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Published in: Annals of Nuclear Medicine 6/2013

01-07-2013 | Original Article

Underestimation of the ejection fraction using the quantitative gated SPECT for patients with myocardial hypertrophy

Authors: Hidenori Yamaguchi, Masahiro Toba, Yasuo Amano, Keiichi Ishihara, Kyoichi Mizuno, Shin-ichiro Kumita

Published in: Annals of Nuclear Medicine | Issue 6/2013

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Abstract

Background

The aim of the present study is to quantify the degree of the error as a function of the left ventricular (LV) wall thickness, in calculation of the ejection fraction (EF) using gated single-photon emission computed tomography (SPECT). The essential error of quantitative gated SPECT (QGS) software in patients with myocardial hypertrophy has not been quantitatively estimated.

Methods

Forty-six patients with known or suspected hypertrophic cardiomyopathy underwent gated myocardial perfusion SPECT and cardiac magnetic resonance (MR) imaging. The EF value was automatically calculated from gated SPECT using the QGS software. Twelve points of regional LV wall thickness and the EF value were estimated from MR images.

Results

Only a fair correlation was found between the QGS-EF and the MR-EF values (r = 0.48, y = 0.49x + 26.80, p < 0.01), and the QGS-EF was underestimated (r = 0.25, y = 0.90x) in 30 patients with myocardial hypertrophy (mean wall thickness > 12 mm). The magnitude of the error of the EF quantification from gated SPECT showed a significant negative correlation with the mean 12-point LV wall thickness in all 46 patients (r = −0.67, y = −4.12x + 40.44, p < 0.0001). The degree of the error of the ESV and that of the EDV showed positive correlation with the mean LV wall thickness (r = 0.55, y = 5.46x − 56.13, p < 0.0001; r = 0.31, y = 4.20x − 55.28, p < 0.05, respectively).

