In Vivo Assessment of Elasticity of Child Rib Cortical Bone Using Quantitative Computed Tomography
Article dans une revue avec comité de lecture
Author
ZHU, Y.
194495 Université Claude Bernard Lyon 1 [UCBL]
300771 East China Normal University [Shangaï] [ECNU]
194495 Université Claude Bernard Lyon 1 [UCBL]
300771 East China Normal University [Shangaï] [ECNU]
BERMOND, François
222110 Institut Français des Sciences et Technologies des Transports, de l'Aménagement et des Réseaux [IFSTTAR]
222174 Laboratoire de Biomécanique et Mécanique des Chocs [LBMC UMR T9406]
194495 Université Claude Bernard Lyon 1 [UCBL]
222110 Institut Français des Sciences et Technologies des Transports, de l'Aménagement et des Réseaux [IFSTTAR]
222174 Laboratoire de Biomécanique et Mécanique des Chocs [LBMC UMR T9406]
194495 Université Claude Bernard Lyon 1 [UCBL]
PIALAT, J.-B.
139725 Physiopathologie, diagnostic et traitements des maladies osseuses / Pathophysiology, Diagnosis & Treatments of Bone Diseases [LYOS]
300094 Hôpital Edouard Herriot [CHU - HCL]
139725 Physiopathologie, diagnostic et traitements des maladies osseuses / Pathophysiology, Diagnosis & Treatments of Bone Diseases [LYOS]
300094 Hôpital Edouard Herriot [CHU - HCL]
Date
2017Journal
Applied Bionics and BiomechanicsAbstract
Elasticity of the child rib cortical bone is poorly known due to the difficulties in obtaining specimens to perform conventional tests. It was shown on the femoral cortical bone that elasticity is strongly correlated with density for both children and adults through a unique relationship. Thus, it is assumed that the relationships between the elasticity and density of adult rib cortical bones could be expanded to include that of children. This study estimated in vivo the elasticity of the child rib cortical bone using quantitative computed tomography (QCT). Twenty-eight children (from 1 to 18 y.o.) were considered. Calibrated QCT images were prescribed for various thoracic pathologies. The Hounsfield units were converted to bone mineral density (BMD). A relationship between the BMD and the elasticity of the rib cortical bone was applied to estimate the elasticity of children’s ribs in vivo. The estimated elasticity increases with growth (7.1 ± 2.5 GPa at 1 y.o. up to 11.6 ± 1.9 GPa at 18 y.o.). This data is in agreement with the few previous values obtained using direct measurements. This methodology paves the way for in vivo assessment of the elasticity of the child cortical bone based on calibrated QCT images.
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