Results 191 to 200 of about 1,467,453 (379)
Leg ulceration after pulsed dye laser treatment of a vascular malformation [PDF]
Steven R. Lamb, Robert A. Sheehan‐Dare
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Tuning the Morphological Properties of Granular Hydrogels to Control Lymphatic Capillary Formation
Tuning the morphological properties of granular hydrogels is essential to generate robust lymphatic capillary networks that express key lymphatic gene and protein markers. The study demonstrates that 3D in vitro lymphatic tube formation is controlled not by the mechanical properties of the gel, but by the pore size and topology (periodicity) of the gel
Daniel Montes+7 more
wiley +1 more source
An engineered in vitro platform mimicking stent strut cross‐sectional shapes reveals how geometry influences cell behavior. Sharp‐cornered geometries promote cell proliferation and matrix alignment, while rounded shapes reduce these effects. The findings align with clinical outcomes and suggest intracellular tension as a key driver, offering a ...
Emmie J.D. Schoutens+5 more
wiley +1 more source
Targeted Therapies for Slow-Flow Vascular Malformations. [PDF]
Li GX, Sebaratnam DF, Pham JP.
europepmc +1 more source
Stereotactic Radiosurgery of Angiographically Occult Vascular Malformations: 14-Year Experience
Steven D. Chang+5 more
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Triangular face and vascular malformation. The links to renal failure [PDF]
A. Wauters
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4D Bioprinted Self‐Folding Scaffolds Enhance Cartilage Formation in the Engineering of Trachea
A bilayer self‐folding scaffold, triggerable by humidity, is fabricated via 4D bioprinting for trachea engineering. An analytical model is derived to predict its radius of curvature, enabling its scalability. Cartilage progenitor cells seeded on the scaffold perceive scaffold final curvature and react to it, by enhancing the upregulation of pro ...
Irene Chiesa+4 more
wiley +1 more source
OC024: The congenital nature of vascular malformations [PDF]
P. Lasjaunias
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