H. KENAR Et Al. , "Femtosecond laser treatment of 316L improves its surface nanoroughness and carbon content and promotes osseointegration: An in vitro evaluation," COLLOIDS AND SURFACES B-BIOINTERFACES , vol.108, pp.305-312, 2013
KENAR, H. Et Al. 2013. Femtosecond laser treatment of 316L improves its surface nanoroughness and carbon content and promotes osseointegration: An in vitro evaluation. COLLOIDS AND SURFACES B-BIOINTERFACES , vol.108 , 305-312.
KENAR, H., AKMAN, E., KAÇAR, E., Demir, A., Park, H., Abdul-Khaliq, H., ... Aktas, C.(2013). Femtosecond laser treatment of 316L improves its surface nanoroughness and carbon content and promotes osseointegration: An in vitro evaluation. COLLOIDS AND SURFACES B-BIOINTERFACES , vol.108, 305-312.
KENAR, HALİME Et Al. "Femtosecond laser treatment of 316L improves its surface nanoroughness and carbon content and promotes osseointegration: An in vitro evaluation," COLLOIDS AND SURFACES B-BIOINTERFACES , vol.108, 305-312, 2013
KENAR, HALİME Et Al. "Femtosecond laser treatment of 316L improves its surface nanoroughness and carbon content and promotes osseointegration: An in vitro evaluation." COLLOIDS AND SURFACES B-BIOINTERFACES , vol.108, pp.305-312, 2013
KENAR, H. Et Al. (2013) . "Femtosecond laser treatment of 316L improves its surface nanoroughness and carbon content and promotes osseointegration: An in vitro evaluation." COLLOIDS AND SURFACES B-BIOINTERFACES , vol.108, pp.305-312.
@article{article, author={HALİME KENAR Et Al. }, title={Femtosecond laser treatment of 316L improves its surface nanoroughness and carbon content and promotes osseointegration: An in vitro evaluation}, journal={COLLOIDS AND SURFACES B-BIOINTERFACES}, year=2013, pages={305-312} }