University of Maribor, Faculty of Medicine, Institute of Sports Medicine, Maribor, Slovenia; Science and Research Centre Koper, Institute for Kinesiology Research, Koper, Slovenia.
Science and Research Centre Koper, Institute for Kinesiology Research, Koper, Slovenia; University of Ljubljana, Faculty of Sport, Ljubljana, Slovenia; Department of Health Sciences, Alma Mater Europaea - ECM, Maribor, Slovenia.
J Electromyogr Kinesiol. 2023 Jun;70:102775. doi: 10.1016/j.jelekin.2023.102775. Epub 2023 Apr 11.
The diagnostic accuracy of tensiomyography (TMG) parameters compared to the gold standard in neuromuscular fatigue evaluation using voluntary and electrically induced muscle activation is unclear. This study aimed to investigate the diagnostic accuracy of TMG parameters to detect individual changes after interventions that were designed to induce central or peripheral fatigue. Nineteen males (age: 32.2 ± 9.3 years) performed two interventions, consisting of maintaining 25% of maximal voluntary contraction (MViC) and a 30 s all-out cycling test (Wingate), respectively. TMG parameters, maximum voluntary contraction (PtMViC), voluntary activation (VA%) and electrically elicited double twitches (Dtw) were assessed on the knee extensors before (PRE), one minute (POST) and seven minutes after (POST7) the intervention. The diagnostic accuracy (AUC) of TMG parameters were evaluated in comparison to two criteria measures (PtMViC and Dtw). RM ANOVA revealed a significant interaction between the effects of intervention and time on VA% (p = 0.001) and Dtw (p < 0.001) but not for PtMViC (p = 0.420). AUC showed that TMG parameters had a good ability in detecting muscular fatigue assessed by Dtw but not by PtMViC. The results of the current study suggest that TMG parameters can be used to monitor peripheral neuromuscular fatigue.
肌动描记术(TMG)参数的诊断准确性与使用自愿和电诱发肌肉激活评估神经肌肉疲劳的金标准相比尚不清楚。本研究旨在调查 TMG 参数在设计用于诱导中枢或外周疲劳的干预后检测个体变化的诊断准确性。19 名男性(年龄:32.2 ± 9.3 岁)分别进行了两项干预,包括保持 25%的最大自主收缩(MViC)和 30 秒全力自行车测试(Wingate)。在干预前(PRE)、一分钟后(POST)和七分钟后(POST7),对膝关节伸肌进行 TMG 参数、最大自主收缩(PtMViC)、自愿激活(VA%)和电诱发双抽搐(Dtw)评估。与两个标准测量(PtMViC 和 Dtw)相比,评估了 TMG 参数的诊断准确性(AUC)。重复测量方差分析显示,干预和时间对 VA%(p = 0.001)和 Dtw(p < 0.001)的影响之间存在显著交互作用,但对 PtMViC 没有(p = 0.420)。AUC 表明,TMG 参数在检测 Dtw 评估的肌肉疲劳方面具有良好的能力,但在检测 PtMViC 评估的肌肉疲劳方面没有。本研究结果表明,TMG 参数可用于监测周围神经肌肉疲劳。