Skip to main content
Top
Published in: Heart Failure Reviews 3/2015

01-05-2015

RV diastolic dysfunction: time to re-evaluate its importance in heart failure

Authors: Richard G. Axell, Stephen P. Hoole, James Hampton-Till, Paul A. White

Published in: Heart Failure Reviews | Issue 3/2015

Login to get access

Abstract

Right ventricular (RV) diastolic dysfunction was first reported as an indicator for the assessment of ventricular dysfunction in heart failure a little over two decades ago. However, the underlying mechanisms and precise role of RV diastolic dysfunction in heart failure remain poorly described. Complexities in the structure and function of the RV make the detailed assessment of the contractile performance challenging when compared to its left ventricular (LV) counterpart. LV dysfunction is known to directly affect patient outcome in heart failure. As such, the focus has therefore been on LV function. Nevertheless, a strategy for the diagnosis and assessment of RV diastolic dysfunction has not been established. Here, we review the different causal mechanisms underlying RV diastolic dysfunction, summarising the current assessment techniques used in a clinical environment. Finally, we explore the role of load-independent indices of RV contractility, derived from the conductance technique, to fully interrogate the RV and expand our knowledge and understanding of RV diastolic dysfunction. Accurate assessment of RV contractility may yield further important prognostic information that will benefit patients with diastolic heart failure.
Literature
1.
go back to reference Riggs TW (1993) Abnormal right ventricular filling in patients with dilated cardiomyopathy. Pediatric Cardiol 14(1):1–4 Riggs TW (1993) Abnormal right ventricular filling in patients with dilated cardiomyopathy. Pediatric Cardiol 14(1):1–4
2.
go back to reference Cicala S, Galderisi M, Caso P, Petrocelli A, D’Errico A, de Divitiis O, Calabro R (2002) Right ventricular diastolic dysfunction in arterial systemic hypertension: analysis by pulsed tissue Doppler. Eur J Echocardiogr 3(2):135–142PubMedCrossRef Cicala S, Galderisi M, Caso P, Petrocelli A, D’Errico A, de Divitiis O, Calabro R (2002) Right ventricular diastolic dysfunction in arterial systemic hypertension: analysis by pulsed tissue Doppler. Eur J Echocardiogr 3(2):135–142PubMedCrossRef
3.
go back to reference Dourvas IN, Parharidis GE, Efthimiadis GK, Karvounis HI, Gemitzis KD, Styliadis IH, Karoulas TN, Louridas GE (2004) Right ventricular diastolic function in patients with chronic aortic regurgitation. Am J Cardiol 93(1):115–117PubMedCrossRef Dourvas IN, Parharidis GE, Efthimiadis GK, Karvounis HI, Gemitzis KD, Styliadis IH, Karoulas TN, Louridas GE (2004) Right ventricular diastolic function in patients with chronic aortic regurgitation. Am J Cardiol 93(1):115–117PubMedCrossRef
4.
go back to reference Florea VG, Florea ND, Sharma R, Coats AJ, Gibson DG, Hodson ME, Henein MY (2000) Right ventricular dysfunction in adult severe cystic fibrosis. Chest 118(4):1063–1068PubMedCrossRef Florea VG, Florea ND, Sharma R, Coats AJ, Gibson DG, Hodson ME, Henein MY (2000) Right ventricular dysfunction in adult severe cystic fibrosis. Chest 118(4):1063–1068PubMedCrossRef
5.
go back to reference Chakko S, de Marchena E, Kessler KM, Materson BJ, Myerburg RJ (1990) Right ventricular diastolic function in systemic hypertension. Am J Cardiol 65(16):1117–1120PubMedCrossRef Chakko S, de Marchena E, Kessler KM, Materson BJ, Myerburg RJ (1990) Right ventricular diastolic function in systemic hypertension. Am J Cardiol 65(16):1117–1120PubMedCrossRef
6.
go back to reference Habib GB, Zoghbi WA (1992) Doppler assessment of right ventricular filling dynamics in systemic hypertension: comparison with left ventricular filling. Am Heart J 124(5):1313–1320PubMedCrossRef Habib GB, Zoghbi WA (1992) Doppler assessment of right ventricular filling dynamics in systemic hypertension: comparison with left ventricular filling. Am Heart J 124(5):1313–1320PubMedCrossRef
7.
go back to reference Caso P, Galderisi M, Cicala S, Cioppa C, D’Andrea A, Lagioia G, Liccardo B, Martiniello AR, Mininni N (2001) Association between myocardial right ventricular relaxation time and pulmonary arterial pressure in chronic obstructive lung disease: analysis by pulsed Doppler tissue imaging. J Am Soc Echocardiogr 14(10):970–977PubMedCrossRef Caso P, Galderisi M, Cicala S, Cioppa C, D’Andrea A, Lagioia G, Liccardo B, Martiniello AR, Mininni N (2001) Association between myocardial right ventricular relaxation time and pulmonary arterial pressure in chronic obstructive lung disease: analysis by pulsed Doppler tissue imaging. J Am Soc Echocardiogr 14(10):970–977PubMedCrossRef
8.
go back to reference Schwarz ER, Dashti R (2010) The clinical quandary of left and right ventricular diastolic dysfunction and diastolic heart failure. Cardiovasc J Afr 21(4):212–220PubMedCentralPubMed Schwarz ER, Dashti R (2010) The clinical quandary of left and right ventricular diastolic dysfunction and diastolic heart failure. Cardiovasc J Afr 21(4):212–220PubMedCentralPubMed
9.
go back to reference Bellofiore A, Chesler NC (2013) Methods for measuring right ventricular function and hemodynamic coupling with the pulmonary vasculature. Ann Biomed Eng. doi:10.1007/s10439-013-0752-3 Bellofiore A, Chesler NC (2013) Methods for measuring right ventricular function and hemodynamic coupling with the pulmonary vasculature. Ann Biomed Eng. doi:10.​1007/​s10439-013-0752-3
10.
go back to reference Dell’Italia LJ (1991) The right ventricle: anatomy, physiology, and clinical importance. Curr Probl Cardiol 16(10):653–720PubMed Dell’Italia LJ (1991) The right ventricle: anatomy, physiology, and clinical importance. Curr Probl Cardiol 16(10):653–720PubMed
11.
