M, Inoue M, Kitakaze M, Tsujioka K, Ishida Y, Fukunami M et al, Loading sequence is a major determinant of afterload-dependent relaxation in intact canine heart. American Journal of Physiology-Heart and Circulatory Physiology,1985;249(4), H747–H754, doi:10.1152/ajpheart.1985.249.4.H747 Open DOISearch in Google Scholar

4. Chirinos JA, Phan TS, Syed AA, Hashmath Z, Oldland HG, Koppula MR, et al. Late Systolic Myocardial Loading Is Associated with Left Atrial Dysfunction in Hypertension. Circ Cardiovasc Imag, 2017;10(6), e006023. doi:10.1161/CIRCIMAGING.116.006023 Open DOISearch in Google Scholar

5. Yano M, Kohno M, Kobayashi S, Obayashi M, Seki K, Ohkusa T, et al, Influence of timing and magnitude of arterial wave reflection on left ventricular relaxation. American Journal of Physiology. Heart and Circulatory Physiology, 2001;280(4), H1846-52.10.1152/ajpheart.2001.280.4.H1846 Search in Google Scholar

6. Prabhu SD. Load sensitivity of left ventricular relaxation in normal and failing hearts: evidence of a nonlinear biphasic response. Cardiovascular Research, 1999;43(2),354–363.10.1016/S0008-6363(99)00102-9 Search in Google Scholar

7. Doi:10.1016/S0008-6363(99)00102-9 Open DOISearch in Google Scholar

8. Kobayashi S, Yano M, Kohno M, Obayashi M, Hisamatsu Y, Ryoke T et al, Influence of Aortic Impedance on the Development of Pressure-Overload Left Ventricular Hypertrophy in Rats. Circulation, 1996;94(12),3362–3368 doi;10.1161/01.CIR.94.12.3362 Open DOISearch in Google Scholar

9. 7. Schillaci G, Pasqualini L, Verdecchia P, Vaudo G, Marchesi S, Porcellati C, et al. Prognostic significance of left ventricular diastolic dysfunction in essential hypertension. JACC, 2002; 12(Vol. 39): 2005-11. doi:10.1016/S0735-1097(02)01896-X Open DOISearch in Google Scholar

10. Aurigemma GP, Silver KH, Priest MA, Gaasch W. Geometric changes allow normal ejection fraction despite depressed myocardial shortening in hypertensive left ventricular hypertrophy, JACC, 1995;26(1), 195–202.10.1016/0735-1097(95)00153-Q Search in Google Scholar

11. Chirinos JA, Kips JG, Jacobs DR, Brumback L, Duprez DA, Kronmal R, et al, Arterial Wave Reflections and Incident Cardiovascular Events and Heart Failure. JACC,2012;60(21), 2170–2177, doi:10.1016/j.jacc.2012.07.054406549723103044 Open DOISearch in Google Scholar

12. Ishikawa K, Aguero J, Oh JG, Hammoudi N, Fish LA, Leonardson L, et al, Increased stiffness is the major early abnormality in a pig model of severe aortic stenosis and predisposes to congestive heart failure in the absence of systolic dys-function. Journal of the American Heart Association, 2015;4(5). doi:10.1161/JAHA.115.001925 Open DOISearch in Google Scholar

13. Weiss JL, Frederiksen JW, Weisfeldt ML. Hemodynamic determinants of the time-course of fall in canine left ventricular pressure. J Clin Invest. 1976;58:751–6010.1172/JCI108522 Search in Google Scholar

14. Gillebert TC, Lew WY, Influence of systolic pressure profile on rate of left ventricular pressure fall. The American Journal of Physiology, 1991;261(3Pt2):H805-13. doi:10.1152/ajpheart.1991.261.3.H805. Open DOISearch in Google Scholar

15. Borlaug BA, Lam CSP, Roger VL, Rodeheffer RJ, Redfield MM. Contractility and ventricular systolic stiffening in hypertensive heart disease insights into the pathogenesis of heart failure with preserved ejection fraction. JACC,2009; 54(5), 410–418. doi:10.1016/j.jacc.2009.05.013 Open DOISearch in Google Scholar

16. Watanabe H, Ohtsuka S, Kakihana M, Sugishita, Y. Coronary circulation in dogs with an experimental decrease in aortic compliance. JACC, 1993;21(6), 1497 LP – 1506. Doi:10.1016/0735-1097(93)90330-4 Open DOISearch in Google Scholar

17. Borlaug BA, Melenovsky V, Redfield MM, Kessler K, Chang HJ, Abraham TP, et al. Impact of Arterial Load and Loading Sequence on Left Ventricular Tissue Velocities in Humans. JACC, 2007;50(16), 1570–1577, doi:10.1016/j. jacc.2007.07.032 Open DOISearch in Google Scholar

18. Zamani P, Bluemke DA, Jacobs DR, Duprez DA, Kronmal R, Lilly SM, et al. Resistive and Pulsa-tile Arterial Load as Predictors of Left Ventricular Mass and Geometry Novelty and Significance. Hypertension, 2015;65(1), 85–92. doi:10.1161/HYPERTENSIONAHA.114.04333 Open DOISearch in Google Scholar

19. Leite-Moreira AF, Correia-Pinto J, Gillebert TC. Afterload induced changes in myocardial relaxation. Cardiovascular Research, 1999;43(2), 344–353.doi:10.1016/S0008-6363(99)00099-1 Open DOISearch in Google Scholar

