T. Bedir Et Al. , "Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations," NANOMATERIALS , vol.14, no.7, 2024
Bedir, T. Et Al. 2024. Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations. NANOMATERIALS , vol.14, no.7 .
Bedir, T., Baykara, D., Yildirim, R., Calikoglu Koyuncu, A. C., Sahin, A., Kaya, E., ... Tinaz, G. B.(2024). Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations. NANOMATERIALS , vol.14, no.7.
Bedir, Tuba Et Al. "Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations," NANOMATERIALS , vol.14, no.7, 2024
Bedir, Tuba Et Al. "Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations." NANOMATERIALS , vol.14, no.7, 2024
Bedir, T. Et Al. (2024) . "Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations." NANOMATERIALS , vol.14, no.7.
@article{article, author={Tuba Bedir Et Al. }, title={Three-Dimensional-Printed GelMA-KerMA Composite Patches as an Innovative Platform for Potential Tissue Engineering of Tympanic Membrane Perforations}, journal={NANOMATERIALS}, year=2024}