Bruce Ryan Anderson

Works (4)

Updated: January 31st, 2025 05:01

2024 article

3D Melt Blowing of Elastollan Thermoplastic Polyurethane for Tissue Engineering Applications: A Pilot Study

Pawar, A., Anderson, B., Pourdeyhimi, B., McNulty, A. L., Fisher, M., & Shirwaiker, R. (2024, October). MANUFACTURING LETTERS, Vol. 41, pp. 357–363.

By: A. Pawar*, B. Anderson*, B. Pourdeyhimi*, A. McNulty, M. Fisher* & R. Shirwaiker*

author keywords: tissue engineering; nonwoven; meltblowing; musculoskeletal; scaffolds; thermoplastic polyurethane; Elastollan
Sources: Web Of Science, NC State University Libraries
Added: January 27, 2025

2022 journal article

Multiphase CFD Modeling and Experimental Validation of Polymer and Attenuating Air Jet Interactions in Nonwoven Annular Melt Blowing

INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 61(37), 13962–13971.

By: K. Schuchard n, A. Pawar n, B. Anderson n, B. Pourdeyhimi n & R. Shirwaiker n

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Sources: Web Of Science, NC State University Libraries
Added: September 26, 2022

2021 article

Fabrication of drug-loaded ultrafine polymer fibers via solution blowing and their drug release kinetics

49TH SME NORTH AMERICAN MANUFACTURING RESEARCH CONFERENCE (NAMRC 49, 2021), Vol. 53, pp. 128–135.

By: K. Schuchard n, A. Joijode n, V. Willard*, B. Anderson n, P. Grondin n, B. Pourdeyhimi n, R. Shirwaiker n

author keywords: solution blowing; biofabrication; fibers; doxycycline; drug release
Sources: Web Of Science, NC State University Libraries
Added: October 24, 2022

2020 journal article

High-Throughput Manufacture of 3D Fiber Scaffolds for Regenerative Medicine

TISSUE ENGINEERING PART C-METHODS, 26(7), 364–374.

By: R. Shirwaiker n, M. Fisher n, B. Anderson n, K. Schuchard n, P. Warren n, B. Maze n, P. Grondin n, F. Ligler n, B. Pourdeyhimi n

author keywords: 3D printing; melt blowing; fibers; scaffolds
MeSH headings : Animals; Biocompatible Materials / chemistry; Dogs; Hernia / therapy; Herniorrhaphy / methods; Polymers / chemistry; Printing, Three-Dimensional / instrumentation; Regenerative Medicine; Tissue Engineering / methods; Tissue Scaffolds / chemistry
TL;DR: The 3DMB system described in this study is modified from larger nonwovens manufacturing machinery to accommodate the lower volume, high-cost polymers used for tissue engineering and implantable biomedical devices and has a fiber collection component that uses adaptable robotics to create scaffolds with predetermined geometries. (via Semantic Scholar)
Sources: Web Of Science, NC State University Libraries
Added: August 10, 2020

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