go back to reference Goor DA, Lillehei CW (1975) Congenital malformations of the heart : embryology, anatomy, and operative considerations. Grune & Stratton, New York Goor DA, Lillehei CW (1975) Congenital malformations of the heart : embryology, anatomy, and operative considerations. Grune & Stratton, New York
13.
go back to reference Zipes DP, Libby P, Bonow RO, Braunwald E (eds) (2005) Braunwald’s heart disease: a textbook of cardiovascular medicine, 7th edn. Elsevier, Oxford, Philadelphia Zipes DP, Libby P, Bonow RO, Braunwald E (eds) (2005) Braunwald’s heart disease: a textbook of cardiovascular medicine, 7th edn. Elsevier, Oxford, Philadelphia
14.
go back to reference Brookes CI, White PA, Bishop AJ, Oldershaw PJ, Redington AN, Moat NE (1998) Validation of a new intraoperative technique to evaluate load-independent indices of right ventricular performance in patients undergoing cardiac operations. J Thorac Cardiovasc Surg 116(3):468–476PubMedCrossRef Brookes CI, White PA, Bishop AJ, Oldershaw PJ, Redington AN, Moat NE (1998) Validation of a new intraoperative technique to evaluate load-independent indices of right ventricular performance in patients undergoing cardiac operations. J Thorac Cardiovasc Surg 116(3):468–476PubMedCrossRef
15.
go back to reference Santamore WP, Dell’Italia LJ (1998) Ventricular interdependence: significant left ventricular contributions to right ventricular systolic function. Prog Cardiovasc Dis 40(4):289–308PubMedCrossRef Santamore WP, Dell’Italia LJ (1998) Ventricular interdependence: significant left ventricular contributions to right ventricular systolic function. Prog Cardiovasc Dis 40(4):289–308PubMedCrossRef
17.
go back to reference Torrent-Guasp F, Ballester M, Buckberg GD, Carreras F, Flotats A, Carrio I, Ferreira A, Samuels LE, Narula J (2001) Spatial orientation of the ventricular muscle band: physiologic contribution and surgical implications. J Thorac Cardiovasc Surg 122(2):389–392. doi:10.1067/mtc.2001.113745 PubMedCrossRef Torrent-Guasp F, Ballester M, Buckberg GD, Carreras F, Flotats A, Carrio I, Ferreira A, Samuels LE, Narula J (2001) Spatial orientation of the ventricular muscle band: physiologic contribution and surgical implications. J Thorac Cardiovasc Surg 122(2):389–392. doi:10.​1067/​mtc.​2001.​113745 PubMedCrossRef
21.
go back to reference Moon MR, DeAnda A, Castro LJ, Daughters GT 2nd, Ingels NB Jr, Miller DC (1997) Effects of mechanical left ventricular support on right ventricular diastolic function. J Heart Lung Transplant 16(4):398–407PubMed Moon MR, DeAnda A, Castro LJ, Daughters GT 2nd, Ingels NB Jr, Miller DC (1997) Effects of mechanical left ventricular support on right ventricular diastolic function. J Heart Lung Transplant 16(4):398–407PubMed
22.
go back to reference Chin KM, Kingman M, de Lemos JA, Warner JJ, Reimold S, Peshock R, Torres F (2008) Changes in right ventricular structure and function assessed using cardiac magnetic resonance imaging in bosentan-treated patients with pulmonary arterial hypertension. Am J Cardiol 101(11):1669–1672. doi:10.1016/j.amjcard.2008.01.055 PubMedCrossRef Chin KM, Kingman M, de Lemos JA, Warner JJ, Reimold S, Peshock R, Torres F (2008) Changes in right ventricular structure and function assessed using cardiac magnetic resonance imaging in bosentan-treated patients with pulmonary arterial hypertension. Am J Cardiol 101(11):1669–1672. doi:10.​1016/​j.​amjcard.​2008.​01.​055 PubMedCrossRef
23.
go back to reference Zeng WJ, Sun YJ, Xiong CM, Gu Q, He JG (2011) Prognostic value of echocardiographic right/left ventricular end-diastolic diameter ratio in idiopathic pulmonary arterial hypertension. Chin Med J (Engl) 124(11):1672–1677 Zeng WJ, Sun YJ, Xiong CM, Gu Q, He JG (2011) Prognostic value of echocardiographic right/left ventricular end-diastolic diameter ratio in idiopathic pulmonary arterial hypertension. Chin Med J (Engl) 124(11):1672–1677
25.
go back to reference Zimbarra Cabrita I, Ruisanchez C, Grapsa J, Dawson D, North B, Pinto FJ, Gibbs JS, Nihoyannopoulos P (2013) Validation of the isovolumetric relaxation time for the estimation of pulmonary systolic arterial blood pressure in chronic pulmonary hypertension. Eur Heart J Cardiovasc Imaging 14(1):51–55. doi:10.1093/ehjci/jes093 PubMedCrossRef Zimbarra Cabrita I, Ruisanchez C, Grapsa J, Dawson D, North B, Pinto FJ, Gibbs JS, Nihoyannopoulos P (2013) Validation of the isovolumetric relaxation time for the estimation of pulmonary systolic arterial blood pressure in chronic pulmonary hypertension. Eur Heart J Cardiovasc Imaging 14(1):51–55. doi:10.​1093/​ehjci/​jes093 PubMedCrossRef
27.
go back to reference Kilner PJ, Geva T, Kaemmerer H, Trindade PT, Schwitter J, Webb GD (2010) Recommendations for cardiovascular magnetic resonance in adults with congenital heart disease from the respective working groups of the European Society of Cardiology. Eur Heart J 31(7):794–805. doi:10.1093/eurheartj/ehp586 PubMedCentralPubMedCrossRef Kilner PJ, Geva T, Kaemmerer H, Trindade PT, Schwitter J, Webb GD (2010) Recommendations for cardiovascular magnetic resonance in adults with congenital heart disease from the respective working groups of the European Society of Cardiology. Eur Heart J 31(7):794–805. doi:10.​1093/​eurheartj/​ehp586 PubMedCentralPubMedCrossRef
29.
go back to reference McKay RG, Spears JR, Aroesty JM, Baim DS, Royal HD, Heller GV, Lincoln W, Salo RW, Braunwald E, Grossman W (1984) Instantaneous measurement of left and right ventricular stroke volume and pressure–volume relationships with an impedance catheter. Circulation 69(4):703–710PubMedCrossRef McKay RG, Spears JR, Aroesty JM, Baim DS, Royal HD, Heller GV, Lincoln W, Salo RW, Braunwald E, Grossman W (1984) Instantaneous measurement of left and right ventricular stroke volume and pressure–volume relationships with an impedance catheter. Circulation 69(4):703–710PubMedCrossRef
30.
