The Role of the Left Atrium: From Multimodality Imaging to Clinical Practice: A Review
Abstract
:1. Introduction
1.1. Multimodality Imaging to Improve Patient Care
1.2. Left Atrial Anatomy
1.3. Neuroendocrine Activity and Left Atrial Function
2. Combining Multimodality Imaging Improves the LA Assessment
3. Left Atrial Function in Heart Failure
3.1. Left Atrium in Heart Failure with Preserved Ejection Fraction
3.2. Left Atrium in Heart Failure with Reduced Ejection Fraction (HFrEF)
4. LA Size and Function in Coronary Artery Disease
5. Left Atrial Size and Function in Mitral Regurgitation
6. LA Size and Function to Assess Stroke Risk and before Ablation Procedure in AF
Left Atrium Evaluation before Ablation Procedure in AF
7. Conclusions
Funding
Institutional Review Board Statement
Data Availability Statement
Conflicts of Interest
References
- Fox, K.; Achenbach, S.; Bax, J.; Cosyns, B.; Delgado, V.; Dweck, M.R.; Edvardsen, T.; Flachskampf, F.; Habib, G.; Lancellotti, P.; et al. Multimodality imaging in cardiology: A statement on behalf of the Task Force on Multimodality Imaging of the European Association of Cardiovascular Imaging. Eur. Heart J. 2019, 40, 553–558. [Google Scholar] [CrossRef] [Green Version]
- Seward, J.B.; Hebl, V.B. Left atrial anatomy and physiology: Echo/Doppler assessment. Curr. Opin. Cardiol. 2014, 29, 403–407. [Google Scholar] [CrossRef] [PubMed]
- Prioli, A.; Marino, P.; Lanzoni, L.; Zardini, P. Increasing degrees of left ventricular filling impairment modulate left atrial function in humans. Am. J. Cardiol. 1998, 82, 756–761. [Google Scholar] [CrossRef]
- Thomas, L.; Levett, K.; Boyd, A.; Leung, D.Y.C.; Schiller, N.B.; Ross, D.L. Compensatory changes in atrial volumes with normal aging: Is atrial enlargement inevitable? J. Am. Coll. Cardiol. 2002, 40, 1630–1635. [Google Scholar] [CrossRef] [Green Version]
- Yoshida, N.; Okamoto, M.; Makita, Y.; Nanba, K.; Yoshizumi, M. Determinants of enhanced left atrial active emptying with aging: Left atrial preload, contractility, or both? Intern. Med. 2009, 48, 987–992. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Casaclang-Verzosa, G.; Gersh, B.J.; Tsang, T.S.M. Structural and functional remodeling of the left atrium: Clinical and therapeutic implications for atrial fibrillation. J. Am. Coll. Cardiol. 2008, 51, 1–11. [Google Scholar] [CrossRef] [Green Version]
- Westermann, D.; Kasner, M.; Steendijk, P.; Spillman, F.; Riad, A.; Weittman, K.; Hoffman, W.; Poller, W.; Pauschinger, M.; Schulteiss, H.P.; et al. Role of left ventricular stiffness in heart failure with normal ejection fraction. Circulation 2008, 117, 2051–2060. [Google Scholar] [CrossRef] [PubMed]
- Brilla, C.G.; Reams, G.P.; Maisch, B.; Weber, K.T. Renin–angiotensin system and myocardial fibrosis in hypertension: Regulation of the myocardial collagen matrix. Eur. Heart J. 1993, 14 (Suppl. J), 57–61. [Google Scholar] [PubMed]
- Bernard-Brunet, A.; Saint Etienne, C.; Piver, E.; Zannad, N.; Pagés, J.C.; Fauchier, L.; Babuty, D. Incomplete recovery of mechanical and endocrine left atrial functions one month after electrical cardioversion for persistent atrial fibrillation: A pilot study. J. Transl. Med. 2014, 22, 12–51. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Yamada, T.; Murakami, Y.; Okada, T.; Okamoto, M.; Shimizu, T.; Toyama, J.; Yoshida, Y.; Tsuboi, N.; Ito, T.; Muto, M.; et al. Plasma atrial natriuretic Peptide and brain natriuretic Peptide levels after radiofrequency catheter ablation of atrial fibrillation. Am. J. Cardiol. 2006, 97, 1741–1744. [Google Scholar] [CrossRef]
- Hoit, B.D. Left atrial size and function: Role in prognosis. J. Am. Coll. Cardiol. 2014, 63, 493–505. [Google Scholar] [CrossRef] [PubMed]
- Tsang, T.S.; Abhayaratna, W.P.; Barnes, M.E.; Myasaka, Y.; Gersh, B.J.; Bailey, K.R.; Cha, S.S.; Seward, J.B. Prediction of cardiovascular outcomes with left atrial size: Is volume superior to area or diameter? J. Am. Coll. Cardiol. 2006, 47, 1018–1023. [Google Scholar] [CrossRef] [Green Version]