20. Saba PS, Ganau A, Devereux RB, Pini R, Pickering TG, Roman MJ, Impact of arterial elastance as a measure of vascular load on left ventricular geometry in hypertension. Journal of Hypertension, 1999;17(7), 1007–1015.10.1097/00004872-199917070-0001810419075 Search in Google Scholar

21. Weidemann F, Herrmann S, Störk S, Niemann M, Frantz S, Lange V. Impact of Myocardial Fibrosis in Patients With Symptomatic Severe Aortic Stenosis. 2009; 120(7), 577–584, doi:10.1161/CIRCULATIONAHA.108.84777219652094 Open DOISearch in Google Scholar

22. Roman MJ, Ganau A, Saba PS, Pini R, Pickering TG, Devereux RB. Impact of Arterial Stiffening on Left Ventricular Structure. Hypertension, 36(4), 489–494. doi:10.1161/01.HYP.36.4.48911040224 Open DOISearch in Google Scholar

23. Kamimura D, Hans S, Suzuki T, Fox ER, Hall ME, Musani SK et al. Delayed Time to Peak Velocity Is Useful for Detecting Severe Aortic Stenosis. JAHA, 2016;5(10), e003907, doi:10.1161/JAHA.116.003907512149327792660 Open DOISearch in Google Scholar

24. Shingo K, Naka S, Hidekuni K, Daiki G, Naoki I, Yuka K, et al. Impairment of Coronary Flow Reserve Evaluated by Phase Contrast Cine- Magnetic Resonance Imaging in Patients With Heart Failure With Preserved Ejection Fraction. JAHA,2016: 5(2), e002649, doi:10.1161/JAHA.115.002649480244126908404 Open DOISearch in Google Scholar

25. Kawaguchi M, Hay I, Fetics B, Kass DA. Combined ventricular systolic and arterial stiffening in patients with heart failure and preserved ejection fraction: implications for systolic and diastolic reserve limitations. Circulation, 2003;107(5), 714–720. Doi:10.1161/01.cir.0000048123.22359.a012578874 Open DOISearch in Google Scholar

26. Chirinos JA, Segers P, Rietzschel ER, De Buyzere M L, Raja M W, Claessens T, et al. Early and Late Systolic Wall Stress Differentially Relate to Myocardial Contraction and Relaxation in Middle-Aged Adults: The Asklepios Study. Hypertension, 2013;61(2), 296–303. Doi:10.1161/HYPERTENSIONAHA.111.0053023283359 Open DOISearch in Google Scholar

27. Romano S, Judd M R, Kim J R, Kim W H, Heither F J, Shah J D, et al. Prognostic Implications of Mitral Annular Plane Systolic Excursion in Patients with Hypertension and a Clinical Indication for Cardiac Magnetic Resonance Imaging. JACC – Imaging 2019;9(12):1769-79. Doi: doi:10.1016/j.jcmg.2018.10.003 Open DOISearch in Google Scholar

28. Lam YY, Kaya MG, Li W, Gatzoulis MA, et al, Effect of Chronic Afterload Increase on Left Ventricular Myocardial Function in Patients With Congenital Left-Sided Obstructive Lesions Am J Cardiol 2007;99:1582–158710.1016/j.amjcard.2007.01.03117531585 Search in Google Scholar

29. Nikolic S, Yellin EL, Tamura K, Tamura T, Frater RWM. Effect of Early Diastolic Loading on Myocardial Relaxation in the Intact Canine Left Ventricle. Circulation Research 1990;66:1217-122610.1161/01.RES.66.5.12172335022 Search in Google Scholar

30. Zatko FJ, Martin P, Bahler R C. Time course of systolic loading is an important determinant of ventricular relaxation. American Journal of Physiology-Heart and Circulatory Physiology, 1987;252(3), H461–H466. Doi:10.1152/ajpheart.1987.252.3.H4613826394 Open DOISearch in Google Scholar

31. Frais MA, Bergman DW, Kingma I et al. The Dependence of the Time Constant of Lef Search in Google Scholar

32. Ventricular Isovolumic Relaxation (τ) on Pericardial Pressure. Circulation 1990;81:1071-108010.1161/01.CIR.81.3.1071 Search in Google Scholar

33. Eichhorn EJ, Willard J E, Alvarez L, Kim A S, Glamann DB, Risser RC, Grayburn PA. Are contraction and relaxation coupled in patients with and without congestive heart failure? Circulation, 1992;85(6), 2132–2139. Doi:10.1161/01.CIR.85.6.2132 Open DOISearch in Google Scholar

34. Hori M, Kitakaze M, Ishida Y, Fukunami M et al. Delayed end ejection increases isovolumic ventricular relaxation rate in isolated perfused canine hearts. Circulation Research 1991;68(1):300-308.10.1161/01.RES.68.1.300 Search in Google Scholar

35. Nguyen MB, Dragulesku A, Chaturvedi R, Villemain R et al. Understanding complex interactions in pediatric diastolic function assessment. JASE, 2022 (3)17. Doi:10.1016./j.echo.2022.03.017 Open DOISearch in Google Scholar

36. Constable P, Muir W, Sisson D. Clinical assessment of left ventricular relaxation. J Vet Inter Med 1999:13:5-13.10.1111/j.1939-1676.1999.tb02158.x Search in Google Scholar

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