go back to reference McCabe C, White PA, Hoole SP, Axell RG, Priest AN, Gopalan D, Taboada D, MacKenzie Ross R, Morrell NW, Shapiro LM, Pepke-Zaba J (2014) Right ventricular dysfunction in chronic thromboembolic obstruction of the pulmonary artery: a pressure–volume study using the conductance catheter. J Appl Physiol 116(4):355–363. doi:10.1152/japplphysiol.01123.2013 PubMedCentralPubMedCrossRef McCabe C, White PA, Hoole SP, Axell RG, Priest AN, Gopalan D, Taboada D, MacKenzie Ross R, Morrell NW, Shapiro LM, Pepke-Zaba J (2014) Right ventricular dysfunction in chronic thromboembolic obstruction of the pulmonary artery: a pressure–volume study using the conductance catheter. J Appl Physiol 116(4):355–363. doi:10.​1152/​japplphysiol.​01123.​2013 PubMedCentralPubMedCrossRef
33.
go back to reference Lai WW, Gauvreau K, Rivera ES, Saleeb S, Powell AJ, Geva T (2008) Accuracy of guideline recommendations for two-dimensional quantification of the right ventricle by echocardiography. Int J Cardiovasc Imaging 24(7):691–698. doi:10.1007/s10554-008-9314-4 PubMedCrossRef Lai WW, Gauvreau K, Rivera ES, Saleeb S, Powell AJ, Geva T (2008) Accuracy of guideline recommendations for two-dimensional quantification of the right ventricle by echocardiography. Int J Cardiovasc Imaging 24(7):691–698. doi:10.​1007/​s10554-008-9314-4 PubMedCrossRef
34.
go back to reference Leibundgut G, Rohner A, Grize L, Bernheim A, Kessel-Schaefer A, Bremerich J, Zellweger M, Buser P, Handke M (2010) Dynamic assessment of right ventricular volumes and function by real-time three-dimensional echocardiography: a comparison study with magnetic resonance imaging in 100 adult patients. J Am Soc Echocardiogr 23(2):116–126. doi:10.1016/j.echo.2009.11.016 PubMedCrossRef Leibundgut G, Rohner A, Grize L, Bernheim A, Kessel-Schaefer A, Bremerich J, Zellweger M, Buser P, Handke M (2010) Dynamic assessment of right ventricular volumes and function by real-time three-dimensional echocardiography: a comparison study with magnetic resonance imaging in 100 adult patients. J Am Soc Echocardiogr 23(2):116–126. doi:10.​1016/​j.​echo.​2009.​11.​016 PubMedCrossRef
36.
go back to reference Ryan T, Petrovic O, Dillon JC, Feigenbaum H, Conley MJ, Armstrong WF (1985) An echocardiographic index for separation of right ventricular volume and pressure overload. J Am Coll Cardiol 5(4):918–927PubMedCrossRef Ryan T, Petrovic O, Dillon JC, Feigenbaum H, Conley MJ, Armstrong WF (1985) An echocardiographic index for separation of right ventricular volume and pressure overload. J Am Coll Cardiol 5(4):918–927PubMedCrossRef
37.
go back to reference Wilkins MR, Paul GA, Strange JW, Tunariu N, Gin-Sing W, Banya WA, Westwood MA, Stefanidis A, Ng LL, Pennell DJ, Mohiaddin RH, Nihoyannopoulos P, Gibbs JS (2005) Sildenafil versus Endothelin Receptor Antagonist for Pulmonary Hypertension (SERAPH) study. Am J Respir Crit Care Med 171(11):1292–1297. doi:10.1164/rccm.200410-1411OC PubMedCrossRef Wilkins MR, Paul GA, Strange JW, Tunariu N, Gin-Sing W, Banya WA, Westwood MA, Stefanidis A, Ng LL, Pennell DJ, Mohiaddin RH, Nihoyannopoulos P, Gibbs JS (2005) Sildenafil versus Endothelin Receptor Antagonist for Pulmonary Hypertension (SERAPH) study. Am J Respir Crit Care Med 171(11):1292–1297. doi:10.​1164/​rccm.​200410-1411OC PubMedCrossRef
38.
go back to reference van Wolferen SA, Marcus JT, Boonstra A, Marques KM, Bronzwaer JG, Spreeuwenberg MD, Postmus PE, Vonk-Noordegraaf A (2007) Prognostic value of right ventricular mass, volume, and function in idiopathic pulmonary arterial hypertension. Eur Heart J 28(10):1250–1257. doi:10.1093/eurheartj/ehl477 PubMedCrossRef van Wolferen SA, Marcus JT, Boonstra A, Marques KM, Bronzwaer JG, Spreeuwenberg MD, Postmus PE, Vonk-Noordegraaf A (2007) Prognostic value of right ventricular mass, volume, and function in idiopathic pulmonary arterial hypertension. Eur Heart J 28(10):1250–1257. doi:10.​1093/​eurheartj/​ehl477 PubMedCrossRef
39.
go back to reference Niemann PS, Pinho L, Balbach T, Galuschky C, Blankenhagen M, Silberbach M, Broberg C, Jerosch-Herold M, Sahn DJ (2007) Anatomically oriented right ventricular volume measurements with dynamic three-dimensional echocardiography validated by 3-Tesla magnetic resonance imaging. J Am Coll Cardiol 50(17):1668–1676. doi:10.1016/j.jacc.2007.07.031 PubMedCrossRef Niemann PS, Pinho L, Balbach T, Galuschky C, Blankenhagen M, Silberbach M, Broberg C, Jerosch-Herold M, Sahn DJ (2007) Anatomically oriented right ventricular volume measurements with dynamic three-dimensional echocardiography validated by 3-Tesla magnetic resonance imaging. J Am Coll Cardiol 50(17):1668–1676. doi:10.​1016/​j.​jacc.​2007.​07.​031 PubMedCrossRef
40.
