Brain Microstructure Interrogation by Diffusion Tensor and Kurtosis Imaging in Progressive Supranuclear Palsy Subtypes

进行性核上麻痹 磁共振弥散成像 胼胝体 部分各向异性 医学 白质 壳核 帕金森病 核医学 病理 磁共振成像 放射科 萎缩 内科学 疾病
作者
Rodolfo G. Gatto,Hossam Youssef,Nha Trang Thu Pham,Farwa Ali,Heather M. Clark,Julie A. G. Stierwalt,Yehkyoung C. Stephens,Mary M. Machulda,Keith A. Josephs,Jennifer L. Whitwell
出处
期刊:Journal of Neuroimaging [Wiley]
卷期号:35 (3): e70062-e70062 被引量:1
标识
DOI:10.1111/jon.70062
摘要

ABSTRACT Background and Purpose Diffusion tensor imaging (DTI) is commonly used to assess the integrity of gray and white matter (WM) structures in progressive supranuclear palsy (PSP). Beyond DTI, nontraditional diffusion techniques such as diffusion kurtosis imaging (DKI) have been shown to characterize brain tissue further. In this work, we aim to determine the utility of DKI in the differential diagnosis of PSP—Richardson syndrome (PSP‐RS) and PSP with predominant parkinsonism (PSP‐P) from Parkinson's disease (PD) and controls. Methods A multishell diffusion‐weighted sequence was acquired at 3 Tesla on a Siemens system in 22 patients with PSP‐RS, 23 with PSP‐P, 19 with PD, and 19 controls. Fractional anisotropy, mean diffusivity, kurtosis fractional anisotropy (KFA), and mean kurtosis (Kmean) were calculated for nine deep gray matter regions and six different WM tracts. Results DKI identified differences (not found by DTI) between control and PSP groups in the globus pallidum externus, subthalamic region, and putamen, with Kmean in the putamen able to differentiate PSP‐RS and PD. DKI WM measurements in the body of the corpus callosum and dentatorubrothalamic tract differentiated PSP‐RS from PD, and the corticostriatal tract differentiated PSP‐P from PD. KFA in the body of the corpus callosum identified worse microstructural anomalies in PSP‐RS compared to PSP‐P. DKI metrics correlated with the severity of ocular motor impairment and parkinsonism scores. Conclusions DKI measurements could differentiate PSP‐RS, PSP‐P, and PD and, hence, may be a promising imaging tool for studying structural neuropathological changes in PSP.

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