Skip to main content
Top
Published in: Cardiovascular Ultrasound 1/2019

Open Access 01-12-2019 | Heart Failure | Research

The value of left ventricular strain–volume loops in predicting response to cardiac resynchronization therapy

Authors: Mengruo Zhu, Haiyan Chen, Zibire Fulati, Yang Liu, Yangang Su, Xianhong Shu

Published in: Cardiovascular Ultrasound | Issue 1/2019

Login to get access

Abstract

Background

Three-dimensional (3D) speckle tracking imaging (STI) allows the simultaneous assessment of left ventricular (LV) strain and volume. We aim to explore the value of LV strain–volume loops in predicting response to cardiac resynchronization therapy (CRT).

Methods

Forty heart failure (HF) patients scheduled for CRT and twenty healthy individuals were enrolled. All subjects received a 3D echocardiography and 3D STI analysis to acquire LV global and segmental principal strain (PS) and volume simultaneously. Values were plotted in a Cartesian system to construct PS–volume loop which was assessed using the two characteristics of the linear fitting curve: the slope and the coefficient of determination (R2-S/D coupling).

Results

HF patients at baseline showed significantly lower slope and R2-S/D coupling of all PS–volume loops than healthy subjects. As for as comparing Segmental PS–Global volume loop at baseline, Midseptal R2-S/D coupling was lower and Midlateral slope was higher in CRT responders than in non-responders. For each individual, the abnormal segmental heterogeneity of Midseptal slope and R2-S/D coupling were lower than Midlateral was observed only in responders. At follow-up, significant improvements of the Midseptal slope and R2-S/D coupling were observed in responders. Midseptal R2-S/D coupling at baseline was an independent predictor of CRT response and the cut-off value of 0.55 was recommended with sensitivity of 89% and specificity of 77%.

