A. M. DELİORMANLI Et Al. , "In vivo evaluation of cerium, gallium and vanadium-doped borate-based bioactive glass scaffolds using rat subcutaneous implantation model," Ceramics International , vol.42, no.10, pp.11574-11583, 2016
DELİORMANLI, A. M. Et Al. 2016. In vivo evaluation of cerium, gallium and vanadium-doped borate-based bioactive glass scaffolds using rat subcutaneous implantation model. Ceramics International , vol.42, no.10 , 11574-11583.
DELİORMANLI, A. M., Seda Vatansever, H., Yesil, H., & ÖZDAL KURT, F., (2016). In vivo evaluation of cerium, gallium and vanadium-doped borate-based bioactive glass scaffolds using rat subcutaneous implantation model. Ceramics International , vol.42, no.10, 11574-11583.
DELİORMANLI, AYLİN Et Al. "In vivo evaluation of cerium, gallium and vanadium-doped borate-based bioactive glass scaffolds using rat subcutaneous implantation model," Ceramics International , vol.42, no.10, 11574-11583, 2016
DELİORMANLI, AYLİN M. Et Al. "In vivo evaluation of cerium, gallium and vanadium-doped borate-based bioactive glass scaffolds using rat subcutaneous implantation model." Ceramics International , vol.42, no.10, pp.11574-11583, 2016
DELİORMANLI, A. M. Et Al. (2016) . "In vivo evaluation of cerium, gallium and vanadium-doped borate-based bioactive glass scaffolds using rat subcutaneous implantation model." Ceramics International , vol.42, no.10, pp.11574-11583.
@article{article, author={AYLİN MÜYESSER DELİORMANLI Et Al. }, title={In vivo evaluation of cerium, gallium and vanadium-doped borate-based bioactive glass scaffolds using rat subcutaneous implantation model}, journal={Ceramics International}, year=2016, pages={11574-11583} }