go back to reference Winter MM, Bernink FJ, Groenink M, Bouma BJ, van Dijk AP, Helbing WA, Tijssen JG, Mulder BJ (2008) Evaluating the systemic right ventricle by CMR: the importance of consistent and reproducible delineation of the cavity. J Cardiovasc Magn Reson 10:40. doi:10.1186/1532-429X-10-40 PubMedCentralPubMedCrossRef Winter MM, Bernink FJ, Groenink M, Bouma BJ, van Dijk AP, Helbing WA, Tijssen JG, Mulder BJ (2008) Evaluating the systemic right ventricle by CMR: the importance of consistent and reproducible delineation of the cavity. J Cardiovasc Magn Reson 10:40. doi:10.​1186/​1532-429X-10-40 PubMedCentralPubMedCrossRef
41.
go back to reference Sheehan FH, Ge S, Vick GW 3rd, Urnes K, Kerwin WS, Bolson EL, Chung T, Kovalchin JP, Sahn DJ, Jerosch-Herold M, Stolpen AH (2008) Three-dimensional shape analysis of right ventricular remodeling in repaired tetralogy of Fallot. Am J Cardiol 101(1):107–113. doi:10.1016/j.amjcard.2007.07.080 PubMedCrossRef Sheehan FH, Ge S, Vick GW 3rd, Urnes K, Kerwin WS, Bolson EL, Chung T, Kovalchin JP, Sahn DJ, Jerosch-Herold M, Stolpen AH (2008) Three-dimensional shape analysis of right ventricular remodeling in repaired tetralogy of Fallot. Am J Cardiol 101(1):107–113. doi:10.​1016/​j.​amjcard.​2007.​07.​080 PubMedCrossRef
42.
go back to reference Babu-Narayan SV, Goktekin O, Moon JC, Broberg CS, Pantely GA, Pennell DJ, Gatzoulis MA, Kilner PJ (2005) Late gadolinium enhancement cardiovascular magnetic resonance of the systemic right ventricle in adults with previous atrial redirection surgery for transposition of the great arteries. Circulation 111(16):2091–2098. doi:10.1161/01.CIR.0000162463.61626.3B PubMedCrossRef Babu-Narayan SV, Goktekin O, Moon JC, Broberg CS, Pantely GA, Pennell DJ, Gatzoulis MA, Kilner PJ (2005) Late gadolinium enhancement cardiovascular magnetic resonance of the systemic right ventricle in adults with previous atrial redirection surgery for transposition of the great arteries. Circulation 111(16):2091–2098. doi:10.​1161/​01.​CIR.​0000162463.​61626.​3B PubMedCrossRef
43.
go back to reference Reiter G, Reiter U, Kovacs G, Kainz B, Schmidt K, Maier R, Olschewski H, Rienmueller R (2008) Magnetic resonance-derived 3-dimensional blood flow patterns in the main pulmonary artery as a marker of pulmonary hypertension and a measure of elevated mean pulmonary arterial pressure. Circ Cardiovasc Imaging 1(1):23–30. doi:10.1161/CIRCIMAGING.108.780247 PubMedCrossRef Reiter G, Reiter U, Kovacs G, Kainz B, Schmidt K, Maier R, Olschewski H, Rienmueller R (2008) Magnetic resonance-derived 3-dimensional blood flow patterns in the main pulmonary artery as a marker of pulmonary hypertension and a measure of elevated mean pulmonary arterial pressure. Circ Cardiovasc Imaging 1(1):23–30. doi:10.​1161/​CIRCIMAGING.​108.​780247 PubMedCrossRef
44.
go back to reference Folse R, Braunwald E (1962) Determination of fraction of left ventricular volume ejected per beat and of ventricular end-diastolic and residual volumes. Experimental and clinical observations with a precordial dilution technic. Circulation 25:674–685PubMedCrossRef Folse R, Braunwald E (1962) Determination of fraction of left ventricular volume ejected per beat and of ventricular end-diastolic and residual volumes. Experimental and clinical observations with a precordial dilution technic. Circulation 25:674–685PubMedCrossRef
45.
go back to reference Vogel M, Gutberlet M, Dittrich S, Hosten N, Lange PE (1997) Comparison of transthoracic three dimensional echocardiography with magnetic resonance imaging in the assessment of right ventricular volume and mass. Heart 78(2):127–130PubMedCentralPubMedCrossRef Vogel M, Gutberlet M, Dittrich S, Hosten N, Lange PE (1997) Comparison of transthoracic three dimensional echocardiography with magnetic resonance imaging in the assessment of right ventricular volume and mass. Heart 78(2):127–130PubMedCentralPubMedCrossRef
46.
go back to reference Pignatelli RH, McMahon CJ, Chung T, Vick GW 3rd (2003) Role of echocardiography versus MRI for the diagnosis of congenital heart disease. Curr Opin Cardiol 18(5):357–365PubMedCrossRef Pignatelli RH, McMahon CJ, Chung T, Vick GW 3rd (2003) Role of echocardiography versus MRI for the diagnosis of congenital heart disease. Curr Opin Cardiol 18(5):357–365PubMedCrossRef
47.
go back to reference Samyn MM (2004) A review of the complementary information available with cardiac magnetic resonance imaging and multi-slice computed tomography (CT) during the study of congenital heart disease. Int J Cardiovasc Imaging 20(6):569–578PubMedCrossRef Samyn MM (2004) A review of the complementary information available with cardiac magnetic resonance imaging and multi-slice computed tomography (CT) during the study of congenital heart disease. Int J Cardiovasc Imaging 20(6):569–578PubMedCrossRef
49.
go back to reference Raff GL, Glantz SA (1981) Volume loading slows left ventricular isovolumic relaxation rate. Evidence of load-dependent relaxation in the intact dog heart. Circ Res 48(6 Pt 1):813–824PubMedCrossRef Raff GL, Glantz SA (1981) Volume loading slows left ventricular isovolumic relaxation rate. Evidence of load-dependent relaxation in the intact dog heart. Circ Res 48(6 Pt 1):813–824PubMedCrossRef
50.
go back to reference Matsubara H, Takaki M, Yasuhara S, Araki J, Suga H (1995) Logistic time constant of isovolumic relaxation pressure-time curve in the canine left ventricle. Better alternative to exponential time constant. Circulation 92(8):2318–2326PubMedCrossRef Matsubara H, Takaki M, Yasuhara S, Araki J, Suga H (1995) Logistic time constant of isovolumic relaxation pressure-time curve in the canine left ventricle. Better alternative to exponential time constant. Circulation 92(8):2318–2326PubMedCrossRef
51.