Conclusions

Analysis of strain–volume loops could provide unique information for predicting response to CRT. Assessment of septal myocardial wasted work at baseline is helpful to improve patient selection for CRT.
Literature
1.
go back to reference Cleland JG, Daubert JC, Erdmann E, Freemantle N, Gras D, Kappenberger L, Tavazzi L. Cardiac resynchronization-heart failure study I: the effect of cardiac resynchronization on morbidity and mortality in heart failure. N Engl J Med. 2005;352(15):1539–49.CrossRef Cleland JG, Daubert JC, Erdmann E, Freemantle N, Gras D, Kappenberger L, Tavazzi L. Cardiac resynchronization-heart failure study I: the effect of cardiac resynchronization on morbidity and mortality in heart failure. N Engl J Med. 2005;352(15):1539–49.CrossRef
2.
go back to reference Spragg DD, Leclercq C, Loghmani M, Faris OP, Tunin RS, DiSilvestre D, McVeigh ER, Tomaselli GF, Kass DA. Regional alterations in protein expression in the dyssynchronous failing heart. Circulation. 2003;108(8):929–32.CrossRef Spragg DD, Leclercq C, Loghmani M, Faris OP, Tunin RS, DiSilvestre D, McVeigh ER, Tomaselli GF, Kass DA. Regional alterations in protein expression in the dyssynchronous failing heart. Circulation. 2003;108(8):929–32.CrossRef
3.
go back to reference Klimusina J, De Boeck BW, Leenders GE, Faletra FF, Prinzen F, Averaimo M, Pasotti E, Klersy C, Moccetti T, Auricchio A. Redistribution of left ventricular strain by cardiac resynchronization therapy in heart failure patients. Eur J Heart Fail. 2011;13(2):186–94.CrossRef Klimusina J, De Boeck BW, Leenders GE, Faletra FF, Prinzen F, Averaimo M, Pasotti E, Klersy C, Moccetti T, Auricchio A. Redistribution of left ventricular strain by cardiac resynchronization therapy in heart failure patients. Eur J Heart Fail. 2011;13(2):186–94.CrossRef
4.
go back to reference Carasso S, Rakowski H, Witte KK, Smith P, Carasso D, Garceau P, Sasson Z, Parker JD. Left ventricular strain patterns in dilated cardiomyopathy predict response to cardiac resynchronization therapy: timing is not everything. J Am Soc Echocardiogr. 2009;22(3):242–50.CrossRef Carasso S, Rakowski H, Witte KK, Smith P, Carasso D, Garceau P, Sasson Z, Parker JD. Left ventricular strain patterns in dilated cardiomyopathy predict response to cardiac resynchronization therapy: timing is not everything. J Am Soc Echocardiogr. 2009;22(3):242–50.CrossRef
5.
go back to reference Bernard A, Donal E, Leclercq C, Schnell F, Fournet M, Reynaud A, Thebault C, Mabo P, Daubert JC, Hernandez A. Impact of cardiac resynchronization therapy on left ventricular mechanics: understanding the response through a new quantitative approach based on longitudinal strain integrals. J Am Soc Echocardiogr. 2015;28(6):700–8.CrossRef Bernard A, Donal E, Leclercq C, Schnell F, Fournet M, Reynaud A, Thebault C, Mabo P, Daubert JC, Hernandez A. Impact of cardiac resynchronization therapy on left ventricular mechanics: understanding the response through a new quantitative approach based on longitudinal strain integrals. J Am Soc Echocardiogr. 2015;28(6):700–8.CrossRef
6.
go back to reference Satriano A, Heydari B, Narous M, Exner DV, Mikami Y, Attwood MM, Tyberg JV, Lydell CP, Howarth AG, Fine NM, et al. Clinical feasibility and validation of 3D principal strain analysis from cine MRI: comparison to 2D strain by MRI and 3D speckle tracking echocardiography. Int J Cardiovasc Imaging. 2017;33(12):1979–92.CrossRef Satriano A, Heydari B, Narous M, Exner DV, Mikami Y, Attwood MM, Tyberg JV, Lydell CP, Howarth AG, Fine NM, et al. Clinical feasibility and validation of 3D principal strain analysis from cine MRI: comparison to 2D strain by MRI and 3D speckle tracking echocardiography. Int J Cardiovasc Imaging. 2017;33(12):1979–92.CrossRef
