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Functional biomechanical performance of a novel anatomically shaped polycarbonate urethane total meniscus replacement

机译:新型解剖型聚碳酸酯聚氨酯全弯液面置换的功能生物力学性能

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摘要

Purpose: To evaluate the functional biomechanical performance of a novel anatomically shaped, polycarbonate urethane total meniscus implant. Methods: Five human cadaveric knees were flexed between 0° and 90° under compressive loads mimicking a squat movement. Anteroposterior (AP) laxity tests were performed in 30° and 90° flexion. Meniscal kinematics and knee laxity were quantified using roentgen stereophotogrammetric analysis. Tibial cartilage contact mechanics were determined in 90° flexion. Measurements were repeated for the native medial meniscus, the implant, after total medial meniscectomy and allograft transplantation. Results: The implant and allograft displayed increased posterior and medial displacements compared to the native meniscus, yet no differences were found between the implant and allograft. Meniscal condition did not affect rotational laxity. Compared to the native joint, AP laxity for the implant was increased in 30° flexion, but not in 90°. The implant reduced the mean contact pressure compared to meniscectomy but could not restore contact pressures to native meniscus levels. Compared to the native meniscus, the implant significantly increased the peak pressure, while the contact area was reduced. Contact mechanics of the implant and allograft were never statistically different. Conclusions: Biomechanical performance was similar for the implant and allograft. However, both meniscal replacements could not restore outcomes to native meniscus levels or sufficiently improve outcomes after meniscectomy. This was presumably caused by the mobility allowed by the suture-only horn fixation. The similarity of implant and allograft performance suggests that the novel implant has the biomechanical potential to serve as an alternative to meniscal allograft transplantation.
机译:目的:评估一种新型解剖学形状的聚碳酸酯聚氨酯全弯液面植入物的功能生物力学性能。方法:在模拟蹲下运动的压缩载荷下,五个人的尸体膝盖在0°至90°之间弯曲。在30°和90°屈曲时进行前后位(AP)松弛测试。半月板运动学和膝关节松弛使用伦琴立体摄影测量分析进行定量。确定胫骨软骨的接触力学为90°屈曲。在完全内侧半月板切除和同种异体移植后,对天然内侧半月板,植入物进行重复测量。结果:与天然半月板相比,植入物和同种异体移植物的后方和内侧移位增加,但在植入物和同种异体移植物之间未发现差异。半月板状况不影响旋转松弛。与天然关节相比,植入物的AP松弛度在30°屈曲时增加,但在90°屈曲时没有增加。与半月板切除术相比,植入物降低了平均接触压力,但无法将接触压力恢复至自然半月板水平。与天然弯液面相比,植入物显着增加了峰值压力,而接触面积却减少了。植入物和同种异体移植物的接触力学从没有统计学差异。结论:植入物和同种异体的生物力学性能相似。但是,两种半月板置换都不能将结局恢复到天然半月板水平,也不能充分改善半月板切除术后的结局。这可能是由于仅缝合角固定所允许的活动性引起的。植入物和同种异体移植物性能的相似性表明,新型植入物具有生物力学潜力,可以替代半月形同种异体移植物。

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