Works (2)

Updated: February 12th, 2024 13:56

2020 journal article

Poly(ε-Caprolactone) Resorbable Auxetic Designed Knitted Scaffolds for Craniofacial Skeletal Muscle Regeneration

Bioengineering, 7(4), 134.

By: M. Deshpande n, A. West n, S. Bernacki n, K. Luan n & M. King n

author keywords: auxetic design; biodegradable; craniofacial microsomia; knitted textile; muscle scaffold; negative Poisson’ s ratio
TL;DR: This study can facilitate the understanding and engineering of textile-based scaffolds for tissues/organs and paves a pathway to emerge the NPR textiles into tissue engineering, which has an extensive potential for biomedical end-uses. (via Semantic Scholar)
Source: ORCID
Added: October 26, 2020

2019 chapter

Structural Design, Fabrication and Evaluation of Resorbable Fiber-Based Tissue Engineering Scaffolds

In & L. Q. Z. (E. In E. Jacob-Lopes (Ed.), Biotechnology and Bioengineering.

By: M. King, J. Chen, M. Deshpande*, T. He, H. Ramakrishna, Y. Xie, F. Zhang*, F. Zhao

Ed(s): &. In E. Jacob-Lopes

TL;DR: This chapter will explain the unique advantages of using textile technologies for tissue engineering scaffold fabrication, and will delineate the differences in design, fabrication and performance of woven, warp and weft knitted, braided, nonwoven and electrospun scaffolds. (via Semantic Scholar)
Source: ORCID
Added: February 16, 2020

Education

Updated: February 11th, 2020 16:13

2018 - present

North Carolina State University Raleigh, North Carolina, US
PhD in Fiber and Polymer Science Textile Engineering, Chemistry and Sciences

2016 - 2019

North Carolina State University Raleigh, North Carolina, US
MS in Textile Engineering Textile Engineering, Chemistry and Sciences

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