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一种绵羊膝关节模拟器:描述与概念验证。

An ovine knee simulator: description and proof of concept.

作者信息

Bartolo Maria Kristina, Newman Simon, Dandridge Oliver, Halewood Camilla, Accardi Mario Alberto, Dini Daniele, Amis Andrew A

机构信息

Biomechanics Group, Mechanical Engineering Department, Imperial College London, London, United Kingdom.

Orthonika Ltd, London, United Kingdom.

出版信息

Front Bioeng Biotechnol. 2024 Jun 27;12:1410053. doi: 10.3389/fbioe.2024.1410053. eCollection 2024.

Abstract

AIMS

The ovine stifle is an established model for evaluation of knee treatments, such as meniscus replacement. This study introduces a novel ovine gait simulator for pre-testing of surgical treatments prior to animal trials. Furthermore, we describe a pilot study that assessed gait kinematics and contact pressures of native ovine stifle joints and those implanted with a novel fiber-matrix reinforced polyvinyl alcohol-polyethylene glycol (PVA-PEG) hydrogel meniscus to illustrate the efficacy of the simulator.

METHODS

The gait simulator controlled femoral flexion-extension and applied a 980N axial contact force to the distal tibia, whose movement was guided by the natural ligaments. Five right ovine stifle joints were implanted with a PVA-PEG total medial meniscus replacement, fixed to the tibia via transosseous tunnels and interference screws. Six intact and five implanted right ovine stifle joints were tested for 500 k gait cycles at 1.55 Hz. Implanted stifle joint contact pressures and kinematics in the simulator were compared to the intact group. Contact pressures were measured at 55° flexion using pressure sensitive film inserted sub-meniscally. 3D kinematics were measured optically across two 30-s captures.

RESULTS

Peak contact pressures in intact stifles were 3.6 ± 1.0 MPa and 6.0 ± 2.1 MPa in the medial and lateral condyles ( < 0.05) and did not differ significantly from previous studies ( > 0.4). Medial peak implanted pressures were 4.3 ± 2.2 MPa ( > 0.4 versus intact), while lateral peak pressures (9.4 ± 0.8 MPa) were raised post medial compartment implantation ( < 0.01). The range of motion for intact joints was flexion/extension 37° ± 1°, varus/valgus 1° ± 1°, external/internal rotation 5° ± 3°, lateral/medial translation 2 ± 1 mm, anterior/posterior translation 3 ± 1 mm and distraction/compression 1 ± 1 mm. Ovine joint kinematics in the simulator did not differ significantly from published data for the intact group, and the intact and implanted groups were comparable ( > 0.01), except for in distraction-compression ( < 0.01).

CONCLUSION

These findings show correspondence of the ovine simulator kinematics with gait parameters. The efficacy of the simulator to evaluate novel treatments was demonstrated by implanting a PVA-PEG hydrogel medial meniscal replacement, which restored the medial peak contact pressures but not lateral. This novel simulator may enable future work on the development of surgical procedures, derisking subsequent work in live animals.

摘要

目的

绵羊膝关节是评估膝关节治疗方法(如半月板置换)的既定模型。本研究引入了一种新型的绵羊步态模拟器,用于在动物试验前对手术治疗进行预测试。此外,我们描述了一项初步研究,该研究评估了天然绵羊膝关节以及植入新型纤维基质增强聚乙烯醇 - 聚乙二醇(PVA - PEG)水凝胶半月板的膝关节的步态运动学和接触压力,以说明该模拟器的功效。

方法

步态模拟器控制股骨的屈伸,并向胫骨远端施加980N的轴向接触力,胫骨的运动由天然韧带引导。五个右侧绵羊膝关节植入了PVA - PEG全内侧半月板置换物,通过骨隧道和干涉螺钉固定在胫骨上。对六个完整的和五个植入的右侧绵羊膝关节在1.55Hz频率下进行500k步态周期测试。将模拟器中植入的膝关节接触压力和运动学与完整组进行比较。使用半月板下插入的压敏膜在55°屈曲时测量接触压力。通过两次30秒的捕捉以光学方式测量三维运动学。

结果

完整膝关节内侧和外侧髁的峰值接触压力分别为3.6±1.0MPa和6.0±2.1MPa(P<0.05),与先前研究相比无显著差异(P>0.4)。内侧植入后的峰值压力为4.3±2.2MPa(与完整组相比P>0.4),而外侧峰值压力(9.4±0.8MPa)在内侧间室植入后升高(P<0.01)。完整关节的运动范围为屈伸37°±1°,内翻/外翻1°±1°,外旋/内旋5°±3°,外侧/内侧平移2±1mm,前后平移3±1mm,牵张/压缩1±1mm。模拟器中绵羊关节的运动学与已发表的完整组数据无显著差异,完整组和植入组具有可比性(P>0.01),除了牵张 - 压缩方面(P<0.01)。

结论

这些发现表明绵羊模拟器的运动学与步态参数相符。通过植入PVA - PEG水凝胶内侧半月板置换物证明了该模拟器评估新治疗方法的功效,该置换物恢复了内侧峰值接触压力,但未恢复外侧的。这种新型模拟器可能有助于未来手术程序开发的工作,降低后续在活体动物中进行研究的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/370d/11237960/0201fb8f8502/fbioe-12-1410053-g001.jpg

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