Literature DB >> 22019979

Electrically induced contraction levels of the quadriceps femoris muscles in healthy men: the effects of three patterns of burst-modulated alternating current and volitional muscle fatigue.

Michael G Parker1, Alex J Broughton, Ben R Larsen, Josh W Dinius, Mac J Cimbura, Matthew Davis.   

Abstract

OBJECTIVE: The purpose of this study was to compare electrically induced contraction levels produced by three patterns of alternating current in fatigued and nonfatigued skeletal muscles.
DESIGN: Eighteen male volunteers without health conditions, with a mean (SD) age of 24.9 (3.4) yrs were randomly exposed to a fatiguing volitional isometric quadriceps contraction and one of three patterns of 2.5-KHz alternating current; two were modulated at 50 bursts per second (10% burst duty cycle with five cycles per burst and 90% burst duty cycle with 45 cycles per burst), and one pattern was modulated at 100 bursts per second (10% burst duty cycle with 2.5 cycles per burst). The electrically induced contraction levels produced by the three patterns of electrical stimulation were compared before and after the fatiguing contraction.
RESULTS: The 10% burst duty cycles produced 42.9% (95% confidence interval, 29.1%-56.7%) and 32.1% (95% confidence interval, 18.2%-45.9%) more muscle force (P < 0.001) than did the 90% burst duty cycle pattern. There was no significant interaction effect (P = 0.392) of electrical stimulation patterns and fatigue on the electrically induced contraction levels.
CONCLUSIONS: The lower burst duty cycle (10%) patterns of electrical stimulation produced stronger muscle contractions. Furthermore, the stimulation patterns had no influence on the difference in muscle force before and after the fatiguing quadriceps contraction. Consequently, for clinical applications in which high forces are desired, the patterns using the 10% burst duty cycle may be helpful.

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Year:  2011        PMID: 22019979     DOI: 10.1097/PHM.0b013e318238a2cf

Source DB:  PubMed          Journal:  Am J Phys Med Rehabil        ISSN: 0894-9115            Impact factor:   2.159


  1 in total

1.  User-centered design and spatially-distributed sequential electrical stimulation in cycling for individuals with paraplegia.

Authors:  Roberto S Baptista; Marina C C Moreira; Lucas D M Pinheiro; Tiago R Pereira; Gabriel G Carmona; Joao P D Freire; Julia A I Bastos; Antonio Padilha Lanari Bo
Journal:  J Neuroeng Rehabil       Date:  2022-05-08       Impact factor: 5.208

  1 in total

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