University of Illinois at Chicago, Department of Bioengineering, University of Illinois at Chicago, Chicago, IL, 60607, USA; MR Solutions Ltd, Ashbourne House, Old Portsmouth Rd, Guildford, United Kingdom; Bio-Imaging Lab, Department of Biomedical Sciences, University of Antwerp, Universiteitsplein 1, Wilrijk, Belgium.
University of Illinois at Chicago, Department of Bioengineering, University of Illinois at Chicago, Chicago, IL, 60607, USA.
J Mech Behav Biomed Mater. 2021 Aug;120:104587. doi: 10.1016/j.jmbbm.2021.104587. Epub 2021 May 20.
Magnetic Resonance Elastography (MRE) is a non-invasive imaging technique which involves motion-encoding MRI for the estimation of the shear viscoelastic properties of soft tissues through the study of shear wave propagation. The technique has been found informative for disease diagnosis, as well as for monitoring of the effects of therapies. The development of MRE and its validation have been supported by the use of tissue-mimicking phantoms. In this paper we present our new MRE protocol using a low magnetic field tabletop MRI device at 0.5 T and sinusoidal uniaxial excitation in a geometrical focusing condition. Results obtained for gelatin are compared to those previously obtained using high magnetic field MRE at 11.7 T. A multi-frequency investigation is also provided via a comparison of commonly used rheological models: Maxwell, Springpot, Voigt, Zener, Jeffrey, fractional Voigt and fractional Zener. Complex shear modulus values were comparable when processed from images acquired with the tabletop low field scanner and the high field scanner. This study serves as a validation of the presented tabletop MRE protocol and paves the way for MRE experiments on ex-vivo tissue samples in both normal and pathological conditions.
磁共振弹性成像(MRE)是一种非侵入性成像技术,它通过研究剪切波传播来估计软组织的剪切粘弹性特性,涉及运动编码 MRI。该技术已被证明对疾病诊断以及治疗效果的监测具有重要意义。组织模拟体模的使用为 MRE 的开发和验证提供了支持。在本文中,我们提出了一种新的 MRE 方案,该方案使用 0.5 T 的低磁场桌面 MRI 设备和正弦单轴激励在几何聚焦条件下进行。我们将获得的明胶结果与之前在 11.7 T 高磁场 MRE 中获得的结果进行了比较。还通过比较常用的流变学模型:Maxwell、Springpot、Voigt、Zener、Jeffrey、分数阶 Voigt 和分数阶 Zener,进行了多频研究。使用桌面低场扫描仪和高场扫描仪获取的图像进行处理后,得到的复剪切模量值具有可比性。本研究为所提出的桌面 MRE 方案提供了验证,并为正常和病理条件下的离体组织样本的 MRE 实验铺平了道路。