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How are the motor system activity and functional connectivity between the cognitive and sensorimotor systems modulated by athletic expertise?

机译:运动技能如何调节认知和感觉运动系统之间的运动系统活动和功能连接?

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Expertise offers a unique insight into how our brain functions. The purpose of this experiment was to determine if motor system activity and functional connectivity between the cognitive system and sensorimotor system is differentially modulated by an individual's level of expertise. This goal was achieved through the acquisition of functional neuroimaging data in 10 expert volleyball players and 10 novice individuals who were presented with a series of sentences describing possible technical volleyball-specific motor acts and acts that cannot be performed as positive ("Do ...!") or negative ("Don't ...") commands, while they were silently reading them and deciding whether the actions were technically feasible or not. Compared with novices, experts' activity in the left primary motor cortex hand area (Ml) and in the left premotor cortex (Pm) was decreased by impossible actions presented as positive commands. Sensorimotor activation in response to action-related stimuli is not that automatic as held since we found that these areas were deactivated during the task, and their functional connectivity to the primary visual cortex was strengthened for possible actions presented as positive commands, reflecting the neural processes underlying the interaction between motor and visual imagery. These results suggest that the neural activity within the key areas implicitly triggered by motor simulation is a function of the expertise, action feasibility, and context.
机译:专业知识可为我们的大脑功能提供独特的见解。该实验的目的是确定运动系统的活动以及认知系统和感觉运动系统之间的功能连接性是否受到个人专业水平的影响。通过在10名专业排球运动员和10名新手个体中获取功能性神经影像学数据,实现了这一目标,他们获得了一系列句子,描述了可能的技术性排球特定运动行为和不能表现为积极行为的行为(“ ... !”或否定(“ Do n't ...”)命令,而他们正在静默地阅读它们并确定这些操作在技术上是否可行。与新手相比,专家们在左侧初级运动皮层手区域(M1)和左侧运动前皮层(Pm)的活动由于采取了积极的命令而无法采取的行动而减少了。响应动作相关刺激的感觉运动激活并不像以前那样自动进行,因为我们发现这些区域在任务执行过程中被禁用,并且它们与初级视觉皮层的功能连接性得到了增强,以表现为积极的命令,反映了神经过程电机和视觉图像之间相互作用的基础。这些结果表明,由运动模拟隐式触发的关键区域内的神经活动是专业知识,动作可行性和环境的函数。

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