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“Neuro-Fiber Mapping”: An Original Concept of Spinal Cord Neural Network Spatial Targeting Using Live Electrostimulation Mapping to (Re-)Explore the Conus Medullaris Anatomy

Spinal cord (SC) anatomy is often assimilated to a morphologically encapsulated neural entity, but its functional anatomy remains only partially understood. We hypothesized that it could be possible to re-explore SC neural networks by performing live electrostimulation mapping, based on “super-selec...

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Autores principales: Rigoard, Philippe, Moens, Maarten, Goudman, Lisa, Le Tutour, Tom, Rochette, Michel, Dany, Jonathan, Et Talby, Mohamed, Roulaud, Manuel, Hervochon, Rémi, Ounajim, Amine, Nivole, Kévin, David, Romain, Billot, Maxime
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10002982/
https://www.ncbi.nlm.nih.gov/pubmed/36902533
http://dx.doi.org/10.3390/jcm12051747
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author Rigoard, Philippe
Moens, Maarten
Goudman, Lisa
Le Tutour, Tom
Rochette, Michel
Dany, Jonathan
Et Talby, Mohamed
Roulaud, Manuel
Hervochon, Rémi
Ounajim, Amine
Nivole, Kévin
David, Romain
Billot, Maxime
author_facet Rigoard, Philippe
Moens, Maarten
Goudman, Lisa
Le Tutour, Tom
Rochette, Michel
Dany, Jonathan
Et Talby, Mohamed
Roulaud, Manuel
Hervochon, Rémi
Ounajim, Amine
Nivole, Kévin
David, Romain
Billot, Maxime
author_sort Rigoard, Philippe
collection PubMed
description Spinal cord (SC) anatomy is often assimilated to a morphologically encapsulated neural entity, but its functional anatomy remains only partially understood. We hypothesized that it could be possible to re-explore SC neural networks by performing live electrostimulation mapping, based on “super-selective” spinal cord stimulation (SCS), originally designed as a therapeutical tool to address chronic refractory pain. As a starting point, we initiated a systematic SCS lead programming approach using live electrostimulation mapping on a chronic refractory perineal pain patient, previously implanted with multicolumn SCS at the level of the conus medullaris (T12-L1). It appeared possible to (re-)explore the classical anatomy of the conus medullaris using statistical correlations of paresthesia coverage mappings, resulting from 165 different electrical configurations tested. We highlighted that sacral dermatomes were not only located more medially but also deeper than lumbar dermatomes at the level of the conus medullaris, in contrast with classical anatomical descriptions of SC somatotopical organization. As we were finally able to find a morphofunctional description of “Philippe–Gombault’s triangle” in 19th-century historical textbooks of neuroanatomy, remarkably matching these conclusions, the concept of “neuro-fiber mapping” was introduced.
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spelling pubmed-100029822023-03-11 “Neuro-Fiber Mapping”: An Original Concept of Spinal Cord Neural Network Spatial Targeting Using Live Electrostimulation Mapping to (Re-)Explore the Conus Medullaris Anatomy Rigoard, Philippe Moens, Maarten Goudman, Lisa Le Tutour, Tom Rochette, Michel Dany, Jonathan Et Talby, Mohamed Roulaud, Manuel Hervochon, Rémi Ounajim, Amine Nivole, Kévin David, Romain Billot, Maxime J Clin Med Article Spinal cord (SC) anatomy is often assimilated to a morphologically encapsulated neural entity, but its functional anatomy remains only partially understood. We hypothesized that it could be possible to re-explore SC neural networks by performing live electrostimulation mapping, based on “super-selective” spinal cord stimulation (SCS), originally designed as a therapeutical tool to address chronic refractory pain. As a starting point, we initiated a systematic SCS lead programming approach using live electrostimulation mapping on a chronic refractory perineal pain patient, previously implanted with multicolumn SCS at the level of the conus medullaris (T12-L1). It appeared possible to (re-)explore the classical anatomy of the conus medullaris using statistical correlations of paresthesia coverage mappings, resulting from 165 different electrical configurations tested. We highlighted that sacral dermatomes were not only located more medially but also deeper than lumbar dermatomes at the level of the conus medullaris, in contrast with classical anatomical descriptions of SC somatotopical organization. As we were finally able to find a morphofunctional description of “Philippe–Gombault’s triangle” in 19th-century historical textbooks of neuroanatomy, remarkably matching these conclusions, the concept of “neuro-fiber mapping” was introduced. MDPI 2023-02-22 /pmc/articles/PMC10002982/ /pubmed/36902533 http://dx.doi.org/10.3390/jcm12051747 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rigoard, Philippe
Moens, Maarten
Goudman, Lisa
Le Tutour, Tom
Rochette, Michel
Dany, Jonathan
Et Talby, Mohamed
Roulaud, Manuel
Hervochon, Rémi
Ounajim, Amine
Nivole, Kévin
David, Romain
Billot, Maxime
“Neuro-Fiber Mapping”: An Original Concept of Spinal Cord Neural Network Spatial Targeting Using Live Electrostimulation Mapping to (Re-)Explore the Conus Medullaris Anatomy
title “Neuro-Fiber Mapping”: An Original Concept of Spinal Cord Neural Network Spatial Targeting Using Live Electrostimulation Mapping to (Re-)Explore the Conus Medullaris Anatomy
title_full “Neuro-Fiber Mapping”: An Original Concept of Spinal Cord Neural Network Spatial Targeting Using Live Electrostimulation Mapping to (Re-)Explore the Conus Medullaris Anatomy
title_fullStr “Neuro-Fiber Mapping”: An Original Concept of Spinal Cord Neural Network Spatial Targeting Using Live Electrostimulation Mapping to (Re-)Explore the Conus Medullaris Anatomy
title_full_unstemmed “Neuro-Fiber Mapping”: An Original Concept of Spinal Cord Neural Network Spatial Targeting Using Live Electrostimulation Mapping to (Re-)Explore the Conus Medullaris Anatomy
title_short “Neuro-Fiber Mapping”: An Original Concept of Spinal Cord Neural Network Spatial Targeting Using Live Electrostimulation Mapping to (Re-)Explore the Conus Medullaris Anatomy
title_sort “neuro-fiber mapping”: an original concept of spinal cord neural network spatial targeting using live electrostimulation mapping to (re-)explore the conus medullaris anatomy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10002982/
https://www.ncbi.nlm.nih.gov/pubmed/36902533
http://dx.doi.org/10.3390/jcm12051747
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