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January 1, 2013Journal of Cardiovascular Magnetic Resonance40 citationsOpen Access

Reproducibility of cine displacement encoding with stimulated echoes (DENSE) cardiovascular magnetic resonance for measuring left ventricular strains, torsion, and synchrony in mice

CHChristopher M. HaggertySKSage P. KramerCBCassi M Binkley

Key Result

Cine DENSE CMR demonstrated excellent inter-test and inter-observer reproducibility for LV strains, torsion, and synchrony in mice (CoVs ≤ 15%), though myocardial twist angles were not reproducible.

Key Points

  • To evaluate the inter-test and inter-observer reproducibility of cine DENSE CMR for quantifying advanced left ventricular strain, torsion, and synchrony in mice.
  • Imaged 9 mice (5 healthy C57BL/6 and 4 with diet-induced obesity) twice, two days apart, on a 7T MR system across three short-axis and two long-axis orientations.
  • Quantified left ventricular strain, twist, torsion, and mechanical synchrony indices including circumferential (CURE) and radial (RURE) uniformity of strain.
  • Assessed inter-test reproducibility across both imaging days and inter-observer reproducibility using the coefficient of variation (CoV).
  • Left ventricular strains and torsion demonstrated high reproducibility across both inter-observer and inter-test analyses, with CoVs ≤ 15%.
  • Synchrony measures exhibited high reproducibility, yielding CoVs of 1% for CURE and 3% for RURE.
  • Peak functional measures were more reproducible than their corresponding rates of change, whereas end-systolic twist angles showed high variance.

Structured PICO

Is cine DENSE CMR a reproducible technique for quantifying advanced measures of left ventricular function in mice?

P
Population
9 mice (5 normal C57BL/6 on low fat diet and 4 with diet-induced obesity on high fat diet), imaged 5 months after starting diet at 12 weeks of age.
I
Intervention
Cine DENSE cardiovascular magnetic resonance (CMR) imaging at 7-Tesla, acquired twice, two days apart, and analyzed by two observers.
O
Outcome
Inter-test and inter-observer reproducibility of LV strains, twist, torsion, and synchrony, quantified by coefficient of variation (CoV).surrogate

Cine DENSE CMR is highly reproducible for measuring LV strains, torsion, and synchrony in mice, but myocardial twist angles are not reproducible and torsion should be reported instead.

Main Result

Effect estimate: CoVs ≤ 15%

Limitations

  • Myocardial twist angles showed high variance due to sensitivity of slice location within the sharp longitudinal gradient in twist angle.
  • Cannot directly extrapolate results to humans
  • Did not utilize a fat suppression technique during image acquisition
  • Did not directly quantify intra-observer reproducibility from a single dataset

Abstract

BACKGROUND: Advanced measures of cardiac function are increasingly important to clinical assessment due to their superior diagnostic and predictive capabilities. Cine DENSE cardiovascular magnetic resonance (CMR) is ideal for quantifying advanced measures of cardiac function based on its high spatial resolution and streamlined post-processing. While many studies have utilized cine DENSE in both humans and small-animal models, the inter-test and inter-observer reproducibility for quantification of advanced cardiac function in mice has not been evaluated. This represents a critical knowledge gap for both understanding the capabilities of this technique and for the design of future experiments. We hypothesized that cine DENSE CMR would show excellent inter-test and inter-observer reproducibility for advanced measures of left ventricular (LV) function in mice. METHODS: Five normal mice (C57BL/6) and four mice with depressed cardiac function (diet-induced obesity) were imaged twice, two days apart, on a 7T ClinScan MR system. Images were acquired with 15-20 frames per cardiac cycle in three short-axis (basal, mid, apical) and two long-axis orientations (4-chamber and 2-chamber). LV strain, twist, torsion, and measures of synchrony were quantified. Images from both days were analyzed by one observer to quantify inter-test reproducibility, while inter-observer reproducibility was assessed by a second observer's analysis of day-1 images. The coefficient of variation (CoV) was used to quantify reproducibility. RESULTS: LV strains and torsion were highly reproducible on both inter-observer and inter-test bases with CoVs ≤ 15%, and inter-observer reproducibility was generally better than inter-test reproducibility. However, end-systolic twist angles showed much higher variance, likely due to the sensitivity of slice location within the sharp longitudinal gradient in twist angle. Measures of synchrony including the circumferential (CURE) and radial (RURE) uniformity of strain indices, showed excellent reproducibility with CoVs of 1% and 3%, respectively. Finally, peak measures (e.g., strains) were generally more reproducible than the corresponding rates of change (e.g., strain rate). CONCLUSIONS: Cine DENSE CMR is a highly reproducible technique for quantification of advanced measures of left ventricular cardiac function in mice including strains, torsion and measures of synchrony. However, myocardial twist angles are not reproducible and future studies should instead report torsion.

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Cite This Study

Haggerty et al. (2013) studied Normal and depressed cardiac function (n=9). Cine DENSE cardiovascular magnetic resonance (CMR) was evaluated on Inter-test and inter-observer reproducibility (Coefficient of Variation) (CoVs ≤ 15%). Cine DENSE CMR demonstrated excellent inter-test and inter-observer reproducibility for LV strains, torsion, and synchrony in mice (CoVs ≤ 15%), though myocardial twist angles were not reproducible.

synapsesocial.com/papers/6a0d8e961e1a6dfdb4baa38ehttps://doi.org/10.1186/1532-429x-15-71
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