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Development of a Diaphragmatic Motion-Based Elastography Framework for Assessment of Liver Stiffness

机译:基于膜片运动的弹性成像框架开发,用于评估肝硬度

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Evaluation of mechanical stiffness imaging biomarkers, through magnetic resonance elastography (MRE), has shown considerable promise for non-invasive assessment of liver stiffness to monitor hepatic fibrosis. MRE typically requires specialized externally-applied vibratory excitation and scanner-specific motion-sensitive pulse sequences. In this work, we have developed an elasticity imaging approach that utilizes natural diaphragmatic respiratory motion to induce deformation and eliminates the need for external deformation excitation hardware and specialized pulse sequences. Our approach uses clinically-available standard of care volumetric imaging acquisitions, combined with offline model-based post-processing to generate volumetric estimates of stiffness within the liver and surrounding tissue structures. We have previously developed a novel methodology for non-invasive elasticity imaging which utilizes a model-based elasticity reconstruction algorithm and MR image volumes acquired under different states of deformation. In prior work, deformation was external applied through inflation of an air bladder placed within the MR radiofrequency coil. In this work, we extend the methodology with the goal of determining the feasibility of assessing liver mechanical stiffness using diaphragmatic respiratory motion between end-inspiration and end-expiration breath-holds as a source of deformation. We present initial investigations towards applying this methodology to assess liver stiffness in healthy volunteers and cirrhotic patients. Our preliminary results suggest that this method is capable of non-invasive image-based assessment of liver stiffness using natural diaphragmatic respiratory motion and provides considerable enthusiasm for extension of our approach towards monitoring liver stiffness in cirrhotic patients with limited impact to standard-of-care clinical imaging acquisition workflow.
机译:通过磁共振弹性成像(MRE)评估机械硬度成像生物标记物,已显示出非侵入性评估肝脏硬度以监测肝纤维化的巨大希望。 MRE通常需要专门的外部施加的振动激励和特定于扫描仪的运动敏感脉冲序列。在这项工作中,我们开发了一种弹性成像方法,该方法利用自然的diaphragm肌呼吸运动来诱发变形,并且不需要外部变形激励硬件和专门的脉冲序列。我们的方法使用临床上可用的护理体积成像采集标准,并结合基于离线模型的后处理来生成肝脏和周围组织结构内僵硬的体积估计。我们以前已经开发了一种新的非侵入性弹性成像方法,该方法利用基于模型的弹性重建算法和在不同变形状态下采集的MR图像体积。在先前的工作中,变形是通过放置在MR射频线圈内的气囊膨胀而外部施加的。在这项工作中,我们扩展了方法,其目的是确定使用吸气和呼气末屏息之间的diaphragm肌呼吸运动作为变形源来评估肝脏机械刚度的可行性。我们目前正在就应用这种方法评估健康志愿者和肝硬化患者的肝脏僵硬度进行初步调查。我们的初步结果表明,该方法能够使用自然diaphragm肌呼吸运动进行基于非侵入性图像的肝硬度评估,并为扩展我们对肝硬化患者肝硬度监测方法的扩展提供了极大的热情,而对标准护理的影响有限临床影像采集工作流程。

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