The response of elderly human articular cartilage to mechanical stimuli (original) (raw)

The response of elderly human articular cartilage to mechanical stimuli in vitro

Mandy Plumb

Osteoarthritis and Cartilage, 2005

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Cyclic compression of cartilage/bone explants in vitro leads to physical weakening, mechanical breakdown of collagen and release of matrix fragments

Marc Thibault

Journal of Orthopaedic Research, 2002

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Normal and pathological adaptations of articular cartilage to joint loading

Lee L

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Macro, micro- and ultrastructural investigation of how degeneration influences the response of cartilage to loading

Ashvin Thambyah

Journal of The Mechanical Behavior of Biomedical Materials

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Do changes in the mechanical properties of articular cartilage promote catabolic destruction of cartilage and osteoarthritis?

Frederick Silver

Matrix Biology, 2004

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Articular Cartilage Metabolism: Biochemical Markers and Dynamic Loading

Harpal Gahunia

Articular Cartilage of the Knee, 2020

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Competing regulation of matrix biosynthesis by mechanical and IGF-1 signalling in elderly human articular cartilage in vitro

Mandy Plumb

Biochimica Et Biophysica Acta-general Subjects, 2006

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Biomechanical influence of cartilage homeostasis in health and disease

Donald Salter

Arthritis, 2011

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Chondrocyte biosynthesis correlates with local tissue strain in statically compressed adult articular cartilage

P. Eggli

Journal of Orthopaedic Research, 1997

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Comparison of biomechanical and biochemical properties of cartilage from human knee and ankle pairs

Emerson Quan

Journal of Orthopaedic Research, 2000

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Effect of different running modes on the morphological, biochemical, and mechanical properties of articular cartilage

Gert-Peter Brueggemann

Scandinavian Journal of Medicine & Science in Sports, 2012

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A relationship between mechanically-induced changes in serum cartilage oligomeric matrix protein (COMP) and changes in cartilage thickness after 5 years

Annegret Mündermann

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Biomechanical-Based Protocol for in vitro Study of Cartilage Response to Cyclic Loading: A Proof-of-Concept in Knee Osteoarthritis

Simona Neri

2021

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Experimental determination of stress distributions in articular cartilage before and after sustained loading

Rajashree Baskaran

Clinical Biomechanics, 1999

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The influence of mechanical compression on the induction of osteoarthritis-related biomarkers in articular cartilage explants

Beverley Fermor

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Biomechanical characterization and in vitro mechanical injury of elderly human femoral head cartilage: comparison to adult bovine humeral head cartilage

Olivier Borens

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The structure, biochemistry, and metabolism of osteoarthritic cartilage: A review of the literature

Lambert de Bont

Journal of Oral and Maxillofacial Surgery, 1995

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Basic Science of Articular Cartilage and Osteoarthritis

Anna Kaylina

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Long-term cyclical in vivo loading increases cartilage proteoglycan content in a spatially specific manner: an infrared microspectroscopic imaging and polarized light microscopy study

David Rempel

Arthritis research & therapy, 2006

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The effect of ageing and osteoarthritis on the mechanical properties of cartilage and bone in the human knee joint

Riaz Akhtar

Scientific reports, 2018

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Loading-induced changes in synovial fluid affect cartilage metabolism

P. Van Weeren

Rheumatology, 1998

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Effects of Serum and Compressive Loading on the Cartilage Matrix Synthesis and Spatiotemporal Deposition Around Chondrocytes in 3D Culture

Peihui Wu

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Effect of Mechanical Load on Articular Cartilage Collagen Structure: A Scanning Electron-Microscopic Study

Hubert Nötzli

Cells Tissues Organs, 2000

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On how degeneration influences load-bearing in the cartilageebone system: a microstructural and micromechanical study

Ashvin Thambyah

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Physiological loading of joints prevents cartilage degradation through CITED2

Damien Laudier

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Combined enzymatic degradation of proteoglycans and collagen significantly alters intratissue strains in articular cartilage during cyclic compression

Lianne Zevenbergen

Journal of the Mechanical Behavior of Biomedical Materials, 2019

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Experimental determination of the subchondral stress-reducing role of articular cartilage under static and dynamic compression

Adekunle Oloyede

Clinical Biomechanics, 1993

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