The additive manufacturing of highly ordered, micrometer‐scale scaffolds is at the forefront of tissue engineering and regenerative medicine research. The fabrication of scaffolds for the regeneration of larger tissue volumes, in particular, remains a major challenge. A technology at the convergence of additive manufacturing and electrospinning–melt electrospinning writing (MEW)–is also limited in thickness/volume due to the accumulation of excess charge from the deposited material repelling and hence, distorting scaffold architectures. The underlying physical principles are studied that constrain MEW of thick, large volume scaffolds. Through computational modeling, numerical values variable working distances are established respectively, w...
The aim of this study was to explore the lower resolution limits of an electrohydrodynamic process c...
The electrohydrodynamic stabilization of direct‐written fluid jets is explored to design and manufac...
Direct writing melt electrospinning is an additive manufacturing technique capable of the layer-by-l...
The additive manufacturing of highly ordered, micrometer‐scale scaffolds is at the forefront of tiss...
The additive manufacturing of highly ordered, micrometer‐scale scaffolds is at the forefront of tiss...
Considering the complexity of natural tissues, a major challenge in tissue engineering applications ...
Direct writing melt electrospinning is an additive manufacturing technique capable of the layer-by-l...
Three-dimensionally (3D) printed scaffolds and cell culture lattices with microscale features are in...
Three-dimensionally (3D) printed scaffolds and cell culture lattices with microscale features are in...
This tutorial reflects on the fundamental principles and guidelines for electrospinning writing with...
This tutorial reflects on the fundamental principles and guidelines for electrospinning writing with...
The aim of this study was to explore the lower resolution limits of an electrohydrodynamic process c...
The aim of this study was to explore the lower resolution limits of an electrohydrodynamic process c...
The aim of this study was to explore the lower resolution limits of an electrohydrodynamic process c...
The aim of this study was to explore the lower resolution limits of an electrohydrodynamic process\u...
The aim of this study was to explore the lower resolution limits of an electrohydrodynamic process c...
The electrohydrodynamic stabilization of direct‐written fluid jets is explored to design and manufac...
Direct writing melt electrospinning is an additive manufacturing technique capable of the layer-by-l...
The additive manufacturing of highly ordered, micrometer‐scale scaffolds is at the forefront of tiss...
The additive manufacturing of highly ordered, micrometer‐scale scaffolds is at the forefront of tiss...
Considering the complexity of natural tissues, a major challenge in tissue engineering applications ...
Direct writing melt electrospinning is an additive manufacturing technique capable of the layer-by-l...
Three-dimensionally (3D) printed scaffolds and cell culture lattices with microscale features are in...
Three-dimensionally (3D) printed scaffolds and cell culture lattices with microscale features are in...
This tutorial reflects on the fundamental principles and guidelines for electrospinning writing with...
This tutorial reflects on the fundamental principles and guidelines for electrospinning writing with...
The aim of this study was to explore the lower resolution limits of an electrohydrodynamic process c...
The aim of this study was to explore the lower resolution limits of an electrohydrodynamic process c...
The aim of this study was to explore the lower resolution limits of an electrohydrodynamic process c...
The aim of this study was to explore the lower resolution limits of an electrohydrodynamic process\u...
The aim of this study was to explore the lower resolution limits of an electrohydrodynamic process c...
The electrohydrodynamic stabilization of direct‐written fluid jets is explored to design and manufac...
Direct writing melt electrospinning is an additive manufacturing technique capable of the layer-by-l...