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Published in: Intensive Care Medicine 6/2018

01-06-2018 | Review

Diagnostic workup, etiologies and management of acute right ventricle failure

A state-of-the-art paper

Authors: Antoine Vieillard-Baron, R. Naeije, F. Haddad, H. J. Bogaard, T. M. Bull, N. Fletcher, T. Lahm, S. Magder, S. Orde, G. Schmidt, M. R. Pinsky

Published in: Intensive Care Medicine | Issue 6/2018

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Abstract

Introduction

This is a state-of-the-art article of the diagnostic process, etiologies and management of acute right ventricular (RV) failure in critically ill patients. It is based on a large review of previously published articles in the field, as well as the expertise of the authors.

Results

The authors propose the ten key points and directions for future research in the field. RV failure (RVF) is frequent in the ICU, magnified by the frequent need for positive pressure ventilation. While no universal definition of RVF is accepted, we propose that RVF may be defined as a state in which the right ventricle is unable to meet the demands for blood flow without excessive use of the Frank–Starling mechanism (i.e. increase in stroke volume associated with increased preload). Both echocardiography and hemodynamic monitoring play a central role in the evaluation of RVF in the ICU. Management of RVF includes treatment of the causes, respiratory optimization and hemodynamic support. The administration of fluids is potentially deleterious and unlikely to lead to improvement in cardiac output in the majority of cases. Vasopressors are needed in the setting of shock to restore the systemic pressure and avoid RV ischemia; inotropic drug or inodilator therapies may also be needed. In the most severe cases, recent mechanical circulatory support devices are proposed to unload the RV and improve organ perfusion

Conclusion

RV function evaluation is key in the critically-ill patients for hemodynamic management, as fluid optimization, vasopressor strategy and respiratory support. RV failure may be diagnosed by the association of different devices and parameters, while echocardiography is crucial.
Literature
1.
go back to reference Guyton AC (1955) Determination of cardiac output by equating venous return curves with cardiac response curves. Physiol Rev 35:123–129PubMedCrossRef Guyton AC (1955) Determination of cardiac output by equating venous return curves with cardiac response curves. Physiol Rev 35:123–129PubMedCrossRef
2.
go back to reference Scharf S, Brown R, Saunders N, Green L (1980) Hemodynamic effects of positive pressure inflation. J Appl Physiol 49:124–131PubMedCrossRef Scharf S, Brown R, Saunders N, Green L (1980) Hemodynamic effects of positive pressure inflation. J Appl Physiol 49:124–131PubMedCrossRef
3.
go back to reference Vieillard-Baron A, Chergui K, Augarde R, Prin S, Page B, Beauchet A, Jardin F (2003) Cyclic changes in arterial pulse during respiratory support revisited by Doppler echocardiography. Am J Respir Crit Care Med 168:671–676PubMedCrossRef Vieillard-Baron A, Chergui K, Augarde R, Prin S, Page B, Beauchet A, Jardin F (2003) Cyclic changes in arterial pulse during respiratory support revisited by Doppler echocardiography. Am J Respir Crit Care Med 168:671–676PubMedCrossRef
4.
go back to reference Mercat A, Diehl JL, Meyer G, Teboul JL, Sors H (1999) Hemodynamic effects of fluid loading in acute massive pulmonary embolism. Crit Care Med 27:540–544PubMedCrossRef Mercat A, Diehl JL, Meyer G, Teboul JL, Sors H (1999) Hemodynamic effects of fluid loading in acute massive pulmonary embolism. Crit Care Med 27:540–544PubMedCrossRef
5.
go back to reference Mahjoub Y, Pila C, Friggeri A, Zogheib E, Lobjoie E, Tinturier F, Galy C, Slama M, Dupont H (2009) Assessing fluid responsiveness in critically ill patients: false-positive pulse pressure variation is detected by Doppler echocardiographic evaluation of the right ventricle. Crit Care Med 37:2570–2575PubMedCrossRef Mahjoub Y, Pila C, Friggeri A, Zogheib E, Lobjoie E, Tinturier F, Galy C, Slama M, Dupont H (2009) Assessing fluid responsiveness in critically ill patients: false-positive pulse pressure variation is detected by Doppler echocardiographic evaluation of the right ventricle. Crit Care Med 37:2570–2575PubMedCrossRef
6.
go back to reference Harjola VP, Mebazaa A, Celutkiene J, Bettex D, Bueno H, Chioncel O, Crespo-Leiro MG, Falk V, Filippatos G, Giggs S, Leite-Moreira A, Lassus J, Masip J, Mueller C, Mullens W, Naeije R, Nordegraaf AV, Parissos J, Riley JP, Ristic A, Rosano G, Rudiger A, Ruschitzka F, Seferovic P, SztrymfB Vieillard-Baron A, Yilmaz MB, Konstantinides S (2016) Contemporary management of acute right ventricular failure: a statement from the heart failure association and the working group on pulmonary circulation and right ventricular function of the European Society of Cardiology. Eur J Heart Fail 18:226–241PubMedCrossRef Harjola VP, Mebazaa A, Celutkiene J, Bettex D, Bueno H, Chioncel O, Crespo-Leiro MG, Falk V, Filippatos G, Giggs S, Leite-Moreira A, Lassus J, Masip J, Mueller C, Mullens W, Naeije R, Nordegraaf AV, Parissos J, Riley JP, Ristic A, Rosano G, Rudiger A, Ruschitzka F, Seferovic P, SztrymfB Vieillard-Baron A, Yilmaz MB, Konstantinides S (2016) Contemporary management of acute right ventricular failure: a statement from the heart failure association and the working group on pulmonary circulation and right ventricular function of the European Society of Cardiology. Eur J Heart Fail 18:226–241PubMedCrossRef
7.
go back to reference Jardin F, Dubourg O, Bourdarias JP (1997) Echocardiographic pattern of acute cor pulmonale. Chest 111:209–217PubMedCrossRef Jardin F, Dubourg O, Bourdarias JP (1997) Echocardiographic pattern of acute cor pulmonale. Chest 111:209–217PubMedCrossRef
8.
go back to reference Vonk Noordegraaf A, Westerhof BE, Westerhof N (2017) The relationship between the right ventricle and its load in pulmonary hypertension. J Am Coll Cardiol 69:236–243PubMedCrossRef Vonk Noordegraaf A, Westerhof BE, Westerhof N (2017) The relationship between the right ventricle and its load in pulmonary hypertension. J Am Coll Cardiol 69:236–243PubMedCrossRef
9.
go back to reference Sagawa Maughan, Suga Sunagawa, Sagawa K, Maughan L, Suga H, Sunagawa K (1988) Cardiac contraction and the pressure–volume relationship. Oxford University Press, New York Sagawa Maughan, Suga Sunagawa, Sagawa K, Maughan L, Suga H, Sunagawa K (1988) Cardiac contraction and the pressure–volume relationship. Oxford University Press, New York
10.
go back to reference Friedberg MK, Redington AN (2014) Right versus left ventricular failure: differences, similarities and interactions. Circulation 29:1033–1044CrossRef Friedberg MK, Redington AN (2014) Right versus left ventricular failure: differences, similarities and interactions. Circulation 29:1033–1044CrossRef
11.
go back to reference Goldstein JA, Vlahakes GJ, Verrier ED, Schiller NB, Tyberg JV, Ports TA, Parmley WW, Chatterjee K (1982) The role of right ventricular systolic dysfunction and elevated intrapericardial pressure in the genesis of low output in experimental right ventricular infarction. Circulation 65:513–522PubMedCrossRef Goldstein JA, Vlahakes GJ, Verrier ED, Schiller NB, Tyberg JV, Ports TA, Parmley WW, Chatterjee K (1982) The role of right ventricular systolic dysfunction and elevated intrapericardial pressure in the genesis of low output in experimental right ventricular infarction. Circulation 65:513–522PubMedCrossRef
12.