go back to reference Bachman TN, Bursic JJ, Simon MA, Champion HC (2013) A novel acquisition technique to utilize swan-ganz catheter data as a surrogate for high-fidelity micromanometry within the right ventricle and pulmonary circuit. Cardiovasc Eng Tech 4(2):183–191. doi:10.1007/s13239-013-0124-z CrossRef Bachman TN, Bursic JJ, Simon MA, Champion HC (2013) A novel acquisition technique to utilize swan-ganz catheter data as a surrogate for high-fidelity micromanometry within the right ventricle and pulmonary circuit. Cardiovasc Eng Tech 4(2):183–191. doi:10.​1007/​s13239-013-0124-z CrossRef
52.
go back to reference Baan J, van der Velde ET, de Bruin HG, Smeenk GJ, Koops J, van Dijk AD, Temmerman D, Senden J, Buis B (1984) Continuous measurement of left ventricular volume in animals and humans by conductance catheter. Circulation 70(5):812–823PubMedCrossRef Baan J, van der Velde ET, de Bruin HG, Smeenk GJ, Koops J, van Dijk AD, Temmerman D, Senden J, Buis B (1984) Continuous measurement of left ventricular volume in animals and humans by conductance catheter. Circulation 70(5):812–823PubMedCrossRef
53.
go back to reference Kass DA, Yamazaki T, Burkhoff D, Maughan WL, Sagawa K (1986) Determination of left ventricular end-systolic pressure–volume relationships by the conductance (volume) catheter technique. Circulation 73(3):586–595PubMedCrossRef Kass DA, Yamazaki T, Burkhoff D, Maughan WL, Sagawa K (1986) Determination of left ventricular end-systolic pressure–volume relationships by the conductance (volume) catheter technique. Circulation 73(3):586–595PubMedCrossRef
54.
go back to reference Kass DA, Midei M, Graves W, Brinker JA, Maughan WL (1988) Use of a conductance (volume) catheter and transient inferior vena caval occlusion for rapid determination of pressure–volume relationships in man. Cathet Cardiovasc Diagn 15(3):192–202PubMedCrossRef Kass DA, Midei M, Graves W, Brinker JA, Maughan WL (1988) Use of a conductance (volume) catheter and transient inferior vena caval occlusion for rapid determination of pressure–volume relationships in man. Cathet Cardiovasc Diagn 15(3):192–202PubMedCrossRef
55.
go back to reference Geddes LA, Baker LE (1967) The specific resistance of biological material–a compendium of data for the biomedical engineer and physiologist. Med Biol Eng 5(3):271–293PubMedCrossRef Geddes LA, Baker LE (1967) The specific resistance of biological material–a compendium of data for the biomedical engineer and physiologist. Med Biol Eng 5(3):271–293PubMedCrossRef
56.
go back to reference Baan J, Jong TT, Kerkhof PL, Moene RJ, van Dijk AD, van der Velde ET, Koops J (1981) Continuous stroke volume and cardiac output from intra-ventricular dimensions obtained with impedance catheter. Cardiovasc Res 15(6):328–334PubMedCrossRef Baan J, Jong TT, Kerkhof PL, Moene RJ, van Dijk AD, van der Velde ET, Koops J (1981) Continuous stroke volume and cardiac output from intra-ventricular dimensions obtained with impedance catheter. Cardiovasc Res 15(6):328–334PubMedCrossRef
57.
go back to reference Steendijk P, van der Velde ET, Baan J (1992) Single and dual excitation of the conductance-volume catheter analysed in a spheroidal mathematical model of the canine left ventricle. Eur Heart J 13(Suppl E):28–34PubMedCrossRef Steendijk P, van der Velde ET, Baan J (1992) Single and dual excitation of the conductance-volume catheter analysed in a spheroidal mathematical model of the canine left ventricle. Eur Heart J 13(Suppl E):28–34PubMedCrossRef
58.
go back to reference Bishop A, White P, Groves P, Chaturvedi R, Brookes C, Redington A, Oldershaw P (1997) Right ventricular dysfunction during coronary artery occlusion: pressure–volume analysis using conductance catheters during coronary angioplasty. Heart 78(5):480–487PubMedCentralPubMedCrossRef Bishop A, White P, Groves P, Chaturvedi R, Brookes C, Redington A, Oldershaw P (1997) Right ventricular dysfunction during coronary artery occlusion: pressure–volume analysis using conductance catheters during coronary angioplasty. Heart 78(5):480–487PubMedCentralPubMedCrossRef
60.
go back to reference White PA, Bishop AJ, Conroy B, Oldershaw PJ, Redington AN (1995) The determination of volume of right ventricular casts using a conductance catheter. Eur Heart J 16(10):1425–1429PubMed White PA, Bishop AJ, Conroy B, Oldershaw PJ, Redington AN (1995) The determination of volume of right ventricular casts using a conductance catheter. Eur Heart J 16(10):1425–1429PubMed
61.
go back to reference Salo RW (1989) The theoretical basis of a computational model for the determination of volume by impedance. Automedica 11:299–310 Salo RW (1989) The theoretical basis of a computational model for the determination of volume by impedance. Automedica 11:299–310
62.
go back to reference White PA, Chaturvedi RR, Bishop AJ, Brookes CI, Oldershaw PJ, Redington AN (1996) Does parallel conductance vary during systole in the human right ventricle? Cardiovasc Res 32(5):901–908PubMedCrossRef White PA, Chaturvedi RR, Bishop AJ, Brookes CI, Oldershaw PJ, Redington AN (1996) Does parallel conductance vary during systole in the human right ventricle? Cardiovasc Res 32(5):901–908PubMedCrossRef
63.
go back to reference WhitePa Redington AN (2000) Right ventricular volume measurement: can conductance do it better? Physiol Meas 21(3):R23–R41PubMedCrossRef WhitePa Redington AN (2000) Right ventricular volume measurement: can conductance do it better? Physiol Meas 21(3):R23–R41PubMedCrossRef
64.
go back to reference Kornet L, Schreuder JJ, van der Velde ET, Baan J, Jansen JR (2000) A new approach to determine parallel conductance for left ventricular volume measurements. Cardiovasc Res 48(3):455–463PubMedCrossRef Kornet L, Schreuder JJ, van der Velde ET, Baan J, Jansen JR (2000) A new approach to determine parallel conductance for left ventricular volume measurements. Cardiovasc Res 48(3):455–463PubMedCrossRef
65.
