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Published in: BMC Cardiovascular Disorders 1/2024

Open Access 01-12-2024 | Cardiac Tumor | Research

The usefulness of contrast echocardiography in the evaluation of cardiac masses: a multicenter study

Authors: Qingtao Wang, Bing Wang, Xiaofeng Zhang, Xin Zhong, Shuai Chang, Jinbo Yang, Jian Liang, Qiangqiang You, Heng Zhou, Jiaqi Zhang

Published in: BMC Cardiovascular Disorders | Issue 1/2024

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Abstract

Background

Cardiac masses can encompass a variety of conditions, such as tumors, thrombi, vegetations, calcific lesions, and other rare diseases. Treatment and management of these types of cardiac masses differ considerably. Thus, accurately distinguishing among thrombi, benign tumors, and malignant tumors in the heart is of great importance. Contrast echocardiography (CE) has emerged as a promising technology. Although published guidelines suggest that CE can enhance image quality and assist in differentiating between benign and malignant lesions, most studies on CE diagnosis of cardiac masses are limited to case reports or retrospective/small-sample-sized prospective cohorts. This study aims to evaluate the diagnostic accuracy of CE in patients with suspected cardiac masses and address the insufficient evidence for differential diagnosis using CE.

Methods

Between April 2018 and July 2022, a prospective multicenter study was conducted, which included 145 consecutive patients suspected to have cardiac masses based on transthoracic echocardiography. All patients underwent CE examinations. The echocardiographic diagnosis relied on qualitative factors such as echogenicity, boundary, morphology of the base, mass perfusion, pericardial effusion, and motility as well as quantitative factors such as the area of the masses and the peak intensity ratio of the masses to adjacent myocardium (A1/A2).

Results

The final confirmed diagnoses were as follows: 2 patients had no cardiac mass, 4 patients had pseudomass, 43 patients had thrombus, 66 patients had benign tumors, and 30 patients had malignant tumors. The receiver operating characteristic (ROC) analysis indicated that an optimal A1/A2 cutoff value of 0.499 distinguished a cardiac tumor from a thrombus, with AUC, sensitivity, specificity, PPV, and NPV of 0.977, 97.9%, 90.7%, 95.9%, and 95.1%, respectively. The optimal A1/A2 cutoff value of 1.583 distinguished a cardiac tumor from a thrombus, with AUC, sensitivity, specificity, PPV, and NPV of 0.950, 93.3%, 93.9%, 87.5%, and 96.9%, respectively.