go back to reference Cross CE (1962) Right ventricular pressure and coronary flow. Am J Physiol 202:12–16PubMed Cross CE (1962) Right ventricular pressure and coronary flow. Am J Physiol 202:12–16PubMed
13.
go back to reference Naeije R, Badagliacca R (2017) The overloaded right ventricle and ventricular interdependence. Cardiovasc Res 113:1474–1485PubMedCrossRef Naeije R, Badagliacca R (2017) The overloaded right ventricle and ventricular interdependence. Cardiovasc Res 113:1474–1485PubMedCrossRef
14.
go back to reference Naeije R, Manes A (2014) The right ventricle in pulmonary arterial hypertension. Eur Respir Rev 23:476–487PubMedCrossRef Naeije R, Manes A (2014) The right ventricle in pulmonary arterial hypertension. Eur Respir Rev 23:476–487PubMedCrossRef
15.
go back to reference Ventetuolo CE, Klinger JR (2014) Management of right ventricular failure in the intensive care unit. Ann Thorac Surg 11:811–822 Ventetuolo CE, Klinger JR (2014) Management of right ventricular failure in the intensive care unit. Ann Thorac Surg 11:811–822
16.
go back to reference Katira BH, Giesinger RE, Engelberts D, Zabini D, Kornecki A, Otulakowski G, Yoshida T, Kuebler WM, McNamara PJ, Connelly KA, Kavanagh BP (2017) Adverse heart-lung interactions in ventilator-induced lung injury. Am J Respir Crit Care Med 196:1411–1421PubMedCrossRef Katira BH, Giesinger RE, Engelberts D, Zabini D, Kornecki A, Otulakowski G, Yoshida T, Kuebler WM, McNamara PJ, Connelly KA, Kavanagh BP (2017) Adverse heart-lung interactions in ventilator-induced lung injury. Am J Respir Crit Care Med 196:1411–1421PubMedCrossRef
17.
go back to reference Bull TM, Clark B, McFann K, Moss M, National Institutes of Health/National Heart, Lung, and Blood institute ARDS Network (2010) Pulmonary vascular dysfunction is associated with poor outcomes in patients with acute lung injury. Am J Respir Crit Care Med 182:1123–1128PubMedPubMedCentralCrossRef Bull TM, Clark B, McFann K, Moss M, National Institutes of Health/National Heart, Lung, and Blood institute ARDS Network (2010) Pulmonary vascular dysfunction is associated with poor outcomes in patients with acute lung injury. Am J Respir Crit Care Med 182:1123–1128PubMedPubMedCentralCrossRef
18.
go back to reference Repessé X, Charron C, Vieillard-Baron A (2015) Acute cor pulmonale in ARDS: rationale for protecting the right ventricle. Chest 147:259–265PubMedCrossRef Repessé X, Charron C, Vieillard-Baron A (2015) Acute cor pulmonale in ARDS: rationale for protecting the right ventricle. Chest 147:259–265PubMedCrossRef
19.
go back to reference Price LC, McAuley DF, Marino PS, Finney SJ, Griffiths MS, Wort SJ (2012) Pathophysiology of pulmonary hypertension in acute lung injury. Am J Physiol Lung Cell Mol Physiol 302:L803–L815PubMedPubMedCentralCrossRef Price LC, McAuley DF, Marino PS, Finney SJ, Griffiths MS, Wort SJ (2012) Pathophysiology of pulmonary hypertension in acute lung injury. Am J Physiol Lung Cell Mol Physiol 302:L803–L815PubMedPubMedCentralCrossRef
20.
go back to reference Mekontso-Dessap A, Boissier F, Charron C, Bégot E, Repessé X, Legras A, Brun-Buisson C, Vignon P, Vieillard-Baron A (2016) Acute cor pulmonale during protective ventilation for acute respiratory distress syndrome: prevalence, predictors, and clinical impact. Intensive Care Med 42:862–870PubMedCrossRef Mekontso-Dessap A, Boissier F, Charron C, Bégot E, Repessé X, Legras A, Brun-Buisson C, Vignon P, Vieillard-Baron A (2016) Acute cor pulmonale during protective ventilation for acute respiratory distress syndrome: prevalence, predictors, and clinical impact. Intensive Care Med 42:862–870PubMedCrossRef
21.
go back to reference Boissier F, Katsahian S, Razazi K, Thille AW, Roche-Campo F, Leon R, Vivier E, Brochard L, Vieillard-Baron A, Brun-Buisson C, Mekontso-Dessap A (2013) Prevalence and prognosis of cor pulmonale during protective ventilation for acute respiratory distress syndrome. Intensive Care Med 39:1725–1733PubMedCrossRef Boissier F, Katsahian S, Razazi K, Thille AW, Roche-Campo F, Leon R, Vivier E, Brochard L, Vieillard-Baron A, Brun-Buisson C, Mekontso-Dessap A (2013) Prevalence and prognosis of cor pulmonale during protective ventilation for acute respiratory distress syndrome. Intensive Care Med 39:1725–1733PubMedCrossRef
22.
go back to reference Kucher N, Rossi E, De Rosa M, Goldhaber SZ (2006) Massive pulmonary embolism. Circulation 113:577–582PubMedCrossRef Kucher N, Rossi E, De Rosa M, Goldhaber SZ (2006) Massive pulmonary embolism. Circulation 113:577–582PubMedCrossRef
23.
go back to reference Grifoni S, Olivotto I, Cecchini P, Pieralli F, Camaiti A, Santoro G, Conti A, Agnelli G, Berni G (2000) Short-term clinical outcome of patients with acute pulmonary embolism, normal blood pressure, and echocardiographic right ventricular dysfunction. Circulation 101:2817–2822PubMedCrossRef Grifoni S, Olivotto I, Cecchini P, Pieralli F, Camaiti A, Santoro G, Conti A, Agnelli G, Berni G (2000) Short-term clinical outcome of patients with acute pulmonary embolism, normal blood pressure, and echocardiographic right ventricular dysfunction. Circulation 101:2817–2822PubMedCrossRef
24.
go back to reference Mekontso-Dessap A, Deux JF, Abidi N, Lavenu-Bombled C, Melica G, Renaud B, Godeau B, Adnot S, Brochard L, Brun-Buisson C, Galacteros F, Rahmouni A, Habibi A, Maitre B (2011) Pulmonary artery thrombosis during acute chest syndrome in sickle cell disease. Am J Respir Crit Care Med 184:1022–1029PubMedCrossRef Mekontso-Dessap A, Deux JF, Abidi N, Lavenu-Bombled C, Melica G, Renaud B, Godeau B, Adnot S, Brochard L, Brun-Buisson C, Galacteros F, Rahmouni A, Habibi A, Maitre B (2011) Pulmonary artery thrombosis during acute chest syndrome in sickle cell disease. Am J Respir Crit Care Med 184:1022–1029PubMedCrossRef
25.
go back to reference Cecchini J, Boissier F, Gibelin A, de Prost N, Razazi K, Carteau G, Galacteros F, Maitre B, Brun-Buisson C, Mekontiso Dessap A (2016) Pulmonary vascular dysfunction and cor pulmonale during acute respiratory distress syndrome in sicklers. Shock 46:358–364PubMedCrossRef Cecchini J, Boissier F, Gibelin A, de Prost N, Razazi K, Carteau G, Galacteros F, Maitre B, Brun-Buisson C, Mekontiso Dessap A (2016) Pulmonary vascular dysfunction and cor pulmonale during acute respiratory distress syndrome in sicklers. Shock 46:358–364PubMedCrossRef
27.
go back to reference Morrison DA, Adcock K, Collins CM, Goldman S, Caldwell JH, Schwarz MI (1987) Right ventricular dysfunction and the exercise limitation of chronic obstructive pulmonary disease. J Am Coll Cardiol 9:1219–1229PubMedCrossRef Morrison DA, Adcock K, Collins CM, Goldman S, Caldwell JH, Schwarz MI (1987) Right ventricular dysfunction and the exercise limitation of chronic obstructive pulmonary disease. J Am Coll Cardiol 9:1219–1229PubMedCrossRef
28.
