Results 91 to 100 of about 174,022 (169)
This dataset contains stitched microscope image data of tubular scaffolds printed using melt-electrowriting (MEW). The images were used in the paper "Fiber Deviation and Optimized Toolpath Strategies in Melt Electrowriting of Tubular Scaffolds" by ...
Webering, Fritz
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Adoption of nonlinear toolpaths has emerged as a promising strategy to enhance the biomimicry of scaffolds fabricated by melt electrowriting (MEW). However, a critical methodological gap remains: how to design a nonlinear toolpath that precisely conforms
Chengzu Li +5 more
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Over the last two decades, additive manufacturing has been gaining significant attention in tissue engineering and biofabrication research as a versatile class of manufacturing technologies. For biomedical research, high resolution 3D printing techniques,
Bertsch, Arnaud +3 more
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Skeletal muscle function relies on uniaxially organized myofibers, whose aligned extracellular matrix provides instructive topographical cues that regulate myogenic behavior.
Camilla Mussoni +10 more
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Chemical diffusion of fluorine in jadeite melt at high pressure [PDF]
The chemical diffusion of fluorine in jadeite melt has been investigated from 10 to 15 kbars and 1200 to 1400°C using diffusion couples of Jadeite melt and fluorine-bearing jadeite melt (6.3 wt.% F). The diffusion profile data indicate that the diffusion
Scarfe, Christopher M. +1 more
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Software image for the assembly of a tubular and syringe based MEWron
Melt electrowriting (MEW) is a distinct class of additive manufacturing technologies that generates fibrous and porous macrostructures with microscale resolution from an electrically charged molten polymer.
Menke, Sönke, Tandon, Biranche
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Modeling and design of programmable fiber-reinforced hydrogels
Natural tissues often exhibit “J-shaped” stress-strain responses, combining flexibility with high extensibility. This study fabricated parametric ultrafine fiber networks (UFNs) with sinusoidal rhombic lattices via Melt Electrowriting, embedding them in ...
Haoxiang Chen, Licheng Hua, Yuan Jin
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Melt electrowritten poly-lactic acid /nanodiamond scaffolds towards wound-healing patches
Multifunctional wound dressings, enriched with biologically active agents for preventing or treating infections and promoting wound healing, along with cell delivery capability, are highly needed. To address this issue, composite scaffolds with potential
Xixi Wu +6 more
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A Methodological Study on Expanding the Microarchitectural Design Space of Melt Electrowriting
Melt electrowriting (MEW), an advanced additive manufacturing technique for fabricating microfibers, has demonstrated significant potential in tissue engineering applications.
Kai Cao +7 more
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Micrometer-Scale Biofabricated Scaffolds by Melt Electrowriting for Pediatric Cardiac Surgery
reservedBackground: Congenital heart diseases are the most common and lethal form of congenital malformations. Among them, congenital aortic stenosis is a progressive condition that can require early surgery. Among the best treatments in this setting is
DE ANGELIS, ELEONORA
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