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Light-based vat-polymerization bioprinting
Light-based vat-polymerization bioprinting enables computer-aided patterning of 3D cell-
laden structures in a point-by-point, layer-by-layer or volumetric manner, using vat (vats) …
laden structures in a point-by-point, layer-by-layer or volumetric manner, using vat (vats) …
Toward multiscale, multimaterial 3D printing
Biological materials and organisms possess the fundamental ability to self‐organize,
through which different components are assembled from the molecular level up to …
through which different components are assembled from the molecular level up to …
Light from Afield: Fast, High-Resolution, and Layer-Free Deep Vat 3D Printing: Focus Review
Harnessing light for cross-linking of photoresponsive materials has revolutionized the field of
3D printing. A wide variety of techniques leveraging broad-spectrum light sha** have …
3D printing. A wide variety of techniques leveraging broad-spectrum light sha** have …
From pixels to voxels: a mechanistic perspective on volumetric 3D-printing
The introduction of chemical and/or optical nonlinearity to 3D-printing has paved the way
towards volumetric 3D-printing, enabling remarkable advancements in speed, resolution …
towards volumetric 3D-printing, enabling remarkable advancements in speed, resolution …
Thermal Shrinking of Biopolymeric Hydrogels for High Resolution 3D Printing of Kidney Tubules
The effective replication of microtubular structures in tissue engineering remains a great
challenge. In this study, the temperature‐responsive characteristics of poly (N …
challenge. In this study, the temperature‐responsive characteristics of poly (N …
Embedding biomimetic vascular networks via coaxial sacrificial writing into functional tissue
Printing human tissues and organs replete with biomimetic vascular networks is of growing
interest. While it is possible to embed perfusable channels within acellular and densely …
interest. While it is possible to embed perfusable channels within acellular and densely …
Lithography-based 3D printing of hydrogels
Additive manufacturing is an engineering tool that enables the creation of complex
structures for biomedical use, such as 3D scaffolds for tissue engineering and regenerative …
structures for biomedical use, such as 3D scaffolds for tissue engineering and regenerative …
FLight biofabrication supports maturation of articular cartilage with anisotropic properties
Tissue engineering approaches that recapitulate cartilage biomechanical properties are
emerging as promising methods to restore the function of injured or degenerated tissue …
emerging as promising methods to restore the function of injured or degenerated tissue …
A Perfusable Multi‐Hydrogel Vasculature On‐Chip Engineered by 2‐Photon 3D Printing and Scaffold Molding to Improve Microfabrication Fidelity in Hydrogels
Engineering vasculature networks in physiologically relevant hydrogels represents a
challenge in terms of both fabrication, due to the cell–bioink interactions, as well as the …
challenge in terms of both fabrication, due to the cell–bioink interactions, as well as the …
[HTML][HTML] Towards single-cell bioprinting: micropatterning tools for organ-on-chip development
Abstract Organs-on-chips (OoCs) hold promise to engineer progressively more human-
relevant in vitro models for pharmaceutical purposes. Recent developments have delivered …
relevant in vitro models for pharmaceutical purposes. Recent developments have delivered …