Subvoxel quantitative susceptibility mapping reveals distinct susceptibility patterns and clinical associations of juxtacortical paramagnetic rims in multiple sclerosis
Qiyuan Zhu, Zhuowei Shi, Ermelinda De Meo, Frederik Barkhof, Huajiao Wang, Lisha Nie, Jinzhou Feng, Feiyue Yin, Xiaoya Chen, Hongjiang Wei, Zichun Yan, Yongmei LiBackground:
Juxtacortical paramagnetic rims (JPRs) have emerged as potential biomarkers of cortical pathology in multiple sclerosis (MS), yet their susceptibility characteristics and clinical significance remain unclear.
Objectives:
To characterize the heterogeneity of cortical lesions (CLs), with a particular focus on JPRs and clinical relevance.
Methods:
Sixty-four patients underwent 3T magnetic resonance imaging (MRI), including structural imaging, multi-echo gradient echo, and Magnetic Resonance Image Compilation (MAGiC) sequences. Paramagnetic (χ para ) and diamagnetic (χ dia ) maps were reconstructed using subvoxel quantitative susceptibility mapping. CLs were identified, and those with JPRs were defined as JPR-associated CLs. Susceptibility metrics were compared across lesion subtypes and correlated with clinical and imaging measures.
Results:
Among 499 CLs, 15% were JPR-associated CLs, which exhibited elevated χ
para
measurements and reduced χ
dia
measurements. Patients with JPRs had a higher number of paramagnetic rim lesions (95% CI [2.445, 4.738],
Conclusion:
JPRs are a characteristic feature of CLs associated with greater clinical and radiological burden in MS.