[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Han et al., 2008 - Google Patents

Projection microfabrication of three-dimensional scaffolds for tissue engineering

Han et al., 2008

View PDF
Document ID
10029595486050640174
Author
Han L
Mapili G
Chen S
Roy K
Publication year

External Links

Snippet

This article presents a micromanufacturing method for direct projection printing of three- dimensional scaffolds for applications in the field of tissue engineering by using a digital micromirror-array device (DMD) in a layer-by-layer process. Multilayered scaffolds are …
Continue reading at schen.ucsd.edu (PDF) (other versions)

Similar Documents

Publication Publication Date Title
Han et al. Projection microfabrication of three-dimensional scaffolds for tissue engineering
Gojzewski et al. Layer-by-layer printing of photopolymers in 3D: How weak is the interface?
Lu et al. A digital micro‐mirror device‐based system for the microfabrication of complex, spatially patterned tissue engineering scaffolds
Selimis et al. Direct laser writing: Principles and materials for scaffold 3D printing
Soman et al. Spatial tuning of negative and positive Poisson’s ratio in a multi-layer scaffold
Weiß et al. Two‐photon polymerization for microfabrication of three‐dimensional scaffolds for tissue engineering application
Dendukuri et al. Modeling of oxygen-inhibited free radical photopolymerization in a PDMS microfluidic device
Ovsianikov et al. Three-dimensional laser micro-and nano-structuring of acrylated poly (ethylene glycol) materials and evaluation of their cytoxicity for tissue engineering applications
Hribar et al. Light-assisted direct-write of 3D functional biomaterials
Cui et al. 3D printing of a dual-curing resin with cationic curable vegetable oil
Danilevičius et al. Laser 3D micro/nanofabrication of polymers for tissue engineering applications
Corbel et al. Materials for stereolithography
Lu et al. Projection printing of 3-dimensional tissue scaffolds
Engelhardt Direct laser writing
Kim et al. Feasibility study of silicone stereolithography with an optically created dead zone
Li et al. Functional polymer sheet patterning using microfluidics
Lee et al. Liquid bridge microstereolithography
Arcaute et al. Practical use of hydrogels in stereolithography for tissue engineering applications
Hakim Khalili et al. Mechanical behavior of 3D printed poly (ethylene glycol) diacrylate hydrogels in hydrated conditions investigated using atomic force microscopy
Beke et al. 3D scaffold fabrication by mask projection excimer laser stereolithography
Maruyama et al. Multifunctional 3D printing of heterogeneous polymer structures by laser-scanning micro-stereolithography using reversible addition–fragmentation chain-transfer polymerization
Kreppenhofer et al. Formation of a polymer surface with a gradient of pore size using a microfluidic chip
Brown et al. Voxel-scale conversion mapping informs intrinsic resolution in stereolithographic additive manufacturing
Petrak et al. Automated, spatio‐temporally controlled cell microprinting with polymeric aqueous biphasic system
Huang et al. Visible light 3D printing of high-resolution superelastic microlattices of poly (ethylene glycol) diacrylate/graphene oxide nanocomposites via continuous liquid interface production