B. Dedekargınoğlu Et Al. , "Rapid prototyping of microfluidic co-culture platform based on a 3D printing workflow for systematic investigation of tumor stromal interactions," The 2nd Microphysiological Systems World Summit , vol.11, no.1, Berlin, Germany, pp.200, 2023
Dedekargınoğlu, B. Et Al. 2023. Rapid prototyping of microfluidic co-culture platform based on a 3D printing workflow for systematic investigation of tumor stromal interactions. The 2nd Microphysiological Systems World Summit , (Berlin, Germany), 200.
Dedekargınoğlu, B., Ildız, C., Acar, A., & Özçelikkale, A., (2023). Rapid prototyping of microfluidic co-culture platform based on a 3D printing workflow for systematic investigation of tumor stromal interactions . The 2nd Microphysiological Systems World Summit (pp.200). Berlin, Germany
Dedekargınoğlu, Barış Et Al. "Rapid prototyping of microfluidic co-culture platform based on a 3D printing workflow for systematic investigation of tumor stromal interactions," The 2nd Microphysiological Systems World Summit, Berlin, Germany, 2023
Dedekargınoğlu, Barış Et Al. "Rapid prototyping of microfluidic co-culture platform based on a 3D printing workflow for systematic investigation of tumor stromal interactions." The 2nd Microphysiological Systems World Summit , Berlin, Germany, pp.200, 2023
Dedekargınoğlu, B. Et Al. (2023) . "Rapid prototyping of microfluidic co-culture platform based on a 3D printing workflow for systematic investigation of tumor stromal interactions." The 2nd Microphysiological Systems World Summit , Berlin, Germany, p.200.
@conferencepaper{conferencepaper, author={Barış Dedekargınoğlu Et Al. }, title={Rapid prototyping of microfluidic co-culture platform based on a 3D printing workflow for systematic investigation of tumor stromal interactions}, congress name={The 2nd Microphysiological Systems World Summit}, city={Berlin}, country={Germany}, year={2023}, pages={200} }