苍白球
壳核
定量磁化率图
医学
帕金森病
尾状核
黑质
生物标志物
内科学
阶段(地层学)
疾病
红核
胃肠病学
病理
磁共振成像
基底神经节
中枢神经系统
放射科
核心
精神科
化学
古生物学
生物
生物化学
作者
Kailyn R. Li,Josué M. Avecillas-Chasín,Thanh D. Nguyen,Kelly M. Gillen,Alexey Dimov,Eileen Chang,Carly Skudin,Brian H. Kopell,Yi Wang,Alexander Shtilbans
摘要
Abstract Background and Purpose Excessive brain iron deposition is involved in Parkinson's disease (PD) pathogenesis. However, the correlation of iron accumulation in various brain nuclei is not well‐established in different stages of the disease. This cross‐sectional study aims to evaluate quantitative susceptibility mapping (QSM) as an imaging technique to measure brain iron accumulation in PD patients in different stages compared to healthy controls. Methods Ninety‐six PD patients grouped by their Hoehn and Yahr (H&Y) stages and 31 healthy controls were included in this analysis. The magnetic susceptibility values of the substantia nigra (SN), red nucleus (RN), caudate, putamen, and globus pallidus were obtained and compared. Results Iron level was increased in the SN of PD patients in all stages versus controls ( p < .001), with no significant difference within stages. Iron in the RN was significantly increased in stage II versus controls ( p = .013) and combined stages III and IV versus controls ( p < .001). The iron levels in caudate, putamen, and globus pallidus were not different between any groups. Conclusions Our data suggest iron accumulation occurs early in the disease course and only in the SN and RN of these patients. This is a large cross‐sectional study of brain iron deposition in PD patients according to H&Y staging. Prospective studies are warranted to further validate QSM as a method to follow brain iron, which could serve as a disease biomarker and a therapeutic target.
科研通智能强力驱动
Strongly Powered by AbleSci AI