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应用新型放大高分辨率黑血磁共振成像定量评估椎动脉夹层血管内结构。

Quantitative evaluation for intravascular structures of vertebral artery dissection with a novel zoomed high-resolution black-blood MR imaging.

机构信息

Kochi University Graduate School of Integrated Arts and Sciences Doctoral Course Medicine Program, Kochi, Japan.

Department of Radiology, Mominoki Hospital, Kochi, Japan.

出版信息

Neuroradiol J. 2023 Oct;36(5):563-571. doi: 10.1177/19714009231163557. Epub 2023 Mar 14.

Abstract

BACKGROUND

Although non-stroke vertebral artery dissection (VAD) is diagnosed using MRI, detecting the subtle intravascular structure remains challenging. This study aimed to evaluate the validity of quantitative intravascular scanning based on novel zoomed high-resolution black blood (Z-HB) MRI for distinguishing VAD from other vessel pathologies.

METHODS

Twenty-one patients with non-stroke VAD and 18 with symptomatic atherosclerotic plaques in their vertebral artery underwent Z-HB MRI and subsequent profile curve processing. Axial Z-HB imaging was obtained from dissected and normal segments in patients with VAD and atherosclerotic plaque in patients with ischemia. We investigated the qualitative categorization of the scanning patterns of the intravascular signals. We also evaluated the quantitative ability of each profile curve to discriminate multiple vessel pathologies by analyzing the receiver operating characteristics curves.

RESULTS

Profile curve processing of 140 Z-HB images categorized the intravascular signal patterns into luminal, asymmetrical, and omega types. The asymmetrical type included both dissecting and atherosclerotic vessels, and the omega type included dissecting and normal vessels. In the asymmetrical type, quantitative evaluation successfully distinguished intramural hematomas of VAD from atherosclerotic plaque with an area under the curve of 0.80. The intimal flap of the VAD was distinguished from the blood flow artifact of the normal vessel with an area under the curve of 0.93 in the omega type.

CONCLUSIONS

A combination of novel Z-HB MRI and profile curve processing provided an ultra-high-resolution analysis of the intravascular structure of non-stroke VAD and successfully distinguished VAD from normal vessels or atherosclerotic plaques.

摘要

背景

虽然非中风椎动脉夹层(VAD)可以通过 MRI 诊断,但检测细微的血管内结构仍然具有挑战性。本研究旨在评估基于新型放大高分辨率黑血(Z-HB)MRI 的定量血管内扫描在区分 VAD 与其他血管病变方面的有效性。

方法

21 例非中风 VAD 患者和 18 例椎动脉粥样硬化斑块患者均接受了 Z-HB MRI 及后续的轮廓曲线处理。在 VAD 患者的夹层和正常节段以及缺血患者的粥样硬化斑块中获得轴向 Z-HB 成像。我们研究了血管内信号扫描模式的定性分类。我们还通过分析受试者工作特征曲线评估了每个轮廓曲线区分多种血管病变的定量能力。

结果

对 140 个 Z-HB 图像的轮廓曲线处理将血管内信号模式分为管腔、不对称和 omega 型。不对称型包括夹层和粥样硬化血管,而 omega 型包括夹层和正常血管。在不对称型中,定量评估成功区分了 VAD 的壁内血肿与粥样硬化斑块,曲线下面积为 0.80。在 omega 型中,VAD 的内膜瓣与正常血管的血流伪影可以通过曲线下面积 0.93 区分开来。

结论

新型 Z-HB MRI 与轮廓曲线处理相结合,对非中风 VAD 的血管内结构进行了超高分辨率分析,并成功区分了 VAD 与正常血管或粥样硬化斑块。

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