go back to reference Mohammed SF, Hussain I, Abou Ezzedine OF, Takahama H, Kwon SH, Forfia P, Roger VL, Redfield MM (2014) Right ventricular function in heart failure with preserved ejection fraction: a community-based study. Circulation 130:2310–2320PubMedPubMedCentralCrossRef Mohammed SF, Hussain I, Abou Ezzedine OF, Takahama H, Kwon SH, Forfia P, Roger VL, Redfield MM (2014) Right ventricular function in heart failure with preserved ejection fraction: a community-based study. Circulation 130:2310–2320PubMedPubMedCentralCrossRef
29.
go back to reference Hoeper MM, Granton J (2011) Intensive Care unit management of patients with severe pulmonary hypertension and right heart failure. Am J Respir Crit Care Med 184:1114–1124PubMedCrossRef Hoeper MM, Granton J (2011) Intensive Care unit management of patients with severe pulmonary hypertension and right heart failure. Am J Respir Crit Care Med 184:1114–1124PubMedCrossRef
30.
go back to reference Sztrymf B, Souza R, Bertoletti L, Jaïs X, Sitbon O, Price LC, Simonneau G, Humbert M (2010) Prognostic factors of acute heart failure in patients with pulmonary arterial hypertension. Eur Respir J 35:1286–1293PubMedCrossRef Sztrymf B, Souza R, Bertoletti L, Jaïs X, Sitbon O, Price LC, Simonneau G, Humbert M (2010) Prognostic factors of acute heart failure in patients with pulmonary arterial hypertension. Eur Respir J 35:1286–1293PubMedCrossRef
31.
go back to reference Hamon M, Agostini D, Le Page O, Riddell JW, Hamon M (2008) Prognostic impact of right ventricular involvement in patients with acute myocardial infarction: meta-analysis. Crit Care Med 36:2023–2033PubMedCrossRef Hamon M, Agostini D, Le Page O, Riddell JW, Hamon M (2008) Prognostic impact of right ventricular involvement in patients with acute myocardial infarction: meta-analysis. Crit Care Med 36:2023–2033PubMedCrossRef
32.
go back to reference Bougouin W, Aissaoui N, Combes A, Deye N, Lamhaut L, Jost D, Maupain C, Beganton F, Bougle A, Karam N, Dumas F, Marijon E, Jouven X, Cariou A (2017) Post-cardiac arrest shock treated with veno-arterial extracorporeal membrane oxygenation: an observational study and propensity-score analysis. Resuscitation 110:126–132PubMedCrossRef Bougouin W, Aissaoui N, Combes A, Deye N, Lamhaut L, Jost D, Maupain C, Beganton F, Bougle A, Karam N, Dumas F, Marijon E, Jouven X, Cariou A (2017) Post-cardiac arrest shock treated with veno-arterial extracorporeal membrane oxygenation: an observational study and propensity-score analysis. Resuscitation 110:126–132PubMedCrossRef
33.
go back to reference Wardi G, Blanchard D, Dittrich T, Kaushal K, Sell R (2016) Right ventricle dysfunction and echocardiographic parameters in the post-cardiac arrest patients: a retrospective cohort study. Resuscitation 103:71–74PubMedCrossRef Wardi G, Blanchard D, Dittrich T, Kaushal K, Sell R (2016) Right ventricle dysfunction and echocardiographic parameters in the post-cardiac arrest patients: a retrospective cohort study. Resuscitation 103:71–74PubMedCrossRef
34.
go back to reference Haddad F, Couture P, Tousignant C, Denault A (2009) The right ventricle in cardiac surgery, a perioperative perspective: II. Pathophysiology, clinical importance, and management. Anesth Analg 108:422–433PubMedCrossRef Haddad F, Couture P, Tousignant C, Denault A (2009) The right ventricle in cardiac surgery, a perioperative perspective: II. Pathophysiology, clinical importance, and management. Anesth Analg 108:422–433PubMedCrossRef
35.
go back to reference Dávila-Román VG, Waggoner AD, Hopkins WE, Barzilai B (1995) Right ventricular dysfunction in low output syndrome after cardiac operations: assessment by transesophageal echocardiography. Ann Thorac Surg 60:1081–1086PubMedCrossRef Dávila-Román VG, Waggoner AD, Hopkins WE, Barzilai B (1995) Right ventricular dysfunction in low output syndrome after cardiac operations: assessment by transesophageal echocardiography. Ann Thorac Surg 60:1081–1086PubMedCrossRef
36.
go back to reference Kaul TK, Fields BL (2000) Postoperative acute refractory right ventricular failure—incidence, pathogenesis, management and prognosis. Cardiovasc Surg 8:1–9PubMedCrossRef Kaul TK, Fields BL (2000) Postoperative acute refractory right ventricular failure—incidence, pathogenesis, management and prognosis. Cardiovasc Surg 8:1–9PubMedCrossRef
38.
go back to reference Grant AD, Smedira NG, Starling RC, Marwick TH (2012) Independent and incremental role of quantitative right ventricular evaluation for the prediction of right ventricular failure after left ventricular assist device implantation. J Am Coll Cardiol 60:521–528PubMedCrossRef Grant AD, Smedira NG, Starling RC, Marwick TH (2012) Independent and incremental role of quantitative right ventricular evaluation for the prediction of right ventricular failure after left ventricular assist device implantation. J Am Coll Cardiol 60:521–528PubMedCrossRef
39.
go back to reference The EUROMACS (European Registry for Patients with Mechanical Circulatory Support) right-sided heart failure risk score (2017) Derivation and validation of a novel right-sided heart failure model after implantation of continuous flow left ventricular assist devices. Circulation 136. https://doi.org/10.1161/circulationaha.117.030543 The EUROMACS (European Registry for Patients with Mechanical Circulatory Support) right-sided heart failure risk score (2017) Derivation and validation of a novel right-sided heart failure model after implantation of continuous flow left ventricular assist devices. Circulation 136. https://​doi.​org/​10.​1161/​circulationaha.​117.​030543
41.
go back to reference Ponikowski P, Voors AA, Anker SD et al (2016) 2016 ESC guidelines for the diagnosis and treatment of acute and chronic heart failure. Eur Heart J 37:2129–2200PubMedCrossRef Ponikowski P, Voors AA, Anker SD et al (2016) 2016 ESC guidelines for the diagnosis and treatment of acute and chronic heart failure. Eur Heart J 37:2129–2200PubMedCrossRef
42.
go back to reference Krishnan S, Schmidt GA (2015) Acute right ventricular dysfunction: real-time management with echocardiography. Chest 147:835–846PubMedCrossRef Krishnan S, Schmidt GA (2015) Acute right ventricular dysfunction: real-time management with echocardiography. Chest 147:835–846PubMedCrossRef
43.
go back to reference Hoeper MM, Galié N, Murali S, Olschewski H, Rubenfire M, Robbins IM, Farber HW, McLaughlin V, Shapiro S, Pepke-Zaba J, Winkler J, Ewert R, Opotz C, Westerkamp V, Vachiery JL, Torbicki A, Behr J, Barst RJ (2002) Outcome after cardiopulmonary resuscitation in patients with pulmonary arterial hypertension. Am J Respir Crit Care Med 165:341–344PubMedCrossRef Hoeper MM, Galié N, Murali S, Olschewski H, Rubenfire M, Robbins IM, Farber HW, McLaughlin V, Shapiro S, Pepke-Zaba J, Winkler J, Ewert R, Opotz C, Westerkamp V, Vachiery JL, Torbicki A, Behr J, Barst RJ (2002) Outcome after cardiopulmonary resuscitation in patients with pulmonary arterial hypertension. Am J Respir Crit Care Med 165:341–344PubMedCrossRef
44.
