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马掌指关节软骨退变的功能后果:软骨硬度的定量评估

Functional consequences of cartilage degeneration in the equine metacarpophalangeal joint: quantitative assessment of cartilage stiffness.

作者信息

Brommer H, Laasanen M S, Brama P A J, van Weeren P R, Helminen H J, Jurvelin J S

机构信息

Department of Equine Sciences, Faculty of Veterinary Medicine, Utrecht University, Yalelaan 12, 3584 CM, Utrecht, The Netherlands.

出版信息

Equine Vet J. 2005 Sep;37(5):462-7. doi: 10.2746/042516405774480012.

Abstract

REASONS FOR PERFORMING STUDY

No quantitative data currently exist on the relationship of the occurrence of cartilage degeneration and changes in site-specific biomechanical properties in the metacarpophalangeal (MCP) joint in the horse.

OBJECTIVES

To gain insight into the biomechanical consequences of cartilage deterioration at 2 differently loaded sites on the proximal articular surface of the proximal phalanx (P1).

HYPOTHESIS

Static and dynamic stiffness of articular cartilage decreases significantly in degenerated cartilage.

METHODS

Cartilage degeneration index (CDI) values were measured at the lateral dorsal margin (Site 1), lateral central fovea (Site 2) and entire joint surface of P1 (CDIP1) in 30 horses. Group 1 contained joints without (CDIP1 values <25 %, n = 22) and Group 2 joints with (CDIP1 values >25 %, n = 8) signs of cartilage degeneration. Cartilage thickness at Sites 1 and 2 was measured using ultrasonic and needle-probe techniques. Osteochondral plugs were drilled out from Sites 1 and 2 and subsequently tested biomechanically in indentation geometry. Young's modulus at equilibrium and dynamic modulus were determined.

RESULTS

Cartilage thickness values were not significantly different between the 2 groups and sites. Young's modulus at Site 1 was significantly higher in Group 1 than in Group 2; at Site 2, the difference was not significant. Dynamic modulus values were significantly higher in Group 1 than in Group 2 at both sites.

CONCLUSIONS

Degenerative cartilage changes are clearly related to loss of stiffness of the tissue. Absolute changes in cartilage integrity in terms of CDI are greatest at the joint margin, but concomitant changes are also present at the centre, with a comparable decrease of the biomechanical moduli at the 2 sites. Therefore, significant cartilage degradation at the joint margin not only reflects local deterioration of biomechanical properties, but is also indicative of the functional quality in the centre.

POTENTIAL RELEVANCE

These findings may be important for improving prognostication and developing preventative measures.

摘要

开展本研究的原因

目前尚无关于马掌指关节(MCP)软骨退变的发生与特定部位生物力学特性变化之间关系的定量数据。

目的

深入了解近端指骨(P1)近端关节面两个不同负荷部位软骨退变的生物力学后果。

假设

退变软骨的关节软骨静态和动态刚度显著降低。

方法

测量30匹马P1的外侧背缘(部位1)、外侧中央凹(部位2)和整个关节面(CDIP1)的软骨退变指数(CDI)值。第1组包含无软骨退变迹象的关节(CDIP1值<25%,n = 22),第2组包含有软骨退变迹象的关节(CDIP1值>25%,n = 8)。使用超声和针式探头技术测量部位1和部位2的软骨厚度。从部位1和部位2钻出骨软骨栓,随后在压痕几何形状下进行生物力学测试。测定平衡时的杨氏模量和动态模量。

结果

两组和两个部位之间的软骨厚度值无显著差异。部位1的杨氏模量在第1组显著高于第2组;在部位2,差异不显著。两个部位的动态模量值在第1组均显著高于第2组。

结论

软骨退变变化与组织刚度丧失明显相关。就CDI而言,关节边缘软骨完整性的绝对变化最大,但中心部位也存在相应变化,两个部位的生物力学模量有类似程度的降低。因此,关节边缘明显的软骨退变不仅反映了生物力学特性的局部恶化,也表明了中心部位的功能质量。

潜在意义

这些发现可能对改善预后和制定预防措施具有重要意义。

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