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零回波时间(Zero Echo Time,ZET)肌肉骨骼 MRI:技术、优化、应用及陷阱。

Zero Echo Time Musculoskeletal MRI: Technique, Optimization, Applications, and Pitfalls.

机构信息

From the Department of Radiology, Hacettepe University School of Medicine, 06230 Ankara, Turkey.

出版信息

Radiographics. 2022 Sep-Oct;42(5):1398-1414. doi: 10.1148/rg.220029. Epub 2022 Jul 29.

Abstract

Zero echo time (ZTE) imaging is an MRI technique that produces images similar to those obtained with radiography or CT. In ZTE MRI, the very short T2 signal from the mineralized trabecular bone matrix and especially cortical bone-both of which have a low proton density (PD)-is sampled in a unique sequence setup. Additionally, the PD weighting of the ZTE sequence results in less contrast between soft tissues. Therefore, along with gray-scale inversion from black to white and vice versa, ZTE imaging provides excellent contrast between cortical bone and soft tissues similar to that of radiography and CT. However, despite isotropic or near-isotropic three-dimensional (3D) imaging capabilities of the ZTE sequence, spatial resolution in this technique is still inferior to that of radiography and CT, and 3D volume renderings are currently time-consuming and require postprocessing software that features segmentation and manual contouring. Optimization of ZTE MRI mostly entails adjustments of bandwidth, flip angle, field of view, and image matrix. A wide range of structural abnormalities and disease or healing processes in the musculoskeletal system are well delineated with ZTE MRI, including conditions that involve bone-based morphometric analyses (which aid diagnosis, help prognostication, and guide surgery), impaction, avulsion and stress fractures, loose bodies or erosions in and around joints, soft-tissue calcifications and ossifications, and bone tumors (including treatment response). The pitfalls of ZTE imaging include mimics of foci of calcification or ossification such as intra-articular gas and susceptibility artifacts from surgical materials and hemosiderin deposition, which can be avoided in many instances by cross-referencing images obtained with other MRI sequences. RSNA, 2022.

摘要

零回波时间(ZTE)成像是一种 MRI 技术,可生成类似于放射摄影或 CT 获得的图像。在 ZTE MRI 中,矿化的小梁骨基质和皮质骨(两者质子密度[PD]均较低)的非常短的 T2 信号在独特的序列设置中被采样。此外,ZTE 序列的 PD 加权导致软组织之间的对比度降低。因此,与灰度反转(从黑到白,反之亦然)一起,ZTE 成像提供了类似于放射摄影和 CT 的皮质骨与软组织之间的极好对比度。然而,尽管 ZTE 序列具有各向同性或近乎各向同性的三维(3D)成像能力,但该技术的空间分辨率仍低于放射摄影和 CT,并且 3D 容积渲染目前耗时且需要具有分割和手动轮廓的后处理软件。ZTE MRI 的优化主要涉及带宽、翻转角、视野和图像矩阵的调整。ZTE MRI 可很好地描绘骨骼肌肉系统中的各种结构异常和疾病或愈合过程,包括涉及基于骨骼的形态计量分析的情况(有助于诊断、预后和指导手术)、嵌顿、撕脱和应力性骨折、关节内和周围的游离体或侵蚀、软组织钙化和骨化以及骨肿瘤(包括治疗反应)。ZTE 成像的缺陷包括钙化或骨化焦点的模拟物,例如关节内气体和手术材料的磁化率伪影以及含铁血黄素沉积,在许多情况下可以通过交叉参考其他 MRI 序列获得的图像来避免。RSNA,2022 年。

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