Evaluation of Brain Stiffness in Patients Undergoing Carotid Angioplasty and Stenting Using Magnetic Resonance Elastography

医学 磁共振成像 放射科 狭窄 血管成形术 磁共振弹性成像 弹性成像 核医学 超声波
作者
Chia‐Hung Wu,Matthew C. Murphy,Chia‐Chun Chiang,Shu‐Ting Chen,Chih‐Ping Chung,Jiing‐Feng Lirng,Chao‐Bao Luo,Phillip J. Rossman,Richard L. Ehman,John Huston,Feng‐Chi Chang
出处
期刊:Journal of Magnetic Resonance Imaging [Wiley]
卷期号:62 (5): 1371-1380 被引量:1
标识
DOI:10.1002/jmri.70049
摘要

ABSTRACT Background Percutaneous transluminal angioplasty and stenting (PTAS) in patients with carotid stenosis may have potential effects on brain parenchyma. However, current studies on parenchymal changes are scarce due to the need for advanced imaging modalities. Consequently, the alterations in brain parenchyma following PTAS remain an unsolved issue. Purpose To investigate changes to the brain parenchyma using magnetic resonance elastography (MRE). Study Type Prospective. Population 13 patients (6 women and 7 men; 39 MRI imaging sessions) with severe unilateral carotid stenosis patients indicated for PTAS were recruited between 2021 and 2024. Field Strength/Sequence Noncontrast MRI sequences including MRE (spin echo) were acquired using 3 T scanners. Assessment All patients underwent MRE before (preprocedural), within 24 h (early postprocedural) and 3 months after (delayed postprocedural) PTAS. Preprocedural and delayed postprocedural ultrasonographic peak systolic velocity (PSV) was recorded. MRE stiffness and damping ratio were evaluated via neural network inversion of the whole brain, in 14 gray matter (GM) and 12 white matter (WM) regions. Statistical Tests Stiffness and damping ratio differences between each pair of MR sessions for each subject were identified by paired sample t tests. The correlations of stiffness and damping ratio with stenosis grade and ultrasonographic PSV dynamics were evaluated by Pearson correlation coefficients. The statistical significance was defined as p < 0.05. Results The stiffness of lesion side insula, deep GM, and deep WM increased significantly from preprocedural to delayed postprocedural MRE. Increasing deep GM stiffness on the lesion side was positively correlated with the DSA stenosis grade significantly ( r = 0.609). The lesion side insula stiffness increments were positively correlated with PSV decrements significantly ( r = 0.664). Data Conclusion Regional brain stiffness increased 3 months after PTAS. Lesion side stiffness was positively correlated with stenosis grades in deep GM and PSV decrements in the insula. Evidence Level 2. Technical Efficacy Stage 2.
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