Hippocampal demyelination is associated with increased magnetic susceptibility in a mouse model of concussion

豪华耐晒蓝 脑震荡 海马结构 白质 海马体 病理 创伤性脑损伤 髓鞘 医学 神经科学 磁共振成像 心理学 毒物控制 中枢神经系统 放射科 伤害预防 环境卫生 精神科
作者
Xuan Vinh To,Viktor Vegh,Naana Owusu-Amoah,Paul Cumming,Fatima A. Nasrallah
出处
期刊:Experimental Neurology [Elsevier BV]
卷期号:365: 114406-114406 被引量:1
标识
DOI:10.1016/j.expneurol.2023.114406
摘要

Structural and functional deficits in the hippocampus are a prominent feature of moderate-severe traumatic brain injury (TBI). In this work, we investigated the potential of Quantitative Susceptibility Imaging (QSM) to reveal the temporal changes in myelin integrity in a mouse model of concussion (mild TBI). We employed a cross-sectional design wherein we assigned 43 mice to cohorts undergoing either a concussive impact or a sham procedure, with QSM imaging at day 2, 7, or 14 post-injury, followed by Luxol Fast Blue (LFB) myelin staining to assess the structural integrity of hippocampal white matter (WM). We assessed spatial learning in the mice using the Active Place Avoidance Test (APA), recording their ability to use visual cues to locate and avoid zone-dependent mild electrical shocks. QSM and LFB staining indicated changes in the stratum lacunosum-molecular layer of the hippocampus in the concussion groups, suggesting impairment of this key relay between the entorhinal cortex and the CA1 regions. These imaging and histology findings were consistent with demyelination, namely increased magnetic susceptibility to MR imaging and decreased LFB staining. In the APA test, sham animals showed fewer entries into the shock zone compared to the concussed cohort. Thus, we present radiological, histological, and behavioral findings that concussion can induce significant and alterations in hippocampal integrity and function that evolve over time after the injury.
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