|
|
||||||||
Journal of Dental Research, Vol 76, 1760-1769, Copyright © 1997 by International & American Associations for Dental Research Online Journals
ARTICLES |
T. Kuboki, M. Shinoda, M. G. Orsini and A. Yamashita
Department of Fixed Prosthodontics, Okayama University Dental School, Japan.
It has been suggested that a sustained loading condition such as clenching could compress the temporomandibular joint (TMJ) articular soft tissues. However, there is still no clear understanding of how the TM joint articular tissues respond under compression. To answer this question, we performed in vitro indentation tests on fresh articular discs and cartilage-bone systems of the condyles of 10 Yorkshire pigs (aged 7 months) using a self-developed indentation tester. The indenter was 5 mm in diameter and was controlled by means of a computer-aided feedback mechanism. Bilateral condyles from the same mandible were uniformly prepared; one was used for measurements under sustained compression (SC) and the other for measurements under intermittent compression (IC). The displacements of the indenter induced by a SC of 10, 20, and 30 Newtons (N, units of force) for 10 min and by an IC, also of 10, 20, and 30 N, with one-second duration and two-second intervals for 10 min were measured by means of a displacement sensor with a resolution of 0.001 mm. From these data, the indentation curves of the articular discs and the cartilage-bone systems were calculated. Both the disc and the articular cartilage showed characteristic displacement vs. time curves-namely, an instantaneous deformation upon load application, followed by a time-dependent creep phase of asymptotically increasing deformation under constant load. However, the indentation curves of the two tissues were not identical: The deformation of the articular cartilage was dose-dependent, but that of the disc was not. Moreover, the articular cartilage deformed significantly less under IC than under SC. This difference was not found in the disc. It can be concluded that both the disc and the articular cartilage of the pig temporomandibular joint have viscoelastic properties against compression; however, the disc is stiffer than the articular cartilage.
This article has been cited by other articles:
![]() |
E. Tanaka, E. Yamano, D.A. Dalla-Bona, M. Watanabe, T. Inubushi, M. Shirakura, R. Sano, K. Takahashi, T. van Eijden, and K. Tanne Dynamic compressive properties of the mandibular condylar cartilage. J. Dent. Res., June 1, 2006; 85(6): 571 - 575. [Abstract] [Full Text] [PDF] |
||||
![]() |
T. Fujisawa, T. Kuboki, T. Kasai, W. Sonoyama, S. Kojima, J. Uehara, C. Komori, H. Yatani, T. Hattori, and M. Takigawa A Repetitive, Steady Mouth Opening Induced an Osteoarthritis-like Lesion in the Rabbit Temporomandibular Joint J. Dent. Res., September 1, 2003; 82(9): 731 - 735. [Abstract] [Full Text] [PDF] |
||||
![]() |
E. Tanaka and T. van Eijden BIOMECHANICAL BEHAVIOROFTHE TEMPOROMANDIBULAR JOINT DISC Crit. Rev. Oral. Biol. Med., March 1, 2003; 14(2): 138 - 150. [Abstract] [Full Text] |
||||
![]() |
E. Tanaka, K. Hanaoka, T. van Eijden, M. Tanaka, M. Watanabe, M. Nishi, N. Kawai, H. Murata, T. Hamada, and K. Tanne Dynamic Shear Properties of the Temporomandibular Joint Disc J. Dent. Res., March 1, 2003; 82(3): 228 - 231. [Abstract] [Full Text] [PDF] |
||||
![]() |
E. Tanaka, J. Aoyama, M. Tanaka, H. Murata, T. Hamada, and K. Tanne Dynamic Properties of Bovine Temporomandibular Joint Disks Change with Age J. Dent. Res., September 1, 2002; 81(9): 618 - 622. [Abstract] [Full Text] [PDF] |
||||
| HOME | HELP | FEEDBACK | SUBSCRIPTIONS | ARCHIVE | SEARCH | TABLE OF CONTENTS |
| IADR Journals | Advances in Dental Research ® |
| Journal of Dental Research ® | Critical Reviews (1990-2004) |