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健康年轻成年人在进行抗阻运动期间,32 通道 EEG 系统测量的脑活动重复性。

Repeatability of Brain Activity as Measured by a 32-Channel EEG System during Resistance Exercise in Healthy Young Adults.

机构信息

CIEQV, Escola Superior de Desporto de Rio Maior, Instituto Politécnico de Santarém, Av. Dr. Mário Soares nº 110, 2040-413 Rio Maior, Portugal.

Exercise and Health Sciences Department, University of Massachusetts Boston, Boston, MA 02125, USA.

出版信息

Int J Environ Res Public Health. 2023 Jan 21;20(3):1992. doi: 10.3390/ijerph20031992.

Abstract

Electroencephalography (EEG) is attracting increasing attention in the sports and exercise fields, as it provides insights into brain behavior during specific tasks. However, it remains unclear if the promising wireless EEG caps provide reliable results despite the artifacts associated with head movement. The present study aims to evaluate the repeatability of brain activity as measured by a wireless 32-channel EEG system (EMOTIV flex cap) during resistance exercises in 18 apparently healthy but physically inactive young adults (10 men and 8 women). Moderate-intensity leg press exercises are performed with two evaluations with 48 h. between. This intensity allows enough time for data analysis while reducing unnecessary but involuntary head movements. Repeated measurements of EEG during the resistance exercise show high repeatability in all frequency bands, with excellent ICCs (>0.90) and bias close to zero, regardless of sex. These results suggest that a 32-channel wireless EEG system can be used to collect data on controlled resistance exercise tasks performed at moderate intensities. Future studies should replicate these results with a bigger sample size and different resistance exercises and intensities.

摘要

脑电图(EEG)在运动和锻炼领域越来越受到关注,因为它可以深入了解特定任务期间的大脑行为。然而,尽管与头部运动相关的伪影存在,无线 EEG 帽是否能提供可靠的结果仍不清楚。本研究旨在评估在 18 名明显健康但身体不活跃的年轻成年人(10 名男性和 8 名女性)中,使用无线 32 通道 EEG 系统(EMOTIV flex 帽)测量的大脑活动在阻力运动期间的可重复性。中度强度的腿部按压运动进行两次评估,两次评估之间间隔 48 小时。这种强度允许足够的时间进行数据分析,同时减少不必要但无意识的头部运动。在阻力运动期间重复测量 EEG 显示所有频段的可重复性都很高,ICC 值均大于 0.90,偏差接近零,与性别无关。这些结果表明,无线 32 通道 EEG 系统可用于收集在中度强度下进行的受控阻力运动任务的数据。未来的研究应使用更大的样本量和不同的阻力运动和强度来复制这些结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/718a/9914944/fea254a2bdfc/ijerph-20-01992-g001.jpg

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