D. Basoz Et Al. , "3D printed PCL-nHAp composite implants for the treatment of segmental bone defects: in vivo application in a rabbit model," BIOFABRICATION , vol.17, no.1, 2025
Basoz, D. Et Al. 2025. 3D printed PCL-nHAp composite implants for the treatment of segmental bone defects: in vivo application in a rabbit model. BIOFABRICATION , vol.17, no.1 .
Basoz, D., Karaman, M., Buyuksungur, S., YÜCEL, D., Hasirci, N., KOCAOĞLU, B., ... HASIRCI, V. N.(2025). 3D printed PCL-nHAp composite implants for the treatment of segmental bone defects: in vivo application in a rabbit model. BIOFABRICATION , vol.17, no.1.
Basoz, D. Et Al. "3D printed PCL-nHAp composite implants for the treatment of segmental bone defects: in vivo application in a rabbit model," BIOFABRICATION , vol.17, no.1, 2025
Basoz, D. Et Al. "3D printed PCL-nHAp composite implants for the treatment of segmental bone defects: in vivo application in a rabbit model." BIOFABRICATION , vol.17, no.1, 2025
Basoz, D. Et Al. (2025) . "3D printed PCL-nHAp composite implants for the treatment of segmental bone defects: in vivo application in a rabbit model." BIOFABRICATION , vol.17, no.1.
@article{article, author={D. Basoz Et Al. }, title={3D printed PCL-nHAp composite implants for the treatment of segmental bone defects: in vivo application in a rabbit model}, journal={BIOFABRICATION}, year=2025}