- Murata, M.; Iwanaga, S.; Tamura, Y.; Kondo, M.; Kouyama, K.; Murata, M.; Ogawa, S. A real-time three-dimensional echocardiographic quantitative analysis of left atrial function in left ventricular diastolic dysfunction. Am. J. Cardiol. 2008, 102, 1097–1102. [Google Scholar] [CrossRef] [PubMed]
- Maceira, A.M.; Cosin-Sales, J.; Roughton, M.; Prasad, S.K.; Pennel, D.J. Reference left atrial dimensions and volumes by steady state free precession cardiovascular magnetic resonance. J. Cardiovasc. Magn. Reson. 2010, 12, 65. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Lang, R.M.; Badano, L.P.; Mor-Avi, V.; Afilao, J.; Armstrong, A.; Ernande, L.; Flachskampf, F.A.; Foster, E.; Goldstein, S.A.; Kuznetsova, T.; et al. 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, 233–270. [Google Scholar] [CrossRef] [PubMed]
- Poutanen, T.; Ikonen, A.; Vainio, P.; Jokinen, E.; Tikanoja, T. Left atrial volume assessed by transthoracic three dimensional echocardiography and magnetic resonance imaging: Dynamic changes during the heart cycle in children. Heart 2000, 83, 537–542. [Google Scholar] [CrossRef] [Green Version]
- Badano, L.P.; Miglioranza, M.H.; Mihăilă, S.; Peluso, D.; Xhaxho, J.; Perazzolo Marra, M.; Cucchini, U.; Soriani, N.; Iliceto, S.; Muraru, D. Left Atrial Volumes and Function by Three-Dimensional Echocardiography: Reference Values, Accuracy, Reproducibility, and Comparison with Two-Dimensional Echocardiographic Measurements. Circ. Cardiovasc. Imaging 2016, 9, e004229. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Hudsmith, L.E.; Cheng, A.S.; Tyler, D.J.; Shirodaria, C.; Lee, J.; Petersen, S.E.; Francis, J.M.; Clarke, K.; Robson, M.D.; Neubauer, S. Assessment of left atrial volumes at 1.5 Tesla and 3 Tesla using FLASH and SSFP cine imaging. J. Cardiovasc. Magn. Reson. 2007, 9, 673–679. [Google Scholar] [CrossRef] [PubMed]
- Appelbaum, E.; Manning, W.J. Left atrial fibrosis by late gadolinium enhancement cardiovascular magnetic resonance predictsrecurrence of atrial fibrillation after pulmonary vein isolation: Do you see what I see? Circ. Arrhythm. Electrophysiol. 2014, 7, 2–4. [Google Scholar] [CrossRef] [Green Version]
- Caudron, J.; Fares, J.; Bauer, F.; Dacher, J.N. Evaluation of left ventricular diastolic function with cardiac MR imaging. Radiographics 2011, 31, 239–259. [Google Scholar] [CrossRef]
- Thomas, L.; Abhayaratna, W.P. Left Atrial Reverse Remodeling: Mechanisms, Evaluation, and Clinical Significance. JACC Cardiovasc. Imaging 2017, 10, 65–77. [Google Scholar] [CrossRef]
- Floria, M.; Radu, S.; Moraru, A.C.; Tanase, D.M. Low voltage areas, atrial natriuretic peptides and fibrosis: Challenges and controversies. Clin. Cardiol. 2021, 44, 9–10. [Google Scholar] [CrossRef] [PubMed]
- To, A.C.; Flamm, S.D.; Marwick, T.H.; Klein, A.N. Clinical utility of multimodality LA imaging: Assessment of size, function, and structure. JACC Cardiovasc. Imaging 2011, 4, 788–798. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Nedios, S.; Kosiuk, J.; Koutalas, E.; Kornej, J.; Sommer, P.; Arya, A.; Richter, S.; Rolf, S.; Husser, D.; Hindricks, G.; et al. Comparison of left atrial dimensions in CT and echocardiography as predictors of long-term success after catheter ablation of atrial fibrillation. J. Interv. Card. Electrophysiol. 2015, 43, 237–244. [Google Scholar] [CrossRef] [PubMed]
- Lim, T.K.; Ashrafian, H.; Dwivedi, G.; Kornej, J.; Sommer, P.; Arya, A.; Richter, S.; Rolf, S.; Husser, D.; Hindricks, G.; et al. Increased left atrial volume index is an independent predictor of raised serum natriuretic peptide in patients with suspected heart failure but normal left ventricular ejection fraction: Implication for diagnosis of diastolic heart failure. Eur. J. Heart Fail. 2006, 8, 38–45. [Google Scholar] [CrossRef] [Green Version]
