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Multi-phonon scattering processes in one-dimensional anharmonic biological superlattices: understanding the dissipation of mechanical waves in mineralized tissues.
Guerder, Pierre-Yves; Deymier-Black, Alix C; Swinteck, Nichlas Z; Vasseur, Jérôme O; Bou-Matar, Olivier; Muralidharan, Krishna; Deymier, Pierre A.
Afiliação
  • Guerder PY; Department of Materials Science and Engineering, University of Arizona, Tucson, AZ 85721, USA; International Associated Laboratory LEMAC: IEMN, UMR CNRS 8520, PRES Lille Nord de France, ECLille, 59652 Villeneuve d'Ascq, France. Electronic address: pierre-yves.guerder@centraliens-lille.org.
  • Deymier-Black AC; Department of Orthopaedic Surgery, Washington University in St. Louis, St. Louis, MO 63110, USA.
  • Swinteck NZ; Department of Materials Science and Engineering, University of Arizona, Tucson, AZ 85721, USA.
  • Vasseur JO; Institut d'Electronique, de Microélectronique et de Nanotechnologie (IEMN, UMR CNRS 8520), PRES Lille Nord de France, 59652 Villeneuve d'Ascq, France.
  • Bou-Matar O; International Associated Laboratory LEMAC: IEMN, UMR CNRS 8520, PRES Lille Nord de France, ECLille, 59652 Villeneuve d'Ascq, France.
  • Muralidharan K; Department of Materials Science and Engineering, University of Arizona, Tucson, AZ 85721, USA.
  • Deymier PA; Department of Materials Science and Engineering, University of Arizona, Tucson, AZ 85721, USA.
J Mech Behav Biomed Mater ; 37: 24-32, 2014 Sep.
Article em En | MEDLINE | ID: mdl-24878965
The scattering of elastic waves in a one dimensional phononic (PnC) crystal composed of alternate collagen and hydroxy-apatite constituent layers is studied. These superlattices are metaphors for mineralized tissues present in bones and teeth. The collagen is treated as an open system elastic medium with water content which can vary depending on the level of stress applied. The open system nature of the collagen-water system leads to a non-linear stress-strain response. The finite difference time domain method is employed to investigate the propagation of non-linear mechanical waves through the superlattice. The spectral energy density method enables the calculation of the non-linear vibrational wave band structure. The non-linearity in the mechanical response of the collagen-water system enables a variety of multi-phonon scattering processes resulting in an increase in the number of channels for the dissipation of elastic waves and therefore for the dissipation of mechanical energy. These results provide an explanation for the relationship between bone fragility and decreased hydration.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Dente / Osso e Ossos / Fenômenos Mecânicos / Fônons / Minerais / Modelos Biológicos Tipo de estudo: Prognostic_studies Idioma: En Revista: J Mech Behav Biomed Mater Assunto da revista: ENGENHARIA BIOMEDICA Ano de publicação: 2014 Tipo de documento: Article País de publicação: Holanda

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Dente / Osso e Ossos / Fenômenos Mecânicos / Fônons / Minerais / Modelos Biológicos Tipo de estudo: Prognostic_studies Idioma: En Revista: J Mech Behav Biomed Mater Assunto da revista: ENGENHARIA BIOMEDICA Ano de publicação: 2014 Tipo de documento: Article País de publicação: Holanda