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Quantification of Mouse Heart Left Ventricular Function, Myocardial Strain, and Hemodynamic Forces by Cardiovascular Magnetic Resonance Imaging
Published on: May 24, 2021
[High-resolution MRI for the quantitative evaluation of subendocardial and subepicardial perfusion under
C O Ritter1, K del Savio, A Brackertz
1Universität Würzburg, Institut für Röntgendiagnostik. ritter@roentgen.uni-wuerzburg.de
Purpose:
MR stress perfusion imaging of the heart allows the quantification of myocardial perfusion and the evaluation of myocardial perfusion reserve (MPR) and the ratio of subendocardial to subepicardial perfusion at rest and under adenosine stress. The aim of this study was to evaluate a high-resolution GRAPPA sequence for quantitative MR first pass perfusion imaging in healthy volunteers.
Materials And Methods:
First pass stress and rest perfusion studies were performed on 10 healthy volunteers using a 1.5 T MR scanner with a multislice SR-TrueFISP first pass perfusion sequence with a GRAPPA algorithm (acceleration factor 3) in prebolus technique and an image resolution of 1.8 x 1.8 mm. For the comparison group, we examined 12 different healthy volunteers with a standard first pass perfusion SR-TrueFISP sequence using a resolution of 2.7 x 3.3 mm. Myocardial contours were manually delineated followed by an automatic division of the myocardium into two rings with an equal thickness for the subendo- and subepicardial layer. Eight sectors per slice were evaluated using contamination and baseline correction.
Results:
Using the GRAPPA sequence, the ratio of subendo- to subepimyocardial perfusion was 1.18 +/- 0.32 for the examination at rest. Under pharmacologically induced stress, the ratio was 1.08 +/- 0.27. For the standard sequence the ratio was 1.15 +/- 0.28 at rest and 1.11 +/- 0.33 under stress. For the high resolution sequence higher mean values for the subendo- to subepimyocardial ratio were obtained with comparable standard deviations. The difference between the sequences was not significant.
Conclusion:
The evaluation of subendomyocardial and subepimyocardial perfusion is feasible with a high-resolution first pass perfusion sequence. The use of a higher resolution to avoid systematic error leads to increased image noise. However, no relevant reduction in the quantitative perfusion values under stress and at rest was able to be depicted.
Insights
High-resolution cardiac MR stress perfusion imaging is feasible. A new GRAPPA sequence provides detailed myocardial perfusion evaluation, comparable to standard methods, despite increased noise from higher resolution.
Area of Science:
- Cardiovascular Imaging
- Magnetic Resonance Imaging
- Myocardial Perfusion Assessment
Background:
- Cardiac MR stress perfusion imaging quantifies myocardial blood flow and reserve.
- Evaluating subendocardial to subepicardial perfusion is crucial for diagnosing ischemia.
- High-resolution imaging may improve diagnostic accuracy.
Purpose of the Study:
- To evaluate a high-resolution GRAPPA sequence for quantitative first-pass MR perfusion imaging.
- To assess myocardial perfusion reserve (MPR) and subendocardial/subepicardial ratios at rest and stress.
- To compare the novel sequence with a standard sequence in healthy volunteers.
Main Methods:
- 1.5 T MR scanner with a multislice SR-TrueFISP sequence and GRAPPA (acceleration factor 3) was used.
- High resolution (1.8 x 1.8 mm) GRAPPA sequence was compared to a standard resolution (2.7 x 3.3 mm) sequence.
- First-pass stress and rest perfusion studies were performed in 22 healthy volunteers.
Main Results:
- The GRAPPA sequence yielded higher mean subendo- to subepimyocardial perfusion ratios (1.18 rest, 1.08 stress) compared to the standard sequence (1.15 rest, 1.11 stress).
- Standard deviations were comparable between the sequences.
- No significant difference in quantitative perfusion values was observed between the high-resolution GRAPPA and standard sequences.
Conclusions:
- High-resolution first-pass MR perfusion imaging is feasible for evaluating subendocardial and subepicardial perfusion.
- While higher resolution increases image noise, it does not significantly alter quantitative perfusion values.
- The GRAPPA sequence shows potential for detailed cardiac perfusion assessment.
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