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Experimental investigation of cross-nerve transfers relating to repair of brachial plexus avulsion injuries

✍ Scribed by Bruno Battiston; Pierangelo Guizzi; Adolfo Vigasio; Giorgio Brunelli


Book ID
102513581
Publisher
John Wiley and Sons
Year
1990
Tongue
English
Weight
380 KB
Volume
11
Category
Article
ISSN
0738-1085

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✦ Synopsis


Abstract

There is a lack of agreement regarding the potential for peripheral nerve cells with short axons to regenerate and innervate the terminal end organs of nerve cells with long axons. We designed a study to evaluate experimentally the possibility of neurons to reconstitute much longer axonal segments. Twenty Wistar rats were used. The brachial plexus was isolated and the radial nerve transected immediately after its origin. The proximal end of the axillary nerve (previously cut) then was coapted to the distal stump of the radial nerve. In 10 other rats, the cut radial nerve was simply recoapted to itself without involvement of the axillary nerve; these animals served as controls. Finally, in 10 rats, nerves were cut without repair to evaluate the degenerative changes. After 90 days, the distal part of the radial nerve was examined by light microscopy, calculating the number and area of regenerated axons. We also checked the motor end‐plates of reinnervated muscles. In the nerve‐transferred group, good axonal regeneration with good reinnervation of the muscles was seen. In this way, we have experimentally demonstrated a plasticity of regeneration in peripheral nerves. This suggests that the surgeon may use nerves connected to proximal muscles to neurotize avulsed nerves of distal muscles.


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Combined nerve transfers for repair of t
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## Abstract The upper brachial plexus injury leads to paralysis of muscles innervated by C5 and C6 nerve roots. In this report, we present our experience on the use of the combined nerve transfers for reconstruction of the upper brachial plexus injury. Nine male patients with the upper brachial ple