Conclusions

The underestimation of EF increases with the degree of myocardial hypertrophy, because of the overestimation of the LV cavity especially in the end-systolic phase.
Literature
1.
go back to reference Germano G, Kiat H, Kavanagh PB, Moriel M, Mazzanti M, Su HT, et al. Automatic quantification of ejection fraction from gated myocardial perfusion SPECT. J Nucl Med. 1995;36:2138–47.PubMed Germano G, Kiat H, Kavanagh PB, Moriel M, Mazzanti M, Su HT, et al. Automatic quantification of ejection fraction from gated myocardial perfusion SPECT. J Nucl Med. 1995;36:2138–47.PubMed
2.
go back to reference Germano G, Kavanagh PB, Kavanagh JT, Wishner SH, Berman DS, Kavanagh GJ. Repeatability of automatic left ventricular cavity volume measurements from myocardial perfusion SPECT. J Nucl Cardiol. 1998;5:477–83.PubMedCrossRef Germano G, Kavanagh PB, Kavanagh JT, Wishner SH, Berman DS, Kavanagh GJ. Repeatability of automatic left ventricular cavity volume measurements from myocardial perfusion SPECT. J Nucl Cardiol. 1998;5:477–83.PubMedCrossRef
3.
go back to reference Barat JL, Brendel AJ, Colle JP, Magimel-Pelonnier V, Ohayon J, Wynchank S, et al. Quantitative analysis of left-ventricular function using gated single photon emission tomography. J Nucl Med. 1984;25:1167–74.PubMed Barat JL, Brendel AJ, Colle JP, Magimel-Pelonnier V, Ohayon J, Wynchank S, et al. Quantitative analysis of left-ventricular function using gated single photon emission tomography. J Nucl Med. 1984;25:1167–74.PubMed
4.
go back to reference DePuey EG, Nichols K, Dobrinsky C. Left ventricular ejection fraction assessed from Gated technetium-99m-sestamibi SPECT. J Nucl Med. 1993;34:1871–6.PubMed DePuey EG, Nichols K, Dobrinsky C. Left ventricular ejection fraction assessed from Gated technetium-99m-sestamibi SPECT. J Nucl Med. 1993;34:1871–6.PubMed
5.
go back to reference Mannting F, Mannting MGM. Gated SPECT with technetium-99m-sestamibi for assessment of myocardial perfusion abnormalities. J Nucl Med. 1993;34:601–8.PubMed Mannting F, Mannting MGM. Gated SPECT with technetium-99m-sestamibi for assessment of myocardial perfusion abnormalities. J Nucl Med. 1993;34:601–8.PubMed
6.
go back to reference Yoshioka J, Hasegawa S, Yamaguchi H, Tokita N, Paul AK, Xiuli M, et al. Left ventricular volume and ejection fraction calculated from quantitative electrocardiographic-gated 99mTc-tetrofosmin myocardial SPECT. J Nucl Med. 1999;40:1693–8.PubMed Yoshioka J, Hasegawa S, Yamaguchi H, Tokita N, Paul AK, Xiuli M, et al. Left ventricular volume and ejection fraction calculated from quantitative electrocardiographic-gated 99mTc-tetrofosmin myocardial SPECT. J Nucl Med. 1999;40:1693–8.PubMed
7.
go back to reference Nakajima K, Higuchi T, Taki J, Kawano M, Tonami N. Accuracy of ventricular volume and ejection fraction measured by gated myocardial SPECT: comparison of 4 software programs. J Nucl Med. 2001;42:1571–8.PubMed Nakajima K, Higuchi T, Taki J, Kawano M, Tonami N. Accuracy of ventricular volume and ejection fraction measured by gated myocardial SPECT: comparison of 4 software programs. J Nucl Med. 2001;42:1571–8.PubMed
9.
go back to reference Park JH, Kim YM, Chung JW, Park YB, Han JK, Han CM. MR imaging of hypertrophic cardiomyopathy. Radiology. 1992;185:441–6.PubMed Park JH, Kim YM, Chung JW, Park YB, Han JK, Han CM. MR imaging of hypertrophic cardiomyopathy. Radiology. 1992;185:441–6.PubMed
10.
go back to reference Sardanelli F, Molinari G, Petillo A, Ottonello C, Parodi RC, Masperone MA, et al. MRI in hypertrophic cardiomyopathy: a morphofunction study. J Comp Assist Tomogr. 1993;17:862–72.CrossRef Sardanelli F, Molinari G, Petillo A, Ottonello C, Parodi RC, Masperone MA, et al. MRI in hypertrophic cardiomyopathy: a morphofunction study. J Comp Assist Tomogr. 1993;17:862–72.CrossRef
11.
go back to reference Devlin AM, Moore NR, Ostman SI. A comparison of MRI and echocardiography in hypertrophic cardiomyopathy. Br J Radiol. 1997;72:258–64. Devlin AM, Moore NR, Ostman SI. A comparison of MRI and echocardiography in hypertrophic cardiomyopathy. Br J Radiol. 1997;72:258–64.
12.
go back to reference Pons LG, Carreras F, Borras X, Palmer J, Llauger J, Bayes de Luna A. Comparison of morphologic assessment of hypertrophic cardiomyopathy by magnetic resonance versus echocardiographic imaging. Am J Cardiol. 1997;79:1651–5.CrossRef Pons LG, Carreras F, Borras X, Palmer J, Llauger J, Bayes de Luna A. Comparison of morphologic assessment of hypertrophic cardiomyopathy by magnetic resonance versus echocardiographic imaging. Am J Cardiol. 1997;79:1651–5.CrossRef
13.
