Skip to main content
Erschienen in: Acta Neurochirurgica 2/2019

15.11.2018 | Original Article - Vascular Neurosurgery - Aneurysm

Magnitude and direction of aqueductal cerebrospinal fluid flow: large variations in patients with intracranial aneurysms with or without a previous subarachnoid hemorrhage

verfasst von: Erika Kristina Lindstrøm, Geir Ringstad, Angelika Sorteberg, Wilhelm Sorteberg, Kent-Andre Mardal, Per Kristian Eide

Erschienen in: Acta Neurochirurgica | Ausgabe 2/2019

Einloggen, um Zugang zu erhalten

Abstract

Background

Net cerebrospinal fluid (CSF) flow within the cerebral aqueduct is usually considered to be antegrade, i.e., from the third to the fourth ventricle with volumes ranging between 500 and 600 ml over 24 h. Knowledge of individual CSF flow dynamics, however, is hitherto scarcely investigated. In order to explore individual CSF flow rate and direction, we assessed net aqueductal CSF flow in individuals with intracranial aneurysms with or without a previous subarachnoid hemorrhage (SAH).

Methods

A prospective observational study was performed utilizing phase-contrast magnetic resonance imaging (PC-MRI) to determine the magnitude and direction of aqueductal CSF flow with an in-depth, pixel-by-pixel approach. Estimation of net flow was used to calculate CSF flow volumes over 24 h. PC-MRI provides positive values when flow is retrograde.

Results

The study included eight patients with intracranial aneurysms. Four were examined within days after their SAH; three were studied in the chronic stage after SAH while one patient had an unruptured intracranial aneurysm. There was a vast variation in magnitude and direction of aqueductal CSF flow between individuals. Net aqueductal CSF flow was retrograde, i.e., directed towards the third ventricle in 5/8 individuals. For the entire patient cohort, the estimated net aqueductal CSF volumetric flow rate (independent of direction) was median 898 ml/24 h (ranges 69 ml/24 h to 12.9 l/24 h). One of the two individuals who had a very high estimated net aqueductal CSF volumetric flow rate, 8.7 l/24 h retrograde, later needed a permanent CSF shunt.