go back to reference Tsapenko MV, Tsapenko AV, Comfere TB, Mour GK, Mankad SV, Gajic O (2008) Arterial pulmonary hypertension in noncardiac intensive care unit. Vasc Health Risk Manag 4:1043–1060PubMedPubMedCentralCrossRef Tsapenko MV, Tsapenko AV, Comfere TB, Mour GK, Mankad SV, Gajic O (2008) Arterial pulmonary hypertension in noncardiac intensive care unit. Vasc Health Risk Manag 4:1043–1060PubMedPubMedCentralCrossRef
45.
go back to reference Lang RM, Badano LP, Mor-Avi V, Afilo J, Armstrong A, Ernande L, Flachskampf FA, Foster E, Goldstein SA, Kuznetsova T, Lancellotti P, Muraru D, Picard MH, Rietzchel ER, Rudski L, Spencer KT, Tsang W, Voigt JU (2015) Recommendations for cardiac chamber quantification by echocardiography in adults: an update from the American Society of Echocardiography and the European Association of Cardiovascular Imaging. J Am Soc Echocardiogr 28(1–39):e14 Lang RM, Badano LP, Mor-Avi V, Afilo J, Armstrong A, Ernande L, Flachskampf FA, Foster E, Goldstein SA, Kuznetsova T, Lancellotti P, Muraru D, Picard MH, Rietzchel ER, Rudski L, Spencer KT, Tsang W, Voigt JU (2015) Recommendations for cardiac chamber quantification by echocardiography in adults: an update from the American Society of Echocardiography and the European Association of Cardiovascular Imaging. J Am Soc Echocardiogr 28(1–39):e14
46.
go back to reference Levitov A, Frankel HL, Blaivas M, Kirkpatrick AW, Su E, Evans D, Summerfield DT, Slonim A, Breitkreutz R, Price S, McLaughlin M, Marik P, Elbarbary M (2016) Guidelines for the appropriate use of bedside general and cardiac ultrasonography in the evaluation of critically ill patients—part II. 44:1206–1227. Crit Care Med 44:1206–1227PubMedCrossRef Levitov A, Frankel HL, Blaivas M, Kirkpatrick AW, Su E, Evans D, Summerfield DT, Slonim A, Breitkreutz R, Price S, McLaughlin M, Marik P, Elbarbary M (2016) Guidelines for the appropriate use of bedside general and cardiac ultrasonography in the evaluation of critically ill patients—part II. 44:1206–1227. Crit Care Med 44:1206–1227PubMedCrossRef
47.
go back to reference Rudski LG, Lai WW, Afilalo J, Hua L, Handschumacher MD, Chandrasekaran K, Solomon SD, Louie EK, Schiller NB (2010) Guidelines for the echocardiographic assessment of the right heart in adults: a report from the American Society of Echocardiography endorsed by the European Association of Echocardiography, a registered branch of the European Society of Cardiology, and the Canadian Society of Echocardiography. J Am Soc Echocardiogr 23:685–713PubMedCrossRef Rudski LG, Lai WW, Afilalo J, Hua L, Handschumacher MD, Chandrasekaran K, Solomon SD, Louie EK, Schiller NB (2010) Guidelines for the echocardiographic assessment of the right heart in adults: a report from the American Society of Echocardiography endorsed by the European Association of Echocardiography, a registered branch of the European Society of Cardiology, and the Canadian Society of Echocardiography. J Am Soc Echocardiogr 23:685–713PubMedCrossRef
48.
go back to reference Pinsky MR (2016) The right ventricle: interaction with the pulmonary circulation. Crit Care 20:1–9 Pinsky MR (2016) The right ventricle: interaction with the pulmonary circulation. Crit Care 20:1–9
49.
go back to reference Simon MA, Rajagopalan N, Mathier MA, Shroff SG, Pinsky MR, Lopez-Candales A (2009) Tissue Doppler imaging of right ventricular decompensation in pulmonary hypertension. Congest Heart Fail 15:271–276PubMedPubMedCentralCrossRef Simon MA, Rajagopalan N, Mathier MA, Shroff SG, Pinsky MR, Lopez-Candales A (2009) Tissue Doppler imaging of right ventricular decompensation in pulmonary hypertension. Congest Heart Fail 15:271–276PubMedPubMedCentralCrossRef
50.
go back to reference Vieillard-Baron A, Slama M, Mayo P, Charron C, Amiel JB, Esterez C, Leleu F, Repessé X, Vignon P (2013) A pilot study on safety and clinical utility of a single-use 72-hour indwelling transesophageal echocardiography probe. Intensive Care Med 39:629–635PubMedCrossRef Vieillard-Baron A, Slama M, Mayo P, Charron C, Amiel JB, Esterez C, Leleu F, Repessé X, Vignon P (2013) A pilot study on safety and clinical utility of a single-use 72-hour indwelling transesophageal echocardiography probe. Intensive Care Med 39:629–635PubMedCrossRef
51.
go back to reference Fletcher N, Geisen M, Meeran H, Spray D, Cecconi M (2015) Initial clinical experience with a miniaturized transesophageal echocardiography probe in a cardiac intensive care unit. J Cardiothorac Vasc Anesth 29:582–587PubMedCrossRef Fletcher N, Geisen M, Meeran H, Spray D, Cecconi M (2015) Initial clinical experience with a miniaturized transesophageal echocardiography probe in a cardiac intensive care unit. J Cardiothorac Vasc Anesth 29:582–587PubMedCrossRef
52.
go back to reference Konstantinides SV, Torbicki A, Agnelli G et al (2014) 2014 ESC guidelines on the diagnosis and management of acute pulmonary embolism. Eur Heart J 35:3033–3069PubMedCrossRef Konstantinides SV, Torbicki A, Agnelli G et al (2014) 2014 ESC guidelines on the diagnosis and management of acute pulmonary embolism. Eur Heart J 35:3033–3069PubMedCrossRef
53.
go back to reference Lu MT, Cai T, Ersoy H, Whitmore AG, Levit NA, Goldhaber SZ, Rybicki FJ (2009) Comparison of ECG-gated versus non-gated CT ventricular measurements in thirty patients with acute pulmonary embolism. Int J Cardiovasc Imaging 25:101–107PubMedCrossRef Lu MT, Cai T, Ersoy H, Whitmore AG, Levit NA, Goldhaber SZ, Rybicki FJ (2009) Comparison of ECG-gated versus non-gated CT ventricular measurements in thirty patients with acute pulmonary embolism. Int J Cardiovasc Imaging 25:101–107PubMedCrossRef
54.
go back to reference Kang DK, Thilo C, Schoepf UJ, Barraza M, Nance JW, Bastarrika G, Abro JA, Ravenel JG, Costello P, Goldhaber SZ (2011) CT signs of right ventricular dysfunction: prognostic role in acute pulmonary embolism. JACC Cardiovasc Imaging 4:841–849PubMedCrossRef Kang DK, Thilo C, Schoepf UJ, Barraza M, Nance JW, Bastarrika G, Abro JA, Ravenel JG, Costello P, Goldhaber SZ (2011) CT signs of right ventricular dysfunction: prognostic role in acute pulmonary embolism. JACC Cardiovasc Imaging 4:841–849PubMedCrossRef
55.
go back to reference Spruijt OA, Bogaard H-J, Heijmans MW, Lely RJ, van de Veerdonk MC, de Man FS, Westerhof N, Vonk-Noordegraaf A (2015) Predicting pulmonary hypertension with standard computed tomography pulmonary angiography. Int J Cardiovasc Imaging 31:871–879PubMedPubMedCentralCrossRef Spruijt OA, Bogaard H-J, Heijmans MW, Lely RJ, van de Veerdonk MC, de Man FS, Westerhof N, Vonk-Noordegraaf A (2015) Predicting pulmonary hypertension with standard computed tomography pulmonary angiography. Int J Cardiovasc Imaging 31:871–879PubMedPubMedCentralCrossRef
56.
