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7T 扩散磁共振成像检测到脑震荡运动员广泛的白质异常。

Widespread White Matter Abnormalities in Concussed Athletes Detected by 7T Diffusion Magnetic Resonance Imaging.

机构信息

Department of Clinical Sciences Lund, Neurosurgery, Neurology, Lund University, Lund, Sweden.

Department of Clinical Sciences Lund, Diagnostic Radiology, Neurology, Lund University, Lund, Sweden.

出版信息

J Neurotrauma. 2024 Jul;41(13-14):1533-1549. doi: 10.1089/neu.2023.0099. Epub 2024 May 3.

Abstract

Sports-related concussions may cause white matter injuries and persistent post-concussive symptoms (PPCS). We hypothesized that athletes with PPCS would have neurocognitive impairments and white matter abnormalities that could be revealed by advanced neuroimaging using ultra-high field strength diffusion tensor (DTI) and diffusion kurtosis (DKI) imaging metrics and cerebrospinal fluid (CSF) biomarkers. A cohort of athletes with PPCS severity limiting the ability to work/study and participate in sport school and/or social activities for ≥6 months completed 7T magnetic resonance imaging (MRI) (morphological T1-weighed volumetry, DTI and DKI), extensive neuropsychological testing, symptom rating, and CSF biomarker sampling. Twenty-two athletes with PPCS and 22 controls were included. Concussed athletes performed below norms and significantly lower than controls on all but one of the psychometric neuropsychology tests. Supratentorial white and gray matter, as well as hippocampal volumes did not differ between concussed athletes and controls. However, of the 72 examined white matter tracts, 16% of DTI and 35% of DKI metrics (in total 28%) were significantly different between concussed athletes and controls. DKI fractional anisotropy and axial kurtosis were increased, and DKI radial diffusivity and radial kurtosis decreased in concussed athletes when compared with controls. CSF neurofilament light (NfL; an axonal injury marker), although not glial fibrillary acidic protein, correlated with several diffusion metrics. In this first 7T DTI and DKI study investigating PPCS, widespread microstructural alterations were observed in the white matter, correlating with CSF markers of axonal injury. More white matter changes were observed using DKI than using DTI. These white matter alterations may indicate persistent pathophysiological processes following concussion in sport.

摘要

运动相关性脑震荡可能导致脑白质损伤和持续性脑震荡后症状(PPCS)。我们假设 PPCS 运动员会出现神经认知障碍和脑白质异常,这些异常可以通过使用超高场强弥散张量成像(DTI)和弥散峰度成像(DKI)成像指标以及脑脊液(CSF)生物标志物的先进神经影像学来揭示。一组 PPCS 严重程度限制其工作/学习能力以及参加运动学校和/或社交活动≥6 个月的运动员完成了 7T 磁共振成像(MRI)(形态学 T1 加权容积测量、DTI 和 DKI)、广泛的神经心理学测试、症状评分和 CSF 生物标志物采样。22 名 PPCS 运动员和 22 名对照组被纳入研究。与对照组相比,脑震荡运动员在所有心理测量神经心理学测试中除一项外均表现不佳,且显著低于对照组。与对照组相比,脑震荡运动员的幕上白质和灰质以及海马体积没有差异。然而,在检查的 72 个白质束中,16%的 DTI 和 35%的 DKI 指标(总计 28%)在脑震荡运动员和对照组之间存在显著差异。与对照组相比,脑震荡运动员的 DKI 各向异性分数和轴向峰度增加,而 DKI 径向扩散系数和径向峰度降低。CSF 神经丝轻链(NfL;轴突损伤标志物),尽管不是神经胶质纤维酸性蛋白,与几个扩散指标相关。在这项首次使用 7T DTI 和 DKI 研究 PPCS 的研究中,观察到白质中有广泛的微观结构改变,与 CSF 轴突损伤标志物相关。与 DTI 相比,使用 DKI 观察到更多的白质变化。这些白质改变可能表明运动性脑震荡后持续存在的病理生理过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4499/11564857/666f7b8ef0a1/neu.2023.0099_figure1.jpg

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