Conclusions

The magnitude and direction of net aqueductal CSF flow vary extensively in patients with intracranial aneurysms. Following SAH, PC-MRI may offer the possibility to perform individualized assessments of the CSF circulation.
Anhänge
Nur mit Berechtigung zugänglich
Literatur
2.
Zurück zum Zitat Dreha-Kulaczewski S, Joseph AA, Merboldt KD, Ludwig HC, Gartner J, Frahm J (2015) Inspiration is the major regulator of human CSF flow. J Neurosci 35:2485–2491CrossRefPubMedPubMedCentral Dreha-Kulaczewski S, Joseph AA, Merboldt KD, Ludwig HC, Gartner J, Frahm J (2015) Inspiration is the major regulator of human CSF flow. J Neurosci 35:2485–2491CrossRefPubMedPubMedCentral
3.
Zurück zum Zitat Erixon HO, Sorteberg A, Sorteberg W, Eide PK (2014) Predictors of shunt dependency after aneurysmal subarachnoid hemorrhage: results of a single-center clinical trial. Acta Neurochir 156:2059–2069CrossRefPubMed Erixon HO, Sorteberg A, Sorteberg W, Eide PK (2014) Predictors of shunt dependency after aneurysmal subarachnoid hemorrhage: results of a single-center clinical trial. Acta Neurochir 156:2059–2069CrossRefPubMed
4.
Zurück zum Zitat Gaberel T, Gakuba C, Goulay R, Martinez De Lizarrondo S, Hanouz JL, Emery E, Touze E, Vivien D, Gauberti M (2014) Impaired glymphatic perfusion after strokes revealed by contrast-enhanced MRI: a new target for fibrinolysis? Stroke 45:3092–3096CrossRefPubMed Gaberel T, Gakuba C, Goulay R, Martinez De Lizarrondo S, Hanouz JL, Emery E, Touze E, Vivien D, Gauberti M (2014) Impaired glymphatic perfusion after strokes revealed by contrast-enhanced MRI: a new target for fibrinolysis? Stroke 45:3092–3096CrossRefPubMed
5.
Zurück zum Zitat Goulay R, Flament J, Gauberti M, Naveau M, Pasquet N, Gakuba C, Emery E, Hantraye P, Vivien D, Aron-Badin R, Gaberel T (2017) Subarachnoid hemorrhage severely impairs brain parenchymal cerebrospinal fluid circulation in nonhuman primate. Stroke 48:2301–2305CrossRefPubMed Goulay R, Flament J, Gauberti M, Naveau M, Pasquet N, Gakuba C, Emery E, Hantraye P, Vivien D, Aron-Badin R, Gaberel T (2017) Subarachnoid hemorrhage severely impairs brain parenchymal cerebrospinal fluid circulation in nonhuman primate. Stroke 48:2301–2305CrossRefPubMed
6.
Zurück zum Zitat Huang TY, Chung HW, Chen MY, Giiang LH, Chin SC, Lee CS, Chen CY, Liu YJ (2004) Supratentorial cerebrospinal fluid production rate in healthy adults: quantification with two-dimensional cine phase-contrast MR imaging with high temporal and spatial resolution. Radiology 233:603–608CrossRefPubMed Huang TY, Chung HW, Chen MY, Giiang LH, Chin SC, Lee CS, Chen CY, Liu YJ (2004) Supratentorial cerebrospinal fluid production rate in healthy adults: quantification with two-dimensional cine phase-contrast MR imaging with high temporal and spatial resolution. Radiology 233:603–608CrossRefPubMed
7.
Zurück zum Zitat Johanson CE, Duncan JA 3rd, Klinge PM, Brinker T, Stopa EG, Silverberg GD (2008) Multiplicity of cerebrospinal fluid functions: new challenges in health and disease. Cerebrospinal Fluid Res 5:10CrossRefPubMedPubMedCentral Johanson CE, Duncan JA 3rd, Klinge PM, Brinker T, Stopa EG, Silverberg GD (2008) Multiplicity of cerebrospinal fluid functions: new challenges in health and disease. Cerebrospinal Fluid Res 5:10CrossRefPubMedPubMedCentral
8.
Zurück zum Zitat Kanat A, Turkmenoglu O, Aydin MD, Yolas C, Aydin N, Gursan N, Tumkaya L, Demir R (2013) Toward changing of the pathophysiologic basis of acute hydrocephalus after subarachnoid hemorrhage: a preliminary experimental study. World neurosurgery 80:390–395CrossRefPubMed Kanat A, Turkmenoglu O, Aydin MD, Yolas C, Aydin N, Gursan N, Tumkaya L, Demir R (2013) Toward changing of the pathophysiologic basis of acute hydrocephalus after subarachnoid hemorrhage: a preliminary experimental study. World neurosurgery 80:390–395CrossRefPubMed
9.
Zurück zum Zitat Lindstrøm EK, Ringstad G, Mardal K-A, Eide PK (2018) Cerebrospinal fluid volumetric net flow rate and direction in idiopathic normal pressure hydrocephalus. NeuroImage Clinical 20:731–741 Lindstrøm EK, Ringstad G, Mardal K-A, Eide PK (2018) Cerebrospinal fluid volumetric net flow rate and direction in idiopathic normal pressure hydrocephalus. NeuroImage Clinical 20:731–741
10.
Zurück zum Zitat Nilsson C, Stahlberg F, Thomsen C, Henriksen O, Herning M, Owman C (1992) Circadian variation in human cerebrospinal fluid production measured by magnetic resonance imaging. Am J Phys 262:R20–R24 Nilsson C, Stahlberg F, Thomsen C, Henriksen O, Herning M, Owman C (1992) Circadian variation in human cerebrospinal fluid production measured by magnetic resonance imaging. Am J Phys 262:R20–R24
11.