Conclusions

Combined with qualitative and quantitative analyses, CE has the potential to accurately differentiate among different types of cardiac masses.
Literature
1.
go back to reference Foà A, Paolisso P, Bergamaschi L, Rucci P, Di Marco L, Pacini D, Leone O, Galié N, Pizzi C. Clues and pitfalls in the diagnostic approach to cardiac masses: are pseudo-tumours truly benign? Eur J Prev Cardiol. 2022;29(3):e102–4.CrossRefPubMed Foà A, Paolisso P, Bergamaschi L, Rucci P, Di Marco L, Pacini D, Leone O, Galié N, Pizzi C. Clues and pitfalls in the diagnostic approach to cardiac masses: are pseudo-tumours truly benign? Eur J Prev Cardiol. 2022;29(3):e102–4.CrossRefPubMed
2.
go back to reference Tasdemir A, Tuncay A, Karaman H, Canoz O, Asik R, Ozmen R, Elcik D. Cardiac masses: Pathological and Surgical features - A Multicenter Study. Braz J Cardiov Surg. 2021;36(5):656–62.CrossRef Tasdemir A, Tuncay A, Karaman H, Canoz O, Asik R, Ozmen R, Elcik D. Cardiac masses: Pathological and Surgical features - A Multicenter Study. Braz J Cardiov Surg. 2021;36(5):656–62.CrossRef
4.
go back to reference Maleszewski JJ, Anavekar NS, Moynihan TJ, Klarich KW. Pathology, imaging, and treatment of cardiac tumours. Nat Rev Cardiol. 2017;14(9):536–49.CrossRefPubMed Maleszewski JJ, Anavekar NS, Moynihan TJ, Klarich KW. Pathology, imaging, and treatment of cardiac tumours. Nat Rev Cardiol. 2017;14(9):536–49.CrossRefPubMed
5.
go back to reference Pacini D, Careddu L, Pantaleo A, Berretta P, Leone O, Marinelli G, Gargiulo G, Di Bartolomeo R. Primary benign cardiac tumours: long-term results. Eur J Cardio-Thorac. 2012;41(4):812–9.CrossRef Pacini D, Careddu L, Pantaleo A, Berretta P, Leone O, Marinelli G, Gargiulo G, Di Bartolomeo R. Primary benign cardiac tumours: long-term results. Eur J Cardio-Thorac. 2012;41(4):812–9.CrossRef
6.
go back to reference Li Y, Ren W, Wang X, Xiao Y, Feng Y, Shi P, Sun L, Wang X, Yang H, Song G. The diagnostic accuracy of contrast echocardiography in patients with suspected cardiac masses: a preliminary multicenter, cross-sectional study. Front Cardiovasc Med. 2022; 9. Li Y, Ren W, Wang X, Xiao Y, Feng Y, Shi P, Sun L, Wang X, Yang H, Song G. The diagnostic accuracy of contrast echocardiography in patients with suspected cardiac masses: a preliminary multicenter, cross-sectional study. Front Cardiovasc Med. 2022; 9.
7.
go back to reference 2022 ESC Guidelines on cardio-oncology developed in collaboration with the European Hematology. Association (EHA), the European Society for Therapeutic Radiology and Oncology (ESTRO) and the International Cardio-Oncology Society (IC-OS. 2022 ESC Guidelines on cardio-oncology developed in collaboration with the European Hematology. Association (EHA), the European Society for Therapeutic Radiology and Oncology (ESTRO) and the International Cardio-Oncology Society (IC-OS.
8.
go back to reference Tyebally S, Chen D, Bhattacharyya S, Mughrabi A, Hussain Z, Manisty C, Westwood M, Ghosh AK, Guha A. Cardiac tumors. Jacc-Cardiooncol. 2020;2(2):293–311.CrossRefPubMedPubMedCentral Tyebally S, Chen D, Bhattacharyya S, Mughrabi A, Hussain Z, Manisty C, Westwood M, Ghosh AK, Guha A. Cardiac tumors. Jacc-Cardiooncol. 2020;2(2):293–311.CrossRefPubMedPubMedCentral
9.
