School of Psychology, Shanghai University of Sport, Shanghai, China.
School of Kinesiology, Harbin Sport University, Harbin, China.
PLoS One. 2021 May 27;16(5):e0251443. doi: 10.1371/journal.pone.0251443. eCollection 2021.
Individual alpha peak frequency (IAPF), the discrete frequency with the highest power value in the alpha oscillation range of the electroencephalogram, is a stable neurophysiological marker and is closely associated with various cognitive functions, including aspects of attention and working memory. However, the relationship between IAPF and attentional performance as well as the effects of engaging attention on IAPF are unknow. Here, we examined whether IAPF values were associated with attentional performance by evaluating accuracy during the performance of a multiple object tracking (MOT) task, a well-established paradigm for investigating goal-driven attention in dynamic environments, and whether engagement in the task affected IAPF values. In total, 18 elite players and 20 intermediate players completed the study. Resting electroencephalogram recordings were obtained for 120 s while players kept their eyes open and an additional 120 s while players' eyes were closed, before and again after performing the MOT task. Tracking accuracy in the MOT task and IAPF values before and after the MOT task were analyzed. As expected, tracking accuracies were higher in elite players than in intermediate-level players. Baseline IAPF values were significantly and positively correlated with the accuracy of target tracking in the MOT task. IAPF values were higher in elite than intermediate players in both the eyes open and closed conditions and both before and after MOT task performance. Interindividual IAPF values did not differ before and after the MOT task. These findings indicate that IAPF is a stable marker, without intraindividual changes associated with engagement in the MOT task. Elite players had higher IAPF values and exhibited more accurate MOT performance than intermediate-level players; thus, baseline IAPF values may be useful to predict attentional performance in the MOT task among athletes.
个体阿尔法峰值频率(IAPF)是脑电图阿尔法振荡范围内具有最高功率值的离散频率,是一种稳定的神经生理标志物,与各种认知功能密切相关,包括注意力和工作记忆等方面。然而,IAPF 与注意力表现之间的关系以及注意力参与对 IAPF 的影响尚不清楚。在这里,我们通过评估在执行多个目标跟踪(MOT)任务期间的准确性来检查 IAPF 值是否与注意力表现相关,MOT 任务是一种研究动态环境中目标驱动注意力的成熟范式,以及任务参与是否会影响 IAPF 值。共有 18 名精英球员和 20 名中级球员完成了这项研究。在球员睁眼时进行 120 秒的静息脑电图记录,闭眼时再进行 120 秒的记录,然后在执行 MOT 任务之前和之后再次进行记录。分析了 MOT 任务中的跟踪准确性和 MOT 任务前后的 IAPF 值。正如预期的那样,精英球员的跟踪准确性高于中级球员。基线 IAPF 值与 MOT 任务中的目标跟踪准确性呈显著正相关。在睁眼和闭眼两种情况下,以及在执行 MOT 任务之前和之后,精英球员的 IAPF 值均高于中级球员。在执行 MOT 任务前后,个体间的 IAPF 值没有差异。这些发现表明,IAPF 是一种稳定的标志物,与参与 MOT 任务无关,没有个体内变化。精英球员的 IAPF 值较高,MOT 表现更准确,而中级球员则相反;因此,基线 IAPF 值可能有助于预测运动员在 MOT 任务中的注意力表现。