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The Impact of Spinal Cord Nerve Roots and Denticulate Ligaments on Cerebrospinal Fluid Dynamics in the Cervical Spine

Cerebrospinal fluid (CSF) dynamics in the spinal subarachnoid space (SSS) have been thought to play an important pathophysiological role in syringomyelia, Chiari I malformation (CM), and a role in intrathecal drug delivery. Yet, the impact that fine anatomical structures, including nerve roots and d...

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Autores principales: Heidari Pahlavian, Soroush, Yiallourou, Theresia, Tubbs, R. Shane, Bunck, Alexander C., Loth, Francis, Goodin, Mark, Raisee, Mehrdad, Martin, Bryn A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3977950/
https://www.ncbi.nlm.nih.gov/pubmed/24710111
http://dx.doi.org/10.1371/journal.pone.0091888
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author Heidari Pahlavian, Soroush
Yiallourou, Theresia
Tubbs, R. Shane
Bunck, Alexander C.
Loth, Francis
Goodin, Mark
Raisee, Mehrdad
Martin, Bryn A.
author_facet Heidari Pahlavian, Soroush
Yiallourou, Theresia
Tubbs, R. Shane
Bunck, Alexander C.
Loth, Francis
Goodin, Mark
Raisee, Mehrdad
Martin, Bryn A.
author_sort Heidari Pahlavian, Soroush
collection PubMed
description Cerebrospinal fluid (CSF) dynamics in the spinal subarachnoid space (SSS) have been thought to play an important pathophysiological role in syringomyelia, Chiari I malformation (CM), and a role in intrathecal drug delivery. Yet, the impact that fine anatomical structures, including nerve roots and denticulate ligaments (NRDL), have on SSS CSF dynamics is not clear. In the present study we assessed the impact of NRDL on CSF dynamics in the cervical SSS. The 3D geometry of the cervical SSS was reconstructed based on manual segmentation of MRI images of a healthy volunteer and a patient with CM. Idealized NRDL were designed and added to each of the geometries based on in vivo measurments in the literature and confirmation by a neuroanatomist. CFD simulations were performed for the healthy and patient case with and without NRDL included. Our results showed that the NRDL had an important impact on CSF dynamics in terms of velocity field and flow patterns. However, pressure distribution was not altered greatly although the NRDL cases required a larger pressure gradient to maintain the same flow. Also, the NRDL did not alter CSF dynamics to a great degree in the SSS from the foramen magnum to the C1 level for the healthy subject and CM patient with mild tonsillar herniation (∼6 mm). Overall, the NRDL increased fluid mixing phenomena and resulted in a more complex flow field. Comparison of the streamlines of CSF flow revealed that the presence of NRDL lead to the formation of vortical structures and remarkably increased the local mixing of the CSF throughout the SSS.
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spelling pubmed-39779502014-04-11 The Impact of Spinal Cord Nerve Roots and Denticulate Ligaments on Cerebrospinal Fluid Dynamics in the Cervical Spine Heidari Pahlavian, Soroush Yiallourou, Theresia Tubbs, R. Shane Bunck, Alexander C. Loth, Francis Goodin, Mark Raisee, Mehrdad Martin, Bryn A. PLoS One Research Article Cerebrospinal fluid (CSF) dynamics in the spinal subarachnoid space (SSS) have been thought to play an important pathophysiological role in syringomyelia, Chiari I malformation (CM), and a role in intrathecal drug delivery. Yet, the impact that fine anatomical structures, including nerve roots and denticulate ligaments (NRDL), have on SSS CSF dynamics is not clear. In the present study we assessed the impact of NRDL on CSF dynamics in the cervical SSS. The 3D geometry of the cervical SSS was reconstructed based on manual segmentation of MRI images of a healthy volunteer and a patient with CM. Idealized NRDL were designed and added to each of the geometries based on in vivo measurments in the literature and confirmation by a neuroanatomist. CFD simulations were performed for the healthy and patient case with and without NRDL included. Our results showed that the NRDL had an important impact on CSF dynamics in terms of velocity field and flow patterns. However, pressure distribution was not altered greatly although the NRDL cases required a larger pressure gradient to maintain the same flow. Also, the NRDL did not alter CSF dynamics to a great degree in the SSS from the foramen magnum to the C1 level for the healthy subject and CM patient with mild tonsillar herniation (∼6 mm). Overall, the NRDL increased fluid mixing phenomena and resulted in a more complex flow field. Comparison of the streamlines of CSF flow revealed that the presence of NRDL lead to the formation of vortical structures and remarkably increased the local mixing of the CSF throughout the SSS. Public Library of Science 2014-04-07 /pmc/articles/PMC3977950/ /pubmed/24710111 http://dx.doi.org/10.1371/journal.pone.0091888 Text en © 2014 Heidari Pahlavian et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Heidari Pahlavian, Soroush
Yiallourou, Theresia
Tubbs, R. Shane
Bunck, Alexander C.
Loth, Francis
Goodin, Mark
Raisee, Mehrdad
Martin, Bryn A.
The Impact of Spinal Cord Nerve Roots and Denticulate Ligaments on Cerebrospinal Fluid Dynamics in the Cervical Spine
title The Impact of Spinal Cord Nerve Roots and Denticulate Ligaments on Cerebrospinal Fluid Dynamics in the Cervical Spine
title_full The Impact of Spinal Cord Nerve Roots and Denticulate Ligaments on Cerebrospinal Fluid Dynamics in the Cervical Spine
title_fullStr The Impact of Spinal Cord Nerve Roots and Denticulate Ligaments on Cerebrospinal Fluid Dynamics in the Cervical Spine
title_full_unstemmed The Impact of Spinal Cord Nerve Roots and Denticulate Ligaments on Cerebrospinal Fluid Dynamics in the Cervical Spine
title_short The Impact of Spinal Cord Nerve Roots and Denticulate Ligaments on Cerebrospinal Fluid Dynamics in the Cervical Spine
title_sort impact of spinal cord nerve roots and denticulate ligaments on cerebrospinal fluid dynamics in the cervical spine
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3977950/
https://www.ncbi.nlm.nih.gov/pubmed/24710111
http://dx.doi.org/10.1371/journal.pone.0091888
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