go back to reference D Angelo EC, Paolisso P, Vitale G, Foà A, Bergamaschi L, Magnani I, Saturi G, Rinaldi A, Toniolo S, Renzulli M, et al. Diagnostic accuracy of Cardiac Computed Tomography and 18-F fluorodeoxyglucose Positron Emission Tomography in Cardiac masses. JACC: Cardiovasc Imaging. 2020;13(11):2400–11.PubMed D Angelo EC, Paolisso P, Vitale G, Foà A, Bergamaschi L, Magnani I, Saturi G, Rinaldi A, Toniolo S, Renzulli M, et al. Diagnostic accuracy of Cardiac Computed Tomography and 18-F fluorodeoxyglucose Positron Emission Tomography in Cardiac masses. JACC: Cardiovasc Imaging. 2020;13(11):2400–11.PubMed
10.
go back to reference Mousavi N, Cheezum MK, Aghayev A, Padera R, Vita T, Steigner M, Hulten E, Bittencourt MS, Dorbala S, Di Carli MF et al. Assessment of Cardiac masses by Cardiac magnetic resonance imaging: histological correlation and clinical outcomes. J Am Heart Assoc. 2019; 8(1). Mousavi N, Cheezum MK, Aghayev A, Padera R, Vita T, Steigner M, Hulten E, Bittencourt MS, Dorbala S, Di Carli MF et al. Assessment of Cardiac masses by Cardiac magnetic resonance imaging: histological correlation and clinical outcomes. J Am Heart Assoc. 2019; 8(1).
11.
go back to reference Lin Y, Xie M, Qian M, Gao L, Ji MM, Li Y. Cardiac fibroma: characteristics on echocardiography and cardiac magnetic resonance imaging. QJM: An International Journal of Medicine. 2022;115(6):412–4.CrossRefPubMed Lin Y, Xie M, Qian M, Gao L, Ji MM, Li Y. Cardiac fibroma: characteristics on echocardiography and cardiac magnetic resonance imaging. QJM: An International Journal of Medicine. 2022;115(6):412–4.CrossRefPubMed
12.
go back to reference Aggeli C, Dimitroglou Y, Raftopoulos L, Sarri G, Mavrogeni S, Wong J, Tsiamis E, Tsioufis C. Cardiac masses: the Role of Cardiovascular Imaging in the Differential diagnosis. Diagnostics. 2020;10(12):1088.CrossRefPubMedPubMedCentral Aggeli C, Dimitroglou Y, Raftopoulos L, Sarri G, Mavrogeni S, Wong J, Tsiamis E, Tsioufis C. Cardiac masses: the Role of Cardiovascular Imaging in the Differential diagnosis. Diagnostics. 2020;10(12):1088.CrossRefPubMedPubMedCentral
13.
go back to reference Roldan P, Ravi S, Hodovan J, Belcik JT, Heitner SB, Masri A, Lindner JR. Myocardial contrast echocardiography assessment of perfusion abnormalities in hypertrophic cardiomyopathy. Cardiovasc Ultrasoun. 2022; 20(1). Roldan P, Ravi S, Hodovan J, Belcik JT, Heitner SB, Masri A, Lindner JR. Myocardial contrast echocardiography assessment of perfusion abnormalities in hypertrophic cardiomyopathy. Cardiovasc Ultrasoun. 2022; 20(1).
14.
go back to reference Manduz S, Katrancioglu N, Karahan O, Yucel O, Yilmaz MB. Diagnosis and follow up of patients with primary cardiac tumours: a single-centre experience of myxomas. Cardiovasc J Afr. 2011;22(6):310–2.CrossRefPubMedPubMedCentral Manduz S, Katrancioglu N, Karahan O, Yucel O, Yilmaz MB. Diagnosis and follow up of patients with primary cardiac tumours: a single-centre experience of myxomas. Cardiovasc J Afr. 2011;22(6):310–2.CrossRefPubMedPubMedCentral
15.
go back to reference Ma H, Niu Y, Yang Z, Zheng M. Echocardiographic characteristics and contrast-enhanced imaging of Intravenous Leiomyomatosis with Intracardiac Extension. J Ultras Med. 2022;41(5):1101–8.CrossRef Ma H, Niu Y, Yang Z, Zheng M. Echocardiographic characteristics and contrast-enhanced imaging of Intravenous Leiomyomatosis with Intracardiac Extension. J Ultras Med. 2022;41(5):1101–8.CrossRef
16.
go back to reference Gaibazzi N, Giumelli C, Martella EM, Passeri G. Contrast-echocardiography for the differential diagnosis of atrial masses. Eur Heart J. 2013;34(26):1957.CrossRefPubMed Gaibazzi N, Giumelli C, Martella EM, Passeri G. Contrast-echocardiography for the differential diagnosis of atrial masses. Eur Heart J. 2013;34(26):1957.CrossRefPubMed
17.