7.
go back to reference Ahn HS, Kim YK, Song HC, Choi EJ, Kim GH, Cho JS, Ihm SH, Kim HY, Park CS, Youn HJ. The impact of preload on 3-dimensional deformation parameters: principal strain twist and torsion. Cardiovasc Ultrasound. 2017;15(1):22.CrossRef Ahn HS, Kim YK, Song HC, Choi EJ, Kim GH, Cho JS, Ihm SH, Kim HY, Park CS, Youn HJ. The impact of preload on 3-dimensional deformation parameters: principal strain twist and torsion. Cardiovasc Ultrasound. 2017;15(1):22.CrossRef
8.
go back to reference Pedrizzetti G, Sengupta S, Caracciolo G, Park CS, Amaki M, Goliasch G, Narula J, Sengupta PP: Three-dimensional principal strain analysis for characterizing subclinical changes in left ventricular function. J Am Soc Echocardiogr 2014, 27(10):1041–1050 e1041. Pedrizzetti G, Sengupta S, Caracciolo G, Park CS, Amaki M, Goliasch G, Narula J, Sengupta PP: Three-dimensional principal strain analysis for characterizing subclinical changes in left ventricular function. J Am Soc Echocardiogr 2014, 27(10):1041–1050 e1041.
9.
go back to reference Stefani L, De Luca A, Toncelli L, Pedrizzetti G, Galanti G. 3D strain helps relating LV function to LV and structure in athletes. Cardiovasc Ultrasound. 2014;12(1):33.CrossRef Stefani L, De Luca A, Toncelli L, Pedrizzetti G, Galanti G. 3D strain helps relating LV function to LV and structure in athletes. Cardiovasc Ultrasound. 2014;12(1):33.CrossRef
10.
go back to reference Ponikowski P, Voors AA, Anker SD, Bueno H, Cleland JGF, Coats AJS, Falk V, Gonzalez-Juanatey JR, Harjola VP, Jankowska EA, et al. 2016 ESC guidelines for the diagnosis and treatment of acute and chronic heart failure: the task force for the diagnosis and treatment of acute and chronic heart failure of the European Society of Cardiology (ESC)developed with the special contribution of the heart failure association (HFA) of the ESC. Eur Heart J. 2016;37(27):2129–200.CrossRef Ponikowski P, Voors AA, Anker SD, Bueno H, Cleland JGF, Coats AJS, Falk V, Gonzalez-Juanatey JR, Harjola VP, Jankowska EA, et al. 2016 ESC guidelines for the diagnosis and treatment of acute and chronic heart failure: the task force for the diagnosis and treatment of acute and chronic heart failure of the European Society of Cardiology (ESC)developed with the special contribution of the heart failure association (HFA) of the ESC. Eur Heart J. 2016;37(27):2129–200.CrossRef
11.
go back to reference Brignole M, Auricchio A, Baron-Esquivias G, Bordachar P, Boriani G, Breithardt OA, Cleland J, Deharo JC, Delgado V, Elliott PM, et al. ESC guidelines on cardiac pacing and cardiac resynchronization therapy: the task force on cardiac pacing and resynchronization therapy of the European Society of Cardiology (ESC). Developed in collaboration with the European heart rhythm association (EHRA). Europace. 2013;34(29):2281–329. Brignole M, Auricchio A, Baron-Esquivias G, Bordachar P, Boriani G, Breithardt OA, Cleland J, Deharo JC, Delgado V, Elliott PM, et al. ESC guidelines on cardiac pacing and cardiac resynchronization therapy: the task force on cardiac pacing and resynchronization therapy of the European Society of Cardiology (ESC). Developed in collaboration with the European heart rhythm association (EHRA). Europace. 2013;34(29):2281–329.
12.
