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半月板置换:几何不匹配对软骨保护能力的影响。

Meniscus replacement: Influence of geometrical mismatches on chondroprotective capabilities.

作者信息

Párraga Quiroga J M, Ito K, van Donkelaar C C

机构信息

Department of Biomedical Engineering, Eindhoven University of Technology, PO Box 513, 5600MB Eindhoven, The Netherlands.

Department of Biomedical Engineering, Eindhoven University of Technology, PO Box 513, 5600MB Eindhoven, The Netherlands.

出版信息

J Biomech. 2015 Jun 1;48(8):1371-6. doi: 10.1016/j.jbiomech.2015.02.063. Epub 2015 Mar 11.

Abstract

The chondroprotective success of meniscal transplantation is variable. Poorly controlled factors such as a geometrical mismatch of the implant may be partly responsible. Clinical data, animal studies and cadaver experiments suggest that smaller transplants perform better than oversized, but clear evidence is lacking. The hypothesis of this study is that smaller menisci outperform larger ones because they distribute stresses more effectively at those particular locations that receive the highest loads. Consequently, collagen in the adjacent cartilage is protected from damage due to overstraining. Experimentally it is not possible to measure load distribution and collagen strain inside articular cartilage (AC). Therefore, a numerical model was used to determine the mechanical conditions throughout the depth of the AC. Meniscus implants with different sizes and mechanical properties were evaluated. These were compared with healthy and with meniscectomized joints. To account for the time-dependent behavior 600s of loading was simulated; results were visualized after 1s and 600s. Simulations showed that AC's strains strongly depended on implant size and loading duration. They depended less on the stiffness of the implant material. With an oversized implant, collagen strains were particularly large in the femoral AC initially and further increased upon sustained loading. The severest compressive strains occurred after sustained loading in the meniscectomized joint. Strains with an undersized meniscus were comparable to a perfectly sized implant. In conclusion, these results support the hypothesis that an undersized implant may outperform an oversized one because it distributes stresses better in the most intensely loaded joint area.

摘要

半月板移植的软骨保护成功率存在差异。诸如植入物几何形状不匹配等控制不佳的因素可能是部分原因。临床数据、动物研究和尸体实验表明,较小的移植半月板比过大的效果更好,但缺乏确凿证据。本研究的假设是,较小的半月板表现优于较大的半月板,因为它们在承受最高负荷的特定位置能更有效地分散应力。因此,相邻软骨中的胶原蛋白可免受过度拉伸造成的损伤。在实验中,无法测量关节软骨(AC)内部的负荷分布和胶原蛋白应变。因此,使用数值模型来确定整个AC深度的力学状况。对具有不同尺寸和力学性能的半月板植入物进行了评估。将其与健康关节和半月板切除的关节进行比较。为了考虑时间依赖性行为,模拟了600秒的加载;在1秒和600秒后对结果进行了可视化处理。模拟结果表明,AC的应变强烈依赖于植入物尺寸和加载持续时间。它们对植入物材料刚度的依赖性较小。使用过大的植入物时,最初在股骨AC中胶原蛋白应变特别大,持续加载后进一步增加。半月板切除的关节在持续加载后出现最严重的压缩应变。使用过小的半月板时的应变与尺寸完美匹配的植入物相当。总之,这些结果支持了以下假设:尺寸过小的植入物可能比过大的植入物表现更好,因为它在负荷最强烈的关节区域能更好地分散应力。

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