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Research ArticleSpine

Subject-Specific Studies of CSF Bulk Flow Patterns in the Spinal Canal: Implications for the Dispersion of Solute Particles in Intrathecal Drug Delivery

W. Coenen, C. Gutiérrez-Montes, S. Sincomb, E. Criado-Hidalgo, K. Wei, K. King, V. Haughton, C. Martínez-Bazán, A.L. Sánchez and J. C. Lasheras
American Journal of Neuroradiology July 2019, 40 (7) 1242-1249; DOI: https://doi.org/10.3174/ajnr.A6097
W. Coenen
aFrom the Departments of Mechanical and Aerospace Engineering (W.C., S.S., E.C.-H., A.L.S., J.C.L.)
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C. Gutiérrez-Montes
cDepartment of Mechanical and Mining Engineering (C.G.-M., C.M.-B.), University of Jaén, Jaén, Andalucía, Spain
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  • ORCID record for C. Gutiérrez-Montes
S. Sincomb
aFrom the Departments of Mechanical and Aerospace Engineering (W.C., S.S., E.C.-H., A.L.S., J.C.L.)
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E. Criado-Hidalgo
aFrom the Departments of Mechanical and Aerospace Engineering (W.C., S.S., E.C.-H., A.L.S., J.C.L.)
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K. Wei
dMRI Center (K.W., K.K.), Huntington Medical Research Institutes, Pasadena, California
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K. King
dMRI Center (K.W., K.K.), Huntington Medical Research Institutes, Pasadena, California
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V. Haughton
eDepartment of Radiology (V.H.), School of Medicine and Public Health, University of Wisconsin, Madison, Wisconsin.
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C. Martínez-Bazán
cDepartment of Mechanical and Mining Engineering (C.G.-M., C.M.-B.), University of Jaén, Jaén, Andalucía, Spain
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A.L. Sánchez
aFrom the Departments of Mechanical and Aerospace Engineering (W.C., S.S., E.C.-H., A.L.S., J.C.L.)
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J. C. Lasheras
aFrom the Departments of Mechanical and Aerospace Engineering (W.C., S.S., E.C.-H., A.L.S., J.C.L.)
bBioengineering (J.C.L.), University of California, San Diego, San Diego, California
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Abstract

BACKGROUND AND PURPOSE: Recent flow dynamics studies have shown that the eccentricity of the spinal cord affects the magnitude and characteristics of the slow bulk motion of CSF in the spinal subarachnoid space, which is an important variable in solute transport along the spinal canal. The goal of this study was to investigate how anatomic differences among subjects affect this bulk flow.

MATERIALS AND METHODS: T2-weighted spinal images were obtained in 4 subjects and repeated in 1 subject after repositioning. CSF velocity was calculated from phase-contrast MR images for 7 equally spaced levels along the length of the spine. This information was input into a 2-time-scale asymptotic analysis of the Navier-Stokes and concentration equations to calculate the short- and long-term CSF flow in the spinal subarachnoid space. Bulk flow streamlines were shown for each subject and position and inspected for differences in patterns.

RESULTS: The 4 subjects had variable degrees of lordosis and kyphosis. Repositioning in 1 subject changed the degree of cervical lordosis and thoracic kyphosis. The streamlines of bulk flow show the existence of distinct regions where the fluid particles flow in circular patterns. The location and interconnectivity of these recirculating regions varied among individuals and different positions.

CONCLUSIONS: Lordosis, kyphosis, and spinal cord eccentricity in the healthy human spine result in subject-specific patterns of bulk flow recirculating regions. The extent of the interconnectivity of the streamlines among these recirculating regions is fundamental in determining the long-term transport of solute particles along the spinal canal.

ABBREVIATION:

SSAS
spinal subarachnoid space
  • © 2019 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 40 (7)
American Journal of Neuroradiology
Vol. 40, Issue 7
1 Jul 2019
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W. Coenen, C. Gutiérrez-Montes, S. Sincomb, E. Criado-Hidalgo, K. Wei, K. King, V. Haughton, C. Martínez-Bazán, A.L. Sánchez, J. C. Lasheras
Subject-Specific Studies of CSF Bulk Flow Patterns in the Spinal Canal: Implications for the Dispersion of Solute Particles in Intrathecal Drug Delivery
American Journal of Neuroradiology Jul 2019, 40 (7) 1242-1249; DOI: 10.3174/ajnr.A6097

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Subject-Specific Studies of CSF Bulk Flow Patterns in the Spinal Canal: Implications for the Dispersion of Solute Particles in Intrathecal Drug Delivery
W. Coenen, C. Gutiérrez-Montes, S. Sincomb, E. Criado-Hidalgo, K. Wei, K. King, V. Haughton, C. Martínez-Bazán, A.L. Sánchez, J. C. Lasheras
American Journal of Neuroradiology Jul 2019, 40 (7) 1242-1249; DOI: 10.3174/ajnr.A6097
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