Biomedical applications, both in therapy and diagnosis, are increasingly using magneto-dielectric composite materials. One notable example is magnetic scaffolds (MagS), which consist of a biomaterial matrix embedded with magnetic nanoparticles. These devices respond to external magnetic fields, triggering specific biological effects. This contribution explores the potential of using microwave imaging as a tool for monitoring bone healing and regeneration. In this context, implanted MagS, which are widely used to promote bone healing, are investigated. By leveraging their unique ability to respond to external magnetic fields, we demonstrate that MagS degradation, directly linked to bone healing, can be tracked through their microwave response. Preliminary results are reported in this paper.
Microwave Imaging for Bone Regeneration Monitoring Using Magnetic Scaffolds: Preliminary Results / Sekehravani, E.A., Bellizzi, G., Palmeri, R., Lodi, M.B., Crocco, L., Fanti, A., Scapaticci, R.. - 2025:(2025), pp. 1-4. (47th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC) Copenhagen, Denmark 14-18 luglio 2025) [10.1109/EMBC58623.2025.11253316].
Microwave Imaging for Bone Regeneration Monitoring Using Magnetic Scaffolds: Preliminary Results
Bellizzi G.;
2025
Abstract
Biomedical applications, both in therapy and diagnosis, are increasingly using magneto-dielectric composite materials. One notable example is magnetic scaffolds (MagS), which consist of a biomaterial matrix embedded with magnetic nanoparticles. These devices respond to external magnetic fields, triggering specific biological effects. This contribution explores the potential of using microwave imaging as a tool for monitoring bone healing and regeneration. In this context, implanted MagS, which are widely used to promote bone healing, are investigated. By leveraging their unique ability to respond to external magnetic fields, we demonstrate that MagS degradation, directly linked to bone healing, can be tracked through their microwave response. Preliminary results are reported in this paper.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


