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PMID: 32178689 Published · epublish English Comparative Study Journal Article

In vitro and numerical simulation of blood removal from cerebrospinal fluid: comparison of lumbar drain to Neurapheresis therapy.

Fluids and barriers of the CNS ·Vol. 17 ·No. 1 ·2020-03-16 ·页码 23

Khani M, Sass LR, Sharp MK, McCabe AR, Zitella Verbick LM, Lad SP, Martin BA

Abstract

Blood removal from cerebrospinal fluid (CSF) in post-subarachnoid hemorrhage patients may reduce the risk of related secondary brain injury. We formulated a computational fluid dynamics (CFD) model to investigate the impact of a dual-lumen catheter-based CSF filtration system, called Neurapheresis™ therapy, on blood removal from CSF compared to lumbar drain. A subject-specific multiphase CFD model of CSF system-wide solute transport was constructed based on MRI measurements. The Neurapheresis catheter geometry was added to the model within the spinal subarachnoid space (SAS). Neurapheresis flow aspiration and return rate was 2.0 and 1.8 mL/min, versus 0.2 mL/min drainage for lumbar drain. Blood was modeled as a bulk fluid phase within CSF with a 10% initial tracer concentration and identical viscosity and density as CSF. Subject-specific oscillatory CSF flow was applied at the model inlet. The dura and spinal cord geometry were considered to be stationary. Spatial-temporal tracer concentration was quantified based on time-average steady-streaming velocities throughout the domain under Neurapheresis therapy and lumbar drain. To help verify CFD results, an optically clear in vitro CSF model was constructed with fluorescein used as a blood surrogate. Quantitative comparison of numerical and in vitro results was performed by linear regression of spatial-temporal tracer concentration over 24-h. After 24-h, tracer concentration was reduced to 4.9% under Neurapheresis therapy compared to 6.5% under lumbar drain. Tracer clearance was most rapid between the catheter aspiration and return ports. Neurapheresis therapy was found to have a greater impact on steady-streaming compared to lumbar drain. Steady-streaming in the cranial SAS was ~ 50× smaller than in the spinal SAS for both cases. CFD results were strongly correlated with the in vitro spatial-temporal tracer concentration under Neurapheresis therapy (R2 = 0.89 with + 2.13% and - 1.93% tracer concentration confidence interval). A subject-specific CFD model of CSF system-wide solute transport was used to investigate the impact of Neurapheresis therapy on tracer removal from CSF compared to lumbar drain over a 24-h period. Neurapheresis therapy was found to substantially increase tracer clearance compared to lumbar drain. The multiphase CFD results were verified by in vitro fluorescein tracer experiments.

Keywords
Cerebrospinal fluid filtration Computational fluid dynamics In-vitro model Multiphase simulation Neurapheresis therapy Subarachnoid hemorrhage
MeSH 主题词
Adult Blood Blood Component Removal/instrumentation,methods Catheters Cerebrospinal Fluid Drainage Equipment Design Female Humans Hydrodynamics Magnetic Resonance Imaging Models, Biological Spinal Puncture Subarachnoid Hemorrhage/therapy Young Adult
作者与单位
共 7 位作者,点击展开单位 / ORCID
Khani Mohammadreza
Department of Biological Engineering, The University of Idaho, 875 Perimeter Drive, MS 0904, Moscow, ID, 83844-0904, USA.
Sass Lucas R
Department of Biological Engineering, The University of Idaho, 875 Perimeter Drive, MS 0904, Moscow, ID, 83844-0904, USA.
Sharp M Keith
Department of Mechanical Engineering, University of Louisville, 332 Eastern Pkwy, Louisville, KY, 40292, USA.
McCabe Aaron R
Minnetronix Neuro, Inc., 1635 Energy Park Dr, Saint Paul, MN, 55108, USA.
Zitella Verbick Laura M
Minnetronix Neuro, Inc., 1635 Energy Park Dr, Saint Paul, MN, 55108, USA.
Lad Shivanand P
Department of Neurosurgery, Duke University School of Medicine, 3100 Tower Blvd, Durham, NC, 27707, USA.
Martin Bryn A
Department of Biological Engineering, The University of Idaho, 875 Perimeter Drive, MS 0904, Moscow, ID, 83844-0904, USA. [email protected].
Article Info
Journal
Fluids and barriers of the CNS
Abbr.
Fluids Barriers CNS
ISSN
2045-8118
Corresponding email
Published
2020-03-16
电子出版
2020-00-16
页码
23
Language
English
Country/Region
England
NLM ID
101553157
基金资助
Institutional Development Award · P20GM1033408
NIMH NIH HHS · 1R44MH112210-01A1 · United States
National Institute of Neurological Disorders and Stroke Grant · R01NS111283
NIGMS NIH HHS · P20 GM103408 · United States
Institutional Development Award · 4U54GM104944-04TBD
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