Anatomic Study of the Bifurcation of the Obturator Nerve: Application to More Precise Surgical/Procedural Localization.

Anatomy Cadaver Lumbar plexus Obturator canal Obturator foramen Obturator nerve Obturator nerve block

Journal

World neurosurgery
ISSN: 1878-8769
Titre abrégé: World Neurosurg
Pays: United States
ID NLM: 101528275

Informations de publication

Date de publication:
08 2020
Historique:
received: 21 11 2019
revised: 19 03 2020
accepted: 20 03 2020
pubmed: 7 4 2020
medline: 17 12 2020
entrez: 7 4 2020
Statut: ppublish

Résumé

This anatomic study aimed to more precisely locate the bifurcation of the obturator nerve in relationship to the obturator foramen. Such information might improve outcomes in neurotization or other procedures necessitating exposure of the obturator nerve and could increase success rates for obturator nerve blockade. Fourteen sides from fresh-frozen cadaveric specimens were used in this study. Dissection of the obturator nerve was performed, and its bifurcation into anterior and posterior branches was documented and classified. Measurements of these branches were also performed. Bifurcations of the obturator nerve were classified as type I when proximal to the obturator foramen, type II when inside the obturator foramen, and type III when distal to the obturator foramen. Type I, type II, and type III obturator nerve bifurcations were observed in 14.3%, 64.3%, and 21.4% of sides, respectively. In type I nerves, the mean distance from the bifurcation of the obturator nerve to the obturator foramen was 15.8 mm, and in type II nerves the mean was 14.0 mm. The mean diameter of the main trunk, anterior branch, and posterior branch was 3.74 mm, 2.64 mm, and 2.28 mm, respectively. Bifurcation of the obturator nerve can occur proximally, distally, or inside the obturator foramen. Therefore using imaging modalities such as ultrasound is strongly recommended for identifying the main trunk or anterior and posterior branches of the obturator nerve before surgery or other procedures aimed at this nerve due to such anatomic variations.

Sections du résumé

BACKGROUND
This anatomic study aimed to more precisely locate the bifurcation of the obturator nerve in relationship to the obturator foramen. Such information might improve outcomes in neurotization or other procedures necessitating exposure of the obturator nerve and could increase success rates for obturator nerve blockade.
METHODS
Fourteen sides from fresh-frozen cadaveric specimens were used in this study. Dissection of the obturator nerve was performed, and its bifurcation into anterior and posterior branches was documented and classified. Measurements of these branches were also performed. Bifurcations of the obturator nerve were classified as type I when proximal to the obturator foramen, type II when inside the obturator foramen, and type III when distal to the obturator foramen.
RESULTS
Type I, type II, and type III obturator nerve bifurcations were observed in 14.3%, 64.3%, and 21.4% of sides, respectively. In type I nerves, the mean distance from the bifurcation of the obturator nerve to the obturator foramen was 15.8 mm, and in type II nerves the mean was 14.0 mm. The mean diameter of the main trunk, anterior branch, and posterior branch was 3.74 mm, 2.64 mm, and 2.28 mm, respectively.
CONCLUSIONS
Bifurcation of the obturator nerve can occur proximally, distally, or inside the obturator foramen. Therefore using imaging modalities such as ultrasound is strongly recommended for identifying the main trunk or anterior and posterior branches of the obturator nerve before surgery or other procedures aimed at this nerve due to such anatomic variations.

Identifiants

pubmed: 32251810
pii: S1878-8750(20)30584-2
doi: 10.1016/j.wneu.2020.03.113
pii:
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

e23-e26

Informations de copyright

Copyright © 2020 Elsevier Inc. All rights reserved.

Auteurs

Joe Iwanaga (J)

Department of Neurosurgery, Tulane Center for Clinical Neurosciences, Tulane University School of Medicine, New Orleans, Louisiana, USA; Department of Anatomy, Division of Gross and Clinical Anatomy, Kurume University School of Medicine, Kurume, Fukuoka, Japan. Electronic address: iwanagajoeca@gmail.com.

Basem Ishak (B)

Department of Neurosurgery, Heidelberg University Hospital, Heidelberg, Germany.

Emre Yilmaz (E)

Department of Trauma Surgery, BG University Hospital Bergmannsheil, Ruhr University, Bochum, Germany.

Alex von Glinski (A)

Department of Trauma Surgery, BG University Hospital Bergmannsheil, Ruhr University, Bochum, Germany.

Jerzy Gielecki (J)

Department of Radiology, Collegium Medicum, School of Medicine, Olsztyn, Poland; Department of Anatomy, University of Warmia and Mazury, Olsztyn, Poland.

Aaron S Dumont (AS)

Department of Neurosurgery, Tulane Center for Clinical Neurosciences, Tulane University School of Medicine, New Orleans, Louisiana, USA.

R Shane Tubbs (RS)

Department of Neurosurgery, Tulane Center for Clinical Neurosciences, Tulane University School of Medicine, New Orleans, Louisiana, USA; Department of Structural & Cellular Biology, Tulane University School of Medicine, New Orleans, Louisiana, USA; Department of Neurosurgery and Ochsner Neuroscience Institute, Ochsner Health System, New Orleans, Louisiana, USA; Department of Anatomical Sciences, St. George's University, St. George's, Grenada.

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