- Crawley, S.F.; Johnson, M.K.; Dargie, H.J.; Peacock, A.J. LA volume by CMR distinguishes idiopathic from pulmonary hypertension due to HFpEF. JACC Cardiovasc. Imaging 2013, 6, 1120–1121. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Rossi, A.; Gheorghiade, M.; Triposkiadis, F.; Solomon, S.D.; Pieske, B.; Butler, J. Left atrium in heart failure with preserved ejection fraction: Structure, function, and significance. Circ. Heart Fail. 2014, 7, 1042–1049. [Google Scholar] [CrossRef]
- Kurt, M.; Wang, J.; Torre-Amione, G.; Nagueh, S.F. Left atrial function in diastolic heart failure. Circ. Cardiovasc. Imaging 2009, 2, 10–15. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Tamura, H.; Watanabe, T.; Nishiyama, S.; Sasaki, S.; Arimoto, T.; Takahashi, H.; Shishido, T.; Miyashita, T.; Miyamoto, T.; Nitobe, J.; et al. Increased left atrial volume index predicts a poor prognosis in patients with heart failure. J. Card. Fail. 2011, 17, 210–216. [Google Scholar] [CrossRef] [PubMed]
- Bytyci, I.; Bajraktari, G.; Fabiani, I.; Lindqvist, P.; Poniku, A.; Pugliese, N.R.; Dini, F.L.; Henein, M.Y. Left atrial compliance index predicts exercise capacity in patients with heart failure and preserved ejection fraction irrespective of right ventricular dysfunction. Echocardiography 2019, 36, 1045–1053. [Google Scholar] [CrossRef] [PubMed]
- Mazzone, C.; Cioffi, G.; Faganello, G.; Cherubini, A.; Tarantini, L.; Di Lenarda, A.; Russo, T.E.; Selmi, A.; Stefenelli, C.; Furlanello, F. Left atrial work in patients with stable chronic heart failure: Factors associated and prognostic role. Echocardiography 2014, 31, 123–132. [Google Scholar] [CrossRef] [PubMed]
- Santos, A.B.; Kraigher-Krainer, E.; Gupta, D.K.; Claggett, B.; Zile, M.R.; Pieske, B.; Voors, A.A.; Lefkowitz, M.; Bransford, T.; Shi, V.; et al. Impaired left atrial function in heart failure with preserved ejection fraction. Eur. J. Heart Fail. 2014, 16, 1096–1103. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Ohtani, T.; Mohammed, S.F.; Yamamoto, K.; Dunlay, S.M.; Weston, S.A.; Sakata, Y.; Rodeheffer, R.J.; Roger, V.L.; Redfield, M.M. Diastolic stiffness as assessed by diastolic wall strain is associated with adverse remodelling and pooroutcomes in heart failure with preserved ejection fraction. Eur. Heart J. 2012, 33, 1742–1749. [Google Scholar] [CrossRef] [PubMed]
- Kowallick, J.T.; Kutty, S.; Edelmann, F.; Chiribiri, A.; Villa, A.; Steinmetz, M.; Sohns, J.M.; Staab, W.; Bettencourt, N.; Unterberg-Buchwald, C.; et al. Quantification of left atrial strain and strain rate using Cardiovascular Magnetic Resonance myocardial feature tracking: A feasibility study. J. Cardiovasc. Magn. Reson. 2014, 12, 16–60. [Google Scholar] [CrossRef] [Green Version]
- Freed, B.H.; Shah, S.J. Stepping Out of the Left Ventricle’s Shadow: Time to Focus on the Left Atrium in Heart Failure with Preserved Ejection Fraction. Circ. Cardiovasc. Imaging 2017, 10, e006267. [Google Scholar] [CrossRef] [Green Version]
- Galderisi, M.; Santoro, C.; Esposito, R. Left atrial function and dyssynchrony: Main characters and not actor appearances in heart failure with preserved ejection fraction. Int. J. Cardiol. 2018, 15, 222–223. [Google Scholar] [CrossRef] [PubMed]
- Nawathe, A.; Ariyarajah, V.; Apiyasawat, S.; Barac, I.; Spodick, D.H. Correlation of echocardiographic left atrial abnormality with myocardial ischemia during myocardial perfusion assessment in the presence of known left ventricular hypertrophy. Am. J. Cardiol. 2013, 112, 416–419. [Google Scholar] [CrossRef]
- De Gregorio, M.G.; Fumagalli, C.; Tomberli, A.; Baldini, K.; Puccini, G.; d’Amati, G.; Foglieni, C.; Camici, P.G.; Sciagrà, R.; Olivotto, I. Myocardial blood flow in patients with hypertrophic cardiomyopathy receiving perindopril (CARAPaCE): A pilot study. J. Cardiovasc. Med. 2021, 22, 511–513. [Google Scholar] [CrossRef]
- Konerman, M.C.; Greenberg, J.C.; Kolias, T.J.; Corbett, J.R.; Shah, V.R.; Murthy, V.L.; Hummel, S. Reduced Myocardial Flow Reserve Is Associated with Diastolic Dysfunction and Decreased Left Atrial Strain in Patients with Normal Ejection Fraction and Epicardial Perfusion. J. Card. Fail. 2018, 24, 90–100. [Google Scholar] [CrossRef]
