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November 9, 2017PLoS ONE12 citationsOpen Access

Improved segmented modified Look-Locker inversion recovery T1 mapping sequence in mice

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MNMaryam NezafatIslamic Azad University, TehranIRIsabel RamosUniversidade do PortoMHMarkus HenningssonLinköping University

Key Result

A segmented 2D MOLLI sequence enabled reliable high-resolution T1 mapping in mice at heart rates up to 600 bpm, with a mean difference in infarct size of -1.06% compared to LGE.

Structured PICO

P
Population
15 mice (7 healthy controls and 8 with induced myocardial infarction) underwent cardiac MRI to evaluate a novel high-resolution T1 mapping sequence.
I
Intervention
Multi-shot ECG-triggered 2D modified Look-Locker inversion recovery (MOLLI) sequence for high-resolution T1 mapping at high heart rates (up to 600bpm) using a 3T MRI scanner.
C
Comparator
Conventional inversion recovery spin echo T1 mapping sequence (in phantom).
O
Outcome
T1 map quality, T1 values of myocardium and scar, and infarct size percentage compared to late gadolinium enhancement (LGE).surrogate

A newly developed multi-shot 2D MOLLI sequence enables reliable, high-resolution T1 mapping in mice at high heart rates up to 600 bpm on a 3T MRI scanner.

Main Result

Mean Difference: -1.06 (95% CI -10.4–8.2)

Absolute Event Rate: 48.9% vs 50%

p-value: p=0.5

Limitations

  • Small number of controls and myocardial infarcted mice investigated
  • Calculated infarct size from the proposed sequence was compared to LGE rather than TTC due to tissue preparation differences
  • Phantom study was performed using a 32-element cardiac coil with different optimized parameters than those used in mice

Abstract

OBJECT: To develop and evaluate a 2D modified Look-Locker (MOLLI) for high-resolution T1 mapping in mice using a 3T MRI scanner. MATERIALS AND METHODS: To allow high-resolution T1 mapping in mice at high heart rates a multi-shot ECG-triggered 2D MOLLI sequence was developed. In the proposed T1 mapping sequence the optimal number of sampling points and pause cardiac cycles following an initial adiabatic inversion pulse was investigated in a phantom. Seven native control and eight mice, 3 days post myocardial infarction (MI) after administration of gadolinium were scanned. Two experienced readers graded the visual T1 map quality. RESULTS: In T1 phantoms, there were no significant differences (<0.4% error) between 12, 15 and 20 pause cardiac cycles (p = 0.1, 0.2 and 0.6 respectively) for 8 acquisition cardiac cycles for 600bpm in comparison to the conventional inversion recovery spin echo T1 mapping sequence for short T1's (<600 ms). Subsequently, all in-vivo scans were performed with 8 data acquisitions and 12 pause cardiac cycles to minimize scan time. The mean native T1 value of myocardium in control animal was 820.5±52 ms. The post-contrast T1 measured 3 days after MI in scar was 264±59 ms and in healthy myocardium was 512±62 ms. The Bland-Altman analysis revealed mean difference of only -1.06% of infarct size percentage between T1 maps and LGE. CONCLUSIONS: A multi-shot 2D MOLLI sequence has been presented that allows reliable measurement of high spatial resolution T1 maps in mice for heart rates up to 600bpm.

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Cite This Study

Nezafat et al. (2017) studied Myocardial infarction (mouse model) (n=15). Segmented 2D MOLLI T1 mapping sequence vs. Late gadolinium enhancement (LGE) was evaluated on Infarct size percentage difference between T1 maps and LGE (mean difference -1.06%, 95% CI -10.4 to 8.2, p=0.5). A segmented 2D MOLLI sequence enabled reliable high-resolution T1 mapping in mice at heart rates up to 600 bpm, with a mean difference in infarct size of -1.06% compared to LGE.

synapsesocial.com/papers/6a7afd8f77336a1bae0309afhttps://doi.org/10.1371/journal.pone.0187621
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