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首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >Contact pressures at grafted cartilage lesions in the knee.
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Contact pressures at grafted cartilage lesions in the knee.

机译:膝关节移植软骨损伤处的接触压力。

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The use of tissue-engineered cellular constructs is currently under clinical evaluation for the surgical treatment of articular cartilage lesions in the knee. The primary failure mode in such cartilage repair techniques is related to fixation. In addition, the repair tissue is believed to be very fragile in the post-operative period, and unable to support the intra-articular loads. We have developed a laboratory testing protocol in order to quantify the contact pressure distribution that develops on fibrin glue grafts applied to full-thickness cartilage lesions. The contact pressure distribution has been mapped on the contact surface of specimens subject to compression, in three configurations (intact, defect and grafted), at increasing load levels. All the maps show stress concentrations at the rim of the defect and a more uniform stress distribution around the rim after defect grafting. At a contact load of 180 N, the peak contact pressure measured on cartilage is 2.5 MPa. In presence of the graft, the peak pressures on the cartilage area surrounding the defect are reduced by 16%, on average. In contrast, both the mean contact pressure on the graft and the graft's contact area increase. The graft was found to carry around 80% of the total applied contact load, at all load levels tested. Fibrin glue was chosen as a grafting material in our study because it shows material properties very representative of currently-implanted cellular constructs. Thus, the results of this study have quantified aspects of recipient graft sites that may assist in optimising such grafting procedures from a biomechanical point of view.
机译:目前正在临床评估组织工程细胞构建物在外科手术中治疗膝关节软骨病变的用途。这种软骨修复技术中的主要故障模式与固定有关。另外,据信修复组织在术后期间非常脆弱,并且不能支撑关节内负荷。我们已经开发了实验室测试协议,以量化在应用于全层软骨病变的纤维蛋白胶移植物上形成的接触压力分布。接触压力分布已绘制成三种形式(完整,缺损和接枝),并在增加的载荷水平下经受压缩的试样接触表面上。所有图都显示了缺陷边缘处的应力集中,缺陷移植后边缘周围的应力分布更加均匀。在180 N的接触负载下,在软骨上测得的最大接触压力为2.5 MPa。在存在移植物的情况下,缺损周围软骨区域的峰值压力平均降低了16%。相反,移植物上的平均接触压力和移植物的接触面积均增加。在所有测试的负载水平下,都发现移植物承担了总施加接触负载的80%。在我们的研究中,纤维蛋白胶被选作移植材料,因为它显示出非常能代表目前植入的细胞结构的材料特性。因此,这项研究的结果量化了受体移植部位的各个方面,从生物力学的角度看,这些部位可能有助于优化此类移植程序。

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