- Kim, H.; Cho, Y.K.; Jun, D.H.; Nam, C.W.; Han, S.W.; Hur, S.H.; Kim, Y.N.; Kim, K.B. Prognostic implications of the NT-ProBNP level and left atrial size in non-ischemic dilated cardiomyopathy. Circ. J. 2008, 72, 1658–1665. [Google Scholar] [CrossRef] [Green Version]
- Rossi, A.; Temporelli, P.L.; Quintana, M.; Dini, F.L.; Ghio, S.; Hillis, G.S.; Klein, A.L.; Marsan, N.A.; Prior, D.L.; Yu, C.M.; et al. Independent relationship of left atrial size and mortality in patients with heart failure: An individual patient meta-analysis of longitudinal data (MeRGE Heart Failure). Eur. J. Heart Fail. 2009, 11, 929–936. [Google Scholar] [CrossRef] [PubMed]
- Knappe, D.; Pouleur, A.C.; Shah, A.M.; Bourgoun, M.; Brown, M.W.; Foster, E.; Pfeffer, M.A.; Moss, A.J.; Solomon, S.D.; MADIT-CRT Investigators. Acute effects of withdrawal of cardiac resynchronization therapy on left and right ventricular function, dyssynchrony, and contractile function in patients with New York Heart Association functional class I/II heart failure: MADIT-CRT. J. Card. Fail. 2013, 19, 149–155. [Google Scholar] [CrossRef] [PubMed]
- Sahebjam, M.; Zoroufian, A.; Sadeghian, H.; Roomi, Z.S.; Sardari, A.; Mirzamani, S.S.; Tokaldany, M.L.; Jalali, A. Relationship between left atrial function and size and level of left ventricular dyssynchrony in heart failurepatients. Echocardiography 2013, 30, 772–777. [Google Scholar] [CrossRef] [PubMed]
- Rossi, L.; Malagoli, A.; Piepoli, M.; Franchi, F.; Malavasi, V.; Casali, E.; Rusticali, G.; Villani, G.Q. Indexed maximal left atrial volume predicts response to cardiac resynchronization therapy. Int. J. Cardiol. 2013, 168, 3629–3633. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Maffeis, C.; Rossi, A.; Cannata, L.; Zocco, C.; Belyavskiy, E.; Radhakrishnan, A.K.; Feuerstein, A.; Morris, D.A.; Pieske-Kraigher, E.; Pieske, B.; et al. Left atrial strain predicts exercise capacity in heart failure independently of left ventricular ejection fraction. ESC Heart Fail. 2022, 9, 842–852. [Google Scholar] [CrossRef]
- Stefanadis, C.; Dernellis, J.; Tsiamis, E.; Toutouzas, P. Effects of pacing-induced and balloon coronary occlusion ischemia on left atrial function in patients with coronary artery disease. J. Am. Coll. Cardiol. 1999, 33, 687–696. [Google Scholar] [CrossRef] [Green Version]
- Pinar, M.; Gulel, O.; Kucuksu, Z.; Meric, M.; Sahin, M.; Yilmaz, O. Evaluation of biatrial size and functions by different echocardiographic parameters in patients with acute coronary syndromes. Int. J. Cardiovasc. Imaging 2013, 29, 1725–1732. [Google Scholar] [CrossRef] [PubMed]
- Gunasekaran, R.; Maskon, O.; Hassan, H.H.; Safian, N.; Sakthiswary, R. Left atrial volume index is an independent predictor of major adverse cardiovascular events in acute coronary syndrome. Can. J. Cardiol. 2012, 28, 561–566. [Google Scholar] [CrossRef]
- Ramzy, I.S.; Lindqvist, P.; Lam, Y.Y.; Duncan, A.M.; Henein, M.Y. Electromechanical left atrial disturbances in acute inferior myocardial infarction: Evidence for ischaemic dysfunction. Int. J. Cardiol. 2011, 151, 96–98. [Google Scholar] [CrossRef]
- Facchini, E.; Degiovanni, A.; Marino, P.N. Left atrium function in patients with coronary artery disease. Curr. Opin. Cardiol. 2014, 29, 423–429. [Google Scholar] [CrossRef]
