Fusion of uniluminal vascular spheroids: a model for assembly of blood vessels.
about
Scaffold-free tissue engineering: organization of the tissue cytoskeleton and its effects on tissue shape'In parallel' interconnectivity of the dorsal longitudinal anastomotic vessels requires both VEGF signaling and circulatory flowManipulating the microvasculature and its microenvironment.Biomaterials for integration with 3-D bioprinting.3D printing facilitated scaffold-free tissue unit fabrication.Recent Advances in Bioink Design for 3D Bioprinting of Tissues and Organs3D Printing for Tissue Engineering.Tissue engineering by self-assembly and bio-printing of living cells.The murine allantois: a model system for the study of blood vessel formation.Soft matter models of developing tissues and tumors.Dorsal aorta formation: separate origins, lateral-to-medial migration, and remodeling.Directed self-assembly of large scaffold-free multi-cellular honeycomb structures.3D Bioprinting for Vascularized Tissue Fabrication.Scaffold-free formation of a millimeter-scale multicellular spheroid with an internal cavity from magnetically levitated 3T3 cells that ingested iron oxide-containing microspheres.Current Technologies Based on the Knowledge of the Stem Cells Microenvironments.Toward Customized Extracellular Niche Engineering: Progress in Cell-Entrapment Technologies.Kinetic Monte Carlo and cellular particle dynamics simulations of multicellular systems.Vascularized Cardiac Spheroids as Novel 3D in vitro Models to Study Cardiac Fibrosis.In vitro formation and characterization of a perfusable three-dimensional tubular capillary network in microfluidic devices.A lab-on-a-chip device for investigating the fusion process of olfactory ensheathing cell spheroids.Self-assembly of tissue spheroids on polymeric membranes.Directed fusion of cardiac spheroids into larger heterocellular microtissues enables investigation of cardiac action potential propagation via cardiac fibroblasts.Progress in scaffold-free bioprinting for cardiovascular medicine.A Novel Strategy for Creating Tissue-Engineered Biomimetic Blood Vessels Using 3D Bioprinting Technology
P2860
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P2860
Fusion of uniluminal vascular spheroids: a model for assembly of blood vessels.
description
2010 nî lūn-bûn
@nan
2010 թուականի Փետրուարին հրատարակուած գիտական յօդուած
@hyw
2010 թվականի փետրվարին հրատարակված գիտական հոդված
@hy
2010年の論文
@ja
2010年論文
@yue
2010年論文
@zh-hant
2010年論文
@zh-hk
2010年論文
@zh-mo
2010年論文
@zh-tw
2010年论文
@wuu
name
Fusion of uniluminal vascular spheroids: a model for assembly of blood vessels.
@ast
Fusion of uniluminal vascular spheroids: a model for assembly of blood vessels.
@en
type
label
Fusion of uniluminal vascular spheroids: a model for assembly of blood vessels.
@ast
Fusion of uniluminal vascular spheroids: a model for assembly of blood vessels.
@en
prefLabel
Fusion of uniluminal vascular spheroids: a model for assembly of blood vessels.
@ast
Fusion of uniluminal vascular spheroids: a model for assembly of blood vessels.
@en
P2093
P2860
P356
P1476
Fusion of uniluminal vascular spheroids: a model for assembly of blood vessels.
@en
P2093
Adrian Neagu
Carmine Gentile
Christopher J Drake
Gabor Forgacs
Paul A Fleming
W Scott Argraves
P2860
P304
P356
10.1002/DVDY.22161
P577
2010-02-01T00:00:00Z