Effects of an acute bout of cycling on different domains of cognitive function.

4区 医学 Q3 Neuroscience Progress in brain research Pub Date : 2024-01-01 Epub Date: 2024-02-19 DOI:10.1016/bs.pbr.2024.01.005
Jeongwoon Kim, Shelby A Keye, Melannie Pascual-Abreu, Naiman A Khan
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Abstract

The literature suggesting acute exercise benefits cognitive function has been largely confined to single cognitive domains and measures of reliant on measures of central tendencies. Furthermore, studies suggest cognitive intra-individual variability (IIV) to reflect cognitive efficiency and provide unique insights into cognitive function, but there is limited knowledge on the effects of acute exercise on IIV. To this end, this study examined the effects of acute exercise on three different cognitive domains, executive function, implicit learning, and hippocampal-dependent memory function using behavioral performance and event-related potentials (ERPs). Furthermore, this study also sought to explore the effects of an acute bout of exercise on IIV using the RIDE algorithm to separate signals into individuals components based on latency variability. Healthy adult participants (N=20; 26.3±4.8years) completed a randomized cross-over trial with seated rest or 30min of high intensity cycling. Before and after each condition, participants completed a cognitive battery consisting of the Eriksen Flanker task, implicit statistical learning task, and a spatial reconstruction task. While exercise did not affect Flanker or spatial reconstruction performance, there were exercise related decreases in accuracy (F=5.47; P=0.040), slowed reaction time (F=5.18; P=0.036), and decreased late parietal positivity (F=4.26; P=0.046). However, upon adjusting for performance and ERP variability, there were exercise related decreases in Flanker reaction time (F=24.00; P<0.001), and reduced N2 amplitudes (F=13.03; P=0.002), and slower P3 latencies (F=3.57; P=0.065) for incongruent trials. These findings suggest that acute exercise may impact cognitive IIV as an adaptation to maintain function following exercise.

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急性自行车运动对不同认知功能领域的影响。
表明急性运动有益于认知功能的文献主要局限于单一的认知领域和依赖于中心倾向的测量。此外,有研究表明,认知的个体内变异性(IIV)反映了认知效率,并为认知功能提供了独特的见解,但有关急性运动对个体内变异性影响的知识却很有限。为此,本研究利用行为表现和事件相关电位(ERPs)研究了急性运动对执行功能、内隐学习和海马依赖性记忆功能这三个不同认知领域的影响。此外,本研究还试图利用 RIDE 算法根据潜伏期变异性将信号分离成个体成分,从而探索急性运动对 IIV 的影响。健康的成年参与者(N=20;26.3±4.8 岁)完成了坐着休息或 30 分钟高强度自行车运动的随机交叉试验。在每种条件前后,参与者都完成了认知测试,包括埃里克森侧手任务、内隐统计学习任务和空间重建任务。虽然运动并不影响Flanker或空间重构的表现,但与运动相关的准确性下降(F=5.47;P=0.040)、反应时间减慢(F=5.18;P=0.036)以及顶叶晚期阳性反应下降(F=4.26;P=0.046)。然而,在对表现和 ERP 变异性进行调整后,Flanker 反应时间的减少与运动有关(F=24.00;P=0.040)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Progress in brain research
Progress in brain research 医学-神经科学
CiteScore
5.20
自引率
0.00%
发文量
174
审稿时长
6-12 weeks
期刊介绍: Progress in Brain Research is the most acclaimed and accomplished series in neuroscience. The serial is well-established as an extensive documentation of contemporary advances in the field. The volumes contain authoritative reviews and original articles by invited specialists. The rigorous editing of the volumes assures that they will appeal to all laboratory and clinical brain research workers in the various disciplines: neuroanatomy, neurophysiology, neuropharmacology, neuroendocrinology, neuropathology, basic neurology, biological psychiatry and the behavioral sciences.
期刊最新文献
Effects of volume-matched acute exercise on metacognition in late middle-aged adults: The roles of exercise intensity and duration. Electrophysiological investigation of active-assisted vs recumbent cycling: A pilot study in healthy older adults. Examining the effects of exercise with different cognitive loads on executive function: A systematic review. Exploring the influence of a 4-week aerobic exercise intervention on cognitive control processes in young adults: An SFT and DDM study. Investigating mechanisms of sport-related cognitive improvement using measures of motor learning.
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