Pushing athletic performance boundaries with anodal transcranial direct current stimulation: an exploratory, pilot, randomized controlled study on strength and inflammation in elite weightlifters

经颅直流电刺激 医学 物理医学与康复 蹲下 物理疗法 自感劳累评分 随机对照试验 古怪的 运动员 力量训练 体力 可视模拟标度 神经康复 初级运动皮层 脑刺激 运动皮层 刺激 运动生理学 阻力训练 有氧运动 磁刺激 心理学 电动机控制 优秀运动员 评定量表
作者
Renato de Donato,Marco Prenassi,Matteo Guidetti,Clara Tambussi,Roberta Ferrucci,Alessandra Vezzoli,Cinzia Dellanoce,Stefano Pastore,Alessandro Brunello,Alberto Priori,Sara Marceglia,Simona Mrakic‐Sposta
出处
期刊:BMC sports science, medicine & rehabilitation [BioMed Central]
标识
DOI:10.1186/s13102-026-01803-9
摘要

BACKGROUND: Transcranial direct current stimulation (tDCS) has been proposed as a non-invasive neuromodulatory strategy to enhance motor performance and modulate inflammatory responses. However, its effects on strength capacity and physiological stress markers during complex resistance exercises in elite athletes remain underexplored. METHODS: In this exploratory, randomized, sham-controlled pilot study, ten elite male weightlifters (n = 10; active tDCS = 5, sham = 5) received either a single 20-min session of anodal tDCS (2 mA) over the motor cortex or sham stimulation immediately before performing high-load back squats (85% 1RM). Outcomes included repetition number, barbell kinematics, Borg Rating of Perceived Exertion (Borg-RPE), Visual Analogue Scale (VAS) measures, and metabolic and oxy-inflammatory biomarkers (blood glucose, lactate, antioxidant capacity; salivary ROS; urinary IL-6, 8-iso-PGF2α, 8-OH-dG, creatinine, and neopterin). Given the exploratory design and small sample size, intervention effects were analyzed using Mann-Whitney U tests. For outcomes assessed both before and after stimulation, between-group comparisons were performed on change scores (Δ = post - pre). In contrast, mechanical exercise-related variables, which were only collected after stimulation, were directly compared between the active and sham groups. RESULTS: Athletes receiving active tDCS performed a significantly higher number of back squat repetitions and exhibited shorter lift times compared with the sham group (p = 0.024 and p = 0.011, respectively). No significant between-group differences were observed in Borg-RPE, VAS-based subjective measures, or biochemical markers (all p > 0.05). No significant differences were found for the remaining mechanical parameters (all p > 0.05). CONCLUSIONS: A single session of anodal tDCS applied before high-load back squat exercise may be associated with improvements in repetition capacity and lifting efficiency in elite weightlifters. No significant effects were observed on perceived exertion, biomechanical stability measures, or metabolic, oxidative, inflammatory, and renal biomarkers. These preliminary findings suggest that tDCS may represent a promising neuromodulatory adjunct to strength training, warranting confirmation in larger and methodologically powered studies. TRIAL REGISTRATION: None (pilot study).
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