A. Samancioglu Et Al. , "Evaluating the Angiogenic and Mechanical Properties of Hydrogels and Physical Constructs Derived from Spinal Cord Meninges Extracellular Matrix," MATERIALS RESEARCH EXPRESS , vol.10, pp.85401, 2023
Samancioglu, A. Et Al. 2023. Evaluating the Angiogenic and Mechanical Properties of Hydrogels and Physical Constructs Derived from Spinal Cord Meninges Extracellular Matrix. MATERIALS RESEARCH EXPRESS , vol.10 , 85401.
Samancioglu, A., Aydin, B., Özüdoğru, E., & Arslan, Y. E., (2023). Evaluating the Angiogenic and Mechanical Properties of Hydrogels and Physical Constructs Derived from Spinal Cord Meninges Extracellular Matrix. MATERIALS RESEARCH EXPRESS , vol.10, 85401.
Samancioglu, Aybuke Et Al. "Evaluating the Angiogenic and Mechanical Properties of Hydrogels and Physical Constructs Derived from Spinal Cord Meninges Extracellular Matrix," MATERIALS RESEARCH EXPRESS , vol.10, 85401, 2023
Samancioglu, Aybuke Et Al. "Evaluating the Angiogenic and Mechanical Properties of Hydrogels and Physical Constructs Derived from Spinal Cord Meninges Extracellular Matrix." MATERIALS RESEARCH EXPRESS , vol.10, pp.85401, 2023
Samancioglu, A. Et Al. (2023) . "Evaluating the Angiogenic and Mechanical Properties of Hydrogels and Physical Constructs Derived from Spinal Cord Meninges Extracellular Matrix." MATERIALS RESEARCH EXPRESS , vol.10, p.85401.
@article{article, author={Aybuke Samancioglu Et Al. }, title={Evaluating the Angiogenic and Mechanical Properties of Hydrogels and Physical Constructs Derived from Spinal Cord Meninges Extracellular Matrix}, journal={MATERIALS RESEARCH EXPRESS}, year=2023, pages={85401} }