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Imaging the dynamics of cardiac fiber orientation in vivo using 3D Ultrasound Backscatter Tensor Imaging

机译:使用3D超声背向散射张量成像在体内成像心脏纤维取向的动力学

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摘要

The assessment of myocardial fiber disarray is of major interest for the study of the progression of myocardial disease. However, time-resolved imaging of the myocardial structure remains unavailable in clinical practice. In this study, we introduce 3D Backscatter Tensor Imaging (3D-BTI), an entirely novel ultrasound-based imaging technique that can map the myocardial fibers orientation and its dynamics with a temporal resolution of 10 ms during a single cardiac cycle, non-invasively and in vivo in entire volumes. 3D-BTI is based on ultrafast volumetric ultrasound acquisitions, which are used to quantify the spatial coherence of backscattered echoes at each point of the volume. The capability of 3D-BTI to map the fibers orientation was evaluated in vitro in 5 myocardial samples. The helicoidal transmural variation of fiber angles was in good agreement with the one obtained by histological analysis. 3D-BTI was then performed to map the fiber orientation dynamics in vivo in the beating heart of an open-chest sheep at a volume rate of 90 volumes/s. Finally, the clinical feasibility of 3D-BTI was shown on a healthy volunteer. These initial results indicate that 3D-BTI could become a fully non-invasive technique to assess myocardial disarray at the bedside of patients.
机译:心肌纤维紊乱的评估是研究心肌疾病进展的主要兴趣。然而,在临床实践中仍无法获得心肌结构的时间分辨成像。在这项研究中,我们介绍了3D后向散射张量成像(3D-BTI),这是一种全新的基于超声的成像技术,可以在单个心动周期内以非侵入性方式绘制心肌纤维的方向及其动态变化,时间分辨率为10µms。和体内的全部体积。 3D-BTI基于超快体积超声采集,该采集用于量化体积每个点上反向散射回波的空间相干性。在5个心肌样本中,体外评估了3D-BTI绘制纤维方向的能力。纤维角的螺旋透壁变化与通过组织学分析得到的一致。然后进行3D-BTI,以开胸的绵羊跳动的心脏以90体积/秒的体积速率绘制体内纤维取向动态图。最后,在健康志愿者身上展示了3D-BTI的临床可行性。这些初步结果表明3D-BTI可能成为一种评估患者床旁心肌紊乱的完全非侵入性技术。

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