go back to reference Pino PG, Moreo A, Lestuzzi C. Differential diagnosis of cardiac tumors: General consideration and echocardiographic approach. J Clin Ultrasound. 2022;50(8):1177–93.CrossRefPubMedPubMedCentral Pino PG, Moreo A, Lestuzzi C. Differential diagnosis of cardiac tumors: General consideration and echocardiographic approach. J Clin Ultrasound. 2022;50(8):1177–93.CrossRefPubMedPubMedCentral
18.
go back to reference Lang R, Bierig M, Devereux R, Flachskampf F, Foster E, Pellikka P, Picard M, Roman M, Seward J, Shanewise J. Recommendations for chamber quantification☆. Eur J Echocardiography. 2006;7(2):79–108.CrossRef Lang R, Bierig M, Devereux R, Flachskampf F, Foster E, Pellikka P, Picard M, Roman M, Seward J, Shanewise J. Recommendations for chamber quantification☆. Eur J Echocardiography. 2006;7(2):79–108.CrossRef
19.
go back to reference Roxy Senior HBMM. Clinical practice of contrast echocardiography: recommendation by the European Association of Cardiovascular Imaging (EACVI) 2017. Eur Heart J - Cardiovasc Imaging. 2017(18):1–33. Roxy Senior HBMM. Clinical practice of contrast echocardiography: recommendation by the European Association of Cardiovascular Imaging (EACVI) 2017. Eur Heart J - Cardiovasc Imaging. 2017(18):1–33.
20.
go back to reference Porter TR, Mulvagh SL, Abdelmoneim SS, Becher H, Belcik JT, Bierig M, Choy J, Gaibazzi N, Gillam LD, Janardhanan R, et al. Clinical applications of Ultrasonic Enhancing agents in Echocardiography: 2018 American Society of Echocardiography Guidelines Update. J Am Soc Echocardiog. 2018;31(3):241–74.CrossRef Porter TR, Mulvagh SL, Abdelmoneim SS, Becher H, Belcik JT, Bierig M, Choy J, Gaibazzi N, Gillam LD, Janardhanan R, et al. Clinical applications of Ultrasonic Enhancing agents in Echocardiography: 2018 American Society of Echocardiography Guidelines Update. J Am Soc Echocardiog. 2018;31(3):241–74.CrossRef
21.
go back to reference Uenishi EK, Caldas MA, Tsutsui JM, Abduch MC, Sbano JC, Kalil FR, Mathias WJ. Evaluation of cardiac masses by real-time perfusion imaging echocardiography. Cardiovasc Ultrasoun. 2015;13:23.CrossRef Uenishi EK, Caldas MA, Tsutsui JM, Abduch MC, Sbano JC, Kalil FR, Mathias WJ. Evaluation of cardiac masses by real-time perfusion imaging echocardiography. Cardiovasc Ultrasoun. 2015;13:23.CrossRef
22.
go back to reference Park SB, Kang DH, Choi CW, Kim HW, Kim SJ. Clinical outcomes of ligation-assisted endoscopic resection for duodenal neuroendocrine tumors. Medicine. 2018;97(18):e533.CrossRef Park SB, Kang DH, Choi CW, Kim HW, Kim SJ. Clinical outcomes of ligation-assisted endoscopic resection for duodenal neuroendocrine tumors. Medicine. 2018;97(18):e533.CrossRef
23.
go back to reference Pazos-López PM, Pozo EM, Siqueira MEM, García-Lunar IM, Cham MM, Jacobi AM, Macaluso FB, Fuster VMP, Narula JMP, Sanz JM. Value of CMR for the Differential diagnosis of Cardiac masses. JACC Cardiovasc Imaging. 2014;7(9):896–905.CrossRefPubMed Pazos-López PM, Pozo EM, Siqueira MEM, García-Lunar IM, Cham MM, Jacobi AM, Macaluso FB, Fuster VMP, Narula JMP, Sanz JM. Value of CMR for the Differential diagnosis of Cardiac masses. JACC Cardiovasc Imaging. 2014;7(9):896–905.CrossRefPubMed
24.
go back to reference Poterucha TJ, Kochav J, O Connor DS, Rosner GF. Cardiac tumors: clinical presentation, diagnosis, and management. Curr Treat Option on. 2019; 20(8). Poterucha TJ, Kochav J, O Connor DS, Rosner GF. Cardiac tumors: clinical presentation, diagnosis, and management. Curr Treat Option on. 2019; 20(8).
25.
