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3D-Printed Porous Dielectric Resonator as a Self-Sensing Scaffold

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IIT-25-089C.pdf (282.5Kb)
Autor
Sofokleous, Paraskevas
Paz Jiménez, Eva
Herraiz Martínez, Francisco Javier
Estado
info:eu-repo/semantics/draft
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Resumen
 
 
This study presents the design and fabrication of a 3D-printed porous dielectric resonator (DR) as a self-sensing scaffold for monitoring bone regeneration. Full-wave simulations confirmed that the porous DR behaves like a conventional rectangular DR, with similar electromagnetic field distributions but with a frequency shift due to the inclusion of porosity. Using FDM 3D printing technology, a porous zirconia-based scaffold were fabricated. The dielectric properties of the scaffold were further tailored to simulate bone growth by adding hydroxyapatite (HA) layers, resulting in detectable shifts in resonant frequency. The results demonstrate that these frequency shifts can be approximated by an inverse proportional function of the HA layer thickness, highlighting the potential of this scaffold as a passive sensor to monitor the bone regeneration process non-invasively.
 
URI
http://hdl.handle.net/11531/104945
3D-Printed Porous Dielectric Resonator as a Self-Sensing Scaffold
Palabras Clave

Dielectric Resonator (DR), microwave sensor, bone scaffold, additive manufacturing, biomedical applications
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Repositorio de la Universidad Pontificia Comillas copyright © 2015  Desarrollado con DSpace Software
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