Cartilage mechanics in the guinea pig model of osteoarthritis studied with an osmotic loading method.

dc.contributor.author

Flahiff, Charlene M

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Kraus, Virginia B

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Huebner, Janet L

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Setton, Lori A

dc.date.accessioned

2020-02-27T16:01:48Z

dc.date.available

2020-02-27T16:01:48Z

dc.date.issued

2004-05

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2020-02-27T16:01:47Z

dc.description.abstract

To determine the material properties of articular cartilage in the Hartley guinea pig model of spontaneous osteoarthritis.Cartilage-bone samples from the medial femoral condyle and tibial plateau of 12 month-old guinea pig knees were subjected to osmotic loading. Site-matched swelling strains and fixed charge density values were used in a triphasic theoretical model for cartilage swelling to determine the modulus of the cartilage solid matrix. The degree of cartilage degeneration was assessed in adjacent tissue sections using a semi-quantitative histological grading scheme.Decreased values for both moduli and surface zone fixed charge density were associated with increasing grades of cartilage degeneration. Decreases in moduli reflect damage to the collagen matrix, which give rise to greater swelling strains.Histological evidence of cartilage degeneration was associated with impaired cartilage mechanics in the aging Hartley guinea pig.

dc.identifier

S1063458404000238

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1063-4584

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1522-9653

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https://hdl.handle.net/10161/20238

dc.language

eng

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Elsevier BV

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Osteoarthritis and cartilage

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10.1016/j.joca.2004.01.007

dc.subject

Cartilage, Articular

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Patella

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Tibia

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Knee Joint

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Animals

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Guinea Pigs

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Cartilage Diseases

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Osteoarthritis

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Osmotic Pressure

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Elasticity

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Stress, Mechanical

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Tensile Strength

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Male

dc.title

Cartilage mechanics in the guinea pig model of osteoarthritis studied with an osmotic loading method.

dc.type

Journal article

duke.contributor.orcid

Kraus, Virginia B|0000-0001-8173-8258

pubs.begin-page

383

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388

pubs.issue

5

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School of Medicine

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Duke Molecular Physiology Institute

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Orthopaedics

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Pathology

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Medicine, Rheumatology and Immunology

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Duke

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Institutes and Centers

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Clinical Science Departments

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Medicine

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Faculty

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Staff

pubs.publication-status

Published

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12

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