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Caffeine and Placebo Improved Maximal Exercise Performance Despite Unchanged Motor Cortex Activation and Greater Prefrontal Cortex Deoxygenation

机译:咖啡因和安慰剂改善了最大运动能力尽管运动皮质激活未改变前额叶皮质脱氧作用增强

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摘要

Caffeine (CAF) is an ergogenic aid used to improve exercise performance. Independent studies have suggested that caffeine may have the ability to increase corticospinal excitability, thereby decreasing the motor cortex activation required to generate a similar motor output. However, CAF has also been suggested to induce a prefrontal cortex (PFC) deoxygenation. Others have suggested that placebo (PLA) may trigger comparable effects to CAF, as independent studies found PLA effects on motor performance, corticospinal excitability, and PFC oxygenation. Thus, we investigated if CAF and CAF-perceived PLA may improve motor performance, despite the likely unchanged MC activation and greater PFC deoxygenation. Nine participants (26.4 ± 4.8 years old, VO2MAX of 42.2 ± 4.6 mL kg-1 min-1) performed three maximal incremental tests (MITs) in control (no supplementation) and ∼60 min after CAF and PLA ingestion. PFC oxygenation (near-infrared spectroscopy at Fp1 position), MC activation (EEG at Cz position) and vastus lateralis and rectus femoris muscle activity (EMG) were measured throughout the tests. Compared to control, CAF and PLA increased rectus femoris muscle EMG (P = 0.030; F = 2.88; d = 0.84) at 100% of the MIT, and enhanced the peak power output (P = 0.006; F = 12.97; d = 1.8) and time to exhaustion (P = 0.007; F = 12.97; d = 1.8). In contrast, CAF and PLA did not change MC activation, but increased the PFC deoxygenation as indicated by the lower O2Hb (P = 0.001; F = 4.68; d = 1.08) and THb concentrations (P = 0.01; F = 1.96; d = 0.7) at 80 and 100% the MIT duration. These results showed that CAF and CAF-perceived PLA had the ability to improve motor performance, despite unchanged MC activation and greater PFC deoxygenation. The effectiveness of CAF as ergogenic aid to improve MIT performance was challenged.
机译:咖啡因(CAF)是一种用于改善运动表现的促生剂。独立研究表明,咖啡因可能具有增加皮质脊髓兴奋性的能力,从而降低了产生相似运动输出所需的运动皮质激活。但是,也有人建议CAF诱导前额叶皮层(PFC)脱氧。其他人认为,安慰剂(PLA)可能会触发与CAF相当的作用,因为独立研究发现PLA对运动表现,皮质脊髓兴奋性和PFC氧合作用有影响。因此,尽管MC活化可能不变且PFC脱氧作用更大,我们研究了CAF和CAF感知的PLA是否可以改善运动性能。九名参与者(26.4±4.8岁,VO2MAX为42.2±4.6 mL kg -1 min -1 )在对照中进行了三个最大增量测试(MIT)(无补充)摄入CAF和PLA后约60分钟。在整个测试过程中,测量了PFC氧合(Fp1位置的近红外光谱),MC激活(Cz位置的EEG)以及股外侧肌和股直肌的肌肉活动(EMG)。与对照组相比,CAF和PLA在MIT的100%时增加了股直肌肌电图(P = 0.030; F = 2.88; d = 0.84),并提高了峰值输出功率(P = 0.006; F = 12.97; d = 1.8 )和疲劳时间(P = 0.007; F = 12.97; d = 1.8)。相反,CAF和PLA并没有改变MC的活化,而是增加了PFC的脱氧作用,这是由较低的O2Hb(P = 0.001; F = 4.68; d = 1.08)和THb浓度(P = 0.01; F = 1.96; d = 0.7)的MIT持续时间为80%和100%。这些结果表明,尽管MC激活不变且PFC脱氧作用更大,但CAF和CAF感知的PLA仍具有改善运动性能的能力。挑战CAF作为改善麻省理工学院绩效的促生剂的有效性。

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