M. Isik Et Al. , "3D Printing of Extracellular Matrix-Based Multicomponent, All-Natural, Highly Elastic, and Functional Materials toward Vascular Tissue Engineering," ADVANCED HEALTHCARE MATERIALS , vol.12, no.20, 2023
Isik, M. Et Al. 2023. 3D Printing of Extracellular Matrix-Based Multicomponent, All-Natural, Highly Elastic, and Functional Materials toward Vascular Tissue Engineering. ADVANCED HEALTHCARE MATERIALS , vol.12, no.20 .
Isik, M., Karakaya, E., Arslan, T. S., Atila, D., ERDOĞAN, Y. K., ARSLAN, Y. E., ... ESKİZENGİN, H.(2023). 3D Printing of Extracellular Matrix-Based Multicomponent, All-Natural, Highly Elastic, and Functional Materials toward Vascular Tissue Engineering. ADVANCED HEALTHCARE MATERIALS , vol.12, no.20.
Isik, Melis Et Al. "3D Printing of Extracellular Matrix-Based Multicomponent, All-Natural, Highly Elastic, and Functional Materials toward Vascular Tissue Engineering," ADVANCED HEALTHCARE MATERIALS , vol.12, no.20, 2023
Isik, Melis Et Al. "3D Printing of Extracellular Matrix-Based Multicomponent, All-Natural, Highly Elastic, and Functional Materials toward Vascular Tissue Engineering." ADVANCED HEALTHCARE MATERIALS , vol.12, no.20, 2023
Isik, M. Et Al. (2023) . "3D Printing of Extracellular Matrix-Based Multicomponent, All-Natural, Highly Elastic, and Functional Materials toward Vascular Tissue Engineering." ADVANCED HEALTHCARE MATERIALS , vol.12, no.20.
@article{article, author={Melis Isik Et Al. }, title={3D Printing of Extracellular Matrix-Based Multicomponent, All-Natural, Highly Elastic, and Functional Materials toward Vascular Tissue Engineering}, journal={ADVANCED HEALTHCARE MATERIALS}, year=2023}