Literature DB >> 2587658

Autogenous vein graft repair of digital nerve defects in the finger: a retrospective clinical study.

R L Walton1, R E Brown, W E Matory, G L Borah, J L Dolph.   

Abstract

Twenty-two digital nerve repairs were performed in the finger using autogenous vein grafts. Eighty-two percent of the repairs were available for follow-up. Results of sensibility return were assessed using moving two-point discrimination, Semmes-Weinstein monofilaments, and vibratory testing. Two-point discrimination averaged 4.6 mm for 11 acute digital nerve repairs using vein conduits 1 to 3 cm in length. Delayed digital nerve repair with vein conduits yielded poor results. Semmes-Weinstein values demonstrated comparable levels of return of slowly adapting fiber/receptors to the quickly adapting fiber/receptors, as evidenced by moving two-point discrimination tests. Vibratory sensibility was present in all. A review of previous experiences with end-to-end digital neurorrhaphies and digital nerve grafting suggests that repair of 1- to 3-cm gaps in digital nerves with segments of autologous vein grafts appears to give comparable results to nerve grafting. Further laboratory and clinical research is necessary to better define the role of interpositional vein conduits for repair of peripheral nerves.

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Mesh:

Year:  1989        PMID: 2587658

Source DB:  PubMed          Journal:  Plast Reconstr Surg        ISSN: 0032-1052            Impact factor:   4.730


  15 in total

1.  Considerations in nerve repair.

Authors:  Larry M Wolford; Eber L L Stevao
Journal:  Proc (Bayl Univ Med Cent)       Date:  2003-04

Review 2.  Clinical outcomes for Conduits and Scaffolds in peripheral nerve repair.

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3.  A New Preparation Method for Anisotropic Silk Fibroin Nerve Guidance Conduits and Its Evaluation In Vitro and in a Rat Sciatic Nerve Defect Model.

Authors:  Andreas Herbert Teuschl; Christina Schuh; Robert Halbweis; Krisztián Pajer; Gábor Márton; Rudolf Hopf; Shorena Mosia; Dominik Rünzler; Heinz Redl; Antal Nógrádi; Thomas Hausner
Journal:  Tissue Eng Part C Methods       Date:  2015-05-18       Impact factor: 3.056

4.  Thoracic sympathetic nerve reconstruction for compensatory hyperhidrosis: the Melbourne technique.

Authors:  Hye-Sung Park; Chris Hensman; James Leong
Journal:  Ann Transl Med       Date:  2014-05

5.  Digital nerve injuries: a review of predictors of sensory recovery after microsurgical digital nerve repair.

Authors:  Joline F Mermans; Bas B G M Franssen; Jan Serroyen; Rene R W J Van der Hulst
Journal:  Hand (N Y)       Date:  2012-06-28

Review 6.  Types of neural guides and using nanotechnology for peripheral nerve reconstruction.

Authors:  Esmaeil Biazar; M T Khorasani; Naser Montazeri; Khalil Pourshamsian; Morteza Daliri; Mostafa Rezaei; Mahmoud Jabarvand; Ahad Khoshzaban; Saeed Heidari; Mostafa Jafarpour; Ziba Roviemiab
Journal:  Int J Nanomedicine       Date:  2010-10-21

Review 7.  Peripheral nerve regeneration with conduits: use of vein tubes.

Authors:  Rodrigo Guerra Sabongi; Marcela Fernandes; João Baptista Gomes Dos Santos
Journal:  Neural Regen Res       Date:  2015-04       Impact factor: 5.135

8.  Update on nerve repair by biological tubulization.

Authors:  Stefano Geuna; Pierluigi Tos; Paolo Titolo; Davide Ciclamini; Teresa Beningo; Bruno Battiston
Journal:  J Brachial Plex Peripher Nerve Inj       Date:  2014-03-07

9.  Repair of peripheral nerve defects using a polyvinylidene fluoride channel containing nerve growth factor and collagen gel in adult rats.

Authors:  Hamdollah Delaviz; Abolfazel Faghihi; Alireza Azizzadeh Delshad; Mohamad Hadi Bahadori; Jamshid Mohamadi; Amrollah Roozbehi
Journal:  Cell J       Date:  2011-09-23       Impact factor: 2.479

10.  Sensory recovery outcome after digital nerve repair in relation to different reconstructive techniques: meta-analysis and systematic review.

Authors:  Felix J Paprottka; Petra Wolf; Yves Harder; Yasmin Kern; Philipp M Paprottka; Hans-Günther Machens; Jörn A Lohmeyer
Journal:  Plast Surg Int       Date:  2013-07-30
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