go back to reference Surawicz B, Childers R, Deal BJ, Gettes LS, Bailey JJ, Gorgels A, Hancock EW, Josephson M, Kligfield P, Kors JA, et al. AHA/ACCF/HRS recommendations for the standardization and interpretation of the electrocardiogram: part III: intraventricular conduction disturbances: a scientific statement from the American Heart Association electrocardiography and arrhythmias committee, council on clinical cardiology; the American College of Cardiology Foundation; and the Heart Rhythm Society. Endorsed by the International Society for Computerized Electrocardiology. J Am Coll Cardiol. 2009;53(11):976–81.CrossRef Surawicz B, Childers R, Deal BJ, Gettes LS, Bailey JJ, Gorgels A, Hancock EW, Josephson M, Kligfield P, Kors JA, et al. AHA/ACCF/HRS recommendations for the standardization and interpretation of the electrocardiogram: part III: intraventricular conduction disturbances: a scientific statement from the American Heart Association electrocardiography and arrhythmias committee, council on clinical cardiology; the American College of Cardiology Foundation; and the Heart Rhythm Society. Endorsed by the International Society for Computerized Electrocardiology. J Am Coll Cardiol. 2009;53(11):976–81.CrossRef
13.
go back to reference Lang RM, Badano LP, Mor-Avi V, Afilalo J, Armstrong A, Ernande L, Flachskampf FA, Foster E, Goldstein SA, Kuznetsova T. Recommendations for cardiac chamber quantification by echocardiography in adults: an update from the American Society of Echocardiography and the European Association of Cardiovascular Imaging. Eur Heart J Cardiovasc Imaging. 2015;16(3):233.CrossRef Lang RM, Badano LP, Mor-Avi V, Afilalo J, Armstrong A, Ernande L, Flachskampf FA, Foster E, Goldstein SA, Kuznetsova T. Recommendations for cardiac chamber quantification by echocardiography in adults: an update from the American Society of Echocardiography and the European Association of Cardiovascular Imaging. Eur Heart J Cardiovasc Imaging. 2015;16(3):233.CrossRef
14.
go back to reference Lim P, Buakhamsri A, Popovic ZB, Greenberg NL, Patel D, Thomas JD, Grimm RA. Longitudinal strain delay index by speckle tracking imaging: a new marker of response to cardiac resynchronization therapy. Circulation. 2008;118(11):1130–7.CrossRef Lim P, Buakhamsri A, Popovic ZB, Greenberg NL, Patel D, Thomas JD, Grimm RA. Longitudinal strain delay index by speckle tracking imaging: a new marker of response to cardiac resynchronization therapy. Circulation. 2008;118(11):1130–7.CrossRef
15.
go back to reference Delgado V, Ypenburg C, Zhang Q, Mollema SA, Fung JW, Schalij MJ, Yu CM, Bax JJ. Changes in global left ventricular function by multidirectional strain assessment in heart failure patients undergoing cardiac resynchronization therapy. J Am Soc Echocardiogr. 2009;22(6):688–94.CrossRef Delgado V, Ypenburg C, Zhang Q, Mollema SA, Fung JW, Schalij MJ, Yu CM, Bax JJ. Changes in global left ventricular function by multidirectional strain assessment in heart failure patients undergoing cardiac resynchronization therapy. J Am Soc Echocardiogr. 2009;22(6):688–94.CrossRef
16.
go back to reference Van Bommel RJ, Ypenburg C, Borleffs CJ, Delgado V, Marsan NA, Bertini M, Holman ER, Schalij MJ, Bax JJ. Value of tissue Doppler echocardiography in predicting response to cardiac resynchronization therapy in patients with heart failure. Am J Cardiol. 2010;105(8):1153–8.CrossRef Van Bommel RJ, Ypenburg C, Borleffs CJ, Delgado V, Marsan NA, Bertini M, Holman ER, Schalij MJ, Bax JJ. Value of tissue Doppler echocardiography in predicting response to cardiac resynchronization therapy in patients with heart failure. Am J Cardiol. 2010;105(8):1153–8.CrossRef
17.
go back to reference Bax JJ, Bleeker GB, Marwick TH, Molhoek SG, Boersma E, Steendijk P, van der Wall EE, Schalij MJ. Left ventricular dyssynchrony predicts response and prognosis after cardiac resynchronization therapy. J Am Coll Cardiol. 2004;44(9):1834–40.CrossRef Bax JJ, Bleeker GB, Marwick TH, Molhoek SG, Boersma E, Steendijk P, van der Wall EE, Schalij MJ. Left ventricular dyssynchrony predicts response and prognosis after cardiac resynchronization therapy. J Am Coll Cardiol. 2004;44(9):1834–40.CrossRef
18.
