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◆ GeroScience2026-09-09

Reduced sensorimotor lactate concentration and improved sleep efficiency following resistance training in older adults.

Selin Scherrer, Sven Egger, Xinyu Liu, Anna Zoé Wick, Björn Rasch, Lijing Xin, Benedikt Lauber, Wolfgang Taube

一句话结论

Examined effects of 12 weeks of explosive lower-body resistance training in community-dwelling older adults on sensorimotor lactate and N-acetylaspartate levels, sleep architecture, and sleep quality. Paired t-tests revealed resistance training significantly reduced resting lactate concentration (d = 0.78) and improved objective sleep efficiency. Resistance training in older adults reduces lactate concentration and improves sleep efficiency.

原始摘要(原文)
As populations age worldwide, pathological neurodegeneration with subsequent cognitive decline has emerged as a pressing public health challenge. As effective treatments remain limited once neurodegeneration has occurred, prevention and delay of decline onset are crucial. While physical exercise is associated with improved cognition, exercise-specific mechanisms remain unclear. We therefore examined the effects of 12 weeks explosive lower-body resistance training (RT) in community-dwelling older adults on proposed markers associated with brain metabolism and sleep. Thirty-six participants (64-81 years) completed pre and post assessments consisting of sensorimotor lactate and N-acetylaspartate (NAA) levels via 7 T magnetic resonance spectroscopy (analyzable lactate data: n = 24; NAA: n = 32), objective sleep architecture with wearable polysomnography (n = 34), and subjective sleep quality of the recorded nights with the revised sleep questionnaire A (n = 25) as well as of the preceding 4 weeks with the Pittsburgh Sleep Quality Index (n = 36). Participants were assigned to RT (3 sessions per week) or a control group (CON; maintaining lifestyle). After significant Group × Time interactions via repeated-measures ANCOVA with sex as covariate, paired t-tests revealed that RT significantly (p < 0.05) reduced resting lactate concentration (d = 0.78), improved objective sleep efficiency (d = 0.75), and prolonged total sleep time (d = 0.61). Our findings suggest that resistance training may be particularly beneficial for older adults experiencing fragmented sleep and impaired neural oxidative metabolism.
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Reduced sensorimotor lactate concentration and improved sleep efficiency following resistance training in older adults. — 科研速览 Science Skim