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Magnetically Actuated GelMA-Based Scaffolds as a Strategy to Generate Complex Bioprinted Tissues
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E. Ergene Et Al. , "Magnetically Actuated GelMA-Based Scaffolds as a Strategy to Generate Complex Bioprinted Tissues," Advanced Materials Technologies , vol.9, no.17, 2024

Ergene, E. Et Al. 2024. Magnetically Actuated GelMA-Based Scaffolds as a Strategy to Generate Complex Bioprinted Tissues. Advanced Materials Technologies , vol.9, no.17 .

Ergene, E., Liman, G., Yılgör Huri, P., & Demirel, G., (2024). Magnetically Actuated GelMA-Based Scaffolds as a Strategy to Generate Complex Bioprinted Tissues. Advanced Materials Technologies , vol.9, no.17.

Ergene, Emre Et Al. "Magnetically Actuated GelMA-Based Scaffolds as a Strategy to Generate Complex Bioprinted Tissues," Advanced Materials Technologies , vol.9, no.17, 2024

Ergene, Emre Et Al. "Magnetically Actuated GelMA-Based Scaffolds as a Strategy to Generate Complex Bioprinted Tissues." Advanced Materials Technologies , vol.9, no.17, 2024

Ergene, E. Et Al. (2024) . "Magnetically Actuated GelMA-Based Scaffolds as a Strategy to Generate Complex Bioprinted Tissues." Advanced Materials Technologies , vol.9, no.17.

@article{article, author={Emre Ergene Et Al. }, title={Magnetically Actuated GelMA-Based Scaffolds as a Strategy to Generate Complex Bioprinted Tissues}, journal={Advanced Materials Technologies}, year=2024}