Optimising degradation and mechanical performance of additively manufactured biodegradable Fe–Mn scaffolds using design strategies based on triply periodic minimal surfaces

Author:

Dargusch Matthew S.ORCID,Soro NicolasORCID,Demir Ali GokhanORCID,Venezuela Jeffrey,Sun Qiang,Wang Yuan,Abdal-hay Abdalla,Alali Aya Q.,Ivanovski Saso,Previtali Barbara,Kent Damon

Funder

Australian Research Council

Ministero dell’Istruzione, dell’Università e della Ricerca

Mater Foundation

Translational Research Institute Australia

Publisher

Elsevier BV

Subject

Biomedical Engineering,Biomaterials,Bioengineering

Reference69 articles.

1. Evolution of the internal fixation of long bone fractures;Perren;J. Bone Joint Surg.,2002

2. Fe–Mn alloys for metallic biodegradable stents: degradation and cell viability studies;Hermawan;Acta Biomater.,2010

3. Biodegradable materials and metallic implants-A review;Prakasam;J. Funct. Biomater.,2017

4. Current status and outlook on the clinical translation of biodegradable metals;Han;Mater. Today,2019

5. Addressing the slow corrosion rate of biodegradable Fe-Mn: current approaches and future trends;Venezuela;Curr. Opin. Solid State Mater. Sci.,2020

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