go back to reference Chung ES, Leon AR, Tavazzi L, Sun JP, Nihoyannopoulos P, Merlino J, Abraham WT, Ghio S, Leclercq C, Bax JJ, et al. Results of the predictors of response to CRT (PROSPECT) trial. Circulation. 2008;117(20):2608–16.CrossRef Chung ES, Leon AR, Tavazzi L, Sun JP, Nihoyannopoulos P, Merlino J, Abraham WT, Ghio S, Leclercq C, Bax JJ, et al. Results of the predictors of response to CRT (PROSPECT) trial. Circulation. 2008;117(20):2608–16.CrossRef
19.
go back to reference Lim P, Donal E, Lafitte S, Derumeaux G, Habib G, Reant P, Thivolet S, Lellouche N, Grimm RA, Gueret P. Multicentre study using strain delay index for predicting response to cardiac resynchronization therapy (MUSIC study). Eur J Heart Fail. 2011;13(9):984–91.CrossRef Lim P, Donal E, Lafitte S, Derumeaux G, Habib G, Reant P, Thivolet S, Lellouche N, Grimm RA, Gueret P. Multicentre study using strain delay index for predicting response to cardiac resynchronization therapy (MUSIC study). Eur J Heart Fail. 2011;13(9):984–91.CrossRef
20.
go back to reference Russell K, Eriksen M, Aaberge L, Wilhelmsen N, Skulstad H, Remme EW, Haugaa KH, Opdahl A, Fjeld JG, Gjesdal O, et al. A novel clinical method for quantification of regional left ventricular pressure-strain loop area: a non-invasive index of myocardial work. Eur Heart J. 2012;33(6):724–33.CrossRef Russell K, Eriksen M, Aaberge L, Wilhelmsen N, Skulstad H, Remme EW, Haugaa KH, Opdahl A, Fjeld JG, Gjesdal O, et al. A novel clinical method for quantification of regional left ventricular pressure-strain loop area: a non-invasive index of myocardial work. Eur Heart J. 2012;33(6):724–33.CrossRef
21.
go back to reference Russell K, Eriksen M, Aaberge L, Wilhelmsen N, Skulstad H, Gjesdal O, Edvardsen T, Smiseth OA. Assessment of wasted myocardial work: a novel method to quantify energy loss due to uncoordinated left ventricular contractions. Am J Phys Heart Circ Phys. 2013;305(7):H996–1003. Russell K, Eriksen M, Aaberge L, Wilhelmsen N, Skulstad H, Gjesdal O, Edvardsen T, Smiseth OA. Assessment of wasted myocardial work: a novel method to quantify energy loss due to uncoordinated left ventricular contractions. Am J Phys Heart Circ Phys. 2013;305(7):H996–1003.
22.
go back to reference Vecera J, Penicka M, Eriksen M, Russell K, Bartunek J, Vanderheyden M, Smiseth OA. Wasted septal work in left ventricular dyssynchrony: a novel principle to predict response to cardiac resynchronization therapy. Eur Heart J Cardiovasc Imaging. 2016;17(6):624–32.CrossRef Vecera J, Penicka M, Eriksen M, Russell K, Bartunek J, Vanderheyden M, Smiseth OA. Wasted septal work in left ventricular dyssynchrony: a novel principle to predict response to cardiac resynchronization therapy. Eur Heart J Cardiovasc Imaging. 2016;17(6):624–32.CrossRef
23.
go back to reference Oxborough D, Heemels A, Somauroo J, McClean G, Mistry P, Lord R, Utomi V, Jones N, Thijssen D, Sharma S, et al. Left and right ventricular longitudinal strain-volume/area relationships in elite athletes. Int J Cardiovasc Imaging. 2016;32(8):1199–211.CrossRef Oxborough D, Heemels A, Somauroo J, McClean G, Mistry P, Lord R, Utomi V, Jones N, Thijssen D, Sharma S, et al. Left and right ventricular longitudinal strain-volume/area relationships in elite athletes. Int J Cardiovasc Imaging. 2016;32(8):1199–211.CrossRef
24.
go back to reference Lord R, George K, Somauroo J, Stembridge M, Jain N, Hoffman MD, Shave R, Haddad F, Ashley E, Jones H, et al. Alterations in cardiac mechanics following ultra-endurance exercise: insights from left and right ventricular area-deformation loops. J Am Soc Echocardiogr. 2016;29(9):879–87 e871.CrossRef Lord R, George K, Somauroo J, Stembridge M, Jain N, Hoffman MD, Shave R, Haddad F, Ashley E, Jones H, et al. Alterations in cardiac mechanics following ultra-endurance exercise: insights from left and right ventricular area-deformation loops. J Am Soc Echocardiogr. 2016;29(9):879–87 e871.CrossRef
