Literature DB >> 12765114

T1 mapping in patients with acute myocardial infarction.

Daniel R Messroghli1, Thoralf Niendorf, Jeanette Schulz-Menger, Rainer Dietz, Matthias G Friedrich.   

Abstract

Pixel-by-pixel calculation of T1 values (T1 mapping) has been used in different tissues to focus on T1 changes in a quantitative fashion. The aim of this study was to establish T1 mapping of human myocardium on a 1.5 Tesla system and to examine its diagnostic potential in patients with acute myocardial infarction (AMI). 8 patients with reperfused AMI (day 3 +/- 1) underwent multi-breath-hold MRI in a 1.5 Tesla system. Sets of five images with varying T1 weighting were acquired prior to and after the administration of contrast agent to generate images from calculated T1 values (T1 mapping). Prior to the contrast agent administration, all patients showed T1 prolongation in the area of infarction, which was identified in separate measurements using the delayed enhancement approach. Compared to noninfarcted areas, T1 values in the infarcted areas were increased by 18 +/- 7% (SE, p < 0.05). The spatial extent of the area of T1 prolongation was larger than that of the hyper-enhanced areas in conventional contrast-enhanced images. T1 maps obtained after the application of Gadolinium-DTPA revealed a T1 reduction of 27 +/- 4% in infarcted tissue compared to noninfarcted areas (p < 0.05). The areas showing T1 reduction were in agreement with the hyper-enhanced regions in conventional T1-weighted images. T1 mapping visualizes changes in the longitudinal relaxation time induced by AMI. T1 mapping can detect myocardial necrosis without the use of contrast media. Information that can be extracted from a combination of pre- and postcontrast T1 maps exceeds that from conventional contrast studies.

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Year:  2003        PMID: 12765114     DOI: 10.1081/jcmr-120019418

Source DB:  PubMed          Journal:  J Cardiovasc Magn Reson        ISSN: 1097-6647            Impact factor:   5.364


  60 in total

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2.  Interstitial myocardial fibrosis assessed as extracellular volume fraction with low-radiation-dose cardiac CT.

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Review 3.  Tissue characterization of the myocardium: state of the art characterization by magnetic resonance and computed tomography imaging.

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4.  Point estimate and reference normality interval of MRI-derived myocardial extracellular volume in healthy subjects: a systematic review and meta-analysis.

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5.  Cardiac T2 star mapping: standardized inline analysis of long and short axis at three identical 1.5 T MRI scanners.

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6.  Novel approach to early detection of doxorubicin cardiotoxicity by gadolinium-enhanced cardiovascular magnetic resonance imaging in an experimental model.

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7.  Myocardial T1 mapping: techniques and potential applications.

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Journal:  Radiographics       Date:  2014 Mar-Apr       Impact factor: 5.333

8.  Identification of cardiovascular abnormalities by multiparametric magnetic resonance imaging in end-stage renal disease patients with preserved left ventricular ejection fraction.

Authors:  Ling Lin; Qiuxia Xie; Mei Zheng; Xuhui Zhou; Ilona A Dekkers; Qian Tao; Hildo J Lamb
Journal:  Eur Radiol       Date:  2021-02-24       Impact factor: 5.315

Review 9.  Myocardial T1 and ECV Measurement: Underlying Concepts and Technical Considerations.

Authors:  Austin A Robinson; Kelvin Chow; Michael Salerno
Journal:  JACC Cardiovasc Imaging       Date:  2019-09-18

10.  Comparison of spoiled gradient echo and steady-state free-precession imaging for native myocardial T1 mapping using the slice-interleaved T1 mapping (STONE) sequence.

Authors:  Jihye Jang; Steven Bellm; Sébastien Roujol; Tamer A Basha; Maryam Nezafat; Shingo Kato; Sebastian Weingärtner; Reza Nezafat
Journal:  NMR Biomed       Date:  2016-10       Impact factor: 4.044

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