go back to reference Coffman JD, Gregg DE (1960) Reactive hyperemia characteristics of the myocardium. Am J Physiol 199:1143–1149PubMed Coffman JD, Gregg DE (1960) Reactive hyperemia characteristics of the myocardium. Am J Physiol 199:1143–1149PubMed
68.
go back to reference Mancini GB, McGillem MJ, DeBoe SF, Gallagher KP (1989) The diastolic hyperemic flow versus pressure relation. A new index of coronary stenosis severity and flow reserve. Circulation 80(4):941–950PubMedCrossRef Mancini GB, McGillem MJ, DeBoe SF, Gallagher KP (1989) The diastolic hyperemic flow versus pressure relation. A new index of coronary stenosis severity and flow reserve. Circulation 80(4):941–950PubMedCrossRef
69.
go back to reference de Bruyne B, Bartunek J, Sys SU, Pijls NH, Heyndrickx GR, Wijns W (1996) Simultaneous coronary pressure and flow velocity measurements in humans. Feasibility, reproducibility, and hemodynamic dependence of coronary flow velocity reserve, hyperemic flow versus pressure slope index, and fractional flow reserve. Circulation 94(8):1842–1849PubMedCrossRef de Bruyne B, Bartunek J, Sys SU, Pijls NH, Heyndrickx GR, Wijns W (1996) Simultaneous coronary pressure and flow velocity measurements in humans. Feasibility, reproducibility, and hemodynamic dependence of coronary flow velocity reserve, hyperemic flow versus pressure slope index, and fractional flow reserve. Circulation 94(8):1842–1849PubMedCrossRef
70.
go back to reference Marcus ML, Wilson RF, White CW (1987) Methods of measurement of myocardial blood flow in patients: a critical review. Circulation 76(2):245–253PubMedCrossRef Marcus ML, Wilson RF, White CW (1987) Methods of measurement of myocardial blood flow in patients: a critical review. Circulation 76(2):245–253PubMedCrossRef
72.
go back to reference De Rosa R, Piccolo R, Cassese S, Petretta A, D’Andrea C, D’Anna C, Piscione F, Chiariello M (2011) Coronary flow reserve evaluation: basics, techniques and clinical applications. Minerva Cardioangiol 59(6):569–580PubMed De Rosa R, Piccolo R, Cassese S, Petretta A, D’Andrea C, D’Anna C, Piscione F, Chiariello M (2011) Coronary flow reserve evaluation: basics, techniques and clinical applications. Minerva Cardioangiol 59(6):569–580PubMed
73.
go back to reference Galderisi M, D’Errico A (2008) Beta-blockers and coronary flow reserve: the importance of a vasodilatory action. Drugs 68(5):579–590PubMedCrossRef Galderisi M, D’Errico A (2008) Beta-blockers and coronary flow reserve: the importance of a vasodilatory action. Drugs 68(5):579–590PubMedCrossRef
74.
go back to reference Cortigiani L, Rigo F, Sicari R, Gherardi S, Bovenzi F, Picano E (2009) Prognostic correlates of combined coronary flow reserve assessment on left anterior descending and right coronary artery in patients with negative stress echocardiography by wall motion criteria. Heart 95(17):1423–1428. doi:10.1136/hrt.2009.166439 PubMedCrossRef Cortigiani L, Rigo F, Sicari R, Gherardi S, Bovenzi F, Picano E (2009) Prognostic correlates of combined coronary flow reserve assessment on left anterior descending and right coronary artery in patients with negative stress echocardiography by wall motion criteria. Heart 95(17):1423–1428. doi:10.​1136/​hrt.​2009.​166439 PubMedCrossRef
75.
76.
go back to reference Galderisi M, Cicala S, De Simone L, Caso P, Petrocelli A, Pietropaolo L, Celentano A, Mininni N, de Divitiis O (2001) Impact of myocardial diastolic dysfunction on coronary flow reserve in hypertensive patients with left ventricular hypertrophy. Ital Heart J 2(9):677–684PubMed Galderisi M, Cicala S, De Simone L, Caso P, Petrocelli A, Pietropaolo L, Celentano A, Mininni N, de Divitiis O (2001) Impact of myocardial diastolic dysfunction on coronary flow reserve in hypertensive patients with left ventricular hypertrophy. Ital Heart J 2(9):677–684PubMed
77.
go back to reference Galderisi M, Cicala S, Caso P, De Simone L, D’Errico A, Petrocelli A, de Divitiis O (2002) Coronary flow reserve and myocardial diastolic dysfunction in arterial hypertension. Am J Cardiol 90(8):860–864PubMedCrossRef Galderisi M, Cicala S, Caso P, De Simone L, D’Errico A, Petrocelli A, de Divitiis O (2002) Coronary flow reserve and myocardial diastolic dysfunction in arterial hypertension. Am J Cardiol 90(8):860–864PubMedCrossRef
78.
go back to reference Teragaki M, Yanagi S, Toda I, Sakamoto K, Hirota K, Takeuchi K, Yoshikawa J (2003) Coronary flow reserve correlates left ventricular diastolic dysfunction in patients with dilated cardiomyopathy. Catheter Cardiovasc Interv 58(1):43–50. doi:10.1002/ccd.10349 PubMedCrossRef Teragaki M, Yanagi S, Toda I, Sakamoto K, Hirota K, Takeuchi K, Yoshikawa J (2003) Coronary flow reserve correlates left ventricular diastolic dysfunction in patients with dilated cardiomyopathy. Catheter Cardiovasc Interv 58(1):43–50. doi:10.​1002/​ccd.​10349 PubMedCrossRef
79.
go back to reference Galderisi M, de Simone G, D’Errico A, Sidiropulos M, Viceconti R, Chinali M, Mondillo S, de Divitiis O (2008) Independent association of coronary flow reserve with left ventricular relaxation and filling pressure in arterial hypertension. Am J Hypertens 21(9):1040–1046. doi:10.1038/ajh.2008.226 PubMedCrossRef Galderisi M, de Simone G, D’Errico A, Sidiropulos M, Viceconti R, Chinali M, Mondillo S, de Divitiis O (2008) Independent association of coronary flow reserve with left ventricular relaxation and filling pressure in arterial hypertension. Am J Hypertens 21(9):1040–1046. doi:10.​1038/​ajh.​2008.​226 PubMedCrossRef
80.
