The Experts below are selected from a list of 18 Experts worldwide ranked by ideXlab platform

Didier Serteyn - One of the best experts on this subject based on the ideXlab platform.

  • An Equine joint friction test model using a cartilage-on-cartilage arrangement.
    Veterinary Journal, 2009
    Co-Authors: Prisca Noble, Bernard Collin, Jacqueline Lecomte-beckers, Adrien Magnée, Jean-marie Denoix, Didier Serteyn
    Abstract:

    This study describes an Equine joint friction test using a cartilage-on-cartilage arrangement and investigates the influence of age and load on the frictional response. Osteochondral plugs were extracted from Equine Shoulder joints (2–5 years, n = 12; 10–14 years, n = 15), and mounted in a pin-on-disc tribometer. The frictional response was then measured under constant conditions (2 N; 20 °C; 5 mm/s), and with increasing load (2 N, 5 N, 10 N). In all experiments, the friction coefficient of young cartilage was significantly (P < 0.001) smaller than obtained from old cartilage, while the application of a greater load resulted in a significant (P < 0.001) decrease in friction coefficient only in old cartilage. It was concluded that cartilage ageing was responsible for an increase in friction coefficient under these experimental conditions. Moreover, where young cartilage lubrication remained stable, cartilage ageing may have been responsible for lubrication regime change. The cartilage-on-cartilage model could be used to better understand lubrication regime disturbances in healthy and diseased Equine joints, and to test the efficacy of various bio-lubricant treatments.

Serteyn Didier - One of the best experts on this subject based on the ideXlab platform.

  • An Equine joint friction test model using a cartilage-on-cartilage arrangement.
    2010
    Co-Authors: Noble Prisca, Collin Bernard, Lecomte-beckers Jacqueline, Magnée Adrien, Denoix J. M., Serteyn Didier
    Abstract:

    This study describes an Equine joint friction test using a cartilage-on-cartilage arrangement and investigates the influence of age and load on the frictional response. Osteochondral plugs were extracted from Equine Shoulder joints (2-5 years, n=12; 10-14 years, n=15), and mounted in a pin-on-disc tribometer. The frictional response was then measured under constant conditions (2N; 20 degrees C; 5 mm/s), and with increasing load (2N, 5N, 10N). In all experiments, the friction coefficient of young cartilage was significantly (P

Prisca Noble - One of the best experts on this subject based on the ideXlab platform.

  • An Equine joint friction test model using a cartilage-on-cartilage arrangement.
    Veterinary Journal, 2009
    Co-Authors: Prisca Noble, Bernard Collin, Jacqueline Lecomte-beckers, Adrien Magnée, Jean-marie Denoix, Didier Serteyn
    Abstract:

    This study describes an Equine joint friction test using a cartilage-on-cartilage arrangement and investigates the influence of age and load on the frictional response. Osteochondral plugs were extracted from Equine Shoulder joints (2–5 years, n = 12; 10–14 years, n = 15), and mounted in a pin-on-disc tribometer. The frictional response was then measured under constant conditions (2 N; 20 °C; 5 mm/s), and with increasing load (2 N, 5 N, 10 N). In all experiments, the friction coefficient of young cartilage was significantly (P < 0.001) smaller than obtained from old cartilage, while the application of a greater load resulted in a significant (P < 0.001) decrease in friction coefficient only in old cartilage. It was concluded that cartilage ageing was responsible for an increase in friction coefficient under these experimental conditions. Moreover, where young cartilage lubrication remained stable, cartilage ageing may have been responsible for lubrication regime change. The cartilage-on-cartilage model could be used to better understand lubrication regime disturbances in healthy and diseased Equine joints, and to test the efficacy of various bio-lubricant treatments.

Noble Prisca - One of the best experts on this subject based on the ideXlab platform.

  • An Equine joint friction test model using a cartilage-on-cartilage arrangement.
    2010
    Co-Authors: Noble Prisca, Collin Bernard, Lecomte-beckers Jacqueline, Magnée Adrien, Denoix J. M., Serteyn Didier
    Abstract:

    This study describes an Equine joint friction test using a cartilage-on-cartilage arrangement and investigates the influence of age and load on the frictional response. Osteochondral plugs were extracted from Equine Shoulder joints (2-5 years, n=12; 10-14 years, n=15), and mounted in a pin-on-disc tribometer. The frictional response was then measured under constant conditions (2N; 20 degrees C; 5 mm/s), and with increasing load (2N, 5N, 10N). In all experiments, the friction coefficient of young cartilage was significantly (P

Bernard Collin - One of the best experts on this subject based on the ideXlab platform.

  • An Equine joint friction test model using a cartilage-on-cartilage arrangement.
    Veterinary Journal, 2009
    Co-Authors: Prisca Noble, Bernard Collin, Jacqueline Lecomte-beckers, Adrien Magnée, Jean-marie Denoix, Didier Serteyn
    Abstract:

    This study describes an Equine joint friction test using a cartilage-on-cartilage arrangement and investigates the influence of age and load on the frictional response. Osteochondral plugs were extracted from Equine Shoulder joints (2–5 years, n = 12; 10–14 years, n = 15), and mounted in a pin-on-disc tribometer. The frictional response was then measured under constant conditions (2 N; 20 °C; 5 mm/s), and with increasing load (2 N, 5 N, 10 N). In all experiments, the friction coefficient of young cartilage was significantly (P < 0.001) smaller than obtained from old cartilage, while the application of a greater load resulted in a significant (P < 0.001) decrease in friction coefficient only in old cartilage. It was concluded that cartilage ageing was responsible for an increase in friction coefficient under these experimental conditions. Moreover, where young cartilage lubrication remained stable, cartilage ageing may have been responsible for lubrication regime change. The cartilage-on-cartilage model could be used to better understand lubrication regime disturbances in healthy and diseased Equine joints, and to test the efficacy of various bio-lubricant treatments.