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使用滑液粘弹性参数对风湿性疾病进行临床评估。

Clinical assessment of rheumatic diseases using viscoelastic parameters for synovial fluid.

作者信息

Safari M, Bjelle A, Gudmundsson M, Högfors C, Granhed H

机构信息

Division of Mechanics, Chalmers University of Technology, Gothenburg, Sweden.

出版信息

Biorheology. 1990;27(5):659-74. doi: 10.3233/bir-1990-27504.

Abstract

For the first time it is clearly exhibited that synovial fluid (SF) is thixotropic. Although no hysteresis loops were observed for SF, not even at high shear rates, thixotropy may be exhibited by measuring the rate of recovery after extensive shearing. The rebuilding of the structure in a small-amplitude oscillatory state following the high-shear-rate state reveals the thixotropic behaviour. Five different viscoelastic parameters for various synovial fluids (SF) were obtained using oscillatory rheometry. It was also shown that for SF in the low frequency range, corresponding to a knee joint almost at rest, the shear loss modulus G" is greater than the shear storage modulus G', since the system is allowed to dissipate energy at rest. However, with movement, G' increases and eventually becomes greater than G" at a characteristic frequency above which the system has insufficient time to dissipate energy and hence responds as an elastic body. This functional behaviour, characteristic for normal SF, broke down in the SF of rheumatoid arthritis. It was also absent in the SF of knee joints with meniscus lesions and ligament defects.

摘要

首次清楚地表明,滑液(SF)具有触变性。尽管即使在高剪切速率下也未观察到滑液的滞后回线,但通过测量长时间剪切后的恢复速率可能会表现出触变性。在高剪切速率状态之后,小振幅振荡状态下结构的重建揭示了触变行为。使用振荡流变仪获得了各种滑液(SF)的五个不同的粘弹性参数。还表明,对于处于几乎静止状态的膝关节所对应的低频范围内的滑液,剪切损耗模量G"大于剪切储能模量G',因为该系统在静止时能够耗散能量。然而,随着运动,G'增加,最终在一个特征频率处变得大于G",高于该特征频率时,系统没有足够的时间耗散能量,因此表现为弹性体。这种正常滑液特有的功能行为在类风湿性关节炎的滑液中消失了。在有半月板损伤和韧带缺陷的膝关节滑液中也不存在这种行为。

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