- Dogan, C.; Ozdemir, N.; Hatipoglu, S.; Bakal, R.B.; Omaygen, M.O.; Dindar, B.; Candan, O.; Emiroglu, M.Y.; Kaymaz, C. Relation of left atrial peak systolic strain with left ventricular diastolic dysfunction and brain natriuretic peptide level in patients presenting with ST-elevation myocardial infarction. Cardiovasc. Ultrasound 2013, 11, 24. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Kühl, J.T.; Møller, J.E.; Kristensen, T.S.; Kelbæk, H.; Kofoed, K.F. Left atrial function and mortality in patients with NSTEMI an MDCT study. JACC Cardiovasc. Imaging 2011, 4, 1080–1087. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Lønborg, J.T.; Engstrøm, T.; Møller, J.E.; Ahtarovski, K.A.; Kelbæk, H.; Holmvang, L.; Jørgensen, E.; Helqvist, S.; Saunamaki, K.; Solhølm, H.; et al. Left atrial volume and function in patients following ST elevation myocardial infarction and the association withclinical outcome: A cardiovascular magnetic resonance study. Eur. Heart J. Cardiovasc. Imaging 2013, 14, 118–127. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Choi, M.J.; Kim, J.K.; Kim, S.G.; Yoon, J.W.; Koo, J.R.; Kim, H.J.; Song, Y.R. Left atrial volume index is a predictor of silent myocardial ischemia in high-risk patients with end-stage renal disease. Int. J. Cardiovasc. Imaging 2013, 29, 1433–1439. [Google Scholar] [CrossRef] [PubMed]
- Ring, L.; Dutka, D.P.; Wells, F.C.; Fynn, S.P.; Shapiro, L.M.; Rana, B.S. Mechanisms of atrial mitral regurgitation: Insights using 3D transoesophageal echo. Eur. Heart J. Cardiovasc. Imaging 2014, 15, 500–508. [Google Scholar] [CrossRef] [Green Version]
- Malagoli, A.; Rossi, L.; Zanni, A.; Sticozzi, C.; Piepoli, M.F.; Benfari, G. Quantified Mitral Regurgitation and Left Atrial Function in HFrEF: Interplay and Outcome Implications. Eur. J. Heart Fail. 2022, 24, 694–702. [Google Scholar] [CrossRef]
- Yi, J.E.; Chung, W.B.; Cho, J.S.; Park, C.S.; Cho, E.J.; Jeon, H.K.; Jung, H.O.; Youn, H.J. Left atrial eccentricity in chronic mitral regurgitation: Relation to left atrial function. Eur. Heart J. Cardiovasc. Imaging 2013, 14, 110–117. [Google Scholar] [CrossRef] [Green Version]
- Inciardi, R.M.; Rossi, A.; Bergamini, C.; Benfari, G.; Maffeis, C.; Greco, C.; Drago, A.; Guazzi, M.; Ribichini, F.L.; Cicoira, M. Mitral regurgitation, left atrial structural and functional remodelling and the effect on pulmonary haemodynamics. Eur. J. Heart Fail. 2020, 22, 499–506. [Google Scholar] [CrossRef] [PubMed]
- Yang, L.T.; Shih, J.Y.; Liu, Y.W.; Li, Y.H.; Tsai, L.M.; Luo, C.Y.; Tsai, W.C. Effects of left atrial strain on functional capacity in chronic severe mitral regurgitation. Int. J. Cardiol. 2013, 168, e151–e153. [Google Scholar] [CrossRef]
- Volo, S.C.; Kim, J.; Gurevich, S.; Petashnick, M.; Kampaktsis, P.; Feher, A.; Szulc, M.; Wong, F.J.; Devereux, R.B.; Okin, P.M.; et al. Effect of myocardial perfusion pattern on frequency and severity of mitral regurgitation in patients with known or suspected coronary artery disease. Am. J. Cardiol. 2014, 114, 355–361. [Google Scholar] [CrossRef] [Green Version]
- Vahanian, A.; Beyersdorf, F.; Praz, F.; Milojevic, M.; Baldus, S.; Bauersachs, J.; Capodanno, D.; Conradi, L.; De Bonis, M.; De Paulis, R.; et al. ESC/EACTS Scientific Document Group. 2021 ESC/EACTS Guidelines for the management of valvular heart disease. Eur. J. Cardiothorac. Surg. 2021, 60, 727–800. [Google Scholar] [CrossRef] [PubMed]
- Hyllén, S.; Nozohoor, S.; Meurling, C.; Wierup, P.; Sjögren, J. Left atrial reverse remodeling following valve surgery for chronic degenerative mitral regurgitation in patients with preoperative sinus rhythm: Effects on long-term outcome. J. Card. Surg. 2013, 28, 619–626. [Google Scholar] [CrossRef] [PubMed]
- Debonnaire, P.; Leong, D.P.; Witkowski, T.G.; Al Amri, I.; Joyce, E.; Katsanos, S.; Schalij, M.J.; Bax, J.J.; Delgado, V.; Marsan, N.A. Left atrial function by two-dimensional speckle-tracking echocardiography in patients with severe organic mitralregurgitation: Association with guidelines-based surgical indication and postoperative (long-term) survival. J. Am. Soc. Echocardiogr. 2013, 26, 1053–1062. [Google Scholar] [CrossRef] [PubMed]
- Oh, J.K.; Yoon, Y.H.; Roh, J.H.; Kim, M.; Sun, B.J.; Jung, S.H.; Lee, J.H.; Lee, J.W.; Kim, D.H.; Park, J.H. Prognostic Impact of Left Atrial Strain After Mitral Valve Repair Surgery in Patients with Severe Mitral Regurgitation. Korean Circ. J. 2021, 52, 205–217. [Google Scholar] [CrossRef] [PubMed]