go back to reference Dogan H, de Roos A, Geleijins J, Huisman MV, Kroft LJ (2015) The role of computed tomography in the diagnosis of acute and chronic pulmonary embolism. Diagn Interv Radiol 21:307–316PubMedPubMedCentralCrossRef Dogan H, de Roos A, Geleijins J, Huisman MV, Kroft LJ (2015) The role of computed tomography in the diagnosis of acute and chronic pulmonary embolism. Diagn Interv Radiol 21:307–316PubMedPubMedCentralCrossRef
57.
go back to reference Huis In’t Veld AE, Van Vliet AG, Spruijt OA, Handoko ML, Marcus JT, Vonk Noordegraaf A, Bogaard HJ (2016) CTA-derived left to right atrial size ratio distinguishes between pulmonary hypertension due to heart failure and idiopathic pulmonary arterial hypertension. Int J Cardiol 223:723–728CrossRef Huis In’t Veld AE, Van Vliet AG, Spruijt OA, Handoko ML, Marcus JT, Vonk Noordegraaf A, Bogaard HJ (2016) CTA-derived left to right atrial size ratio distinguishes between pulmonary hypertension due to heart failure and idiopathic pulmonary arterial hypertension. Int J Cardiol 223:723–728CrossRef
58.
go back to reference Denault AY, Haddad F, Jacobsohn E, Deschamps A (2013) Perioperative right ventricular dysfunction. Curr Opin Anaesthesiol 26:71–81PubMedCrossRef Denault AY, Haddad F, Jacobsohn E, Deschamps A (2013) Perioperative right ventricular dysfunction. Curr Opin Anaesthesiol 26:71–81PubMedCrossRef
59.
go back to reference Judge O, Ji F, Fleming N, Liu H (2015) Current use of the pulmonary artery catheter in cardiac surgery: a survey study. J Cardiothorac Vasc Anaesth 29:69–75CrossRef Judge O, Ji F, Fleming N, Liu H (2015) Current use of the pulmonary artery catheter in cardiac surgery: a survey study. J Cardiothorac Vasc Anaesth 29:69–75CrossRef
60.
go back to reference Metkus TS, Tampakakis E, Mullin CJ, Houston BA, Kolb TM, Mathai SC, Damico R, Maron BA, Hassoun PM, Brower RG, Tedford RJ (2017) Pulmonary arterial compliance in acute respiratory distress syndrome: clinical determinants and association with outcome from the fluid and catheter treatment trial cohort. Crit Care Med 45:422–429PubMedPubMedCentralCrossRef Metkus TS, Tampakakis E, Mullin CJ, Houston BA, Kolb TM, Mathai SC, Damico R, Maron BA, Hassoun PM, Brower RG, Tedford RJ (2017) Pulmonary arterial compliance in acute respiratory distress syndrome: clinical determinants and association with outcome from the fluid and catheter treatment trial cohort. Crit Care Med 45:422–429PubMedPubMedCentralCrossRef
61.
go back to reference Pinsky MR (2017) Exploring the dark side of the moon: pulmonary vascular dysfunction in acute respiratory distress syndrome. Crit Care Med 45:559–561PubMedCrossRef Pinsky MR (2017) Exploring the dark side of the moon: pulmonary vascular dysfunction in acute respiratory distress syndrome. Crit Care Med 45:559–561PubMedCrossRef
62.
go back to reference Hrymak C, Strumpher J, Jacobsohn E (2017) Acute right ventricle failure in the intensive care unit: assessment and management. Can J Cardiol 33:61–71PubMedCrossRef Hrymak C, Strumpher J, Jacobsohn E (2017) Acute right ventricle failure in the intensive care unit: assessment and management. Can J Cardiol 33:61–71PubMedCrossRef
63.
go back to reference Hoeper MM, Maier R, Tongers J, Niedermeyer J, Hohlfeld JM, Hamm M, Fabel H (1999) Determination of cardiac output by the Fick method, thermodilution, and acetylene rebreathing in pulmonary hypertension. Am J Respir Crit Care Med 160:535–541PubMedCrossRef Hoeper MM, Maier R, Tongers J, Niedermeyer J, Hohlfeld JM, Hamm M, Fabel H (1999) Determination of cardiac output by the Fick method, thermodilution, and acetylene rebreathing in pulmonary hypertension. Am J Respir Crit Care Med 160:535–541PubMedCrossRef
64.
go back to reference Combes A, Berneau JB, Luyt CE, Trouillet JL (2004) Estimation of left ventricular systolic function by single transpulmonary thermodilution. Intensive Care Med 30:1377–1383PubMed Combes A, Berneau JB, Luyt CE, Trouillet JL (2004) Estimation of left ventricular systolic function by single transpulmonary thermodilution. Intensive Care Med 30:1377–1383PubMed
65.
go back to reference Foris V, Kovacs G, Tscherner M, Olschewski A, Olschewski H (2013) Biomarkers in pulmonary hypertension: what do we know? Chest 144:274–283PubMedCrossRef Foris V, Kovacs G, Tscherner M, Olschewski A, Olschewski H (2013) Biomarkers in pulmonary hypertension: what do we know? Chest 144:274–283PubMedCrossRef
66.
go back to reference Lankeit M, Kempf T, Dellas C, Cuny M, Tapken H, Peter T, Olschewski M, Konstantinides S, Wollert KC (2008) Growth differentiation factor-15 for prognostic assessment of patients with acute pulmonary embolism. Am J Respir Crit Care Med 177:1018–1025PubMedCrossRef Lankeit M, Kempf T, Dellas C, Cuny M, Tapken H, Peter T, Olschewski M, Konstantinides S, Wollert KC (2008) Growth differentiation factor-15 for prognostic assessment of patients with acute pulmonary embolism. Am J Respir Crit Care Med 177:1018–1025PubMedCrossRef
67.
go back to reference Lankeit M, Dellas C, Panzenböck A, Skoro-Sajer N, Bonderman D, Olschewski M, Schäfer K, Puis M, Konstantinides S, Lang IM (2008) Heart-type fatty acid-binding protein for risk assessment of chronic thromboembolic pulmonary hypertension. Eur Respir J 31:1024–1029PubMedCrossRef Lankeit M, Dellas C, Panzenböck A, Skoro-Sajer N, Bonderman D, Olschewski M, Schäfer K, Puis M, Konstantinides S, Lang IM (2008) Heart-type fatty acid-binding protein for risk assessment of chronic thromboembolic pulmonary hypertension. Eur Respir J 31:1024–1029PubMedCrossRef
68.
go back to reference Puls M, Dellas C, Lankeit M, Olschewski M, Binder L, Geibel A, Reiner C, Schäfer K, Hasenfuss G, Konstantinides S (2007) Heart-type fatty acid-binding protein permits early risk stratification of pulmonary embolism. Eur Heart J 28:224–229PubMedCrossRef Puls M, Dellas C, Lankeit M, Olschewski M, Binder L, Geibel A, Reiner C, Schäfer K, Hasenfuss G, Konstantinides S (2007) Heart-type fatty acid-binding protein permits early risk stratification of pulmonary embolism. Eur Heart J 28:224–229PubMedCrossRef
69.
go back to reference Huang SJ, Orde S (2013) From speckle tracking echocardiography to torsion: research tool today, clinical practice tomorrow. Curr Opin Crit Care 19:250–257PubMedCrossRef Huang SJ, Orde S (2013) From speckle tracking echocardiography to torsion: research tool today, clinical practice tomorrow. Curr Opin Crit Care 19:250–257PubMedCrossRef
70.
