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  3. Spinal CSF Volumetry in Patients with Spontaneous Intracranial Hypotension and Spinal CSF Leaks.

Spinal CSF Volumetry in Patients with Spontaneous Intracranial Hypotension and Spinal CSF Leaks.

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Description
C.M. Jesse and T. Debrocky contributed equally to this work.
DOI
10.48620/95869
Publisher DOI
10.3174/ajnr.A9055
PubMed ID
41748435
Abstract
Background And Purpose
Spontaneous intracranial hypotension (SIH) is caused by CSF leakage at the spinal level, resulting in craniospinal CSF depletion and often debilitating symptoms. While changes in intracranial CSF volume in SIH, particularly early depletion and normalization after treatment, are documented, reports of spinal CSF volumetry remain scarce. This study aimed to quantify intrathecal spinal CSF volume in patients with SIH before and after definitive leak closure and compare it with that in a non-SIH control cohort.
Materials And Methods
This retrospective, single-center study included 35 patients with SIH with confirmed spinal CSF leaks (types 1-3) and 10 non-SIH controls. All patients with SIH underwent surgical or endovascular leak closure and had high-quality pre- and posttreatment isotropic 3D T2-weighted MR imaging. Spinal intrathecal CSF volume was measured using semi-automated segmentation, excluding spinal longitudinal epidural fluid collections (SLEC), if present. Paired and unpaired statistical tests were applied.
Results
In total 18, SLEC-positive (+) and 17 SLEC-negative (-) patients and 10 non-SIH controls were evaluated. After successful leak closure, spinal CSF volume increased significantly in patients with SIH (+13%, P < .001). This increase was seen in both SLEC+ (+18%, P < .001) and SLEC- (+5%, P = .02) subgroups. No significant difference was observed between patients with SIH pretreatment and controls. However, posttreatment volumes in patients with SIH were significantly higher than those in controls (+13%, P = .04).
Conclusions
Spinal CSF volumetry reliably detects a significant increase in intrathecal CSF volume following definitive leak closure in patients with SIH. Notably, posttreatment spinal CSF volumes exceeded those of non-SIH controls, suggesting a potential compensatory mechanism with overshooting CSF volume after prolonged CSF depletion.
Date Issued
2026-03-04
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Language(s)
en
Author(s)
Piechowiak, Eike I.  
Institute of Diagnostic and Interventional Neuroradiology  
Pisi, Fabio  
Petutschnigg, Thomas  
Clinic of Neurosurgery  
Gralla, Jan  
Institute of Diagnostic and Interventional Neuroradiology  
Kaesmacher, Johannes  
Institute of Diagnostic and Interventional Neuroradiology  
Schär, Ralph T.  
Clinic of Neurosurgery  
Raabe, Andreas  
Clinic of Neurosurgery  
Häni, Levin  
Clinic of Neurosurgery  
Goldberg, Johannes  
Clinic of Neurosurgery  
Rossel, Jean-Benoît  
Department of Clinical Research (DCR) - Statistics & Methodology  
Wolf, Katharina
Beck, Jürgen  
Jesse, C. Marvin  
Clinic of Neurosurgery  
Dobrocky, Tomas  
Institute of Diagnostic and Interventional Neuroradiology  
Additional Credits
Institute of Diagnostic and Interventional Neuroradiology  
Clinic of Neurosurgery  
Department of Clinical Research (DCR) - Statistics & Methodology  
Journal
American Journal of Neuroradiology
Publisher
American Society of Neuroradiology
ISSN
1936-959X
0195-6108
Access(Rights)
restricted
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