- Rusinaru, D.; Tribouilloy, C.; Grigioni, F.; Avierinos, J.F.; Suri, R.M.; Barbieri, A.; Szymanski, C.; Ferlito, M.; Michelena, H.; Mitral Regurgitation International DAtabase (MIDA) Investigators; et al. Left atrial size is a potent predictor of mortality in mitral regurgitation due to flail leaflets: Results from a large international multicenter study. Circ. Cardiovasc. Imaging 2011, 4, 473–481. [Google Scholar] [CrossRef] [Green Version]
- Arias, A.; Pizarro, R.; Oberti, P.; Falconi, M.; Lucas, L.; Sosa, F.; Funes, D.; Cagide, A. Prognostic value of left atrial volume in asymptomatic organic mitral regurgitation. J. Am. Soc. Echocardiogr. 2013, 26, 699–705. [Google Scholar] [CrossRef]
- Habibi, M.; Samiei, S.; Ambale Venkatesh, B.; Opdahl, A.; Helle-Valle, T.M.; Zareian, M.; Almeida, A.L.C.; Choi, E.Y.; Wu, C.; Alonso, A.; et al. Cardiac Magnetic Resonance-Measured Left Atrial Volume and Function and Incident Atrial Fibrillation: Results from MESA (Multi-Ethnic Study of Atherosclerosis). Circ. Cardiovasc. Imaging 2016, 9, e004299. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Toh, N.; Kanzaki, H.; Nakatani, S.; Ohara, T.; Kim, J.; Kusano, K.F.; Hashimura, K.; Ohe, T.; Ito, H.; Kitakaze, M. Left atrial volume combined with atrial pump function identifies hypertensive patients with a history of paroxysmal atrial fibrillation. Hypertension 2010, 55, 1150–1156. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Masuda, M.; Iwakura, K.; Inoue, K.; Okamura, A.; Koyama, Y.; Toyoshima, Y.; Tanaka, N.; Nakanishi, H.; Sotomi, Y.; Komuro, I.; et al. Estimation of left atrial blood stasis using diastolic late mitral annular velocity. Eur. Heart J. Cardiovasc. Imaging 2013, 14, 752–757. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Hirose, T.; Kawasaki, M.; Tanaka, R.; Ono, K.; Watanabe, T.; Iwama, M.; Noda, T.; Watanabe, S.; Takemura, G.; Minatoguchi, S. Left atrial function assessed by speckle tracking echocardiography as a predictor of new-onset non-valvular atrial fibrillation: Results from a prospective study in 580 adults. Eur. Heart J. Cardiovasc. Imaging 2012, 13, 243–250. [Google Scholar] [CrossRef] [Green Version]
- Shih, J.Y.; Tsai, W.C.; Huang, Y.Y.; Liu, Y.W.; Lin, C.C.; Huang, Y.S.; Tsai, L.M.; Lin, L.J. Association of decreased left atrial strain and strain rate with stroke in chronic atrial fibrillation. J. Am. Soc. Echocardiogr. 2011, 24, 513–519. [Google Scholar] [CrossRef] [PubMed]
- Park, J.H.; Joung, B.; Son, N.H.; Shim, J.M.; Lee, M.H.; Hwang, C.; Pak, H.N. The electroanatomical remodelling of the left atrium is related to CHADS2/CHA2DS2VASc score and events of stroke in patients with atrial fibrillation. Europace 2011, 13, 1541–1549. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Goldberg, Y.H.; Gordon, S.C.; Spevack, D.M.; Gordon, G.M. Disparities in emptying velocity within the left atrial appendage. Eur. J. Echocardiogr. 2010, 11, 290–295. [Google Scholar] [CrossRef] [Green Version]
- Muellerleile, K.; Sultan, A.; Groth, M.; Steven, D.; Hoffmann, B.; Adam, G.; Lund, G.K.; Rostock, T.; Willems, S. Velocity encoded cardiovascular magnetic resonance to assess left atrial appendage emptying. J. Cardiovasc. Magn. Reson. 2012, 14, 39. [Google Scholar] [CrossRef] [Green Version]
- Lee, J.M.; Shim, J.; Uhm, J.S.; Kim, Y.J.; Lee, H.J.; Pak, H.N.; Lee, M.H.; Joung, B. Impact of increased orifice size and decreased flow velocity of left atrial appendage on stroke in non valvular atrial fibrillation. Am. J. Cardiol. 2014, 113, 963–969. [Google Scholar] [CrossRef] [PubMed]
- Gage, B.F.; Waterman, A.D.; Shannon, W.; Boechler, M.; Rich, M.W.; Radford, M.J. Validation of clinical classification schemes for predicting stroke: Results from the national registry of atrial fibrillation. JAMA 2001, 285, 2864–2870. [Google Scholar] [CrossRef]
