Article (Scientific journals)
Aging reduces strain magnitude and heterogeneity while increasing apparent stiffness of the rat proximal tibia.
Müller, Laura; Kunnoth, Sriram; Souhail, Hajar et al.
2026In Journal of the Mechanical Behavior of Biomedical Materials, 180, p. 107481
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Keywords :
Aging; Digital volume correlation; Epiphysis; Knee; Osteochondral junction; Strain distribution; Image-based finite element analyze
Abstract :
[en] The epiphyses of long bones play a critical role in joint integrity by absorbing and redistributing joint forces. While aging induces microstructural and material changes in this anatomical site, their impact on the internal mechanical environment of the epiphysis remains poorly characterized. In this study, we quantified age-related alterations in epiphyseal strain distribution in the knee joints of adult and aged male Wistar rats using in situ mechanical testing combined with micro-computed tomography, digital volume correlation, and finite element analysis. Aging was associated with a pronounced reduction in deformation: mean compressive and tensile principal strains in aged animals decreased by approximately 63% and 67%, respectively, compared with strains in adult animals. In addition to reduced strain magnitude, aged epiphyses exhibited less heterogeneous strain distributions, altered spatial strain patterns, and increased inter-individual variability of the deformation. These mechanical changes are consistent with previously reported age-related thickening of the subchondral bone plate, trabecular coarsening, and increased tissue mineralization. Together, these findings demonstrate that aging leads to substantial stiffening of the proximal tibia and alters its behavior under compression. Such changes may affect the protective mechanical function of the epiphysis and contribute to an unfavorable mechanical environment for articular cartilage, which may predispose to joint degeneration.
Disciplines :
Engineering, computing & technology: Multidisciplinary, general & others
Author, co-author :
Müller, Laura  ;  Université de Liège - ULiège > Aérospatiale et Mécanique (A&M)
Kunnoth, Sriram ;  Insigneo Institute, Division of Clinical Medicine, School of Medicine & Population Health, University of Sheffield, Sheffield, UK
Souhail, Hajar  ;  Université de Liège - ULiège > Aérospatiale et Mécanique (A&M)
Ska, Margaux ;  Université de Liège - ULiège > Aérospatiale et Mécanique (A&M)
Uniyal, Piyush;  Department of Mechanical Engineering, KU Leuven, Leuven, Belgium
D'Andrea, Luca ;  Laboratory of Biological Structure Mechanics (LaBS) - Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", Politecnico di Milano, Milan, Italy
Vena, Pasquale;  Laboratory of Biological Structure Mechanics (LaBS) - Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", Politecnico di Milano, Milan, Italy
van Lenthe, G Harry ;  Department of Mechanical Engineering, KU Leuven, Leuven, Belgium
Dall'Ara, Enrico;  Insigneo Institute, Division of Clinical Medicine, School of Medicine & Population Health, University of Sheffield, Sheffield, UK
Ruffoni, Davide  ;  Université de Liège - ULiège > Département d'aérospatiale et mécanique > Mécanique des matériaux biologiques et bioinspirés
Language :
English
Title :
Aging reduces strain magnitude and heterogeneity while increasing apparent stiffness of the rat proximal tibia.
Publication date :
August 2026
Journal title :
Journal of the Mechanical Behavior of Biomedical Materials
ISSN :
1751-6161
eISSN :
1878-0180
Publisher :
Elsevier Ltd, Netherlands
Volume :
180
Pages :
107481
Peer reviewed :
Peer Reviewed verified by ORBi
Funding text :
L.M. obtained funding from F.R.S.-FNRS as part of a FRIA grant (no. FC 47333 ) and further acknowledges the support of the Mobility Award of the European Society of Biomechanics (ESB) , allowing a research stay at the University of Sheffield. This work was partially funded by the Excellence Science (EOS) program (EOS no. 40007553 ).
Available on ORBi :
since 08 July 2026

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