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It's not all in your car: functional and structural correlates of exceptional driving skills in professional racers.

机译:这并不全在您的车中:专业赛车手卓越的驾驶技能在功能和结构上都有关联。

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摘要

Driving is a complex behavior that requires the integration of multiple cognitive functions. While many studies have investigated brain activity related to driving simulation under distinct conditions, little is known about the brain morphological and functional architecture in professional competitive driving, which requires exceptional motor and navigational skills. Here, 11 professional racing-car drivers and 11 "naïve" volunteers underwent both structural and functional brain magnetic resonance imaging (MRI) scans. Subjects were presented with short movies depicting a Formula One car racing in four different official circuits. Brain activity was assessed in terms of regional response, using an Inter-Subject Correlation (ISC) approach, and regional interactions by mean of functional connectivity. In addition, voxel-based morphometry (VBM) was used to identify specific structural differences between the two groups and potential interactions with functional differences detected by the ISC analysis. Relative to non-experienced drivers, professional drivers showed a more consistent recruitment of motor control and spatial navigation devoted areas, including premotor/motor cortex, striatum, anterior, and posterior cingulate cortex and retrosplenial cortex, precuneus, middle temporal cortex, and parahippocampus. Moreover, some of these brain regions, including the retrosplenial cortex, also had an increased gray matter density in professional car drivers. Furthermore, the retrosplenial cortex, which has been previously associated with the storage of observer-independent spatial maps, revealed a specific correlation with the individual driver's success in official competitions. These findings indicate that the brain functional and structural organization in highly trained racing-car drivers differs from that of subjects with an ordinary driving experience, suggesting that specific anatomo-functional changes may subtend the attainment of exceptional driving performance.
机译:驾驶是一种复杂的行为,需要整合多个认知功能。尽管许多研究已经研究了在不同条件下与驾驶模拟相关的大脑活动,但对于专业竞争性驾驶中的大脑形态和功能架构知之甚少,这需要出色的运动和导航技能。在这里,对11名职业赛车手和11名“天真的”志愿者进行了结构和功能性大脑磁共振成像(MRI)扫描。向对象展示了简短的电影,这些电影描绘了一级方程式赛车在四个不同的官方赛道上的比赛。使用受试者间相关性(ISC)方法根据区域反应评估大脑活动,并通过功能连通性评估区域相互作用。此外,基于体素的形态计量学(VBM)用于识别两组之间的特定结构差异以及通过ISC分析检测到的潜在功能差异。相对于没有经验的驾驶员,专业驾驶员表现出更一致的运动控制和空间导航专用区域,包括运动前/运动皮层,纹状体,前扣带和后扣带皮层和脾后皮质,前突,中颞皮层和海马旁。此外,这些大脑区域中的一些区域,包括脾后皮质,在专业汽车驾驶员中也具有增加的灰质密度。此外,后脾皮质以前曾与独立于观察者的空间图的存储相关联,揭示了与个人驾驶员在正式比赛中的成功之间的特定关联。这些发现表明,训练有素的赛车手的大脑功能和结构组织与具有普通驾驶经验的受试者的大脑组织不同,这表明特定的解剖功能变化可能暗示着卓越的驾驶性能。

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