## Abstract ## Purpose To develop and validate a three‐dimensional (3D) single breath‐hold, projection reconstruction (PR), balanced steady state free precession (SSFP) method for cardiac function evaluation against a two‐dimensional (2D) multislice Fourier (Cartesian) transform (FT) SSFP method.
2D free-breathing dual navigator-gated cardiac function validated against the 2D breath-hold acquisition
✍ Scribed by Dana C. Peters; Reza Nezafat; Holger Eggers; Christian Stehning; Warren J. Manning
- Publisher
- John Wiley and Sons
- Year
- 2008
- Tongue
- English
- Weight
- 375 KB
- Volume
- 28
- Category
- Article
- ISSN
- 1053-1807
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
Purpose
To develop and validate a free‐breathing cardiac cine acquisition, with potential to simplify cardiac MR studies, provide registered slices, and increase spatial resolution.
Materials and Methods
A 2D free‐breathing (FB) navigator‐gated cine radial acquisition for cardiac function was developed that used two navigators (one placed prior to the QRS, and another 500 msec after the QRS complex, after systole) to provide complete motion‐compensated assessment of systole, without loss of end‐diastole. Eleven subjects were studied.
Results
The 2D FB method provided results visually and quantitatively similar to the 2D breath‐hold (BH) methods. Comparison of volumes measured with FB to those measured by standard 2D BH cine resulted in mean bias ± 2 standard deviations of 1.0 mL ± 13.7 mL, 1.1 mL ± 7.6 mL, 3.0 g ± 18.8 g, and 0.3% ± 2.5%, for end‐diastolic volume, end‐systolic volume, left ventricular (LV) mass, and ejection fraction, respectively. Slice misregistration was identified in four (36%) of the BH studies, but none (0%) of the FB studies. In subjects with slice misregistration, there was greater discordance in LV volume measurements (P < 0.05 for end‐diastolic mass).
Conclusion
The FB cine acquisition provided results qualitatively and quantitatively similar to 2D BH methods with improved slice registration. J. Magn. Reson. Imaging 2008;28:773–777. © 2008 Wiley‐Liss, Inc.
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