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Biological conduit small gap sleeve bridging method for peripheral nerve injury: regeneration law of nerve fibers in the conduit

机译:周围神经损伤的生物导管小间隙套筒桥接方法:导管中神经纤维的再生规律

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The clinical effects of 2-mm small gap sleeve bridging of the biological conduit to repair peripheral nerve injury are better than in the traditional epineurium suture, so it is possible to replace the epineurium suture in the treatment of peripheral nerve injury. This study sought to identify the regeneration law of nerve fibers in the biological conduit. A nerve regeneration chamber was constructed in models of sciatic nerve injury using 2-mm small gap sleeve bridging of a biodegradable biological conduit. The results showed that the biological conduit had good histocompatibility. Tissue and cell apoptosis in the conduit apparently lessened, and regenerating nerve fibers were common. The degeneration regeneration law of Schwann cells and axons in the conduit was quite different from that in traditional epineurium suture. During the prime period for nerve fiber regeneration (2-8 weeks), the number of Schwann cells and nerve fibers was higher in both proximal and distal ends, and the effects of the small gap sleeve bridging method were better than those of the traditional epineurium suture. The above results provide an objective and reliable theoretical basis for the clinical application of the biological conduit small gap sleeve bridging method to repair peripheral nerve injury.
机译:2 mm小间隙套管桥接生物导管修复周围神经损伤的临床效果优于传统的神经外膜缝合线,因此可以替代神经外膜缝合线治疗周围神经损伤。这项研究试图确定生物导管中神经纤维的再生规律。在坐骨神经损伤模型中,使用可生物降解的生物导管的2毫米小间隙套筒桥接构建了神经再生室。结果表明,该生物导管具有良好的组织相容性。导管中的组织和细胞凋亡明显减少,并且再生神经纤维很常见。雪旺细胞和轴突在导管中的退化再生规律与传统的神经外膜缝合线完全不同。在神经纤维再生的主要阶段(2-8周),雪旺氏细胞和神经纤维的数量在近端和远端均较高,小间隙套管桥接方法的效果优于传统的神经外膜缝合。以上结果为生物导管小间隙套筒桥接方法修复周围神经损伤的临床应用提供了客观可靠的理论依据。

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