首页> 外文期刊>Journal of orthopaedic research >Chronic changes in rabbit retro-patellar cartilage and subchondral bone after blunt impact loading of the patellofemoral joint.
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Chronic changes in rabbit retro-patellar cartilage and subchondral bone after blunt impact loading of the patellofemoral joint.

机译:em股关节钝载荷后兔rabbit骨后软骨和软骨下骨的慢性变化。

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摘要

Animal models of acute joint injury are useful for study of changes in joint tissues that may eventually lead to degradative disease. Our laboratory has developed a joint trauma model using a single blunt impact to the patellofemoral joint of rabbits and documented softening of retro-patellar cartilage and thickening of its underlying bone out to 12 months post-trauma. In the present study, we examined changes in these joint tissues out to 36 months post-impact. Forty-nine Flemish giant rabbits were impacted on the right patellofemoral joint and sacrificed at one of six times: 0, 4.5, 7.5, 12, 24, and 36 months post-impact. A 30% reduction in the compressive modulus of traumatized retro-patellar cartilage occurred at 4.5 months versus the contralateral, non-impacted limb and remained at this reduced level out to 36 months. The fluid permeability of traumatized cartilage also increased over time from baseline and versus the non-impacted limb. Tissue thickness increased slightly at 4.5 months and then decreased over time to a 45% difference from baseline at 36 months post-trauma. While impacted cartilage revealed a significantly greater length of surface fissuring than contralateral, non-impacted cartilage, no time-dependent changes were evident in this study. Moreover, the number and depth of these impact surface lesions did not change as a function of time. Finally, the histological analyses indicated that the thickness of underlying subchondral bone increased over time from baseline and versus that in the non-impacted limb. This long-term study suggested an association between a decrease in the characteristic time constant of traumatized cartilage and thickening of the underlying subchondral bone. Any potential cause and effect relationship, however, must be investigated in future studies.
机译:急性关节损伤的动物模型可用于研究可能最终导致退化性疾病的关节组织变化。我们的实验室开发了一种关节创伤模型,该模型使用了对兔the股关节的单一钝性冲击,并记录了pat骨后软骨软化以及创伤后12个月内其底层骨骼的增厚。在本研究中,我们检查了撞击后36个月内这些关节组织的变化。四十九只弗拉芒大兔子撞击右pa股关节,并在撞击后0、4.5、7.5、12、24和36个月六次之一处死。与未受压的对侧肢体相比,在4.5个月时,受创伤的retro骨后软骨的压缩模量降低了30%,并且一直保持这种降低水平至36个月。从基线开始,与未受影响的肢体相比,受创伤的软骨的流体渗透性也随时间增加。组织厚度在4.5个月时略有增加,然后在创伤后36个月随时间下降至基线水平的45%。尽管受影响的软骨比非对侧非受影响的软骨显示出明显更长的表面开裂长度,但在这项研究中没有明显的时间依赖性变化。而且,这些冲击表面损伤的数量和深度没有随时间变化。最后,组织学分析表明,与基线相比,未受累肢体的软骨下骨厚度随时间增加。这项长期研究表明,受创伤的软骨的特征时间常数的减少与下方软骨下骨的增厚之间存在关联。但是,任何潜在的因果关系都必须在以后的研究中进行研究。

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