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通过合成微孔管(膨体聚四氟乙烯)进行神经再生:大鼠坐骨神经的实验研究

Nerve regeneration through a synthetic microporous tube (expanded polytetrafluoroethylene): experimental study in the sciatic nerve of the rat.

作者信息

Cuadros C L, Granatir C E

出版信息

Microsurgery. 1987;8(2):41-7. doi: 10.1002/micr.1920080202.

Abstract

Nerve grafts made of expanded polytetrafluoroethylene (PTFE) were used to bridge 10-mm gaps in the sciatic nerves of rats. The most prominent gross and histological finding was abundant neovascularization and capillary ingrowth through the microporous PTFE wall. Organized, myelinated nerve tissue was observed. After 4 months, regeneration through hollow PTFE tubes (N = 16) was equivalent to autogenous nerve grafts (N = 12) as measured by gastrocnemius muscle weights (P = 0.33). Nerve conduction velocity in the hollow PTFE tubes was 21.7 m/sec as compared to 50.6 m/sec in the control nerves (P less than 0.001).

摘要

用膨体聚四氟乙烯(PTFE)制成的神经移植物来桥接大鼠坐骨神经上10毫米的间隙。最显著的大体和组织学发现是通过微孔PTFE壁出现了丰富的新生血管形成和毛细血管长入。观察到了有组织的、有髓神经组织。4个月后,通过中空PTFE管(N = 16)的再生情况,以腓肠肌重量衡量,与自体神经移植物(N = 12)相当(P = 0.33)。中空PTFE管中的神经传导速度为21.7米/秒,而对照神经中的为50.6米/秒(P < 0.001)。

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