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使用单束神经移植物桥接周围神经缺损。

Bridging peripheral nerve defects using a single-fascicle nerve graft.

机构信息

Vienna, Austria From the Division of Plastic and Reconstructive Surgery, Department of Surgery, Medical University of Vienna.

出版信息

Plast Reconstr Surg. 2011 Oct;128(4):861-869. doi: 10.1097/PRS.0b013e31821b6369.

Abstract

BACKGROUND

The criterion standard of nerve reconstruction is an autologous nerve graft, identical in cross-section to the severed nerve stumps. This study investigates single-fascicle nerve transplantation to bridge nerve defects.

METHODS

Forty female Sprague-Dawley rats, each weighing approximately 225 g, were randomized into five groups. Groups A and B were the positive and negative control groups, respectively. In the experimental groups (groups C, D, and E), a nerve defect of 25 mm was created in the right sciatic nerve and reconstructed with a reversed sciatic nerve graft, a three-fascicle sural nerve graft, or a single-fascicle sural nerve graft, respectively.

RESULTS

Functional muscle evaluation of the triceps surae differed significantly among the reverse nerve (group C, n=10; 600±154.16 mN), triple-fascicle (group D, n=10; 411±262 mN), and single-fascicle (group E, n=10; 324±215.8 mN) graft groups (p<0.05). The results of retrograde labeling of the reverse nerve group (group C, 518±2) showed that there were twice as many motor neurons as in the three-fascicle nerve group (group D, 221±19). In the single-fascicle nerve group, motor neurons were scarce and faintly labeled (group E, 180±25).

CONCLUSION

The results showed that single-fascicle nerve grafting has potential for good functional nerve regeneration.

摘要

背景

神经重建的标准是与切断的神经残端横截面相同的自体神经移植物。本研究调查了单束神经移植来桥接神经缺损。

方法

40 只雌性 Sprague-Dawley 大鼠,每只重约 225 克,随机分为五组。A 组和 B 组分别为阳性和阴性对照组。在实验组(C、D 和 E 组)中,右侧坐骨神经的神经缺损为 25mm,分别用逆行坐骨神经移植物、三束腓肠神经移植物或单束腓肠神经移植物进行重建。

结果

比目鱼肌功能肌肉评估在逆行神经(C 组,n=10;600±154.16mN)、三束腓肠神经(D 组,n=10;411±262mN)和单束腓肠神经(E 组,n=10;324±215.8mN)移植物组之间有显著差异(p<0.05)。逆行标记的逆行神经组(C 组,518±2)的结果表明,运动神经元的数量是三束神经组(D 组,221±19)的两倍。在单束神经组中,运动神经元稀少且标记微弱(E 组,180±25)。

结论

结果表明,单束神经移植具有良好的功能性神经再生潜力。

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