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Published in: BMC Medical Imaging 1/2017

Open Access 01-12-2017 | Research article

Cardiovascular magnetic resonance feature tracking in small animals – a preliminary study on reproducibility and sample size calculation

Authors: Tomas Lapinskas, Jana Grune, Seyedeh Mahsa Zamani, Sarah Jeuthe, Daniel Messroghli, Rolf Gebker, Heike Meyborg, Ulrich Kintscher, Remigijus Zaliunas, Burkert Pieske, Philipp Stawowy, Sebastian Kelle

Published in: BMC Medical Imaging | Issue 1/2017

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Abstract

Background

Cardiovascular magnetic resonance feature tracking (CMR-FT) is a novel tissue tracking technique developed for noninvasive assessment of myocardial motion and deformation. This preliminary study aimed to evaluate the observer’s reproducibility of CMR-FT in a small animal (mouse) model and define sample size calculation for future trials.

Methods

Six C57BL/6 J mice were selected from the ongoing experimental mouse model onsite and underwent CMR with a 3 Tesla small animal MRI scanner. Myocardial deformation was analyzed using dedicated software (TomTec, Germany) by two observers. Left ventricular (LV) longitudinal, circumferential and radial strain (EllLAX, EccSAX and ErrSAX) were calculated. To assess intra-observer agreement data analysis was repeated after 4 weeks. The sample size required to detect a relative change in strain was calculated.

Results

In general, EccSAX and EllLAX demonstrated highest inter-observer reproducibility (ICC 0.79 (0.46–0.91) and 0.73 (0.56–0.83) EccSAX and EllLAX respectively). In contrast, at the intra-observer level EllLAX was more reproducible than EccSAX (ICC 0.83 (0.73–0.90) and 0.74 (0.49–0.87) EllLAX and EccSAX respectively). The reproducibility of ErrSAX was weak at both observer levels. Preliminary sample size calculation showed that a small study sample (e.g. ten animals to detect a relative 10% change in EccSAX) could be sufficient to detect changes if parameter variability is low.

Conclusions

This pilot study demonstrates good to excellent inter- and intra-observer reproducibility of CMR-FT technique in small animal model. The most reproducible measures are global circumferential and global longitudinal strain, whereas reproducibility of radial strain is weak. Furthermore, sample size calculation demonstrates that a small number of animals could be sufficient for future trials.
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Metadata
Title
Cardiovascular magnetic resonance feature tracking in small animals – a preliminary study on reproducibility and sample size calculation
Authors
Tomas Lapinskas
Jana Grune
Seyedeh Mahsa Zamani
Sarah Jeuthe
Daniel Messroghli
Rolf Gebker
Heike Meyborg
Ulrich Kintscher
Remigijus Zaliunas
Burkert Pieske
Philipp Stawowy
Sebastian Kelle
Publication date
01-12-2017
Publisher
BioMed Central
Published in
BMC Medical Imaging / Issue 1/2017
Electronic ISSN: 1471-2342
DOI
https://doi.org/10.1186/s12880-017-0223-7

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