Age-Related Differences in Intermuscular Coherence EMG-EMG of Ankle Joint Antagonist Muscle Activity during Maximal Leaning

Возрастные различия межмышечной когерентности ЭМГ–ЭМГ активности мышц-антагонистов голеностопного сустава при максимальном наклоне
Mariusz Konieczny, Przemysław Domaszewski, Elżbieta Skorupska, Zbigniew Borysiuk, Kajetan J. Słomka
2022-10-04

intermuscular coherencepostural stabilitysurface electromyographytibialis anterior and soleuswavelet analysis
BACKGROUND: Intermuscular synchronization is one of the fundamental aspects of maintaining a stable posture and is of great importance in the aging process. This study aimed to assess muscle synchronization and postural stabilizer asymmetry during quiet standing and the limits of stability using wavelet analysis. Intermuscular synchrony and antagonistic sEMG-sEMG (surface electromyography) coherence asymmetry were evaluated in the tibialis anterior and soleus muscles. METHODS: The study involved 20 elderly (aged 65 ± 3.6) and 20 young (aged 21 ± 1.3) subjects. The task was to perform a maximum forward bend in a standing position. The prone test was divided into three phases: quiet standing (10 s), dynamic learning, and maintenance of maximum leaning (20 s). Wavelet analysis of coherence was performed in the delta and beta bands. RESULTS: Young subjects modulated interface coherences to a greater extent in the beta band. Analysis of postural stability during standing tasks showed that only the parameter R2b (the distance between the maximal and minimal position central of pressure), as an indicator for assessing the practical limits of stability, was found to be significantly associated with differences in aging. CONCLUSION: The results showed differences in the beta and delta band oscillations between young and older subjects in a postural task involving standing quietly and leaning forward.
1
Among postural stability measures, only R2b—the distance between maximal and minimal center-of-pressure positions—was significantly associated with aging.
2
The study evaluated age-related differences in tibialis anterior–soleus intermuscular synchronization during quiet standing and maximal forward leaning.
3
Wavelet coherence analysis examined antagonistic surface EMG-EMG synchronization in the delta and beta frequency bands across three postural phases.
4
Young and older adults exhibited different beta- and delta-band oscillations during quiet standing and forward-leaning tasks.
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Young participants modulated intermuscular coherence more strongly than older participants in the beta band.

Ankle-joint antagonist muscle activity of the tibialis anterior and soleus during quiet standing and maximal forward leaning in young and older adults

Age-related differences in intermuscular EMG-EMG coherence and postural-stabilizer asymmetry across delta and beta frequency bands, and their association with limits of postural stability

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2022-10-04
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Mariusz Konieczny
Przemysław Domaszewski
Elżbieta Skorupska
Zbigniew Borysiuk
Kajetan J. Słomka
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