Numerical investigation of bone tumor hyperthermia treatment using magnetic scaffolds

Alessandro Fanti
;
Matteo Bruno Lodi;Giuseppe Mazzarella
2018-01-01

Abstract

This works claims to define, via numerical simulations, magnetic field parameters to perform an effective in situ bone tumor hyperthermia treatment using magnetic scaffolds. A Cole-Cole model to describe the frequency response of the magnetic susceptibility of nanoparticles embedded in novel magnetic biomaterials is explored. The heating phenomena is investigated considering both the ischemic and inflamed state of the fracture gap at the bone/implants interface. Both Osteosarcoma and Fibrosarcoma tumors are analyzed. Magnetic hydroxyapatite and poly-ε-caprolactone scaffolds are investigated. From the thermal analysis, it is found that the fracture behaves as a resistance to heat conduction, therefore strength and frequency of external magnetic field has to be tuned to perform the treatment taking the fracture status into account. Moreover, numerical experiments indicate that low perfused Fibrosarcoma can be treated using moderate-strength field, whereas more intense external fields are required to treat strongly vascularized Osteosarcoma without damaging healthy bone tissue. Magnetic hydroxyapatite stands out to be the most performant and versatile material to treat both tumors. These simulations can be regarded as a starting point to analyze possible clinical use of magnetic scaffolds for in situ bone hyperthermia.
2018
2018
Inglese
2
4
294
301
8
https://ieeexplore.ieee.org/document/8440711
Esperti anonimi
internazionale
scientifica
biomagnetics; electromagnetic fields; heat treatment; hyperthermia; magnetic particles; tumors
no
Fanti, Alessandro; Bruno Lodi, Matteo; Vacca, Giuliano; Mazzarella, Giuseppe
1.1 Articolo in rivista
info:eu-repo/semantics/article
1 Contributo su Rivista::1.1 Articolo in rivista
262
4
partially_open
Files in This Item:
File Size Format  
JERM-2018-04-0023.R2_FINAL_VERSION.pdf

open access

Type: versione pre-print
Size 1.57 MB
Format Adobe PDF
1.57 MB Adobe PDF View/Open
Fanti et al_Numerical Investigation of Bone Tumor Hyperthermia Treatment Using Magnetic Scaffolds_2018.pdf

Solo gestori archivio

Description: articolo
Type: versione editoriale
Size 1.1 MB
Format Adobe PDF
1.1 MB Adobe PDF & nbsp; View / Open   Request a copy

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

Questionnaire and social

Share on:
Impostazioni cookie