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RESEARCH PRODUCT
Effects of muscle activation on shear between human soleus and gastrocnemius muscles
Dean L. MayfieldGlen A. LichtwarkNeil J. CroninAndrew G. CresswellTaija Finnisubject
musculoskeletal diseasesMuscle fascicleAdultKnee Jointtendonmuscle stretchPhysical Therapy Sports Therapy and RehabilitationStimulationKnee Jointshear strain03 medical and health sciencesYoung Adultmuscle contraction0302 clinical medicinemedicineShear stressHumansOrthopedics and Sports MedicineAponeurosisMuscle StrengthRange of Motion Articularmyofascial force transmissionMuscle Skeletalta315activation-dependentChemistry030229 sport sciencesAnatomymusculoskeletal systemHealthy VolunteersTendonBiomechanical Phenomenamedicine.anatomical_structureaponeurosismedicine.symptomRange of motionShear Strength030217 neurology & neurosurgeryMuscle contractiondescription
Lateral connections between muscles provide pathways for myofascial force transmission. To elucidate whether these pathways have functional roles in vivo, we examined whether activation could alter the shear between the soleus (SOL) and lateral gastrocnemius (LG) muscles. We hypothesized that selective activation of LG would decrease the stretch-induced shear between LG and SOL. Eleven volunteers underwent a series of knee joint manipulations where plantar flexion force, LG, and SOL muscle fascicle lengths and relative displacement of aponeuroses between the muscles were obtained. Data during a passive full range of motion were recorded, followed by 20° knee extension stretches in both passive conditions and with selective electrical stimulation of LG. During active stretch, plantar flexion force was 22% greater (P < 0.05) and relative displacement of aponeuroses was smaller than during passive stretch (P < 0.05). Soleus fascicle length changes did not differ between passive and active stretches but LG fascicles stretched less in the active than passive condition when the stretch began at angles of 70° and 90° of knee flexion (P < 0.05). The activity-induced decrease in the relative displacement of SOL and LG suggests stronger (stiffer) connectivity between the two muscles, at least at flexed knee joint angles, which may serve to facilitate myofascial force transmission.
year | journal | country | edition | language |
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2015-12-08 | Scandinavian Journal of Medicine and Science in Sports |