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儿科放射学中的实时磁共振成像 - 运动和移动儿童的新方法。

Real-time magnetic resonance imaging in pediatric radiology - new approach to movement and moving children.

机构信息

Department of Pediatric Radiology, University of Leipzig, Liebigstraße 20a, 04103, Leipzig, Germany.

Biomedizinische NMR, Max-Planck-Institut für Biophysikalische Chemie, Göttingen, Germany.

出版信息

Pediatr Radiol. 2021 May;51(5):840-846. doi: 10.1007/s00247-020-04828-5. Epub 2021 Feb 10.

Abstract

The recent development of highly undersampled radial gradient echo sequences in combination with nonlinear inverse image reconstruction now allows for MRI examinations in real time. Image acquisition times as short as 20 ms yield MRI videos with rates of up to 50 frames per second with spin density, T1- and T2-type contrast. The addition of an initial 180° inversion pulse achieves accurate T1 mapping within only 4 s. These technical advances promise specific advantages for studies of infants and young children by eliminating the need for sedation or anesthesia. Our preliminary data demonstrate new diagnostic opportunities ranging from dynamic studies of speech and swallowing processes and body movements to a rapid volumetric assessment of brain cerebrospinal fluid spaces in only few seconds. Real-time MRI of the heart and blood flow can be performed without electrocardiogram gating and under free breathing. The present findings support the idea that real-time MRI will complement existing methods by providing long-awaited diagnostic options for patients in early childhood. Major advantages are the avoidance of sedation or anesthesia and the yet unexplored potential to gain insights into arbitrary body functions.

摘要

近年来,高度欠采样的径向梯度回波序列与非线性逆图像重建相结合,现在可以实现实时 MRI 检查。图像采集时间短至 20 毫秒,可生成每秒高达 50 帧的 MRI 视频,具有自旋密度、T1 和 T2 对比。添加初始的 180°反转脉冲,仅需 4 秒即可实现准确的 T1 映射。这些技术进步通过消除镇静或麻醉的需求,为婴儿和幼儿的研究带来了特定的优势。我们的初步数据表明,从言语和吞咽过程以及身体运动的动态研究,到仅用几秒钟快速评估大脑脑脊液空间的容积,都有新的诊断机会。无需心电图门控和自由呼吸即可进行心脏和血流的实时 MRI。目前的研究结果支持这样一种观点,即实时 MRI 将通过为幼儿期患者提供急需的诊断选择来补充现有方法。主要优势是避免镇静或麻醉,以及尚未探索的潜在机会,可以深入了解任意身体功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8761/8055638/38a1bd96154f/247_2020_4828_Fig1_HTML.jpg

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