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Effects of liquid-to-solid ratio and gamma irradiation on the rheology and cytocompatibility of a beta-tricalcium phosphate-based injectable bone substitute
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D. Ozdil Et Al. , "Effects of liquid-to-solid ratio and gamma irradiation on the rheology and cytocompatibility of a beta-tricalcium phosphate-based injectable bone substitute," Journal of Biomaterials Science, Polymer Edition , 2024

Ozdil, D. Et Al. 2024. Effects of liquid-to-solid ratio and gamma irradiation on the rheology and cytocompatibility of a beta-tricalcium phosphate-based injectable bone substitute. Journal of Biomaterials Science, Polymer Edition .

Ozdil, D., GÜNAL KARATAŞ, G., Tevlek, A., & AYDIN, H. M., (2024). Effects of liquid-to-solid ratio and gamma irradiation on the rheology and cytocompatibility of a beta-tricalcium phosphate-based injectable bone substitute. Journal of Biomaterials Science, Polymer Edition .

Ozdil, Deniz Et Al. "Effects of liquid-to-solid ratio and gamma irradiation on the rheology and cytocompatibility of a beta-tricalcium phosphate-based injectable bone substitute," Journal of Biomaterials Science, Polymer Edition , 2024

Ozdil, Deniz Et Al. "Effects of liquid-to-solid ratio and gamma irradiation on the rheology and cytocompatibility of a beta-tricalcium phosphate-based injectable bone substitute." Journal of Biomaterials Science, Polymer Edition , 2024

Ozdil, D. Et Al. (2024) . "Effects of liquid-to-solid ratio and gamma irradiation on the rheology and cytocompatibility of a beta-tricalcium phosphate-based injectable bone substitute." Journal of Biomaterials Science, Polymer Edition .

@article{article, author={Deniz Ozdil Et Al. }, title={Effects of liquid-to-solid ratio and gamma irradiation on the rheology and cytocompatibility of a beta-tricalcium phosphate-based injectable bone substitute}, journal={Journal of Biomaterials Science, Polymer Edition}, year=2024}