首页> 外文期刊>Journal of orthopaedic research >Cartilage damage caused by metal implants applied for the treatment of established localized cartilage defects in a rabbit model.
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Cartilage damage caused by metal implants applied for the treatment of established localized cartilage defects in a rabbit model.

机译:金属植入物引起的软骨损伤,用于治疗兔模型中已建立的局部软骨缺损。

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The purpose of the current study was to investigate the feasibility of the application of defect-size femoral implants in a rabbit model of established cartilage defects and compare this treatment to microfracturing. In 31 New Zealand White rabbits, a medial femoral condyle defect was created in each knee. After 4 weeks, 3 animals were killed for defect baseline values. In the other 28 rabbits, knees were sham-operated, treated with microfracturing, or treated by placing an oxidized zirconium (OxZr) or cobalt-chromium (CoCr) implant (theta articulating surface 3.5 mm; fixating pin of 9.1 mm length). These animals were sacrificed 4 weeks after treatment. Joints were evaluated macroscopically. Implant osseointegration was measured by automated histomorphometry, and cartilage repair was scored microscopically. Cartilage quality was analyzed macroscopically and microscopically. Bone-implant contact was 63.2% +/- 3.2% for CoCr and 62.5% +/- 3.2% for OxZr. Cartilage defects did not show complete healing, norduring subsequent sham-surgery or microfracturing. For all treatments, considerable cartilage damage in the articulating medial tibia, and degeneration of lateral tibial and femoral cartilage was observed (p < 0.05). Both CoCr and OxZr implant-treated defects showed an increase of cartilage degeneration compared to microfracturing and sham-operated defects (p < 0.05). Although only a single short-term follow-up period was investigated in this study, caution is warranted using small metal implants as a treatment for established localized cartilage defects because, even after 4 weeks in this model, the metal implants caused considerable degeneration of the articulating surface.
机译:本研究的目的是研究在已建立的软骨缺损的兔模型中应用缺损大小的股骨植入物的可行性,并将这种治疗与微骨折进行比较。在31只新西兰白兔中,每个膝盖都产生了股内侧media缺陷。 4周后,处死3只动物的基线缺陷值。在另28只兔子中,假手术膝关节,进行微骨折治疗或通过放置氧化锆(OxZr)或钴铬(CoCr)植入物(θ关节表面3.5毫米;固定销长9.1毫米)进行治疗。治疗后4周将这些动物处死。宏观评估关节。通过自动组织形态学测量植入物的骨整合,并在显微镜下对软骨修复进行评分。宏观和微观分析软骨质量。 CoCr的骨-植入物接触率为63.2%+/- 3.2%,OxZr的骨接触率为62.5%+/- 3.2%。软骨缺损没有显示出完全的愈合,在随后的假手术或微骨折中也不明显。对于所有治疗,均观察到关节内侧胫骨软骨严重损伤,胫骨外侧和股骨软骨退化(p <0.05)。与微骨折和假手术缺损相比,CoCr和OxZr植入物治疗的缺损均显示出软骨变性的增加(p <0.05)。尽管在此研究中仅调查了一个短期随访期,但使用小型金属植入物作为已确定的局部软骨缺损的治疗仍需谨慎,因为即使在该模型中经过4周,金属植入物也会导致严重的牙髓变性。关节表面。

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