go back to reference Fine NM, Chen L, Bastiansen PM, Frantz RP, Pellikka PA, Oh JK, Kane GC (2013) Outcome prediction by quantitative right ventricular function assessment in 575 subjects evaluated for pulmonary hypertension. Circ Cardiovasc Imaging 6:711–721PubMedCrossRef Fine NM, Chen L, Bastiansen PM, Frantz RP, Pellikka PA, Oh JK, Kane GC (2013) Outcome prediction by quantitative right ventricular function assessment in 575 subjects evaluated for pulmonary hypertension. Circ Cardiovasc Imaging 6:711–721PubMedCrossRef
71.
go back to reference Orde SR, Pulido JN, Masaki M, Gillepsie S, Spoon JN, Kane GC, Oh JK (2014) Outcome prediction in sepsis: speckle tracking echocardiography based assessment of myocardial function. Crit Care 18:R149PubMedPubMedCentralCrossRef Orde SR, Pulido JN, Masaki M, Gillepsie S, Spoon JN, Kane GC, Oh JK (2014) Outcome prediction in sepsis: speckle tracking echocardiography based assessment of myocardial function. Crit Care 18:R149PubMedPubMedCentralCrossRef
73.
go back to reference Shimada YJ, Shiota M, Siegel RJ, Shiota T (2010) Accuracy of right ventricular volumes and function determined by three-dimensional echocardiography in comparison with magnetic resonance imaging: a meta-analysis study. J Am Soc Echocardiogr 23:943–953PubMedCrossRef Shimada YJ, Shiota M, Siegel RJ, Shiota T (2010) Accuracy of right ventricular volumes and function determined by three-dimensional echocardiography in comparison with magnetic resonance imaging: a meta-analysis study. J Am Soc Echocardiogr 23:943–953PubMedCrossRef
74.
go back to reference Smith BC, Dobson G, Dawson D, Charalampopoulos A, Grapsa J, Nihoyannopoulos P (2014) Three-dimensional speckle tracking of the right ventricle: toward optimal quantification of right ventricular dysfunction in pulmonary hypertension. J Am Coll Cardiol 64:41–51PubMedCrossRef Smith BC, Dobson G, Dawson D, Charalampopoulos A, Grapsa J, Nihoyannopoulos P (2014) Three-dimensional speckle tracking of the right ventricle: toward optimal quantification of right ventricular dysfunction in pulmonary hypertension. J Am Coll Cardiol 64:41–51PubMedCrossRef
75.
go back to reference Laser KT, Horst J-P, Barth P, Kelter-Klöpping A, Haas NA, Burchert W, Kececioglu D, Köperich H (2014) Knowledge-based reconstruction of right ventricular volumes using real-time three-dimensional echocardiographic as well as cardiac magnetic resonance images: comparison with a cardiac magnetic resonance standard. J Am Soc Echocardiogr 27:1087–1097PubMedCrossRef Laser KT, Horst J-P, Barth P, Kelter-Klöpping A, Haas NA, Burchert W, Kececioglu D, Köperich H (2014) Knowledge-based reconstruction of right ventricular volumes using real-time three-dimensional echocardiographic as well as cardiac magnetic resonance images: comparison with a cardiac magnetic resonance standard. J Am Soc Echocardiogr 27:1087–1097PubMedCrossRef
76.
go back to reference Vonk Noordegraaf A, Haddad F, Bogaard HJ, Hassoun PM (2015) Noninvasive imaging in the assessment of the cardiopulmonary vascular unit. Circulation 131:899–913PubMedCrossRef Vonk Noordegraaf A, Haddad F, Bogaard HJ, Hassoun PM (2015) Noninvasive imaging in the assessment of the cardiopulmonary vascular unit. Circulation 131:899–913PubMedCrossRef
77.
go back to reference Galea N, Carbone I, Cannata D, Cannavale G, Conti B, Galea R, Frustaci A, Catalano C, Francone M (2013) Right ventricular cardiovascular magnetic resonance imaging: normal anatomy and spectrum of pathological findings. Insights Imaging 4:213–223PubMedPubMedCentralCrossRef Galea N, Carbone I, Cannata D, Cannavale G, Conti B, Galea R, Frustaci A, Catalano C, Francone M (2013) Right ventricular cardiovascular magnetic resonance imaging: normal anatomy and spectrum of pathological findings. Insights Imaging 4:213–223PubMedPubMedCentralCrossRef
78.
go back to reference Spruijt OA, Di Pasqua MC, Bogaard HJ, van der Bruggen CE, Oosterveer F, Marcus JT, Vonk-Noordegraaf A, Handoko ML (2017) Serial assessment of right ventricular systolic function in patients with precapillary pulmonary hypertension using simple echocardiographic parameters: a comparison with cardiac magnetic resonance imaging. J Cardiol 69:182–188PubMedCrossRef Spruijt OA, Di Pasqua MC, Bogaard HJ, van der Bruggen CE, Oosterveer F, Marcus JT, Vonk-Noordegraaf A, Handoko ML (2017) Serial assessment of right ventricular systolic function in patients with precapillary pulmonary hypertension using simple echocardiographic parameters: a comparison with cardiac magnetic resonance imaging. J Cardiol 69:182–188PubMedCrossRef
79.
go back to reference Spruijt OA, Vissers L, Bogaard HJ, Hofman MB, Vonk-Noordegraaf A, Marcus JT (2016) Increased native T1-values at the interventricular insertion regions in precapillary pulmonary hypertension. Int J Cardiovasc Imaging 32:451–459PubMedCrossRef Spruijt OA, Vissers L, Bogaard HJ, Hofman MB, Vonk-Noordegraaf A, Marcus JT (2016) Increased native T1-values at the interventricular insertion regions in precapillary pulmonary hypertension. Int J Cardiovasc Imaging 32:451–459PubMedCrossRef
80.
go back to reference Masci PG, Francone M, Desmet W, Ganame J, Todiere G, Donato R, Siciliano V, Carbone I, Mangia M, Strata E, Catalano C, Lombardi M, Agati L, Janssens S, Bogaert J (2010) Right ventricular ischemic injury in patients with acute ST-segment elevation myocardial infarction: characterization with cardiovascular magnetic resonance. Circulation 122:1405–1412PubMedCrossRef Masci PG, Francone M, Desmet W, Ganame J, Todiere G, Donato R, Siciliano V, Carbone I, Mangia M, Strata E, Catalano C, Lombardi M, Agati L, Janssens S, Bogaert J (2010) Right ventricular ischemic injury in patients with acute ST-segment elevation myocardial infarction: characterization with cardiovascular magnetic resonance. Circulation 122:1405–1412PubMedCrossRef
81.
go back to reference Maury E, Arrivé L, Mayo PH (2017) Intensive Care Medicine in 2050: the future of medical imaging. Intensive Care Med 43:1132–1137CrossRef Maury E, Arrivé L, Mayo PH (2017) Intensive Care Medicine in 2050: the future of medical imaging. Intensive Care Med 43:1132–1137CrossRef
82.
go back to reference D’Angelo T, Grigoratos C, Mazziotti S, Bratis K, Pathan F, Blandino A, Elen E, Puntmann VO, Nagel E (2017) High-throughput gadobutrol-enhanced CMR: a time and dose optimization study. J Cardiovasc Magn Reson 19:83PubMedPubMedCentralCrossRef D’Angelo T, Grigoratos C, Mazziotti S, Bratis K, Pathan F, Blandino A, Elen E, Puntmann VO, Nagel E (2017) High-throughput gadobutrol-enhanced CMR: a time and dose optimization study. J Cardiovasc Magn Reson 19:83PubMedPubMedCentralCrossRef
83.
go back to reference Haddad F, Doyle R, Murphy D, Hunt S (2008) Right ventricular function in cardiovascular disease, part II. Pathophysiology, clinical importance, and management of right ventricular failure. Circulation 117:1717–1731PubMedCrossRef Haddad F, Doyle R, Murphy D, Hunt S (2008) Right ventricular function in cardiovascular disease, part II. Pathophysiology, clinical importance, and management of right ventricular failure. Circulation 117:1717–1731PubMedCrossRef
84.
