Bio-structural monitoring of bone mineral alterations through electromechanical impedance measurements of a Piezo-device joined to a tooth.

Bio-monitoring Bone mass reduction Bone mineral alterations Bone mineral density Electromechanical impedance technique Micro-CT Piezo-device Spectroscopy Structural health monitoring

Journal

Biomedical engineering letters
ISSN: 2093-985X
Titre abrégé: Biomed Eng Lett
Pays: Germany
ID NLM: 101567784

Informations de publication

Date de publication:
Nov 2020
Historique:
received: 22 05 2020
revised: 03 08 2020
accepted: 09 09 2020
entrez: 16 11 2020
pubmed: 17 11 2020
medline: 17 11 2020
Statut: epublish

Résumé

Bone presents different systemic functionalities as calcium phosphate reservoir, organ protection, among others. For that reason, the bone health conditions are essential to keep in equilibrium the metabolism of several body systems. Different technologies exist to diagnose bone conditions with invasive methods based on ionizing radiation. Therefore, there is a challenge to develop new ways to evaluate bone alterations in a noninvasive form. This study shows the assessment of a piezo-actuated device acting on a human tooth for the bio-monitoring of bone alterations. The bone diagnosis is performed by applying the electromechanical impedance technique (EMI), commonly used in structural health monitoring. For the experimental tests, five bone samples were prepared, and one was chosen as the monitoring. All samples were put in a decalcifying substance (TBD1 acid-base) at different times to emulate localized bone mineral alterations. Bone reductions were computed by using X-ray micro-computed tomography analyzing the morphometry. Electrical resistance measurements (piezo-device) were taken for the monitoring specimen meanwhile it was partially decalcified during 8520 seconds. In the frequency spectrum, several observation windows showed that the bone alterations gradually changed the electrical resistance signals which were quantified statistically. Results evidenced that the bone density changes are correlated with the electrical resistance measurements; these changes presented an exponential behavior as much as in the calculated index, and bone mineral reduction. The results demonstrated that bone alterations exhibit linear dependence with the computed statistical indexes. This result confirms that it is possible to observe the bone changes from the teeth as a future application.

Identifiants

pubmed: 33194251
doi: 10.1007/s13534-020-00170-9
pii: 170
pmc: PMC7655898
doi:

Types de publication

Journal Article

Langues

eng

Pagination

603-617

Commentaires et corrections

Type : ErratumIn

Informations de copyright

© Korean Society of Medical and Biological Engineering 2020, corrected publication 2020.

Déclaration de conflit d'intérêts

Conflicts of interestThe authors declare that they do not have conflicts of interest.

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Auteurs

Hector A Tinoco (HA)

Experimental and Computational Mechanics Laboratory, Universidad Autónoma de Manizales. Antigua Estación del Ferrocarril, Edificio fundadores, C.P. 170001 Manizales, Colombia.
Institute of Physics of Materials, Sciences Academy of Czech Republic, Žižkova 22, 616 62 Brno, Czech Republic.
Central European Institute of Technology - Brno University of Technology, 648/125 Brno, Czech Republic.

Carlos I Cardona (CI)

Experimental and Computational Mechanics Laboratory, Universidad Autónoma de Manizales. Antigua Estación del Ferrocarril, Edificio fundadores, C.P. 170001 Manizales, Colombia.

Maribel L F Marín-Berrio (MLF)

Department of Health, Universidad Autónoma de Manizales, Antigua estación del Ferrocarril, Edificio fundadores, C.P. 170001 Manizales, Colombia.

Juliana García-Grisales (J)

Department of Health, Universidad Autónoma de Manizales, Antigua estación del Ferrocarril, Edificio fundadores, C.P. 170001 Manizales, Colombia.

Juan P Gomez (JP)

Department of Health, Universidad Autónoma de Manizales, Antigua estación del Ferrocarril, Edificio fundadores, C.P. 170001 Manizales, Colombia.

Samuel I Roldan (SI)

Centro de Innovación Roldan, Cl 4 Sur 43 Aa 26, Medellin-Antioquia, Colombia.

Fabio M Peña (FM)

Experimental and Computational Mechanics Laboratory, Universidad Autónoma de Manizales. Antigua Estación del Ferrocarril, Edificio fundadores, C.P. 170001 Manizales, Colombia.

Adam Brinek (A)

Central European Institute of Technology - Brno University of Technology, 648/125 Brno, Czech Republic.

Dominika Kalasová (D)

Central European Institute of Technology - Brno University of Technology, 648/125 Brno, Czech Republic.

Jozef Kaiser (J)

Central European Institute of Technology - Brno University of Technology, 648/125 Brno, Czech Republic.

Tomas Zikmund (T)

Central European Institute of Technology - Brno University of Technology, 648/125 Brno, Czech Republic.

Classifications MeSH