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Mylène de Ruijter

Showing results (1-10 of 21) with videos related to

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Advanced Healthcare Materials|June 19, 2018
Simultaneous Micropatterning of Fibrous Meshes and Bioinks for the Fabrication of Living Tissue ConstructsMylène de Ruijter, Alexandre Ribeiro, Inge Dokter, et al.
Advanced Healthcare Materials|June 8, 2025
Engineering Anisotropic Mechanical Properties in Large-Scale Fabricated Cartilage Constructs Using Microfiber ReinforcementLennard Spauwen, Alba Pueyo Moliner, Patrick van Veenendaal, et al.
Materials Today. Bio|February 3, 2025
In-vivo and ex-vivo evaluation of bio-inspired structures fabricated via PBF-LB for biomedical applicationsMiguel Araya, Antti Järvenpää, Timo Rautio, et al.
Nature Reviews. Rheumatology|March 29, 2025
Restoring articular cartilage: insights from structure, composition and developmentAlba Pueyo Moliner, Keita Ito, Frank Zaucke, et al.
Trends in Biotechnology|May 30, 2020
Multitechnology Biofabrication: A New Approach for the Manufacturing of Functional Tissue Structures?Miguel Castilho, Mylène de Ruijter, Stephen Beirne, et al.
Materials & Design|October 22, 2020
Melt electrowriting onto anatomically relevant biodegradable substrates: Resurfacing a diarthrodial jointQuentin C Peiffer, Mylène de Ruijter, Joost van Duijn, et al.
Journal of the Mechanical Behavior of Biomedical Materials|June 7, 2023
Load-induced fluid pressurisation in hydrogel systems before and after reinforcement by melt-electrowritten fibrous meshesEng Kuan Moo, Mohammadhossein Ebrahimi, Andrei Hrynevich, et al.
Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|September 18, 2024
A hybrid repair strategy for full-thickness cartilage defects: Long-term experimental study in eight horsesMaria C Fugazzola, Mylène De Ruijter, Stefanie Veraa, et al.
Small (Weinheim an Der Bergstrasse, Germany)|December 15, 2017
Out-of-Plane 3D-Printed Microfibers Improve the Shear Properties of Hydrogel CompositesMylène de Ruijter, Andrei Hrynevich, Jodie N Haigh, et al.
Biofabrication|January 10, 2020
Combining multi-scale 3D printing technologies to engineer reinforced hydrogel-ceramic interfacesPaweena Diloksumpan, Mylène de Ruijter, Miguel Castilho, et al.
Pageof 3

Showing results (1-10 of 21) with videos related to

Sort By:
Pageof 3
Advanced Healthcare Materials|June 19, 2018
Simultaneous Micropatterning of Fibrous Meshes and Bioinks for the Fabrication of Living Tissue ConstructsMylène de Ruijter, Alexandre Ribeiro, Inge Dokter, et al.
Advanced Healthcare Materials|June 8, 2025
Engineering Anisotropic Mechanical Properties in Large-Scale Fabricated Cartilage Constructs Using Microfiber ReinforcementLennard Spauwen, Alba Pueyo Moliner, Patrick van Veenendaal, et al.
Materials Today. Bio|February 3, 2025
In-vivo and ex-vivo evaluation of bio-inspired structures fabricated via PBF-LB for biomedical applicationsMiguel Araya, Antti Järvenpää, Timo Rautio, et al.
Nature Reviews. Rheumatology|March 29, 2025
Restoring articular cartilage: insights from structure, composition and developmentAlba Pueyo Moliner, Keita Ito, Frank Zaucke, et al.
Trends in Biotechnology|May 30, 2020
Multitechnology Biofabrication: A New Approach for the Manufacturing of Functional Tissue Structures?Miguel Castilho, Mylène de Ruijter, Stephen Beirne, et al.
Materials & Design|October 22, 2020
Melt electrowriting onto anatomically relevant biodegradable substrates: Resurfacing a diarthrodial jointQuentin C Peiffer, Mylène de Ruijter, Joost van Duijn, et al.
Journal of the Mechanical Behavior of Biomedical Materials|June 7, 2023
Load-induced fluid pressurisation in hydrogel systems before and after reinforcement by melt-electrowritten fibrous meshesEng Kuan Moo, Mohammadhossein Ebrahimi, Andrei Hrynevich, et al.
Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|September 18, 2024
A hybrid repair strategy for full-thickness cartilage defects: Long-term experimental study in eight horsesMaria C Fugazzola, Mylène De Ruijter, Stefanie Veraa, et al.
Small (Weinheim an Der Bergstrasse, Germany)|December 15, 2017
Out-of-Plane 3D-Printed Microfibers Improve the Shear Properties of Hydrogel CompositesMylène de Ruijter, Andrei Hrynevich, Jodie N Haigh, et al.
Biofabrication|January 10, 2020
Combining multi-scale 3D printing technologies to engineer reinforced hydrogel-ceramic interfacesPaweena Diloksumpan, Mylène de Ruijter, Miguel Castilho, et al.
Pageof 3