[HTML][HTML] Multi-modal investigation of the bone micro-and ultrastructure, and elemental distribution in the presence of Mg-xGd screws at mid-term healing stages

K Iskhakova, H Cwieka, S Meers, H Helmholz… - Bioactive Materials, 2024 - Elsevier
Magnesium (Mg)–based alloys are becoming attractive materials for medical applications as
temporary bone implants for support of fracture healing, eg as a suture anchor. Due to their …

Best Practices in Develo** a Workflow for Uncertainty Quantification for Modeling the Biodegradation of Mg‐Based Implants

T AlBaraghtheh, R Willumeit‐Römer… - Advanced …, 2024 - Wiley Online Library
Computational models of electrochemical biodegradation of magnesium (Mg)‐based
implants are uncertain. To quantify the model uncertainty, iterative evaluations are needed …

Influence of aluminum and copper on mechanical properties of biocompatible Ti-Mo Alloys: A simulation-based investigation

O Ashkani, MR Tavighi, M Karamimoghadam… - Micromachines, 2023 - mdpi.com
The use of titanium and titanium-based alloys in the human body due to their resistance to
corrosion, implant ology and dentistry has led to significant progress in promoting new …

Nonlocal Nernst-Planck-Poisson System for Modeling Electrochemical Corrosion in Biodegradable Magnesium Implants

A Hermann, A Shojaei, D Höche, S Jafarzadeh… - Journal of Peridynamics …, 2025 - Springer
This paper provides a comprehensive derivation and application of the nonlocal Nernst-
Planck-Poisson (NNPP) system for accurate modeling of electrochemical corrosion with a …

Uncertainty Quantification of Biodegradation Models using Surrogate Models

T Albaraghtheh, S Adnan - 2024 - macau.uni-kiel.de
Magnesium (Mg) is one of the essential elements within the human body and one of the
most abundant elements in the earth's crust. The unique ability of Mg and its alloys to …