Center for Additive Manufacturing and Logistics

Works Published in 2020

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2020 journal article

Mechanical properties of tissue formed in vivo are affected by 3D-bioplotted scaffold microarchitecture and correlate with ECM collagen fiber alignment

CONNECTIVE TISSUE RESEARCH, 61(2), 190–204.

author keywords: 3D printing; atomic force microscopy; elastic modulus; tissue engineering; tissue scaffolds
MeSH headings : Animals; Bioprinting; Collagen / chemistry; Extracellular Matrix / chemistry; Male; Polyesters / chemistry; Printing, Three-Dimensional; Rats; Rats, Sprague-Dawley; Tissue Engineering; Tissue Scaffolds / chemistry
TL;DR: The findings demonstrate the significant effects of 3D-bioplotted scaffold microarchitectures in the organization and sub-tissue-level mechanical properties of ECM in vivo. (via Semantic Scholar)
UN Sustainable Development Goal Categories
5. Gender Equality (Web of Science)
Source: Web Of Science
Added: August 26, 2019

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