ArticleEuropean journal of applied physiology2026
Medial gastrocnemius activation during graded axial hypergravity induced by short-arm human centrifugation.
Article in European journal of applied physiology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
backgroundGravitational loading is a key determinant of antigravity muscle activation, yet neuromuscular responses to graded + Gz loading in humans remain incompletely characterized. Reduced mechanical loading, whether due to microgravity or physical inactivity, leads to musculoskeletal deconditioning across both spaceflight and clinical contexts.
methodsTwenty-five adults with stable neuromuscular or neurodegenerative disorders and twenty-one age-matched healthy controls completed a short-arm human centrifugation protocol under a no-rotation baseline condition (ω = 0) and at 1.5, 1.7, and 2.0 g measured at the feet. Surface electromyography (sEMG) of the medial gastrocnemius was recorded for 60 s at each condition and analyzed as log-transformed root mean square amplitude using linear mixed-effects models.
resultsMedial gastrocnemius EMG increased significantly at all hypergravity levels compared with the no-rotation baseline (main effect of condition, p ≤ 0.001). No significant main effect of group was observed, although a small group × condition interaction indicated modest differences in the magnitude of response. Within-session reliability was excellent, whereas between-day reliability was moderate. Cardiovascular parameters, assessed in a subset of participants, remained within physiological ranges across conditions.
conclusions+ Gz loading induces reproducible increases in antigravity muscle activation in humans, in both groups of patients and healthy controls. These findings demonstrate that short-arm centrifugation provides a controllable mechanical stimulus for investigating load-dependent neuromuscular activation and human integrative responses to altered gravitational loading.
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