Results 1 to 10 of about 174,022 (169)

Melt Electrowriting of Complex 3D Anatomically Relevant Scaffolds [PDF]

open access: yesFrontiers in Bioengineering and Biotechnology, 2020
The manufacture of fibrous scaffolds with tailored micrometric features and anatomically relevant three-dimensional (3D) geometries for soft tissue engineering applications remains a great challenge.
Petra Mela, Onur Bas
exaly   +12 more sources

Advances in melt electrowriting for cardiovascular applications [PDF]

open access: yesFrontiers in Bioengineering and Biotechnology
Melt electrowriting (MEW) is an electric-field-assisted additive biofabrication technique that has brought significant advancements to bioinspired scaffold design for soft tissue engineering and beyond. Owing to its targeted microfiber placement, MEW has
Petra Mela, Elena M De-Juan-Pardo
exaly   +6 more sources

Unveiling the potential of melt electrowriting in regenerative dental medicine [PDF]

open access: yesActa Biomaterialia, 2023
For nearly three decades, tissue engineering strategies have been leveraged to devise effective therapeutics for dental, oral, and craniofacial (DOC) regenerative medicine and treat permanent deformities caused by many debilitating health conditions. In this regard, additive manufacturing (AM) allows the fabrication of personalized scaffolds that have ...
Marco C Bottino   +2 more
exaly   +9 more sources

Understanding the Significance of Layer Bonding in Melt Electrowriting [PDF]

open access: yesAdvanced Science
Melt electrowriting (MEW) is a high‐resolution additive manufacturing technology capable of depositing micrometric fibers onto a moving collector to form 3D scaffolds of controlled mechanical properties.
Christopher D. Lamb   +7 more
doaj   +6 more sources

Convergence of Machine Vision and Melt Electrowriting. [PDF]

open access: yesAdv Mater, 2021
AbstractMelt electrowriting (MEW) is a high‐resolution additive manufacturing technology that balances multiple parametric variables to arrive at a stable fabrication process. The better understanding of this balance is underscored here using high‐resolution camera vision of jet stability profiles in different electrical fields.
Mieszczanek P   +3 more
europepmc   +7 more sources

Integrating Fused Deposition Modeling and Melt Electrowriting for Engineering Branched Vasculature [PDF]

open access: yesBiomedicines, 2023
We demonstrate for the first time the combination of two additive manufacturing technologies used in tandem, fused deposition modelling (FDM) and melt electrowriting (MEW), to increase the range of possible MEW structures, with a focus on creating ...
Jaydee Cabral, Quinn Thorsnes
exaly   +4 more sources

Auxetic tubular scaffolds via melt electrowriting

open access: yesMaterials and Design, 2020
Auxetics are an interesting class of materials that expand in transverse directions when tensile loading is applied. For example, in contrast to conventional materials, an auxetic tube will increase in diameter when stretched along its axis.
Maria Woodruff   +2 more
exaly   +7 more sources

Biomimetic Tympanic Membrane Replacement Made by Melt Electrowriting [PDF]

open access: yesAdvanced Healthcare Materials, 2021
AbstractThe tympanic membrane (TM) transfers sound waves from the air into mechanical motion for the ossicular chain. This requires a high sensitivity to small dynamic pressure changes and resistance to large quasi‐static pressure differences. The TM achieves this by providing a layered structure of about 100µm in thickness, a low flexural stiffness ...
Thomas Stoppe   +2 more
exaly   +5 more sources

Polymers for Melt Electrowriting. [PDF]

open access: yesAdv Healthc Mater, 2021
AbstractMelt electrowriting (MEW) is an emerging high‐resolution additive manufacturing technique based on the electrohydrodynamic processing of polymers. MEW is predominantly used to fabricate scaffolds for biomedical applications, where the microscale fiber positioning has substantial implications in its macroscopic mechanical properties. This review
Kade JC, Dalton PD.
europepmc   +4 more sources

Filament‐Based Melt Electrowriting Enables Dual‐Mode Additive Manufacturing for Multiscale Constructs [PDF]

open access: yesSmall Science, 2023
Melt electrowriting (MEW) is an electric‐field‐assisted fiber‐forming biofabrication strategy for the additive manufacturing (AM) of precisely defined 3D microarchitectures.
Kilian Maria Arthur Mueller   +7 more
doaj   +2 more sources

Home - About - Disclaimer - Privacy