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Abstract #4382

Mapping of iron deposition gradients in the nigrostriatal system in normal aging and Parkinson's disease

Jiaqi Wen1, Xiaojie Duanmu1, Sijia Tan1, Qianshi Zheng1, Weijin Yuan1, Chenqing Wu1, Jianmei Qin1, Haoting Wu1, Tao Guo1, Cheng Zhou1, Jingjing Wu1, Jingwen Chen1, Yong Zhang2, Minming Zhang1, Xiaojun Guan1, and Xiaojun Xu1
1Department of Radiology, the Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, China, 2GE Healthcare, Shanghai, China

Synopsis

Keywords: Parkinson's Disease, Parkinson's Disease, Normal aging; Gradient; Quantitative susceptibility mapping; Nigrostriatal

Motivation: The gradient characterization of microenvironment in nigrostriatal system is key to understanding striatal dysfunction in PD.

Goal(s): To investigate the gradients of neurodegeneration in nigrostriatal system in normal aging and PD.

Approach: Quantitative susceptibility mapping (QSM) and spatial method were used to detect the spatial gradient of iron deposition in healthy young people, normal elderly and PD in vivo.

Results: During normal aging, iron deposition was significant in almost all segments of the striatum, and iron content was even higher in some segments of the caudate than in PD. Iron deposition in PD is mainly in the central substantia nigra.

Impact: The present study reveals the spatial gradient of iron deposition in the nigrostriatal system in normal aging and PD, providing more subtle and profound insights into the pathological changes in subcortical nuclei during neurodegeneration.

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Keywords