go back to reference Stratton JR, Lighty GJ, Pearlman AS, Ritchie JL. Detection of left ventricular thrombus by two-dimensional echocardiography: sensitivity, specificity, and causes of uncertainty. Circulation. 1982;66(1):156–66.CrossRefPubMed Stratton JR, Lighty GJ, Pearlman AS, Ritchie JL. Detection of left ventricular thrombus by two-dimensional echocardiography: sensitivity, specificity, and causes of uncertainty. Circulation. 1982;66(1):156–66.CrossRefPubMed
26.
go back to reference Burke A, Tavora F. The 2015 WHO classification of tumors of the Heart and Pericardium. J Thorac Oncol. 2016;11(4):441–52.CrossRefPubMed Burke A, Tavora F. The 2015 WHO classification of tumors of the Heart and Pericardium. J Thorac Oncol. 2016;11(4):441–52.CrossRefPubMed
27.
go back to reference Paolisso P, Foà A, Magnani I, Bergamaschi L, Graziosi M, Angeli F, Chiti C, Fabrizio M, Rinaldi A, Stefanizzi A, Armillotta M, Sansonetti A, Gallinoro E, Maietti E, Rucci P, Biagini E, Mattioli AV, Galiè N, Pizzi C. Development and validation of a diagnostic echocardiographic Mass score in the Approach to Cardiac masses. JACC Cardiovasc Imaging. 2022;15(11):2010–2.CrossRefPubMed Paolisso P, Foà A, Magnani I, Bergamaschi L, Graziosi M, Angeli F, Chiti C, Fabrizio M, Rinaldi A, Stefanizzi A, Armillotta M, Sansonetti A, Gallinoro E, Maietti E, Rucci P, Biagini E, Mattioli AV, Galiè N, Pizzi C. Development and validation of a diagnostic echocardiographic Mass score in the Approach to Cardiac masses. JACC Cardiovasc Imaging. 2022;15(11):2010–2.CrossRefPubMed
28.
29.
go back to reference Kirkpatrick JN, Wong T, Bednarz JE, Spencer KT, Sugeng L, Ward RP, Decara JM, Weinert L, Krausz T, Lang RM. Differential diagnosis of cardiac masses using contrast echocardiographic perfusion imaging. J Am Coll Cardiol. 2004;43(8):1412–9.CrossRefPubMed Kirkpatrick JN, Wong T, Bednarz JE, Spencer KT, Sugeng L, Ward RP, Decara JM, Weinert L, Krausz T, Lang RM. Differential diagnosis of cardiac masses using contrast echocardiographic perfusion imaging. J Am Coll Cardiol. 2004;43(8):1412–9.CrossRefPubMed
30.
go back to reference Xia H, Gan L, Jiang Y, Tang Q, Zhang P, Tang X, Wen L, Liu Z, Gao Y. Use of transesophageal echocardiography and contrast echocardiography in the evaluation of cardiac masses. Int J Cardiol. 2017;236:466–72.CrossRefPubMed Xia H, Gan L, Jiang Y, Tang Q, Zhang P, Tang X, Wen L, Liu Z, Gao Y. Use of transesophageal echocardiography and contrast echocardiography in the evaluation of cardiac masses. Int J Cardiol. 2017;236:466–72.CrossRefPubMed
31.
go back to reference Yu-Hang Mao YDYL. Contrast echocardiographic perfusion imaging in clinical decision-making for Cardiac masses in patients with a history of Extracardiac Malignant Tumor. JACC Cardiovasc. 2019(12):754–6. Yu-Hang Mao YDYL. Contrast echocardiographic perfusion imaging in clinical decision-making for Cardiac masses in patients with a history of Extracardiac Malignant Tumor. JACC Cardiovasc. 2019(12):754–6.
32.
go back to reference Uenishi EK, Caldas MA, Tsutsui JM, Abduch MCD, Sbano JCN, Filho RK, Mathias W. Evaluation of cardiac masses by real-time perfusion imaging echocardiography. Cardiovasc Ultrasoun. 2015; 13(1). Uenishi EK, Caldas MA, Tsutsui JM, Abduch MCD, Sbano JCN, Filho RK, Mathias W. Evaluation of cardiac masses by real-time perfusion imaging echocardiography. Cardiovasc Ultrasoun. 2015; 13(1).
33.