go back to reference Dalabih M, Rischard F, Mosier JM (2014) What’s new: the management of acute right ventricular decompensation of chronic pulmonary hypertension. Intensive Care Med 40:1930–1933PubMedCrossRef Dalabih M, Rischard F, Mosier JM (2014) What’s new: the management of acute right ventricular decompensation of chronic pulmonary hypertension. Intensive Care Med 40:1930–1933PubMedCrossRef
85.
go back to reference Dell’Italia LJ, Starling MR, Blumhardt R, Lasher JC, O’Rourke RA (1985) Comparative effects of volume loading, dobutamine, and nitroprusside in patients with predominant right ventricular infarction. Circulation 72:1327–1335PubMedCrossRef Dell’Italia LJ, Starling MR, Blumhardt R, Lasher JC, O’Rourke RA (1985) Comparative effects of volume loading, dobutamine, and nitroprusside in patients with predominant right ventricular infarction. Circulation 72:1327–1335PubMedCrossRef
86.
go back to reference Belenkie I, Dani R, Smith ER, Tyberg JV (1989) Effects of volume loading during experimental acute pulmonary embolism. Circulation 80:178–188PubMedCrossRef Belenkie I, Dani R, Smith ER, Tyberg JV (1989) Effects of volume loading during experimental acute pulmonary embolism. Circulation 80:178–188PubMedCrossRef
87.
go back to reference Mitchell JR, Whitelaw WA, Sas R, Smith ER, Tyberg JV, Belenkie I (2005) RV filling modulates LV function by direct ventricular interaction during mechanical ventilation. Am J Physiol Heart Circ Physiol 289:H549–H557PubMedCrossRef Mitchell JR, Whitelaw WA, Sas R, Smith ER, Tyberg JV, Belenkie I (2005) RV filling modulates LV function by direct ventricular interaction during mechanical ventilation. Am J Physiol Heart Circ Physiol 289:H549–H557PubMedCrossRef
88.
go back to reference Belenkie I, Dani R, Smith ER, Tyberg JV (1988) Ventricular interaction during experimental acute pulmonary embolism. Circulation 8:761–768CrossRef Belenkie I, Dani R, Smith ER, Tyberg JV (1988) Ventricular interaction during experimental acute pulmonary embolism. Circulation 8:761–768CrossRef
89.
go back to reference Belenkie I, Sas R, Mitchell J, Smith ER, Tyberg JV (2004) Opening the pericardium during pulmonary artery constriction improves cardiac function. J Appl Physiol 96:917–922PubMedCrossRef Belenkie I, Sas R, Mitchell J, Smith ER, Tyberg JV (2004) Opening the pericardium during pulmonary artery constriction improves cardiac function. J Appl Physiol 96:917–922PubMedCrossRef
90.
go back to reference Tyberg JV, Grant DA, Kingma I, Moore TD, Sun Y, Smith ER, Belenkie I (2000) Effects of positive intrathoracic pressure on pulmonary and systemic hemodynamics. Respir Physiol 119:171–179PubMedCrossRef Tyberg JV, Grant DA, Kingma I, Moore TD, Sun Y, Smith ER, Belenkie I (2000) Effects of positive intrathoracic pressure on pulmonary and systemic hemodynamics. Respir Physiol 119:171–179PubMedCrossRef
91.
go back to reference Boulate D, Arthur Ataam J, Connolly AJ, Giraldeau G, Amsallem M, Decante B, Lamrani L, Fadel E, Dorfmuller P, Perros F, Haddad F, Mercier O (2017) Early development of right ventricular ischemic lesions in a novel large animal model of acute right heart failure in chronic thromboembolic pulmonary hypertension. J Cardiac Fail 23:876–886CrossRef Boulate D, Arthur Ataam J, Connolly AJ, Giraldeau G, Amsallem M, Decante B, Lamrani L, Fadel E, Dorfmuller P, Perros F, Haddad F, Mercier O (2017) Early development of right ventricular ischemic lesions in a novel large animal model of acute right heart failure in chronic thromboembolic pulmonary hypertension. J Cardiac Fail 23:876–886CrossRef
92.
go back to reference Marik PE, Baram M, Vahid B (2008) Does central venous pressure predict fluid responsiveness? A systematic review of the literature and the tale of seven mares. Chest 134:172–178PubMedCrossRef Marik PE, Baram M, Vahid B (2008) Does central venous pressure predict fluid responsiveness? A systematic review of the literature and the tale of seven mares. Chest 134:172–178PubMedCrossRef
95.
go back to reference Vignon P, Repessé X, Bégot E, Léger J, Jacob C, Bouferrache K, Slama M, Prat G, Vieillard-Baron A (2017) Comparison of echocardiographic indices used to predict fluid responsiveness in ventilated patients. Am J Respir Crit Care Med 195:1022–1032PubMedCrossRef Vignon P, Repessé X, Bégot E, Léger J, Jacob C, Bouferrache K, Slama M, Prat G, Vieillard-Baron A (2017) Comparison of echocardiographic indices used to predict fluid responsiveness in ventilated patients. Am J Respir Crit Care Med 195:1022–1032PubMedCrossRef
96.
go back to reference Monnet X, Marik P, Teboul JL (2016) Passive leg raising for predicting fluid responsiveness: a systematic review and meta-analysis. Intensive Care Med 42:1935–1947PubMedCrossRef Monnet X, Marik P, Teboul JL (2016) Passive leg raising for predicting fluid responsiveness: a systematic review and meta-analysis. Intensive Care Med 42:1935–1947PubMedCrossRef
97.
go back to reference Ghignone M, Girling L, Prewitt RM (1984) Volume expansion versus norepinephrine in treatment of a low cardiac output complicating an acute increase in right ventricular afterload in dogs. Anesthesiology 60:132–135PubMedCrossRef Ghignone M, Girling L, Prewitt RM (1984) Volume expansion versus norepinephrine in treatment of a low cardiac output complicating an acute increase in right ventricular afterload in dogs. Anesthesiology 60:132–135PubMedCrossRef
98.
go back to reference Molloy WD, Lee KY, Girling L, Schick U, Prewitt RM (1984) Treatment of shock in a canine model of pulmonary embolism. Am Rev Respir Dis 130:870–874PubMed Molloy WD, Lee KY, Girling L, Schick U, Prewitt RM (1984) Treatment of shock in a canine model of pulmonary embolism. Am Rev Respir Dis 130:870–874PubMed
99.
go back to reference Jardin F, Genevray B, Brun-Ney D, Margairaz A (1985) Dobutamine: a hemodynamic evaluation in pulmonary embolism shock. Crit Care Med 13:1009–1012PubMedCrossRef Jardin F, Genevray B, Brun-Ney D, Margairaz A (1985) Dobutamine: a hemodynamic evaluation in pulmonary embolism shock. Crit Care Med 13:1009–1012PubMedCrossRef
100.
go back to reference Morelli A, Teboul JL, Maggiore SM, Vieillard-Baron A, Rocco M, Conti G, De Gaetano A, Picchini U, Orecchioni A, Carbone I, Tritapepe L, Pietropaoli P, Westphal M (2006) Effects of levosimendan on right ventricular afterload in patients with acute respiratory distress syndrome: a pilot study. Crit Care Med 34:2287–2293PubMedCrossRef Morelli A, Teboul JL, Maggiore SM, Vieillard-Baron A, Rocco M, Conti G, De Gaetano A, Picchini U, Orecchioni A, Carbone I, Tritapepe L, Pietropaoli P, Westphal M (2006) Effects of levosimendan on right ventricular afterload in patients with acute respiratory distress syndrome: a pilot study. Crit Care Med 34:2287–2293PubMedCrossRef
101.