Zurück zum Zitat Oreskovic D, Klarica M (2014) Measurement of cerebrospinal fluid formation and absorption by ventriculo-cisternal perfusion: what is really measured? Croat Med J 55:317–327CrossRefPubMedPubMedCentral Oreskovic D, Klarica M (2014) Measurement of cerebrospinal fluid formation and absorption by ventriculo-cisternal perfusion: what is really measured? Croat Med J 55:317–327CrossRefPubMedPubMedCentral
12.
Zurück zum Zitat Oreskovic D, Rados M, Klarica M (2017) Role of choroid plexus in cerebrospinal fluid hydrodynamics. Neuroscience 354:69–87CrossRefPubMed Oreskovic D, Rados M, Klarica M (2017) Role of choroid plexus in cerebrospinal fluid hydrodynamics. Neuroscience 354:69–87CrossRefPubMed
13.
Zurück zum Zitat Ragunathan S, Pipe JG (2017) Radiofrequency saturation induced bias in aqueductal cerebrospinal fluid flow quantification obtained using two-dimensional cine phase contrast magnetic resonance imaging. Magnetic resonance in medicine Ragunathan S, Pipe JG (2017) Radiofrequency saturation induced bias in aqueductal cerebrospinal fluid flow quantification obtained using two-dimensional cine phase contrast magnetic resonance imaging. Magnetic resonance in medicine
14.
Zurück zum Zitat Ringstad G, Emblem KE, Eide PK (2016) Phase-contrast magnetic resonance imaging reveals net retrograde aqueductal flow in idiopathic normal pressure hydrocephalus. J Neurosurg 124:1850–1857CrossRefPubMed Ringstad G, Emblem KE, Eide PK (2016) Phase-contrast magnetic resonance imaging reveals net retrograde aqueductal flow in idiopathic normal pressure hydrocephalus. J Neurosurg 124:1850–1857CrossRefPubMed
15.
Zurück zum Zitat Ringstad G, Lindstrom EK, Vatnehol SAS, Mardal KA, Emblem KE, Eide PK (2017) Non-invasive assessment of pulsatile intracranial pressure with phase-contrast magnetic resonance imaging. PLoS One 12:e0188896CrossRefPubMedPubMedCentral Ringstad G, Lindstrom EK, Vatnehol SAS, Mardal KA, Emblem KE, Eide PK (2017) Non-invasive assessment of pulsatile intracranial pressure with phase-contrast magnetic resonance imaging. PLoS One 12:e0188896CrossRefPubMedPubMedCentral
17.
Zurück zum Zitat Sorteberg W, Slettebo H, Eide PK, Stubhaug A, Sorteberg A (2008) Surgical treatment of aneurysmal subarachnoid haemorrhage in the presence of 24-h endovascular availability: management and results. Br J Neurosurg 22:53–62CrossRefPubMed Sorteberg W, Slettebo H, Eide PK, Stubhaug A, Sorteberg A (2008) Surgical treatment of aneurysmal subarachnoid haemorrhage in the presence of 24-h endovascular availability: management and results. Br J Neurosurg 22:53–62CrossRefPubMed
18.
Zurück zum Zitat Suarez JI, Tarr RW, Selman WR (2006) Aneurysmal subarachnoid hemorrhage. N Engl J Med 354:387–396CrossRefPubMed Suarez JI, Tarr RW, Selman WR (2006) Aneurysmal subarachnoid hemorrhage. N Engl J Med 354:387–396CrossRefPubMed
19.
Zurück zum Zitat Xie L, Kang H, Xu Q, Chen MJ, Liao Y, Thiyagarajan M, O’Donnell J, Christensen DJ, Nicholson C, Iliff JJ, Takano T, Deane R, Nedergaard M (2013) Sleep drives metabolite clearance from the adult brain. Science 342:373–377CrossRefPubMed Xie L, Kang H, Xu Q, Chen MJ, Liao Y, Thiyagarajan M, O’Donnell J, Christensen DJ, Nicholson C, Iliff JJ, Takano T, Deane R, Nedergaard M (2013) Sleep drives metabolite clearance from the adult brain. Science 342:373–377CrossRefPubMed
20.
Zurück zum Zitat Yildiz S, Thyagaraj S, Jin N, Zhong X, Heidari Pahlavian S, Martin BA, Loth F, Oshinski J, Sabra KG (2017) Quantifying the influence of respiration and cardiac pulsations on cerebrospinal fluid dynamics using real-time phase-contrast MRI. J Magn Reson Imaging 46:431–439CrossRefPubMed Yildiz S, Thyagaraj S, Jin N, Zhong X, Heidari Pahlavian S, Martin BA, Loth F, Oshinski J, Sabra KG (2017) Quantifying the influence of respiration and cardiac pulsations on cerebrospinal fluid dynamics using real-time phase-contrast MRI. J Magn Reson Imaging 46:431–439CrossRefPubMed
Metadaten
Titel
Magnitude and direction of aqueductal cerebrospinal fluid flow: large variations in patients with intracranial aneurysms with or without a previous subarachnoid hemorrhage
verfasst von
Erika Kristina Lindstrøm
Geir Ringstad
Angelika Sorteberg
Wilhelm Sorteberg
Kent-Andre Mardal
Per Kristian Eide
Publikationsdatum
15.11.2018
Verlag
Springer Vienna
Erschienen in
Acta Neurochirurgica / Ausgabe 2/2019
Print ISSN: 0001-6268
Elektronische ISSN: 0942-0940
DOI
https://doi.org/10.1007/s00701-018-3730-6

Weitere Artikel der Ausgabe 2/2019

Acta Neurochirurgica 2/2019 Zur Ausgabe

Editorial (by Invitation) - Vascular Neurosurgery - Aneurysm

“Bucket” cerebrospinal fluid bulk flow—is it a fact or a fiction?

Leitlinien kompakt für die Neurologie

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Update Neurologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.