Wavelet-Based Electromyographic and Mechanomyographic Intensity Responses to Fatiguing Tasks Anchored to a Rating of Perceived Exertion Versus Torque
Document Type
Article
Publication Title
The Journal of Strength and Conditioning Research
Abstract
This study used wavelet analyses to examine the effects of anchor scheme on electromyographic (EMG) and mechanomyographic (MMG) intensity. Twelve men (age = 20.9 ± 2.2 years) performed maximal voluntary isometric contractions (MVICs) before and after sustained, isometric forearm flexion tasks anchored to a rating of perceived exertion (RPE) of 4 (RPE4 FT ) and the torque (TRQ4 FT ) that corresponded to an RPE of 4. Wavelet analyses were used to decompose the EMG and MMG signals recorded from the biceps brachii during the MVICs onto sets of 11 nonlinearly scaled Cauchy wavelets. Repeated measures analyses of variance were used to analyze the EMG and MMG intensity data, with significance set at p ≤ 0.05. After the RPE4 FT , EMG intensity decreased ( p = 0.004 to 0.047) at wavelet bands 5 and 8–11. After the TRQ4 FT , EMG intensity increased ( p = 0.009) at wavelet band 1 and decreased ( p < 0.001 to p = 0.047) at wavelet bands 5–11. The MMG intensity distribution across the 11 wavelet bands did not differ ( p > 0.05) between the sustained tasks and remained unchanged from pretest to post-test MVIC. Taken together, the EMG and MMG intensity responses suggested that, despite the presence of peripheral fatigue, which affected the TRQ4 FT to a greater extent than the RPE4 FT , motor units were maximally recruited with no change in their firing rates from pretest to post-test MVIC. Thus, the application of wavelet-based spectral analyses offers a sensitive approach for detecting subtle changes in muscle function, which has important implications for advancing diagnostic precision and developing targeted interventions in sports performance, rehabilitation, and clinical assessments of neuromuscular health.
Research Highlights
-
The Problem: The study examines how different anchor schemes—specifically rating of perceived exertion versus torque—affect electromyographic (EMG) and mechanomyographic (MMG) intensity during forearm flexion.
-
The Method: Twelve men (age = 20.9 ± 2.2 years) performed maximal voluntary isometric contractions (MVICs) before and after sustained isometric forearm flexion tasks anchored to an RPE of 4 (RPE4 FT) and corresponding torque (TRQ4 FT), with biceps brachii EMG and MMG signals decomposed across 11 nonlinearly scaled Cauchy wavelets and analyzed via repeated measures ANOVA (p ≤ 0.05).
-
Quantitative Finding: After RPE4 FT, EMG intensity decreased at wavelet bands 5 and 8–11 (p = 0.004 to 0.047); after TRQ4 FT, EMG intensity increased at wavelet band 1 (p = 0.009) and decreased at wavelet bands 5–11 (p < 0.001 to p = 0.047); MMG intensity distribution across the 11 wavelet bands did not differ between tasks (p > 0.05) and remained unchanged from pretest to post-test MVIC.
-
Qualitative Finding: Motor units remained maximally recruited with no change in firing rates between pretest and post-test MVICs despite peripheral fatigue affecting the torque anchor task more extensively than the perception anchor task.
DOI
10.1519/JSC.0000000000005666
Publication Date
9-2026
Recommended Citation
Ortega, Dolores G.; Smith, Robert W.; Arnett, Jocelyn; Neltner, Tyler; Roberts, Trevor; Pioske, Justin Samuel; Schmidt, Richard; and Housh, Terry J., "Wavelet-Based Electromyographic and Mechanomyographic Intensity Responses to Fatiguing Tasks Anchored to a Rating of Perceived Exertion Versus Torque" (2026). Faculty Scholarship. 821.
https://digitalcommons.lindenwood.edu/faculty-research-papers/821