Publication type: Conference other
Type of review: Not specified
Title: Fluid flow simulations in a porous scaffold to improve co-cultivation of human mesenchymal stem cells and human microvascular endothelial cells for bone tissue engineering
Authors: Jossen, Valentin
Eibl, Dieter
et. al: No
Conference details: BMT Dreiländertagung, Basel, Switzerland, 4-6 October 2016
Issue Date: Oct-2016
Language: English
Subject (DDC): 610.28: Biomedicine, biomedical engineering
URI: https://digitalcollection.zhaw.ch/handle/11475/22080
Fulltext version: Published version
License (according to publishing contract): Licence according to publishing contract
Departement: Life Sciences and Facility Management
Organisational Unit: Institute of Chemistry and Biotechnology (ICBT)
Appears in collections:Publikationen Life Sciences und Facility Management

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Jossen, V., & Eibl, D. (2016, October). Fluid flow simulations in a porous scaffold to improve co-cultivation of human mesenchymal stem cells and human microvascular endothelial cells for bone tissue engineering. BMT Dreiländertagung, Basel, Switzerland, 4-6 October 2016.
Jossen, V. and Eibl, D. (2016) ‘Fluid flow simulations in a porous scaffold to improve co-cultivation of human mesenchymal stem cells and human microvascular endothelial cells for bone tissue engineering’, in BMT Dreiländertagung, Basel, Switzerland, 4-6 October 2016.
V. Jossen and D. Eibl, “Fluid flow simulations in a porous scaffold to improve co-cultivation of human mesenchymal stem cells and human microvascular endothelial cells for bone tissue engineering,” in BMT Dreiländertagung, Basel, Switzerland, 4-6 October 2016, Oct. 2016.
JOSSEN, Valentin und Dieter EIBL, 2016. Fluid flow simulations in a porous scaffold to improve co-cultivation of human mesenchymal stem cells and human microvascular endothelial cells for bone tissue engineering. In: BMT Dreiländertagung, Basel, Switzerland, 4-6 October 2016. Conference presentation. Oktober 2016
Jossen, Valentin, and Dieter Eibl. 2016. “Fluid Flow Simulations in a Porous Scaffold to Improve Co-Cultivation of Human Mesenchymal Stem Cells and Human Microvascular Endothelial Cells for Bone Tissue Engineering.” Conference presentation. In BMT Dreiländertagung, Basel, Switzerland, 4-6 October 2016.
Jossen, Valentin, and Dieter Eibl. “Fluid Flow Simulations in a Porous Scaffold to Improve Co-Cultivation of Human Mesenchymal Stem Cells and Human Microvascular Endothelial Cells for Bone Tissue Engineering.” BMT Dreiländertagung, Basel, Switzerland, 4-6 October 2016, 2016.


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