Literature DB >> 18923255

Cardiac magnetic resonance elastography. Initial results.

Thomas Elgeti1, Jens Rump, Uwe Hamhaber, Sebastian Papazoglou, Bernd Hamm, Jürgen Braun, Ingolf Sack.   

Abstract

OBJECTIVES: To develop cardiac magnetic resonance elastography (MRE) for noninvasively measuring left ventricular (LV) pressure-volume (P-V) work.
MATERIAL AND METHODS: The anterior chest wall of 8 healthy volunteers was vibrated by 24.3-Hz acoustic waves for stimulating oscillating shear deformation in myocardium and adjacent blood. The induced motion was recorded by an electrocardiogram-gated, vibration-synchronized and segmented gradient-recalled echo MRE sequence acquiring 360 phase-contrast wave images with a temporal resolution of 5.16 milliseconds in the short-axis view during controlled breathing. Relative changes in wave amplitudes served as a measure of LV pressure variation during the cardiac cycle. MRE pressure data were combined with LV volumes obtained from segmentation of 3D cine-steady-state free precession data sets.
RESULTS: Shear wave amplitudes decreased from diastole to systole, which reflects the dynamics of myocardial shear modulus variations during the cardiac cycle. Assuming spherical shear stress, a linear relationship between myocardial stiffness and LV pressure was derived. The MRE-measured pressure was plotted as a function of LV volumes. Characteristic P-V cycles displayed an isovolumetric increase in pressure during early systole, whereas less pronounced volume conservation was observed in early diastole. Mean cardiac P-V work in all volunteers was 0.85 +/- 0.11 J.
CONCLUSION: In vivo cardiac MRE is a noninvasive method for measuring pressure-related heart function determined by shear modulus variations in the LV wall. This is the first noninvasive mechanical test of cardiac work in the human heart and is potentially useful for assessing pathologies associated with increased myocardial stiffness such as diastolic dysfunction.

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Year:  2008        PMID: 18923255     DOI: 10.1097/RLI.0b013e3181822085

Source DB:  PubMed          Journal:  Invest Radiol        ISSN: 0020-9996            Impact factor:   6.016


  18 in total

1.  AN OVERVIEW OF ELASTOGRAPHY - AN EMERGING BRANCH OF MEDICAL IMAGING.

Authors:  Armen Sarvazyan; Timothy J Hall; Matthew W Urban; Mostafa Fatemi; Salavat R Aglyamov; Brian S Garra
Journal:  Curr Med Imaging Rev       Date:  2011-11

Review 2.  General review of magnetic resonance elastography.

Authors:  Gavin Low; Scott A Kruse; David J Lomas
Journal:  World J Radiol       Date:  2016-01-28

3.  Frequency-dependent viscoelastic parameters of mouse brain tissue estimated by MR elastography.

Authors:  E H Clayton; J R Garbow; P V Bayly
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Review 4.  Magnetic resonance elastography: a general overview of its current and future applications in brain imaging.

Authors:  Antonio Di Ieva; Fabio Grizzi; Elisa Rognone; Zion Tsz Ho Tse; Tassanai Parittotokkaporn; Ferdinando Rodriguez Y Baena; Manfred Tschabitscher; Christian Matula; Siegfrid Trattnig; Riccardo Rodriguez Y Baena
Journal:  Neurosurg Rev       Date:  2010-02-27       Impact factor: 3.042

5.  Quantification of myocardial stiffness using magnetic resonance elastography in right ventricular hypertrophy: initial feasibility in dogs.

Authors:  Juliana S da Silveira; Brian A Scansen; Peter A Wassenaar; Brian Raterman; Chethan Eleswarpu; Ning Jin; Xiaokui Mo; Richard D White; John D Bonagura; Arunark Kolipaka
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6.  Magnetic resonance elastography as a method for the assessment of effective myocardial stiffness throughout the cardiac cycle.

Authors:  Arunark Kolipaka; Philip A Araoz; Kiaran P McGee; Armando Manduca; Richard L Ehman
Journal:  Magn Reson Med       Date:  2010-09       Impact factor: 4.668

7.  Measurement of viscoelastic properties of in vivo swine myocardium using lamb wave dispersion ultrasound vibrometry (LDUV).

Authors:  Matthew W Urban; Cristina Pislaru; Ivan Z Nenadic; Randall R Kinnick; James F Greenleaf
Journal:  IEEE Trans Med Imaging       Date:  2012-10-04       Impact factor: 10.048

8.  Elasticity-based determination of isovolumetric phases in the human heart.

Authors:  Thomas Elgeti; Mark Beling; Bernd Hamm; Jürgen Braun; Ingolf Sack
Journal:  J Cardiovasc Magn Reson       Date:  2010-10-27       Impact factor: 5.364

9.  Cardiac MR elastography of the mouse: Initial results.

Authors:  Yifei Liu; Thomas J Royston; Dieter Klatt; E Douglas Lewandowski
Journal:  Magn Reson Med       Date:  2016-01-09       Impact factor: 4.668

10.  Evaluation of a rapid, multiphase MRE sequence in a heart-simulating phantom.

Authors:  Arunark Kolipaka; Kiaran P McGee; Philip A Araoz; Kevin J Glaser; Armando Manduca; Richard L Ehman
Journal:  Magn Reson Med       Date:  2009-09       Impact factor: 4.668

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