Research progress of biodegradable magnesium-based biomedical materials: A review

J Wang, J Dou, Z Wang, C Hu, H Yu, C Chen - Journal of Alloys and …, 2022 - Elsevier
This review covers several aspects of the rapid development of magnesium (Mg) alloys from
the owned properties and corrosion mechanism to the effect of optimization of mechanical …

[PDF][PDF] A Review of Advances in the Development of Bioresorbable Nano Stents: Part (II)

ARM Sikkander, H Yadav, M Meena, VV Lakshmi - J. Chem. Rev, 2024 - sid.ir
Archive of SID.ir Archive of SID.ir Page 1 2024, Volume 6, Issue 3 304 Journal of Chemical
Reviews *Corresponding Author: Abdul Razak Mohamed Sikkander (ams240868@gmail.com ) …

[HTML][HTML] Structural and temporal dynamics analysis on drug-eluting stents: history, research hotspots and emerging trends

L Tan, X Wang, K Yuan, T Yin, R Du, L Shen, Z Zhu… - Bioactive Materials, 2023 - Elsevier
Purpose This review aims to explore the history, research hotspots, and emerging trends of
drug-eluting stents (DES) in the last two decades from the perspective of structural and …

Current state and future prospects of sensors for evaluating polymer biodegradability and sensors made from biodegradable polymers: A review

LM Koh, SM Khor - Analytica Chimica Acta, 2022 - Elsevier
Since the invention of fully synthetic plastic in the 1900s, plastics have been extensively
applied in various fields and represent a significant market due to their satisfactory …

Designing better cardiovascular stent materials: A learning curve

I Cockerill, CW See, ML Young… - Advanced functional …, 2021 - Wiley Online Library
Cardiovascular stents are life‐saving devices and one of the top ten medical breakthroughs
of the 21st century. Decades of research and clinical trials have taught us about the effects of …

Addressing the slow corrosion rate of biodegradable Fe-Mn: Current approaches and future trends

J Venezuela, MS Dargusch - Current Opinion in Solid State and Materials …, 2020 - Elsevier
The movement towards the commercialization of biodegradable Fe has been hampered by
the perceived slow degradation rate of the metal in physiological environments. The …

[HTML][HTML] Laser printed amorphous magnesium alloy: microstructure, mechanical properties and degradation behavior

C Chen, S Li, C Ling, Y Yang, C Gao, Y Li… - Journal of Materials …, 2023 - Elsevier
Amorphous magnesium (Mg) alloy, especially Mg–Zn–Ca series, has been receiving
continuous attention in biomedical field, because of its favorable corrosion resistance …

Ultrafine-and uniform-grained biodegradable Zn-0.5 Mn alloy: Grain refinement mechanism, corrosion behavior, and biocompatibility in vivo

P Guo, X Zhu, L Yang, L Deng, Q Zhang, BQ Li… - Materials Science and …, 2021 - Elsevier
An ultrafine-and uniform-grained Zn–0.5 Mn alloy (D3 alloy, stands for deformation rate of
99.5%) is fabricated via multi-pass drawing. The alloy features excellent ductility and …

A biodegradable magnesium alloy vascular stent structure: Design, optimisation and evaluation

Y Li, Y Wang, Z Shen, F Miao, J Wang, Y Sun, S Zhu… - Acta Biomaterialia, 2022 - Elsevier
The existing biodegradable magnesium alloy stent (BMgS) structure is prone to problems,
such as insufficient support capacity and early fracture at areas of concentrated stress …