K. ÖNERGE Et Al. , "How does artificially reduced rectus femoris primered knee extensor muscle force alters the gait biomechanics in children with cerebral palsy?," ESMAC 2023 – European Society for Movement Analysis in Adults and Children , ATİNA, Greece, 2023
ÖNERGE, K. Et Al. 2023. How does artificially reduced rectus femoris primered knee extensor muscle force alters the gait biomechanics in children with cerebral palsy?. ESMAC 2023 – European Society for Movement Analysis in Adults and Children , (ATİNA, Greece).
ÖNERGE, K., sert, r., AKALAN, N. E., Kuchimov, S., & BİLGİLİ, F., (2023). How does artificially reduced rectus femoris primered knee extensor muscle force alters the gait biomechanics in children with cerebral palsy? . ESMAC 2023 – European Society for Movement Analysis in Adults and Children, ATİNA, Greece
ÖNERGE, KÜBRA Et Al. "How does artificially reduced rectus femoris primered knee extensor muscle force alters the gait biomechanics in children with cerebral palsy?," ESMAC 2023 – European Society for Movement Analysis in Adults and Children, ATİNA, Greece, 2023
ÖNERGE, KÜBRA Et Al. "How does artificially reduced rectus femoris primered knee extensor muscle force alters the gait biomechanics in children with cerebral palsy?." ESMAC 2023 – European Society for Movement Analysis in Adults and Children , ATİNA, Greece, 2023
ÖNERGE, K. Et Al. (2023) . "How does artificially reduced rectus femoris primered knee extensor muscle force alters the gait biomechanics in children with cerebral palsy?." ESMAC 2023 – European Society for Movement Analysis in Adults and Children , ATİNA, Greece.
@conferencepaper{conferencepaper, author={KÜBRA ÖNERGE Et Al. }, title={How does artificially reduced rectus femoris primered knee extensor muscle force alters the gait biomechanics in children with cerebral palsy?}, congress name={ESMAC 2023 – European Society for Movement Analysis in Adults and Children}, city={ATİNA}, country={Greece}, year={2023}}