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臂丛神经重建中的端侧神经吻合术。

End-to-side neurorrhaphy in brachial plexus reconstruction.

机构信息

Third Faculty of Medicine, Charles University, Department of Neurosurgery, Hospital Kralovske Vinohrady, Prague, Czech Republic.

出版信息

J Neurosurg. 2013 Sep;119(3):689-94. doi: 10.3171/2013.6.JNS122211. Epub 2013 Jul 12.

Abstract

OBJECT

Although a number of theoretical and experimental studies dealing with end-to-side neurorrhaphy (ETSN) have been published to date, there is still a considerable lack of clinical trials investigating this technique. Here, the authors describe their experience with ETSN in axillary and musculocutaneous nerve reconstruction in patients with brachial plexus palsy.

METHODS

From 1999 to 2007, out of 791 reconstructed nerves in 441 patients treated for brachial plexus injury, the authors performed 21 axillary and 2 musculocutaneous nerve sutures onto the median, ulnar, or radial nerves. This technique was only performed in patients whose donor nerves, such as the thoracodorsal and medial pectoral nerves, which the authors generally use for repair of axillary and musculocutaneous nerves, respectively, were not available. In all patients, a perineurial suture was carried out after the creation of a perineurial window.

RESULTS

The overall success rate of the ETSN was 43.5%. Reinnervation of the deltoid muscle with axillary nerve suture was successful in 47.6% of the patients, but reinnervation of the biceps muscle was unsuccessful in the 2 patients undergoing musculocutaneous nerve repair.

CONCLUSIONS

The authors conclude that ETSN should be performed in axillary nerve reconstruction but only when commonly used donor nerves are not available.

摘要

目的

尽管已有大量关于端侧神经吻合术(ETSN)的理论和实验研究发表,但目前仍缺乏对该技术进行临床研究的报道。本文作者介绍了他们在臂丛神经损伤患者腋神经和肌皮神经重建中应用 ETSN 的经验。

方法

1999 年至 2007 年,作者对 441 例臂丛神经损伤患者的 791 条重建神经进行了研究,其中 21 条腋神经和 2 条肌皮神经分别吻合至正中神经、尺神经或桡神经。仅在供体神经(如胸背神经和内侧胸肌神经)无法使用时,作者才采用这种技术修复腋神经和肌皮神经。所有患者均在建立神经外膜窗后进行神经外膜缝合。

结果

ETSN 的总体成功率为 43.5%。腋神经吻合术后三角肌的神经再支配成功率为 47.6%,但行肌皮神经修复的 2 例患者的肱二头肌神经再支配均未成功。

结论

作者认为,腋神经重建时应采用 ETSN,但仅在无法使用常用供体神经时才采用。

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