go back to reference Russ M, Prondzinsky R, Carter J et al (2009) Right ventricular function in myocardial infarction complicated by cardiogenic shock: improvement with levosimendan. Crit Care Med 37:3017–3023PubMedCrossRef Russ M, Prondzinsky R, Carter J et al (2009) Right ventricular function in myocardial infarction complicated by cardiogenic shock: improvement with levosimendan. Crit Care Med 37:3017–3023PubMedCrossRef
102.
go back to reference Anderson MB, Goldstein J, Milano C, Morris LD, Kormos RL, Bhama J, Kapur NK, Bansal A, Garcia J, Baker JN, Silvestry S, Holman WL, Douglas PS, O’Neill W (2015) Benefits of a novel percutaneous ventricular assist device for right heart failure: the prospective RECOVER RIGHT study of the Impella RP device. J Heart Lung Transplant 34:1549–1560PubMedCrossRef Anderson MB, Goldstein J, Milano C, Morris LD, Kormos RL, Bhama J, Kapur NK, Bansal A, Garcia J, Baker JN, Silvestry S, Holman WL, Douglas PS, O’Neill W (2015) Benefits of a novel percutaneous ventricular assist device for right heart failure: the prospective RECOVER RIGHT study of the Impella RP device. J Heart Lung Transplant 34:1549–1560PubMedCrossRef
103.
go back to reference Atiemo AD, Conte JV, Heldman AW (2006) Resuscitation and recovery from acute right ventricular failure using a percutaneous right ventricular assist device. Catheter Cardiovasc Interv 68:78–82PubMedCrossRef Atiemo AD, Conte JV, Heldman AW (2006) Resuscitation and recovery from acute right ventricular failure using a percutaneous right ventricular assist device. Catheter Cardiovasc Interv 68:78–82PubMedCrossRef
104.
go back to reference Giesler GM, Gomez JS, Letsou G, Vooletich M, Smalling RW (2006) Initial report of percutaneous right ventricular assist for right ventricular shock secondary to right ventricular infarction. Catheter Cardiovasc Interv 68:263–266PubMedCrossRef Giesler GM, Gomez JS, Letsou G, Vooletich M, Smalling RW (2006) Initial report of percutaneous right ventricular assist for right ventricular shock secondary to right ventricular infarction. Catheter Cardiovasc Interv 68:263–266PubMedCrossRef
105.
go back to reference Kapur NK, Paruchuri V, Korabathina R, Al-Mohammdi R, Mudd JO, Prutkin J, Esposito M, Shah A, Kiernan MS, Sech C, Pham DT, Konstam MA, Denofrio D (2011) Effect of a percutaneous mechanical circulatory support device for medically refractory right ventricular failure. J Heart Lung Transplant 30:1360–1367PubMedCrossRef Kapur NK, Paruchuri V, Korabathina R, Al-Mohammdi R, Mudd JO, Prutkin J, Esposito M, Shah A, Kiernan MS, Sech C, Pham DT, Konstam MA, Denofrio D (2011) Effect of a percutaneous mechanical circulatory support device for medically refractory right ventricular failure. J Heart Lung Transplant 30:1360–1367PubMedCrossRef
106.
go back to reference Jardin F, Vieillard-Baron A (2007) Is there a safe plateau pressure in ARDS? The right heart only knows. Intensive Care Med 33:444–447PubMedCrossRef Jardin F, Vieillard-Baron A (2007) Is there a safe plateau pressure in ARDS? The right heart only knows. Intensive Care Med 33:444–447PubMedCrossRef
107.
go back to reference Lejeune P, Brimioulle S, Leeman M, Hallemans R, Melot C, Naeije R (1990) Enhancement of hypoxic pulmonary vasoconstriction by metabolic acidosis in dogs. Anesthesiology 73:256–264PubMedCrossRef Lejeune P, Brimioulle S, Leeman M, Hallemans R, Melot C, Naeije R (1990) Enhancement of hypoxic pulmonary vasoconstriction by metabolic acidosis in dogs. Anesthesiology 73:256–264PubMedCrossRef
108.
go back to reference Morimont P, Guiot J, Desaive T, Tchana-Sato V, Janssen N, Cagina A, Hella D, Blaffart F, Defraigne JO, Lambermont B (2015) Veno-venous extracorporeal CO2 removal improves pulmonary hemodynamics in a porcine ARDS model. Acta Anaesthesiol Scand 59:448–456PubMedCrossRef Morimont P, Guiot J, Desaive T, Tchana-Sato V, Janssen N, Cagina A, Hella D, Blaffart F, Defraigne JO, Lambermont B (2015) Veno-venous extracorporeal CO2 removal improves pulmonary hemodynamics in a porcine ARDS model. Acta Anaesthesiol Scand 59:448–456PubMedCrossRef
109.
go back to reference Brimioulle S, Lejeune P, Naeije R (1996) Effects of hypoxic pulmonary vasoconstriction on pulmonary gas exchange. J Appl Physiol (1985) 81:1535–1543CrossRef Brimioulle S, Lejeune P, Naeije R (1996) Effects of hypoxic pulmonary vasoconstriction on pulmonary gas exchange. J Appl Physiol (1985) 81:1535–1543CrossRef
110.
go back to reference Writing group for the Alveolar Recruitment for Acute Respiratory Distress Syndrome (ART) investigators, Cavalcanti AB et al (2017) Effect of lung recruitment and titrated positive end-expiratory pressure (PEEP) vs low PEEP on mortality in patients with acute respiratory distress syndrome: a randomized clinical trial. JAMA 318:1335–1345CrossRef Writing group for the Alveolar Recruitment for Acute Respiratory Distress Syndrome (ART) investigators, Cavalcanti AB et al (2017) Effect of lung recruitment and titrated positive end-expiratory pressure (PEEP) vs low PEEP on mortality in patients with acute respiratory distress syndrome: a randomized clinical trial. JAMA 318:1335–1345CrossRef
111.
go back to reference Vieillard-Baron A, Charron C, Caille V, Belliard G, Page B, Jardin F (2007) Prone position unloads the right ventricle in severe ARDS. Chest 132:1440–1446PubMedCrossRef Vieillard-Baron A, Charron C, Caille V, Belliard G, Page B, Jardin F (2007) Prone position unloads the right ventricle in severe ARDS. Chest 132:1440–1446PubMedCrossRef
112.
go back to reference Afshari A, Brok J, Moller AM, Wetterslev J (2010) Inhaled nitric oxide for acute respiratory distress syndrome and acute lung injury in adults and children: a systematic review with meta-analysis and trail sequential analysis. Cochrane Database Syst Rev 7:CD002787 Afshari A, Brok J, Moller AM, Wetterslev J (2010) Inhaled nitric oxide for acute respiratory distress syndrome and acute lung injury in adults and children: a systematic review with meta-analysis and trail sequential analysis. Cochrane Database Syst Rev 7:CD002787
113.
go back to reference George I, Xydas S, Topkara VK, Ferdinando C, Barnwell EC, Gableman L, Sladen RN, Naka Y, Oz MC (2006) Clinical indication for use and outcomes after inhaled nitric oxide therapy. Ann Thorac Surg 82:2161–2169PubMedCrossRef George I, Xydas S, Topkara VK, Ferdinando C, Barnwell EC, Gableman L, Sladen RN, Naka Y, Oz MC (2006) Clinical indication for use and outcomes after inhaled nitric oxide therapy. Ann Thorac Surg 82:2161–2169PubMedCrossRef
Metadata
Title
Diagnostic workup, etiologies and management of acute right ventricle failure
A state-of-the-art paper
Authors
Antoine Vieillard-Baron
R. Naeije
F. Haddad
H. J. Bogaard
T. M. Bull
N. Fletcher
T. Lahm
S. Magder
S. Orde
G. Schmidt
M. R. Pinsky
Publication date
01-06-2018
Publisher
Springer Berlin Heidelberg
Published in
Intensive Care Medicine / Issue 6/2018
Print ISSN: 0342-4642
Electronic ISSN: 1432-1238
DOI
https://doi.org/10.1007/s00134-018-5172-2

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