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Effect of Electroacupuncture on Delayed-Onset Muscle Soreness Induced by Eccentric Exercise in Young Untrained Men: Comparison of Contralateral and Ipsilateral Stimulation

Komine, S.; Miura, I.; Hu, T.; Ogata, A.; Tamai, S.; Tokinoya, K.; Sugasawa, T.; Oh, S.; Wada, S.; Takekoshi, K.; Ito, G.; Isobe, T.; Matsui, T.; Ohmori, H.

2024-04-23 rehabilitation medicine and physical therapy
10.1101/2024.04.16.24305776 medRxiv
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BackgroundElectroacupuncture stimulation is sometimes used to prevent and treat delayed onset muscle soreness (DOMS) induced by exercise; however, the effect is unclear. Using a human biceps brachii muscle pain induction model, we investigated the effect of contralateral electroacupuncture (CEA) versus ipsilateral electroacupuncture (IEA) stimulation on DOMS and muscle injury markers. MethodsNineteen young men were randomly assigned to receive either CEA or IEA. All participants performed eccentric exercise using the biceps brachii muscle of the nondominant arm to induce muscle damage. Electroacupuncture stimulation (1.5 Hz, 15 minutes) was applied to the dominant arm in the CEA group and the nondominant arm in the IEA group. Electroacupuncture stimulation was applied in both groups from 7 days before exercise to 4 days after exercise. All variables were analyzed at the following seven timepoints: baseline, immediately before exercise, immediately after exercise, and on days 1-4 after exercise. ResultsPalpation pain was significantly lower in the IEA group than the CEA group at 72 and 96 hours after exercise. The decrease in the elbow range of motion after exercise was significantly suppressed by electroacupuncture stimulation. The muscle injury markers (creatine kinase, lactate dehydrogenase) increased following exercise, but these changes were not significantly influenced by IEA stimulation. IEA suppressed exercise-induced oxidative stress at 72 hours after exercise. ConclusionThis study suggests that the application of IEA before and after eccentric exercise effectively reduces DOMS. Electroacupuncture might suppress increases in oxidative stress elicited by eccentric exercise.

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