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Dog sciatic nerve gap repaired by artificial tissue nerve graft

机译:人工组织神经移植修复狗坐骨神经间隙

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摘要

The feasibility of repairing dog sciatic nerve damage by using a biodegradable artificial tissue nerve graft enriched with neuroregenerating factors is investigated. The artificial nerve graft was implanted to a 30 mm gap of the sciatic nerve damage in 7 dogs. The dogs with the same nerve damage that were repaired by interposition of the autologous nerve or were given no treatment served as con-. trol group 1 or 2, respectively. The observations include gross and morphological observations, immune reaction, electrophysiological examination, fluorescence tracing of the neuron formation and the number of the neurons at the experimental sites, etc. Results showed that 6 months after the implantation of the graft, the regenerated nerve repaired the damage of the sciatic nerve without occurrence of rejection and obvious inflammatory reaction in all 7 dogs, and the function of the sciatic nerve recovered with the nerve conduction velocity of (23. 91 ± 11. 35)m/s. The regenerated neurons and the forming of axon could be observed under an electron microscope. This proves that artificial tissue nerve graft transplantation can bridge the damaged nerve ends and promote the nerve regeneration.
机译:研究了使用富含神经再生因子的可生物降解的人工组织神经移植物修复狗坐骨神经损伤的可行性。将人工神经移植物植入7只狗的坐骨神经损伤的30 mm间隙。具有相同神经损伤的狗可以通过插入自体神经进行修复或不接受任何治疗。 trol组1或2。观察结果包括肉眼和形态学观察,免疫反应,电生理检查,神经元形成的荧光示踪以及实验部位神经元的数量等。结果显示,移植物植入后6个月,再生神经修复了移植物。在所有7只狗中均未发生坐骨神经损伤,没有排斥反应和明显的炎症反应,坐骨神经功能以(23. 91±11. 35)m / s的神经传导速度恢复。在电子显微镜下可以观察到再生的神经元和轴突的形成。这证明了人工组织神经移植可以桥接受损的神经末端并促进神经再生。

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