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使用 Halo Sport 的经颅直流电刺激可增强重复冲刺骑行和认知表现。

Transcranial Direct Current Stimulation With Halo Sport Enhances Repeated Sprint Cycling and Cognitive Performance.

作者信息

Huang Lingyan, Deng Yuqin, Zheng Xinyan, Liu Yu

机构信息

Key Laboratory of Exercise and Health Sciences of the Ministry of Education, Shanghai University of Sport, Shanghai, China.

School of Sports Science, Nantong University, Nantong, China.

出版信息

Front Physiol. 2019 Feb 14;10:118. doi: 10.3389/fphys.2019.00118. eCollection 2019.

Abstract

The present study investigated the effects of transcranial direct current stimulation (tDCS) using the Halo Sport device on repeated sprint cycling ability and on cognitive performance. In this triple-blind, randomized, sham-controlled study, nine physically active participants received either a placebo stimulation (Sham) or real stimulation (Halo) for 20 min. Participants then performed 5 × 6-s sprints interspersed with 24 s of active recovery on a cycle ergometer. Peak and mean power output were measured for each sprint. In addition, cognitive performance in terms of reaction time (RT) and accuracy (ACC) was assessed via Stroop test pre- and post-stimulation. There was a significant interaction for mean power output [(4,32) = 2.98, = 0.03]. A main treatment effect was observed in all of the repeated sprints apart from the initial one. Halo did not affect RT in either the congruent or incongruent condition but did increase ACC in the incongruent condition [(1,8) = 10.56, = 0.012]. These results suggest that tDCS with the Halo Sport system is able to enhance aspects of sprint cycling ability and cognitive performance.

摘要

本研究调查了使用Halo Sport设备的经颅直流电刺激(tDCS)对重复冲刺骑行能力和认知表现的影响。在这项三盲、随机、假对照研究中,九名身体活跃的参与者接受了20分钟的安慰剂刺激(假刺激)或真实刺激(Halo)。然后,参与者在自行车测力计上进行5组6秒的冲刺,每组冲刺之间穿插24秒的主动恢复。测量每组冲刺的峰值功率输出和平均功率输出。此外,通过刺激前后的斯特鲁普测试评估反应时间(RT)和准确性(ACC)方面的认知表现。平均功率输出存在显著交互作用[(4,32)=2.98,P = 0.03]。除了第一次冲刺外,在所有重复冲刺中均观察到主要治疗效果。Halo在一致或不一致条件下均未影响反应时间,但在不一致条件下确实提高了准确性[(1,8)=10.56,P = 0.012]。这些结果表明,使用Halo Sport系统的tDCS能够增强冲刺骑行能力和认知表现的各个方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19a8/6383107/4f66606346a9/fphys-10-00118-g001.jpg

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