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健康人体颞下颌关节中的应力场转换

Stress-field translation in the healthy human temporomandibular joint.

作者信息

Gallo L M, Nickel J C, Iwasaki L R, Palla S

机构信息

Clinic for Masticatory Disorders, Center for Oral Medicine, Dental and Maxillo-Facial Surgery, University of Zürich, Switzerland.

出版信息

J Dent Res. 2000 Oct;79(10):1740-6. doi: 10.1177/00220345000790100201.

Abstract

Movement over the surface of the temporomandibular joint (TMJ) disc produces tractional forces. These forces potentially increase the magnitude of shear stresses and contribute to wear and fatigue of the disc. Theoretically, tractional forces in all synovial joints are the result of frictional forces, due to rubbing of the cartilage surfaces, and plowing forces, due to translation of the stress-field through the cartilage matrix as the joint surface congruency changes during motion. For plowing forces to occur in the TMJ, there must be mediolateral translation of the stress-field as the condyle moves dorsoventrally during jaw function. To test whether mediolateral stress-field translation occurs in the intact TMJ, we measured stress-field position and translation velocities in ten normal individuals during rhythmic jaw opening and closing. Magnetic resonance imaging and jaw tracking were combined to animate the three-dimensional position of the stress-field between the articulating surfaces. This allowed for mediolateral translation velocity measurements of the centroid of the stress-field. The results showed that during jaw opening and closing at 0.5 Hz, the average peak mediolateral translation velocity was 35 +/- 17 mm/sec. When opening and closing increased to 1.0 Hz, the average peak velocity was 40 +/- 19 mm/sec. Theoretical model estimates of the work done during such translation ranged from 6 to 709 mJ between the individual joints studied. The potential clinical importance of this measure is that long-term exposure of the TMJ disc to high work may result in fatigue failure of the TMJ disc.

摘要

颞下颌关节(TMJ)盘表面的运动产生牵拉力。这些力可能会增加剪切应力的大小,并导致关节盘的磨损和疲劳。从理论上讲,所有滑膜关节中的牵拉力都是摩擦力和犁削力的结果,摩擦力是由于软骨表面的摩擦产生的,犁削力是由于在运动过程中关节表面一致性发生变化时应力场通过软骨基质平移而产生的。要使TMJ中产生犁削力,在颌骨功能活动期间髁突向背腹方向移动时,应力场必须进行内外侧平移。为了测试完整TMJ中是否发生内外侧应力场平移,我们在十名正常个体进行有节奏的张闭口运动时测量了应力场位置和移动速度。将磁共振成像和颌骨跟踪相结合,以动态显示关节表面之间应力场的三维位置。这使得能够测量应力场质心的内外侧平移速度。结果表明,在0.5Hz的张闭口运动期间,平均峰值内外侧平移速度为35±17mm/秒。当张闭口频率增加到1.0Hz时,平均峰值速度为40±19mm/秒。在所研究的各个关节之间,这种平移过程中所做的功的理论模型估计值在6到709mJ之间。这一测量结果潜在的临床意义在于,TMJ盘长期暴露于高功可能会导致TMJ盘疲劳失效。

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