go back to reference Rickers C, Wilke NM, Jerosch-Herold M, Casey SA, Panse P, Panse N, et al. Utility of cardiac magnetic resonance imaging in the diagnosis hypertrophy cardiomyopathy. Circulation. 2005;112:855–61.PubMedCrossRef Rickers C, Wilke NM, Jerosch-Herold M, Casey SA, Panse P, Panse N, et al. Utility of cardiac magnetic resonance imaging in the diagnosis hypertrophy cardiomyopathy. Circulation. 2005;112:855–61.PubMedCrossRef
14.
go back to reference Bicudo LS, Tsutsui JM, Shiozaki A, Rochitte CE, Arteaga E, Mady C, et al. Value of real time three-dimensional echocardiography in patients with hypertrophic cardiomyopathy: comparison with two-dimensional echocardiography and magnetic resonance imaging. Echocardiography. 2008;25:717–26.PubMedCrossRef Bicudo LS, Tsutsui JM, Shiozaki A, Rochitte CE, Arteaga E, Mady C, et al. Value of real time three-dimensional echocardiography in patients with hypertrophic cardiomyopathy: comparison with two-dimensional echocardiography and magnetic resonance imaging. Echocardiography. 2008;25:717–26.PubMedCrossRef
15.
go back to reference Najm YC, Timmis AD, Maisey MN, Ellam SV, Mistry R, Curry PV, et al. The evaluation of ventricular function using gated myocardial imaging with technetium-99m MIBI. Eur Heart J. 1989;10:142–8.PubMedCrossRef Najm YC, Timmis AD, Maisey MN, Ellam SV, Mistry R, Curry PV, et al. The evaluation of ventricular function using gated myocardial imaging with technetium-99m MIBI. Eur Heart J. 1989;10:142–8.PubMedCrossRef
16.
go back to reference Galt J, Garcia E, Robbins W. Effect of myocardial wall thickness on SPECT quantification. IEEE Trans Med imaging. 1990;9:144–50.PubMedCrossRef Galt J, Garcia E, Robbins W. Effect of myocardial wall thickness on SPECT quantification. IEEE Trans Med imaging. 1990;9:144–50.PubMedCrossRef
17.
go back to reference Faber T, Akers M, Pesnock R, Corbett J. Three-dimensional motion and perfusion quantification in gated single-photon emission computed tomograms. J Nucl Med. 1991;32:2311–7.PubMed Faber T, Akers M, Pesnock R, Corbett J. Three-dimensional motion and perfusion quantification in gated single-photon emission computed tomograms. J Nucl Med. 1991;32:2311–7.PubMed
18.
go back to reference DePuey E, Nichols K, Dobrinsky C. Left ventricular ejection fraction assessed from gated technetium-99m-sestamibi SPECT. J Nucl Med. 1993;34:1871–6.PubMed DePuey E, Nichols K, Dobrinsky C. Left ventricular ejection fraction assessed from gated technetium-99m-sestamibi SPECT. J Nucl Med. 1993;34:1871–6.PubMed
19.
go back to reference Vallejio E, Dione DP, Bruni WL, Constable RT, Borek PP, Soares JP, et al. Reproducibility and accuracy of gated SPECT for determination of left ventricular volume and ejection fraction: experimental validation using MRI. J Nucl Med. 2000;41:874–82. Vallejio E, Dione DP, Bruni WL, Constable RT, Borek PP, Soares JP, et al. Reproducibility and accuracy of gated SPECT for determination of left ventricular volume and ejection fraction: experimental validation using MRI. J Nucl Med. 2000;41:874–82.
20.
go back to reference Zhao C, Shuke N, Okizaki A, Yamamoto W, Sato J, Ishikawa Y, et al. Comparison of myocardial fatty acid metabolism with left ventricular function and perfusion in cardiomyopathies: by 123I-BMIPP SPECT and 99mTc-tetrofosmin electrocardiographicaliy gated SPECT. Ann Nucl Med. 2003;17:541–8.PubMedCrossRef Zhao C, Shuke N, Okizaki A, Yamamoto W, Sato J, Ishikawa Y, et al. Comparison of myocardial fatty acid metabolism with left ventricular function and perfusion in cardiomyopathies: by 123I-BMIPP SPECT and 99mTc-tetrofosmin electrocardiographicaliy gated SPECT. Ann Nucl Med. 2003;17:541–8.PubMedCrossRef
21.
go back to reference Sorajja P, Chareonthaitawee P, Ommen SR, Miller TD, Hodge DO, Gibbons RJ. Prognostic utility of single-photon emission computed tomography in adult patients with hypertrophic cardiomyopathy. Am Heart J. 2006;151:426–35.PubMedCrossRef Sorajja P, Chareonthaitawee P, Ommen SR, Miller TD, Hodge DO, Gibbons RJ. Prognostic utility of single-photon emission computed tomography in adult patients with hypertrophic cardiomyopathy. Am Heart J. 2006;151:426–35.PubMedCrossRef
Metadata
Title
Underestimation of the ejection fraction using the quantitative gated SPECT for patients with myocardial hypertrophy
Authors
Hidenori Yamaguchi
Masahiro Toba
Yasuo Amano
Keiichi Ishihara
Kyoichi Mizuno
Shin-ichiro Kumita
Publication date
01-07-2013
Publisher
Springer Japan
Published in
Annals of Nuclear Medicine / Issue 6/2013
Print ISSN: 0914-7187
Electronic ISSN: 1864-6433
DOI
https://doi.org/10.1007/s12149-013-0713-9

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