go back to reference Taqui S, Ferencik M, Davidson BP, Belcik JT, Moccetti F, Layoun M, Raber J, Turker M, Tavori H, Fazio S, et al. Coronary microvascular dysfunction by myocardial contrast Echocardiography in Nonelderly patients referred for computed Tomographic Coronary Angiography. J Am Soc Echocardiog. 2019;32(7):817–25.CrossRef Taqui S, Ferencik M, Davidson BP, Belcik JT, Moccetti F, Layoun M, Raber J, Turker M, Tavori H, Fazio S, et al. Coronary microvascular dysfunction by myocardial contrast Echocardiography in Nonelderly patients referred for computed Tomographic Coronary Angiography. J Am Soc Echocardiog. 2019;32(7):817–25.CrossRef
34.
go back to reference Wang X, Li Y, Ren W, Yu X, Tan X. Clinical diagnostic value of contrast-enhanced ultrasonography in the diagnosis of cardiac masses: a pilot study. Echocardiogr-J Card. 2020;37(2):231–8.CrossRef Wang X, Li Y, Ren W, Yu X, Tan X. Clinical diagnostic value of contrast-enhanced ultrasonography in the diagnosis of cardiac masses: a pilot study. Echocardiogr-J Card. 2020;37(2):231–8.CrossRef
35.
go back to reference Tang Q, Guo L, Wang W, Zhou W, Liu Y, Liu H, Li L, Deng Y. Usefulness of contrast Perfusion Echocardiography for Differential diagnosis of Cardiac masses. Ultrasound Med Biol. 2015;41(9):2382–90.CrossRefPubMed Tang Q, Guo L, Wang W, Zhou W, Liu Y, Liu H, Li L, Deng Y. Usefulness of contrast Perfusion Echocardiography for Differential diagnosis of Cardiac masses. Ultrasound Med Biol. 2015;41(9):2382–90.CrossRefPubMed
36.
go back to reference Kassi M, Polsani V, Schutt RC, Wong S, Nabi F, Reardon MJ, Shah DJ. Differentiating benign from malignant cardiac tumors with cardiac magnetic resonance imaging. J Thorac Cardiovasc Surg. 2019;157(5):1912–22.CrossRefPubMed Kassi M, Polsani V, Schutt RC, Wong S, Nabi F, Reardon MJ, Shah DJ. Differentiating benign from malignant cardiac tumors with cardiac magnetic resonance imaging. J Thorac Cardiovasc Surg. 2019;157(5):1912–22.CrossRefPubMed
37.
go back to reference Beroukhim RS, Ghelani S, Ashwath R, Balasubramanian S, Biko DM, Buddhe S, Campbell MJ, Cross R, Festa P, Griffin L, et al. Accuracy of Cardiac magnetic resonance imaging in diagnosing Pediatric Cardiac masses. JACC: Cardiovasc Imaging. 2022;15(8):1391–405.PubMed Beroukhim RS, Ghelani S, Ashwath R, Balasubramanian S, Biko DM, Buddhe S, Campbell MJ, Cross R, Festa P, Griffin L, et al. Accuracy of Cardiac magnetic resonance imaging in diagnosing Pediatric Cardiac masses. JACC: Cardiovasc Imaging. 2022;15(8):1391–405.PubMed
38.
go back to reference Kassop D, Donovan MS, Cheezum MK, Nguyen BT, Gambill NB, Blankstein R, Villines TC. Cardiac masses on Cardiac CT: a review. Curr Cardiovasc Imag. 2014; 7(8). Kassop D, Donovan MS, Cheezum MK, Nguyen BT, Gambill NB, Blankstein R, Villines TC. Cardiac masses on Cardiac CT: a review. Curr Cardiovasc Imag. 2014; 7(8).
39.
go back to reference Lee JW, Park CH, Im DJ, Lee KH, Kim TH, Han K, Hur J. CT-based radiomics signature for differentiation between cardiac tumors and thrombi: a retrospective, multicenter study. Sci Rep-Uk. 2022; 12(1). Lee JW, Park CH, Im DJ, Lee KH, Kim TH, Han K, Hur J. CT-based radiomics signature for differentiation between cardiac tumors and thrombi: a retrospective, multicenter study. Sci Rep-Uk. 2022; 12(1).
Metadata
Title
The usefulness of contrast echocardiography in the evaluation of cardiac masses: a multicenter study
Authors
Qingtao Wang
Bing Wang
Xiaofeng Zhang
Xin Zhong
Shuai Chang
Jinbo Yang
Jian Liang
Qiangqiang You
Heng Zhou
Jiaqi Zhang
Publication date
01-12-2024
Publisher
BioMed Central
Published in
BMC Cardiovascular Disorders / Issue 1/2024
Electronic ISSN: 1471-2261
DOI
https://doi.org/10.1186/s12872-024-03708-2

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