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Age at First Exposure to Football Is Associated with Altered Corpus Callosum White Matter Microstructure in Former Professional Football Players

机译:第一次接触足球的年龄与前职业足球运动员中Corp体变质的白色物质微观结构有关

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Youth football players may incur hundreds of repetitive head impacts (RHI) in one season. Our recent research suggests that exposure to RHI during a critical neurodevelopmental period prior to age 12 may lead to greater later-life mood, behavioral, and cognitive impairments. Here, we examine the relationship between age of first exposure (AFE) to RHI through tackle football and later-life corpus callosum (CC) microstructure using magnetic resonance diffusion tensor imaging (DTI). Forty retired National Football League (NFL) players, ages 40-65, were matched by age and divided into two groups based on their AFE to tackle football: before age 12 or at age 12 or older. Participants underwent DTI on a 3 Tesla Siemens (TIM-Verio) magnet. The whole CC and five subregions were defined and seeded using deterministic tractography. Dependent measures were fractional anisotropy (FA), trace, axial diffusivity, and radial diffusivity. Results showed that former NFL players in the AFE <12 group had significantly lower FA in anterior three CC regions and higher radial diffusivity in the most anterior CC region than those in the AFE 12 group. This is the first study to find a relationship between AFE to RHI and later-life CC microstructure. These results suggest that incurring RHI during critical periods of CC development may disrupt neurodevelopmental processes, including myelination, resulting in altered CC microstructure.
机译:青少年足球运动员在一个赛季中可能会产生数百次重复性头部撞击(RHI)。我们最近的研究表明,在12岁之前的关键神经发育期接触RHI可能导致更大的后代情绪,行为和认知障碍。在这里,我们使用磁共振扩散张量成像(DTI)研究了通过铲球足球对RHI的首次暴露(AFE)年龄与后来的体(CC)微观结构之间的关系。按年龄对40名40-65岁的美国国家橄榄球联盟(NFL)退役球员进行了匹配,并根据他们的AFE将他们分为两组来解决足球问题:12岁之前或12岁以上。参与者在3特斯拉西门子(TIM-Verio)磁铁上进行了DTI。整个CC和五个子区域均已确定,并使用确定性的tractography进行播种。相关度量是分数各向异性(FA),迹线,轴向扩散率和径向扩散率。结果显示,与AFE 12组相比,AFE <12组的前NFL运动员在前三个CC区的FA显着降低,而在最前CC区的径向扩散率更高。这是第一个发现AFE与RHI和晚年CC微结构之间关系的研究。这些结果表明,在CC发育的关键时期发生RHI可能会破坏包括髓鞘形成在内的神经发育过程,从而导致CC微结构的改变。

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