Characterization of the acetabular labrum articular surface and its translation into biomimetic graft design [PDF]
BackgroundThe acetabular labrum contributes to hip joint stability and lubrication, yet its articular surface properties remain poorly characterized. Understanding and replicating these surface features is critical for developing functional labral grafts.
Matthias X. T. Santschi +8 more
doaj +2 more sources
Melt Electrowriting of Graded Porous Scaffolds to Mimic the Matrix Structure of the Human Trabecular Meshwork [PDF]
Aranzazu del Campo +2 more
exaly +2 more sources
3D Plotting of Calcium Phosphate Cement and Melt Electrowriting of Polycaprolactone Microfibers in One Scaffold: A Hybrid Additive Manufacturing Process [PDF]
Anja Lode +2 more
exaly +2 more sources
Melt Electrowriting High Resolution Poly(ethylene-co-vinyl acetate) Scaffolds for Soft Tissue Engineering. [PDF]
This work pioneers melt electrowriting (MEW) of polyethylene vinyl acetate (PEVA) to fabricate ultra‐compliant, high‐resolution scaffolds. By integrating microscale precision with soft tissue‐like biomechanics, PEVA overcomes stiffness‐driven limitations of conventional MEW polymers, establishing a mechanically biomimetic platform for soft tissue ...
Snow F +9 more
europepmc +2 more sources
Melt electrowriting to produce microfiber fragments [PDF]
sponsorship: This work was supported by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation)-Project number 326998133-TRR 225 (sub-projects A04 and A07). We appreciate the German Research Foundation (DFG) State Major Instrumentation Program for funding the Zeiss Crossbeam CB 340 SEM (INST 105022/58-1 FUGG). Proof-reading by B.
Hannah Haag +3 more
openaire +3 more sources
Repair or reconstruction of a degenerated or injured acetabular labrum is essential to the stability and health of the hip joint. Current methods for restoration fail to reproduce the structure and mechanical properties of the labrum.
Matthias X. T. Santschi +5 more
doaj +1 more source
Development of a Melt Electrowriting 3D Printer
Goal of the thesis: This thesis was made to describe the techniques, processes, problems and solutions encountered during the development of the Melt Electrowriting Machine. The main focus is to allow better printing of planar meshes, new systems for tubular meshes, and general quality of printing improvements.
TRONCHIN, LUDOVICO
openaire +2 more sources
Introducing Controlled Microporosity in Melt Electrowriting
AbstractMelt electrowriting (MEW) enables the electric field‐assisted digital fabrication of precisely defined scaffold architectures of micron‐sized fibers. However, charge accumulation and consequent disruption of the precoded pattern by fiber bridging prevents controlled printing at small interfiber distances.
Kilian Maria Arthur Mueller +6 more
openaire +1 more source
Highly Porous and Drug-Loaded Amorphous Solid Dispersion Microfiber Scaffolds of Indomethacin Prepared by Melt Electrowriting [PDF]
Melt electrowriting (MEW) is an additive manufacturing technology enabling the production of highly porous microfiber scaffolds, suggested in particular for use in biomedical applications, including drug delivery.
Juliane C., Kade +15 more
core +2 more sources
3D biomaterials produced by near-field electrospinning and melt electrowriting [PDF]
Near-field electrospinning and melt electrowriting are attractive techniques that can be used to produce polymeric nano- or microfibres and build three-dimensional (3D) shapes that can be used in biotechnology and biomedicine.
Kola Ilda +3 more
doaj +1 more source

