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Imaging mechanical properties of hepatic tissue by magnetic resonance elastography

机译:磁共振弹性成像技术对肝组织力学性能的成像

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PURPOSE: To assess the feasibility of a modified phase-contrast MRI technique (MR Elastography) for quantitatively assessing the mechanical properties of hepatic tissues by imaging propagating acoustic shear waves. MATERIALS AND METHODS: Both phantom and human studies were performed to develop and optimize a practical imaging protocol by visualizing and investigating the diffraction field of shear waves generated from pneumatic longitudinal drivers. The effects of interposed ribs in a transcostal approach were also investigated. A gradient echo MRE pulse sequence was adapted for shear wave imaging in the liver during suspended respiration, and then tested to measure hepatic shear stiffness in 13 healthy volunteers and 1 patient with chronic liver disease to determine the potential of non-invasively detecting liver fibrosis. RESULTS: Phantom studies demonstrate that longitudinal waves generated by the driver are mode-converted to shear waves in a distribution governed by diffraction principles. The transcostal approach was determined to be the most effective method for generating shear waves in human studies. Hepatic stiffness measurements in the 13 normal volunteers demonstrated a mean value of 2.0±0.2kPa. The shear stiffness measurement in the patient was much higher at 8.5kPa. CONCLUSION: MR Elastography of the liver shows promise as a method to non-invasively detect and characterize diffuse liver disease, potentially reducing the need for biopsy to diagnose hepatic fibrosis.
机译:目的:评估一种改进的相衬核磁共振成像技术(MR弹性成像)的可行性,该技术可通过对传播的声波进行成像来定量评估肝组织的机械性能。材料与方法:通过可视化和研究气动纵向驱动器产生的剪切波的衍射场,进行了幻像和人体研究,以开发和优化实用的成像方案。还研究了肋间穿刺方法对肋骨的影响。梯度回波MRE脉冲序列适用于悬浮呼吸期间肝脏中的剪切波成像,然后进行测试以测量13名健康志愿者和1例慢性肝病患者的肝切变刚度,以确定无创检测肝纤维化的潜力。结果:幻像研究表明,驾驶员产生的纵向波在衍射原理的控制下被转换为剪切波。经肋间途径被确定为人类研究中产生剪切波的最有效方法。 13名正常志愿者的肝硬度测量结果显示平均值为2.0±0.2kPa。患者的剪切刚度测量值高得多,为8.5kPa。结论:肝脏MR弹性成像显示出有望作为一种非侵入性检测和表征弥漫性肝病的方法,从而潜在地减少了活检诊断肝纤维化的需求。

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