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轴突计数为肱三头肌束状神经至腋神经转移提供了多种选择。

Axon Counts Yield Multiple Options for Triceps Fascicular Nerve to Axillary Nerve Transfer.

作者信息

Khair M Michael, Schreiber Joseph J, Rosenblatt Lauren, Byun David J, Lee Steve K, Wolfe Scott W

机构信息

Hand and Upper Extremity Center for Brachial Plexus and Traumatic Nerve Injury, Hospital for Special Surgery, New York, NY.

Hand and Upper Extremity Center for Brachial Plexus and Traumatic Nerve Injury, Hospital for Special Surgery, New York, NY.

出版信息

J Hand Surg Am. 2016 Nov;41(11):e405-e410. doi: 10.1016/j.jhsa.2016.07.110. Epub 2016 Aug 28.

Abstract

PURPOSE

To evaluate the relative axonal match between potential donor and recipient nerves, so that maximal reinnervation potential may be reached with the least chance of donor site morbidity.

METHODS

In 10 fresh-frozen cadaveric specimens, the main trunk and anterior, posterior, sensory and teres minor branches of the axillary nerve were identified, as were the radial nerve branches to the long, medial, and lateral heads of the triceps. The swing distances of the triceps fascicular nerve branches and the axillary nerve branches relative to the inferior border of the teres major muscle were recorded. Histomorphological analysis and axon counts were performed on sections of each branch.

RESULTS

The median number of axons in the main axillary trunk was 7,887, with 4,052, 1,242, and 1,161 axons in the anterior, posterior, and teres minor branches, respectively. All specimens had a single long head triceps branch (median, 2,302 axons), a range of 1 to 3 branches to the medial head of the triceps (composite axon count, 2,198 axons), and 1 to 3 branches to the lateral head of the triceps (composite average, 1,462 axons). The medial and lateral head branches had sufficient swing distance to reach the anterior branch of the axillary nerve in all 10 specimens, with only 4 specimens having adequate long head branch swing distances.

CONCLUSIONS

It is anatomically feasible to transfer multiple branches of the radial nerve supplying the medial, lateral, and sometimes, long head of the triceps to all branches of the axillary nerve in an attempt to reinnervate the deltoid and teres minor muscles.

CLINICAL RELEVANCE

Understanding the axon counts of the different possible transfer combinations will improve operative flexibility and enable peripheral nerve surgeons to reinnervate for both abduction and external rotation with the highest donor/recipient axon count ratios.

摘要

目的

评估潜在供体神经与受体神经之间的相对轴突匹配情况,以便在供体部位发病几率最小的情况下达到最大的再支配潜力。

方法

在10个新鲜冷冻尸体标本中,识别腋神经的主干、前支、后支、感觉支和小圆肌支,以及桡神经至肱三头肌长头、内侧头和外侧头的分支。记录肱三头肌束状神经分支和腋神经分支相对于大圆肌下缘的摆动距离。对每个分支的切片进行组织形态学分析和轴突计数。

结果

腋神经主干的轴突中位数为7887条,前支、后支和小圆肌支的轴突分别为4052条、1242条和1161条。所有标本均有一条肱三头肌长头分支(中位数为2302条轴突),肱三头肌内侧头有1至3条分支(复合轴突计数为2198条轴突),肱三头肌外侧头有1至3条分支(复合平均数为1462条轴突)。在所有10个标本中,内侧头和外侧头分支有足够的摆动距离到达腋神经前支,只有4个标本的长头分支摆动距离足够。

结论

将桡神经供应肱三头肌内侧头、外侧头,有时还有长头的多个分支转移至腋神经的所有分支,以试图重新支配三角肌和小圆肌,在解剖学上是可行的。

临床意义

了解不同可能转移组合的轴突计数将提高手术灵活性,并使周围神经外科医生能够以最高的供体/受体轴突计数比率进行外展和外旋的再支配。

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