与 T2 加权脂肪饱和序列相比,MP2RAGE-FLAWS 可改进视神经脱髓鞘的磁共振检测。

IF 7 1区 医学 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Randa Aichour, Thibaut Emorine, Nadia Oubaya, Imen Megdiche, Alain Créange, Augustin Lecler, Tobias Kober, Aurélien Massire, Blanche Bapst
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引用次数: 0

摘要

目的:磁化准备2快速采集梯度回波(MP2RAGE)和衍生流体与白质抑制(FLAWS)等非增强T1-w序列在检测多发性硬化症的脑实质和颈椎脱髓鞘病变方面表现出很高的性能。然而,它们在识别视神经(ON)脱髓鞘方面的潜力仍有待探索。本研究旨在评估压缩传感-加速(CS)MP2RAGE-FLAWS成像与T2-w脂肪饱和(FS)TSE成像相比在临床环境中检测视神经脱髓鞘病变的性能:我们对2022年1月至12月期间中枢神经系统脱髓鞘疾病患者的磁共振扫描结果进行了回顾性研究。纳入标准是在同一次扫描中获得脑CS-MP2RAGE-FLAWS成像和轴向+冠状T2-w FS眼眶序列组合。对ON病变检测进行4步放射学分析,包括盲读和共识读数评估。参考标准是放射科医生使用整个患者档案进行的最终读片。计算两种序列的敏感性和特异性,并使用 McNemar χ2 检验进行比较:分析了 39 名患者(平均年龄:43 ± 14 岁;25 名女性),其中包括 34 名多发性硬化症患者、2 名 MOGAD(髓鞘少突胶质细胞糖蛋白抗体相关疾病)患者、1 名 NMOSD(神经性脊髓炎视神经频谱紊乱)患者和 2 名不确定的脱髓鞘疾病患者。在分析的78个ON中,CS-MP2RAGE-FLAWS检测到64个病变,而二维T2-w FS成像检测到37个病变,受影响的神经总数分别为41个和27个。与二维 T2-w FS 成像相比,CS-MP2RAGE-FLAWS 在整体检测 ON 病变方面表现出更高的灵敏度(97.5% vs 67.5%,P = 0.001),而特异性并没有降低。与二维 T2-w FS 相比,CS-MP2RAGE-FLAWS 对眶内和椎管内节段病变的检测能力显著提高(分别为 92.3% vs 50% 和 96.3% vs 66.7%;P < 0.05)。颅内节段分析的敏感性(P = 0.69)和特异性(P = 0.99)没有差异:结论:与传统的二维 T2-w FS 相比,CS-MP2RAGE-FLAWS 序列提高了对ON 病变的检测能力,尤其是在眶内节段,同时在不增加时间成本的情况下提供全脑和颈脊髓成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved MR Detection of Optic Nerve Demyelination With MP2RAGE-FLAWS Compared With T2-Weighted Fat-Saturated Sequences.

Objectives: Nonenhanced T1-w sequences such as magnetization-prepared 2 rapid acquisition gradient echo (MP2RAGE) and derived fluid and white matter suppression (FLAWS) have demonstrated high performance for detecting brain parenchymal and cervical spine demyelinating lesions in multiple sclerosis. However, their potential for identifying optic nerve (ON) demyelination remains unexplored. The aim of this study was to evaluate the performance of compressed sensing-accelerated (CS) MP2RAGE-FLAWS imaging for detection of ON demyelination lesions compared with T2-w fat-saturated (FS) TSE imaging in a clinical setting.

Materials and methods: We conducted a retrospective study of magnetic resonance scans acquired on patients with central nervous system demyelinating disorders between January and December 2022. Inclusion criteria were the acquisition in the same session of a brain CS-MP2RAGE-FLAWS imaging and a combination of axial + coronal T2-w FS orbital sequences. A 4-step radiological analysis-including blinded and consensus readings-assessed ON lesion detection. The reference standard was the final reading session of radiologists using the entire patient file. Sensitivities and specificities of both sequences were computed and compared using McNemar χ2 tests.

Results: Thirty-nine patients (mean age: 43 ± 14 years; 25 women) were analyzed, including 34 with multiple sclerosis, 2 with MOGAD (myelin oligodendrocyte glycoprotein antibody-associated disease), 1 with NMOSD (neuromyelitis optica spectrum disorder), and 2 with indeterminate demyelinating disease. Among the 78 ONs analyzed, 64 lesions were detected with CS-MP2RAGE-FLAWS as opposed to 37 with 2D T2-w FS imaging, corresponding to a total of 41 and 27 affected nerves, respectively. CS-MP2RAGE-FLAWS exhibited higher sensitivity for overall detection of ON lesions compared with 2D T2-w FS imaging (97.5% vs 67.5%, P = 0.001) without reducing the specificity. Improved lesion detectability with CS-MP2RAGE-FLAWS was significant compared with 2D T2-w FS in intraorbital and intracanalicular segments (respectively, 92.3% vs 50% and 96.3% vs 66.7%; P < 0.05). There was no difference in sensitivity (P = 0.69) or specificity (P = 0.99) regarding the intracranial segment analysis.

Conclusions: CS-MP2RAGE-FLAWS sequence improves ON lesion detection compared with conventional 2D T2-w FS, especially in the intraorbital segment, while simultaneously providing whole-brain and cervical spinal cord imaging at no additional time cost.

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来源期刊
Investigative Radiology
Investigative Radiology 医学-核医学
CiteScore
15.10
自引率
16.40%
发文量
188
审稿时长
4-8 weeks
期刊介绍: Investigative Radiology publishes original, peer-reviewed reports on clinical and laboratory investigations in diagnostic imaging, the diagnostic use of radioactive isotopes, computed tomography, positron emission tomography, magnetic resonance imaging, ultrasound, digital subtraction angiography, and related modalities. Emphasis is on early and timely publication. Primarily research-oriented, the journal also includes a wide variety of features of interest to clinical radiologists.
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