go back to reference Strauer BE, Motz W, Vogt M, Schwartzkopff B (1997) Evidence for reduced coronary flow reserve in patients with insulin-dependent diabetes. A possible cause for diabetic heart disease in man. Exp Clin Endocrinol Diabetes 105(1):15–20. doi:10.1055/s-0029-1211722 PubMedCrossRef Strauer BE, Motz W, Vogt M, Schwartzkopff B (1997) Evidence for reduced coronary flow reserve in patients with insulin-dependent diabetes. A possible cause for diabetic heart disease in man. Exp Clin Endocrinol Diabetes 105(1):15–20. doi:10.​1055/​s-0029-1211722 PubMedCrossRef
81.
go back to reference Kalkan GY, Gur M, Sahin DY, Baykan AO, Elbasan Z, Kuloglu O, Kivrak A, Turkoglu C, Arik OZ, Cayli M (2013) Coronary flow reserve and myocardial performance index in newly diagnosed diabetic patients. Echocardiography. doi:10.1111/echo.12275 Kalkan GY, Gur M, Sahin DY, Baykan AO, Elbasan Z, Kuloglu O, Kivrak A, Turkoglu C, Arik OZ, Cayli M (2013) Coronary flow reserve and myocardial performance index in newly diagnosed diabetic patients. Echocardiography. doi:10.​1111/​echo.​12275
82.
go back to reference Hadjiloizou N, Davies JE, Malik IS, Aguado-Sierra J, Willson K, Foale RA, Parker KH, Hughes AD, Francis DP, Mayet J (2008) Differences in cardiac microcirculatory wave patterns between the proximal left mainstem and proximal right coronary artery. Am J Physiol Heart Circ Physiol 295(3):H1198–H1205. doi:10.1152/ajpheart.00510.2008 PubMedCentralPubMedCrossRef Hadjiloizou N, Davies JE, Malik IS, Aguado-Sierra J, Willson K, Foale RA, Parker KH, Hughes AD, Francis DP, Mayet J (2008) Differences in cardiac microcirculatory wave patterns between the proximal left mainstem and proximal right coronary artery. Am J Physiol Heart Circ Physiol 295(3):H1198–H1205. doi:10.​1152/​ajpheart.​00510.​2008 PubMedCentralPubMedCrossRef
83.
go back to reference Bernheim PL (1910) L’asystolie veneuse dans l’hypertrophie du coeur gauche par stenote concomitante du ventricule droit. Rev Med 39:785 Bernheim PL (1910) L’asystolie veneuse dans l’hypertrophie du coeur gauche par stenote concomitante du ventricule droit. Rev Med 39:785
84.
go back to reference Henderson Y, Prince AL (1914) The relative systolic discharges of the right and left ventricles and their bearing on pulmonary congestion and depletion. Heart 4:217–226 Henderson Y, Prince AL (1914) The relative systolic discharges of the right and left ventricles and their bearing on pulmonary congestion and depletion. Heart 4:217–226
85.
go back to reference Efthimiadis GK, Parharidis GE, Gemitzis KD, Nouskas IG, Karvounis HI, Styliadis IK, Louridas GE (1999) Doppler echocardiographic evaluation of right ventricular diastolic function in isolated valvular aortic stenosis. J Heart Valve Dis 8(3):261–269PubMed Efthimiadis GK, Parharidis GE, Gemitzis KD, Nouskas IG, Karvounis HI, Styliadis IK, Louridas GE (1999) Doppler echocardiographic evaluation of right ventricular diastolic function in isolated valvular aortic stenosis. J Heart Valve Dis 8(3):261–269PubMed
86.
go back to reference Efthimiadis GK, Parharidis GE, Karvounis HI, Gemitzis KD, Styliadis IH, Louridas GE (2002) Doppler echocardiographic evaluation of right ventricular diastolic function in hypertrophic cardiomyopathy. Eur J Echocardiogr 3(2):143–148PubMedCrossRef Efthimiadis GK, Parharidis GE, Karvounis HI, Gemitzis KD, Styliadis IH, Louridas GE (2002) Doppler echocardiographic evaluation of right ventricular diastolic function in hypertrophic cardiomyopathy. Eur J Echocardiogr 3(2):143–148PubMedCrossRef
88.
go back to reference Faber MJ, Dalinghaus M, Lankhuizen IM, Steendijk P, Hop WC, Schoemaker RG, Duncker DJ, Lamers JM, Helbing WA (2006) Right and left ventricular function after chronic pulmonary artery banding in rats assessed with biventricular pressure–volume loops. Am J Physiol Heart Circ Physiol 291(4):H1580–H1586. doi:10.1152/ajpheart.00286.2006 PubMedCrossRef Faber MJ, Dalinghaus M, Lankhuizen IM, Steendijk P, Hop WC, Schoemaker RG, Duncker DJ, Lamers JM, Helbing WA (2006) Right and left ventricular function after chronic pulmonary artery banding in rats assessed with biventricular pressure–volume loops. Am J Physiol Heart Circ Physiol 291(4):H1580–H1586. doi:10.​1152/​ajpheart.​00286.​2006 PubMedCrossRef
89.
go back to reference Sunagawa K, Maughan WL, Burkhoff D, Sagawa K (1983) Left ventricular interaction with arterial load studied in isolated canine ventricle. Am J Physiol 245(5 Pt 1):H773–H780PubMed Sunagawa K, Maughan WL, Burkhoff D, Sagawa K (1983) Left ventricular interaction with arterial load studied in isolated canine ventricle. Am J Physiol 245(5 Pt 1):H773–H780PubMed
90.
go back to reference Yaginuma T, Noda T, Tsuchiya M, Takazawa K, Tanaka H, Kotoda K, Hosoda S (1985) Interaction of left ventricular contraction and aortic input impedance in experimental and clinical studies. Jpn Circ J 49(2):206–214PubMedCrossRef Yaginuma T, Noda T, Tsuchiya M, Takazawa K, Tanaka H, Kotoda K, Hosoda S (1985) Interaction of left ventricular contraction and aortic input impedance in experimental and clinical studies. Jpn Circ J 49(2):206–214PubMedCrossRef
91.
