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后交叉韧带撕裂的全关节镜下半月板缝合构型的生物力学比较:三种传统缝线与三角抓持缝线。

Biomechanical comparison of all-inside meniscal suture configurations for posterior root tear: Three conventional stitches versus delta-grip stitch.

作者信息

Ishibashi Kyohei, Ishibashi Kyota, Tsushima Takahiro, Sasaki Eiji, Yamauchi Shohei, Kimura Yuka, Ishibashi Yasuyuki

机构信息

Department of Orthopaedic Surgery Hirosaki University Graduate School of Medicine Hirosaki Japan.

出版信息

J Exp Orthop. 2025 Jan 22;12(1):e70149. doi: 10.1002/jeo2.70149. eCollection 2025 Jan.

Abstract

PURPOSE

This study aimed to compare the biomechanical properties of four meniscal suture configurations-two simple sutures (TSS), two cinch sutures, a locking loop stitch (LLS), and a delta-grip stitch (DGS)-for transtibial pullout repair of medial meniscus posterior root tears (MMPRTs) using porcine menisci.

METHODS

Forty porcine menisci were randomly assigned to each suture configuration with all-inside repair. All specimens were subjected to cyclic loading for 1000 cycles, followed by a load-to-failure test. We evaluated displacement after cyclic loading, the ultimate failure load and the mode of failure.

RESULTS

No significant differences in displacement were observed between the configurations ( = 0.709). The DGS exhibited significantly higher ultimate failure loads (281.4 ± 53.5 N) compared to TSS (166.8 ± 84.5 N) and the LLS (119.7 ± 46.7 N) ( = 0.006 and  < 0.001, respectively). Suture breakage was observed in the DGS group, while meniscus cutout was observed in the other suture configuration models.

CONCLUSION

The results suggest that the DGS provides superior fixation strength and enhances MMPRT repair outcomes.

LEVEL OF EVIDENCE

Level IV.

摘要

目的

本研究旨在使用猪半月板比较四种半月板缝合构型——两种简单缝合(TSS)、两种褥式缝合、一种锁定环缝合法(LLS)和一种三角抓持缝合法(DGS)——用于内侧半月板后根部撕裂(MMPRT)经胫骨拉出修复的生物力学特性。

方法

40个猪半月板随机分配至每种全关节内修复的缝合构型。所有标本均接受1000次循环加载,随后进行破坏载荷测试。我们评估了循环加载后的位移、极限破坏载荷和破坏模式。

结果

各构型之间在位移方面未观察到显著差异(P = 0.709)。与TSS(166.8±84.5 N)和LLS(119.7±46.7 N)相比,DGS表现出显著更高的极限破坏载荷(281.4±53.5 N)(分别为P = 0.006和P<0.001)。在DGS组观察到缝线断裂,而在其他缝合构型模型中观察到半月板切出。

结论

结果表明,DGS提供了卓越的固定强度并改善了MMPRT修复结果。

证据水平

四级。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e57/11751621/c9fff04b7240/JEO2-12-e70149-g001.jpg

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