4.5 Article

Elastic, Viscoelastic and Fibril-Reinforced Poroelastic Material Properties of Healthy and Osteoarthritic Human Tibial Cartilage

期刊

ANNALS OF BIOMEDICAL ENGINEERING
卷 47, 期 4, 页码 953-966

出版社

SPRINGER
DOI: 10.1007/s10439-019-02213-4

关键词

Articular cartilage; Osteoarthritis; OARSI grade; Stress-relaxation; Dynamic testing; Finite element analysis

资金

  1. University of Eastern Finland (UEF) including Kuopio University Hospital
  2. Academy of Finland [286526]
  3. Sigrid Juselius Foundation
  4. University of Oulu
  5. Academy of Finland (AKA) [286526, 286526] Funding Source: Academy of Finland (AKA)

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Articular cartilage constituents (collagen, proteoglycans, fluid) are significantly altered during osteoarthritis (OA).A fibril-reinforced poroelastic (FRPE) material model can separate thecontribution of each constituent on the mechanical response of cartilage. Yet, these properties and their OA related alterations are not known for human tibialcartilage. To answer this gap in the knowledge, we characterized the FRPE as well as elastic and viscoelastic properties of healthy and osteoarthritic human tibial cartilage. Tibial osteochondral explants (n=27) harvested from 7 cadavers were mechanically tested in indentation followed by a quantification of elastic, viscoelastic and FRPE properties. Then they were histopathologically OARSI graded for the severity of OA. FRPE modeling revealed that non-fibrillar matrix modulus was higher in the healthy group compared to the early OA (p=0.003) and advanced OA (p<0.001) groups. The initial fibril network modulus was also higher in the healthy group compared to the early OA (p=0.009) and advanced OA (p<0.001) groups. The permeability correlated with the OARSI grade (p=0.002, r=0.56). For the first time, theFRPE properties were characterized for human tibial cartilage. This knowledge is crucial to improve the accuracy of computational knee joint models.

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