go back to reference Sasayama S, Asanoi H (1991) Coupling between the heart and arterial system in heart failure. Am Journal Med 90(5B):14S–18SCrossRef Sasayama S, Asanoi H (1991) Coupling between the heart and arterial system in heart failure. Am Journal Med 90(5B):14S–18SCrossRef
93.
go back to reference Saouti N, Westerhof N, Helderman F, Marcus JT, Boonstra A, Postmus PE, Vonk-Noordegraaf A (2010) Right ventricular oscillatory power is a constant fraction of total power irrespective of pulmonary artery pressure. Am J Respir Crit Care Med 182(10):1315–1320. doi:10.1164/rccm.200910-1643OC PubMedCrossRef Saouti N, Westerhof N, Helderman F, Marcus JT, Boonstra A, Postmus PE, Vonk-Noordegraaf A (2010) Right ventricular oscillatory power is a constant fraction of total power irrespective of pulmonary artery pressure. Am J Respir Crit Care Med 182(10):1315–1320. doi:10.​1164/​rccm.​200910-1643OC PubMedCrossRef
94.
go back to reference Chen CH, Nakayama M, Nevo E, Fetics BJ, Maughan WL, Kass DA (1998) Coupled systolic-ventricular and vascular stiffening with age: implications for pressure regulation and cardiac reserve in the elderly. J Am Coll Cardiol 32(5):1221–1227PubMedCrossRef Chen CH, Nakayama M, Nevo E, Fetics BJ, Maughan WL, Kass DA (1998) Coupled systolic-ventricular and vascular stiffening with age: implications for pressure regulation and cardiac reserve in the elderly. J Am Coll Cardiol 32(5):1221–1227PubMedCrossRef
95.
go back to reference Leite-Moreira AF, Correia-Pinto J, Gillebert TC (1999) Afterload induced changes in myocardial relaxation: a mechanism for diastolic dysfunction. Cardiovasc Res 43(2):344–353PubMedCrossRef Leite-Moreira AF, Correia-Pinto J, Gillebert TC (1999) Afterload induced changes in myocardial relaxation: a mechanism for diastolic dysfunction. Cardiovasc Res 43(2):344–353PubMedCrossRef
96.
go back to reference Sunagawa K, Maughan WL, Sagawa K (1985) Optimal arterial resistance for the maximal stroke work studied in isolated canine left ventricle. Circ Res 56(4):586–595PubMedCrossRef Sunagawa K, Maughan WL, Sagawa K (1985) Optimal arterial resistance for the maximal stroke work studied in isolated canine left ventricle. Circ Res 56(4):586–595PubMedCrossRef
97.
go back to reference Kawaguchi M, Hay I, Fetics B, Kass DA (2003) Combined ventricular systolic and arterial stiffening in patients with heart failure and preserved ejection fraction: implications for systolic and diastolic reserve limitations. Circulation 107(5):714–720PubMedCrossRef Kawaguchi M, Hay I, Fetics B, Kass DA (2003) Combined ventricular systolic and arterial stiffening in patients with heart failure and preserved ejection fraction: implications for systolic and diastolic reserve limitations. Circulation 107(5):714–720PubMedCrossRef
98.
go back to reference Hoette S, O’Callaghan DS, Jardim C, Souza R (2010) Dual receptor blockade by bosentan: clinical experience in treatment of pulmonary hypertension. J Receptor Ligand Channel Res 3:113–121 Hoette S, O’Callaghan DS, Jardim C, Souza R (2010) Dual receptor blockade by bosentan: clinical experience in treatment of pulmonary hypertension. J Receptor Ligand Channel Res 3:113–121
99.
go back to reference Tedford RJ, Mudd JO, Girgis RE, Mathai SC, Zaiman AL, Housten-Harris T, Boyce D, Kelemen BW, Bacher AC, Shah AA, Hummers LK, Wigley FM, Russell SD, Saggar R, Saggar R, Maughan WL, Hassoun PM, Kass DA (2013) Right ventricular dysfunction in systemic sclerosis-associated pulmonary arterial hypertension. Circ Heart Fail 6(5):953–963. doi:10.1161/circheartfailure.112.000008 PubMedCrossRef Tedford RJ, Mudd JO, Girgis RE, Mathai SC, Zaiman AL, Housten-Harris T, Boyce D, Kelemen BW, Bacher AC, Shah AA, Hummers LK, Wigley FM, Russell SD, Saggar R, Saggar R, Maughan WL, Hassoun PM, Kass DA (2013) Right ventricular dysfunction in systemic sclerosis-associated pulmonary arterial hypertension. Circ Heart Fail 6(5):953–963. doi:10.​1161/​circheartfailure​.​112.​000008 PubMedCrossRef
100.
go back to reference Redington AN, Rigby ML, Shinebourne EA, Oldershaw PJ (1990) Changes in the pressure–volume relation of the right ventricle when its loading conditions are modified. Br Heart J 63(1):45–49PubMedCentralPubMedCrossRef Redington AN, Rigby ML, Shinebourne EA, Oldershaw PJ (1990) Changes in the pressure–volume relation of the right ventricle when its loading conditions are modified. Br Heart J 63(1):45–49PubMedCentralPubMedCrossRef
101.
go back to reference Read PA, Hoole SP, White PA, Khan FZ, O’Sullivan M, West NE, Dutka DP (2011) A pilot study to assess whether glucagon-like peptide-1 protects the heart from ischemic dysfunction and attenuates stunning after coronary balloon occlusion in humans. Circ Cardiovasc Interv 4(3):266–272PubMedCrossRef Read PA, Hoole SP, White PA, Khan FZ, O’Sullivan M, West NE, Dutka DP (2011) A pilot study to assess whether glucagon-like peptide-1 protects the heart from ischemic dysfunction and attenuates stunning after coronary balloon occlusion in humans. Circ Cardiovasc Interv 4(3):266–272PubMedCrossRef
Metadata
Title
RV diastolic dysfunction: time to re-evaluate its importance in heart failure
Authors
Richard G. Axell
Stephen P. Hoole
James Hampton-Till
Paul A. White
Publication date
01-05-2015
Publisher
Springer US
Published in
Heart Failure Reviews / Issue 3/2015
Print ISSN: 1382-4147
Electronic ISSN: 1573-7322
DOI
https://doi.org/10.1007/s10741-015-9472-0

Other articles of this Issue 3/2015

Heart Failure Reviews 3/2015 Go to the issue