退役男女运动员在遭受脑震荡多年后大脑结构和功能的变化:对神经可塑性和神经退行性疾病发病机制的影响

IF 2.8 Q2 NEUROSCIENCES Journal of Alzheimer's disease reports Pub Date : 2024-03-19 DOI:10.3233/adr-240021
Michael Turner, Antonio Belli, Rudolph J. Castellani
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引用次数: 0

摘要

背景:脑外伤的累积效应越来越受到关注,尤其是它在神经退行性疾病(如阿尔茨海默病、帕金森病和肌萎缩侧索硬化症)的病因和发病机制中的作用。研究目的比较有脑震荡史的运动员与对照组之间的区域脑容量和连通性。方法我们使用贝叶斯回归模型评估了 125 名退役运动员(平均有 11 次脑震荡报告)和 36 名匹配对照者的全脑容积效应,并使用基于网络的统计方法评估了功能连通性。结果显示脑震荡组中体积明显较小的脑区包括额叶中回、海马、边际上回、颞极和额叶下回。相反,海马和侧沟、枕叶中回、眶内侧回、尾状核、眶外侧回和中央后内侧回等脑区的体积明显增大。功能连通性分析表明,边缘强度增加,在运动领域最为明显。该网络的许多边缘在运动员身上得到加强,而在脑震荡时则明显减弱。与荟萃分析神经影像学数据一致,观察到的变化表明,运动员在运动、感觉、协调、平衡和视觉处理领域的功能增强,而脑震荡性头部损伤则削弱了这些功能,对记忆和语言产生了负面影响。结论这些研究结果表明,参与体育运动可使大脑在多个领域受益,但也凸显了头部震荡性损伤的潜在破坏性影响。未来需要进行包括尸检在内的纵向队列研究,以确定后者是否反映了大脑剪切造成的组织损失,或类似于蛋白病的渐进性阿尔茨海默病的发病。
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Changes in Brain Structure and Function in a Multisport Cohort of Retired Female and Male Athletes, Many Years after Suffering a Concussion: Implications for Neuroplasticity and Neurodegenerative Disease Pathogenesis
Background: Cumulative effects of traumatic brain injury is of increasing concern, especially with respect to its role in the etiology and pathogenesis of neurodegenerative diseases, such as Alzheimer’s disease, Parkinson’s disease, and amyotrophic lateral sclerosis. Objective: Compare regional brain volume and connectivity between athletes with a history of concussion and controls. Methods: We evaluated whole-brain volumetric effects with Bayesian regression models and functional connectivity with network-based statistics, in 125 retired athletes (a mean of 11 reported concussions) and 36 matched controls. Results: Brain regions significantly lower in volume in the concussed group included the middle frontal gyrus, hippocampus, supramarginal gyrus, temporal pole, and inferior frontal gyrus. Conversely, brain regions significantly larger included the hippocampal and collateral sulcus, middle occipital gyrus, medial orbital gyrus, caudate nucleus, lateral orbital gyrus, and medial postcentral gyrus. Functional connectivity analyses revealed increased edge strength, most marked in motor domains. Numerous edges of this network strengthened in athletes were significantly weakened with concussion. Aligned to meta-analytic neuroimaging data, the observed changes suggest functional enhancement within the motor, sensory, coordination, balance, and visual processing domains in athletes, attenuated by concussive head injury with a negative impact on memory and language. Conclusions: These findings suggest that engagement in sport may benefit the brain across numerous domains, but also highlights the potentially damaging effects of concussive head injury. Future studies with longitudinal cohorts including autopsy examination are needed to determine whether the latter reflects tissue loss from brain shearing, or the onset of a progressive Alzheimer’s disease like proteinopathy.
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