25.
go back to reference Lilli A, Baratto MT, Del Meglio J, Chioccioli M, Magnacca M, Svetlich C, Ghidini Ottonelli A, Poddighe R, Comella A, Casolo G. Three-dimensional simultaneous strain-volume analysis describes left ventricular remodelling and its progression: a pilot study. Eur J Echocardiogr. 2011;12(7):520–7.CrossRef Lilli A, Baratto MT, Del Meglio J, Chioccioli M, Magnacca M, Svetlich C, Ghidini Ottonelli A, Poddighe R, Comella A, Casolo G. Three-dimensional simultaneous strain-volume analysis describes left ventricular remodelling and its progression: a pilot study. Eur J Echocardiogr. 2011;12(7):520–7.CrossRef
26.
go back to reference Hulshof HG, van Dijk AP, George KP, Hopman MTE, Thijssen DHJ, Oxborough DL. Exploratory assessment of left ventricular strain-volume loops in severe aortic valve diseases. J Physiol. 2017;595(12):3961–71.CrossRef Hulshof HG, van Dijk AP, George KP, Hopman MTE, Thijssen DHJ, Oxborough DL. Exploratory assessment of left ventricular strain-volume loops in severe aortic valve diseases. J Physiol. 2017;595(12):3961–71.CrossRef
27.
go back to reference Lilli A, Tessa C, Diciotti S, Croisille P, Clarysse P, Del Meglio J, Salvatori L, Vignali C, Casolo G: Simultaneous strain-volume analysis by three-dimensional echocardiography: validation in normal subjects with tagging cardiac magnetic resonance, J Cardiovasc Med (Hagerstown) 2017, 18(4):223–229. Lilli A, Tessa C, Diciotti S, Croisille P, Clarysse P, Del Meglio J, Salvatori L, Vignali C, Casolo G: Simultaneous strain-volume analysis by three-dimensional echocardiography: validation in normal subjects with tagging cardiac magnetic resonance, J Cardiovasc Med (Hagerstown) 2017, 18(4):223–229.
28.
go back to reference Auricchio A, Fantoni C, Regoli F, Carbucicchio C, Goette A, Geller C, Kloss M, Klein H. Characterization of left ventricular activation in patients with heart failure and left bundle-branch block. Circulation. 2004;109(9):1133–9.CrossRef Auricchio A, Fantoni C, Regoli F, Carbucicchio C, Goette A, Geller C, Kloss M, Klein H. Characterization of left ventricular activation in patients with heart failure and left bundle-branch block. Circulation. 2004;109(9):1133–9.CrossRef
29.
go back to reference Zweerink A, de Roest GJ, Wu L, Nijveldt R, de Cock CC, van Rossum AC, Allaart CP: Prediction of Acute Response to Cardiac Resynchronization Therapy by Means of the Misbalance in Regional Left Ventricular Myocardial Work. (1532–8414 (Electronic)). Zweerink A, de Roest GJ, Wu L, Nijveldt R, de Cock CC, van Rossum AC, Allaart CP: Prediction of Acute Response to Cardiac Resynchronization Therapy by Means of the Misbalance in Regional Left Ventricular Myocardial Work. (1532–8414 (Electronic)).
30.
go back to reference Vernooy K, Verbeek XA, Peschar M, Crijns HJ, Arts T, Cornelussen RN, Prinzen FW. Left bundle branch block induces ventricular remodelling and functional septal hypoperfusion. Eur Heart J. 2005;26(1):91–8.CrossRef Vernooy K, Verbeek XA, Peschar M, Crijns HJ, Arts T, Cornelussen RN, Prinzen FW. Left bundle branch block induces ventricular remodelling and functional septal hypoperfusion. Eur Heart J. 2005;26(1):91–8.CrossRef
Metadata
Title
The value of left ventricular strain–volume loops in predicting response to cardiac resynchronization therapy
Authors
Mengruo Zhu
Haiyan Chen
Zibire Fulati
Yang Liu
Yangang Su
Xianhong Shu
Publication date
01-12-2019
Publisher
BioMed Central
Published in
Cardiovascular Ultrasound / Issue 1/2019
Electronic ISSN: 1476-7120
DOI
https://doi.org/10.1186/s12947-019-0153-3

Other articles of this Issue 1/2019

Cardiovascular Ultrasound 1/2019 Go to the issue