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RESEARCH PRODUCT
Acute neuromuscular and metabolic responses to combined strength and endurance loadings: the "order effect" in recreationally endurance trained runners.
Heikki KyröläinenRitva S. TaipaleJussi MikkolaKai NymanMoritz SchumannKeijo HäkkinenAri Nummelasubject
AdultMalemedicine.medical_specialtyLactic acid bloodOrder effectPhysical Therapy Sports Therapy and RehabilitationElectromyographyRunningYoung AdultInternal medicineMaximal strengthmedicineHumansOrthopedics and Sports MedicineLactic AcidMuscle Strengthta315Creatine KinasePhysical Education and Trainingmedicine.diagnostic_testbiologybusiness.industryElectromyographyResistance TrainingMiddle Agedbody regionsReverse orderMuscle FatiguePhysical therapyCardiologybiology.proteinCountermovement jumpPhysical EnduranceCreatine kinaseFemalebusinessEnergy Metabolismhuman activitiesCreatine kinase activitydescription
The study examined the acute neuromuscular and metabolic responses and recovery (24 and 48 h) to combined strength and endurance sessions (SEs). Recreationally endurance trained men (n = 12) and women (n = 10) performed: endurance running followed immediately by a strength loading (combined endurance and strength session (ES)) and the reverse order (SE). Maximal strength (MVC), countermovement jump height (CMJ), and creatine kinase activity were measured pre-, mid-, post-loading and at 24 and 48 h of recovery. MVC and CMJ were decreased (P0.05) at post-ES and SE sessions in men. Only MVC decreased in ES and SE women (P0.05). During recovery, no order differences in MVC were observed between sessions in men, but MVC and CMJ remained decreased. During recovery in women, a delayed decrease in CMJ was observed in ES but not in SE (P0.01), while MVC returned to baseline at 24 h. Creatine kinase increased (P0.05) during both ES and SE and peaked in all groups at 24 h. The present combined ES and SE sessions induced greater neuromuscular fatigue at post in men than in women. The delayed fatigue response in ES women may be an order effect related to muscle damage.
year | journal | country | edition | language |
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2014-02-28 | Journal of sports sciences |