- Kusa, S.; Komatsu, Y.; Taniguchi, H.; Uchiyama, T.; Takagi, T.; Nakamura, H.; Miyazaki, S.; Hachiya, H.; Iesaka, Y. Left atrial appendage flow velocity after successful ablation of persistent atrial fibrillation: Clinical perspective from transesophageal echocardiographic assessment during sinus rhythm. Am. Heart J. 2015, 169, 211–221. [Google Scholar] [CrossRef] [PubMed]
- Pump, A.; Di Biase, L.; Price, J.; Mohanty, P.; Bai, R.; Santangeli, P.; Mohanty, S.; Trivedi, C.; Yan, R.X.; Horton, R.; et al. Efficacy of catheter ablation in nonparoxysmal atrial fibrillation patients with severe enlarged left atrium and its impact on left atrial structural remodeling. J. Cardiovasc. Electrophysiol. 2013, 24, 1224–1231. [Google Scholar] [CrossRef]
- Ad, N.; Henry, L.; Hunt, S.; Holmes, S.D. Should surgical ablation for atrial fibrillation be performed in patients with a significantly enlarged left atrium? J. Thorac. Cardiovasc. Surg. 2014, 147, 236–241. [Google Scholar] [CrossRef] [Green Version]
- Fukumoto, K.; Habibi, M.; Ipek, E.G.; Zahid, S.; Khurram, I.M.; Zimmerman, S.L.; Zipunnikov, V.; Spragg, D.; Ashikaga, H.; Trayanova, N.; et al. Association of Left Atrial Local Conduction Velocity with Late Gadolinium Enhancement on Cardiac Magnetic Resonance in Patients with Atrial Fibrillation. Circ. Arrhythm. Electrophysiol. 2016, 9, e002897. [Google Scholar] [CrossRef] [Green Version]
- Hsing, J.; Peters, D.C.; Knowles, B.R.; Manning, W.J.; Josephson, M.E. Cardiovascular magnetic resonance imaging of scar development following pulmonary vein isolation: A prospective study. PLoS ONE 2014, 9, e104844. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Fukumoto, K.; Habibi, M.; Gucuk Ipek, E.; Khurram, I.M.; Zimmerman, S.L.; Zipunnikov, V.; Spragg, D.D.; Ashikaga, H.; Rickard, J.; Marine, J.E.; et al. Comparison of preexisting and ablation-induced late gadolinium enhancement on left atrialmagnetic resonance imaging. Heart Rhythm 2015, 12, 668–672. [Google Scholar] [CrossRef] [Green Version]
- Blandino, A.; Bianchi, F.; Grossi, S.; Biondi-Zoccai, G.; Conte, M.R.; Gaido, L.; Gaita, F.; Scaglione, M.; Scaglione, M.; Rametta, F. Left Atrial Substrate Modification Targeting Low-Voltage Areas for Catheter Ablation of Atrial Fibrillation: A Systematic Review and Meta-Analysis. Pacing Clin. Electrophysiol. 2017, 40, 199–212. [Google Scholar] [CrossRef] [PubMed]
- Montserrat, S.; Gabrielli, L.; Borras, R.; Poyatos, S.; Berruezo, A.; Bijnens, B.; Brugada, J.; Mont, L.; Sitges, M. Left atrial size and function by three-dimensional echocardiography to predict arrhythmia recurrence after first and repeated ablation of atrial fibrillation. Eur. Heart J. Cardiovasc. Imaging 2014, 15, 515–522. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Schwartz, A.L.; Chorin, E.; Mann, T.; Levi, Y.; Hochstadt, A.; Margolis, G.; Viskin, S.; Banai, S.; Rosso, R. Reconstruction of the left atrium for atrial fibrillation ablation using the machine learning CARTO 3 m-FAM software. J. Interv. Card. Electrophysiol. 2021, 64, 39–47. [Google Scholar] [CrossRef] [PubMed]
Clinical Setting | Parameter | Clinical Usefulness |
---|---|---|
HFpEF | E/E’ | A noninvasive measure of LV filling pressure. Diagnostic and prognostic utilities to assess diastolic dysfunction. |
LAVI | Increased LAVI is an expression of increased LA pressure. It is a predictor of mortality in patients with HFpEF [31]. | |
Mean atrial pressure | It is a measure of LA compliance, which seems to be the most powerful independent predictor of limited exercise capacity [31]. | |
LAKE | It is a strong predictor of cardiovascular events and hospitalisation for HF. | |
Atrial diastolic wall strain index | It is associated with worse outcomes in patients with HFpEF [35]. | |
Left atrial longitudinal strain (CMR) | It identifies subjects with diastolic dysfunction [36]. | |
LA conduit strain (CMR) | The conduit function is not significantly related to LV stiffness and relaxation, arguing that the LA conduit function reflects intrinsic LA pathology [37]. | |
