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零对比磁共振成像(Zero-TE MRI):头颈部的原理与应用。

Zero-TE MRI: principles and applications in the head and neck.

机构信息

Department for Neuroimaging, Institute of Psychiatry & Neuroscience, King's College London, London, UK.

Principal Scientist at GE Healthcare, Munich, Germany.

出版信息

Br J Radiol. 2022 Aug 1;95(1136):20220059. doi: 10.1259/bjr.20220059. Epub 2022 Jun 10.

Abstract

Zero echo-time (ZTE) MRI is a novel imaging technique that utilizes ultrafast readouts to capture signal from short-T2 tissues. Additional sequence advantages include rapid imaging times, silent scanning, and artifact resistance. A robust application of this technology is imaging of cortical bone without the use of ionizing radiation, thus representing a viable alternative to CT for both rapid screening and "one-stop-shop" MRI. Although ZTE is increasingly used in musculoskeletal and body imaging, neuroimaging applications have historically been limited by complex anatomy and pathology. In this article, we review the imaging physics of ZTE including pulse sequence options, practical limitations, and image reconstruction. We then discuss optimization of settings for ZTE bone neuroimaging including acquisition, processing, segmentation, synthetic CT generation, and artifacts. Finally, we examine clinical utility of ZTE in the head and neck with imaging examples including malformations, trauma, tumors, and interventional procedures.

摘要

零回波时间(ZTE)MRI 是一种新颖的成像技术,利用超快读取来捕获来自短 T2 组织的信号。额外的序列优势包括快速成像时间、静音扫描和抗伪影。该技术的一个强大应用是在不使用电离辐射的情况下对皮质骨进行成像,因此它是 CT 的一种可行替代方法,可用于快速筛查和“一站式”MRI。尽管 ZTE 在肌肉骨骼和身体成像中越来越多地得到应用,但神经成像应用在历史上受到复杂解剖结构和病理学的限制。在本文中,我们回顾了 ZTE 的成像物理,包括脉冲序列选项、实际限制和图像重建。然后,我们讨论了 ZTE 骨神经成像的优化设置,包括采集、处理、分割、合成 CT 生成和伪影。最后,我们通过成像示例检查了 ZTE 在头颈部的临床应用,包括畸形、创伤、肿瘤和介入性操作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a840/10162052/5ba9f0de7365/bjr.20220059.g001.jpg

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