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羽毛球运动员的运动训练调节视觉诱发电位的早期 C1 成分:一项初步研究。

Athletic training in badminton players modulates the early C1 component of visual evoked potentials: a preliminary investigation.

机构信息

Center for Studies of Psychological Application, South China Normal University, Guangzhou, 510631, China.

出版信息

Int J Psychophysiol. 2010 Dec;78(3):308-14. doi: 10.1016/j.ijpsycho.2010.09.005. Epub 2010 Sep 17.

Abstract

One basic question in brain plasticity research is whether individual life experience in the normal population can affect very early sensory-perceptual processing. Athletes provide a possible model to explore plasticity of the visual cortex as athletic training in confrontational ball games is quite often accompanied by training of the visual system. We asked professional badminton players to watch video clips related to their training experience and predict where the ball would land and examined whether they differed from non-player controls in the elicited C1, a visual evoked potential indexing V1 activity. Compared with controls, the players made judgments significantly more accurately, albeit not faster. An early ERP component peaking around 65 ms post-stimulus with a scalp topography centering at the occipital pole (electrode Oz) was observed in both groups and interpreted as the C1 component. With comparable latency, amplitudes of this component were significantly enhanced for the players than for the non-players, suggesting that it can be modulated by long-term physical training. The results present a clear case of experience-induced brain plasticity in primary visual cortex for very early sensory processing.

摘要

大脑可塑性研究中的一个基本问题是,正常人群中的个体生活经历是否会影响非常早期的感觉-知觉加工。运动员为探索视觉皮层的可塑性提供了一个可能的模型,因为对抗性球类运动的训练通常伴随着视觉系统的训练。我们要求职业羽毛球运动员观看与他们的训练经历相关的视频片段,并预测球会落在哪里,并检查他们在诱发的 C1(索引 V1 活动的视觉诱发电位)方面与非运动员对照组有何不同。与对照组相比,运动员的判断明显更准确,尽管速度没有更快。在两组中都观察到了一个大约在刺激后 65 毫秒达到峰值的早期 ERP 成分,头皮地形图集中在枕极(电极 Oz),并解释为 C1 成分。潜伏期相当,该成分的振幅对于运动员来说明显高于非运动员,表明它可以通过长期的身体训练来调节。这些结果呈现了一个非常早期的感觉处理中初级视觉皮层的经验诱导的大脑可塑性的明确案例。

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