HFrEF | E/E’ | A noninvasive measure of LV filling pressure. Diagnostic and prognostic utilities to assess diastolic dysfunction. |
LA area | LA area shows prognostic discrimination independently from LV systolic and diastolic functions [40]. | |
LAVI | Patients with low maximal LAVI are better responders to CRT than patients with higher values. It also allows the selection of candidates for CRT, being an independent predictor of LV reverse remodelling [43]. |
Clinical Setting | Parameter | Clinical Usefulness |
---|---|---|
CAD | LAVI | LAVI after AMI is an independent incremental risk factor for HF hospitalisation, ACM, and major CV events [31,47]. |
LA strain | LA strain provides prognostic value in terms of ACM, reinfarction, and HF hospitalisation in patients with ACS treated with primary PCI [49]. LA strain values decrease consensually with LV function in AMI patients treated with revascularisation therapy, especially with culprit lesions in the LCx [50]. | |
LA FAC e LA EF (CCT) | LA FAC e LA EF evaluated by using CCT is more accurate than the LAVI to predict mortality in patients with NSTEMI [51]. This is also confirmed by CMR images, where LA FAC and volume are independently associated with outcomes in STEMI [52]. |
Clinical Setting | Parameter | Clinical Usefulness |
---|---|---|
Mitral Regurgitation | EROA and LA strain | In functional MR, EROA ≥ 0.30 cm2 is associated with CV events regardless of LA function. Nevertheless, in EROA ≥ 0.10 cm2, a reduced LA function (PALS < 14%) is related to a worse outcome [54]. |
LA eccentricity index | LA eccentricity index is an indicator of changes in the structure of LA towards a more spheric geometry and is related to LA systolic function in chronic MR. | |
LA anteroposterior diameter | LA enlargement is associated with mortality and worse outcomes, independently of HF symptoms or LV dysfunction in patients with MR caused by flail leaflets [60,61]. |
Clinical Setting | Parameter | Clinical Usefulness |
---|---|---|
Before FA catheter ablation | TDI | TDI A’ reflects LA pump function and the severity of LA remodelling with a significant association with LA blood stasis in patients with nonvalvular PAF [63]. |
STE | The evaluation of myocardial deformation by a decrease in peak positive longitudinal strain during atrial filling and peak strain rate in the reservoir phase recognises patients with higher stroke risks [65]. | |
LA volume + Fibrosis evaluation (Eco) | Low 3D echocardiographic LA volumes are linked with no recurrence of AF after RFCA [77]. Patients with LA dilatation, dysfunction, and fibrosis are more likely to experience AF recurrences after RFCA. | |
Left atrial appendage flow velocity (LAAFV) | Low LAAFV is related to a higher risk of stroke events. | |
LA anatomy | CT reconstruction of LA anatomy is useful before a catheter ablation procedure. | |
CMR LGE in the LA | Preablation CMR LGE predicts responders to AF ablation and may provide insights into the overall disease progression [23,24]. | |
LA volume (3D CT) + 3D electroanatomical map | This is related to the CHA₂DS₂VASc score in patients with nonvalvular AF [66]. |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Beltrami, M.; Dei, L.-L.; Milli, M. The Role of the Left Atrium: From Multimodality Imaging to Clinical Practice: A Review. Life 2022, 12, 1191. https://doi.org/10.3390/life12081191
Beltrami M, Dei L-L, Milli M. The Role of the Left Atrium: From Multimodality Imaging to Clinical Practice: A Review. Life. 2022; 12(8):1191. https://doi.org/10.3390/life12081191
Chicago/Turabian StyleBeltrami, Matteo, Lorenzo-Lupo Dei, and Massimo Milli. 2022. "The Role of the Left Atrium: From Multimodality Imaging to Clinical Practice: A Review" Life 12, no. 8: 1191. https://doi.org/10.3390/life12081191
APA StyleBeltrami, M., Dei, L.-L., & Milli, M. (2022). The Role of the Left Atrium: From Multimodality Imaging to Clinical Practice: A Review. Life, 12(8), 1191. https://doi.org/10.3390/life12081191