三维MRI与ct样骨对比(3D- bone):临床应用的图片回顾。

IF 1.2 4区 医学 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Acta radiologica Pub Date : 2025-02-01 Epub Date: 2025-01-23 DOI:10.1177/02841851241300616
Calvin Yit Kun Goh, Parveen Sulthana Mohamed Ali, Kathy Hwee Choo Lee, Fang Yang Sim, Le Roy Chong
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引用次数: 0

摘要

背景:计算机断层扫描(CT)是评估三维骨形态的金标准成像方式,但会产生电离辐射暴露的代价。高分辨率三维磁共振成像(MRI)与CT样骨对比(CLBC)可以提供一种替代CT的方法,允许通过一次MRI检查对骨骼和软组织结构进行完整评估。目的:回顾优化的星堆三维梯度回忆回波脉冲序列方法(3D- bone)在生成CLBC三维MR图像中的技术方面,并展示3D- bone在常见肌肉骨骼疾病的临床评估中的应用。材料和方法:3D- bone是一种黑骨成像技术,用于获取具有强CLBC的高分辨率3D MR图像,首先从非皮质骨组织中渲染尽可能高的信号,其次通过最小化非皮质骨组织之间的信号对比度来实现。结果:3D-Bone可用于常见肌肉骨骼疾病的骨形态临床评价。优点包括强烈的骨-软组织对比,抵抗运动伪影,简单的硬件和软件要求,以及直接的图像处理。缺点包括对皮质骨的非特异性,对敏感性伪影的敏感性,缺乏定量的组织测量,以及与CT相比,整体图像分辨率和骨-软组织对比度较低。结论:使用3D MRI脉冲序列提供CLBC,如3D- bone,可以通过单一MRI研究对某些临床适应症的骨形态和软组织进行完整的临床评估,消除了CT电离辐射暴露的需要,降低了成本。
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3D MRI with CT-like bone contrast (3D-BONE): a pictorial review of clinical applications.

BackgroundComputed tomography (CT) is the gold standard imaging modality for the assessment of 3D bony morphology but incurs the cost of ionizing radiation exposure. High-resolution 3D magnetic resonance imaging (MRI) with CT-like bone contrast (CLBC) may provide an alternative to CT in allowing complete evaluation of both bony and soft tissue structures with a single MRI examination.PurposeTo review the technical aspects of an optimized stack-of-stars 3D gradient recalled echo pulse sequence method (3D-Bone) in generating 3D MR images with CLBC, and to present a pictorial review of the utility of 3D-Bone in the clinical assessment of common musculoskeletal conditions.Material and Methods3D-Bone is a black-bone imaging technique for acquiring high-resolution 3D MR images with strong CLBC, achieved by first rendering as high a signal as possible from non-cortical bone tissues, and second by minimizing signal contrast between non-cortical bone tissues.Results3D-Bone can be used in the clinical evaluation of bony morphology in common musculoskeletal conditions. Advantages include strong bone-soft tissue contrast, resistance to motion artefacts, simple hardware and software requirements, and straightforward image processing. Disadvantages include non-specificity for cortical bone, sensitivity to susceptibility artefacts, a lack of quantitative tissue measurements, as well as overall lower image resolution and bone-soft tissue contrast compared to CT.ConclusionThe use of 3D MRI pulse sequences providing CLBC such as 3D-Bone could potentially offer complete clinical evaluation of bony morphology and soft tissues with a single MRI study for certain clinical indications, negating the need for ionizing radiation exposure from CT and reducing costs.

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来源期刊
Acta radiologica
Acta radiologica 医学-核医学
CiteScore
2.70
自引率
0.00%
发文量
170
审稿时长
3-8 weeks
期刊介绍: Acta Radiologica publishes articles on all aspects of radiology, from clinical radiology to experimental work. It is known for articles based on experimental work and contrast media research, giving priority to scientific original papers. The distinguished international editorial board also invite review articles, short communications and technical and instrumental notes.
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