Simple Identification of Cerebrospinal Fluid Turbulent Motion Using a Dynamic Improved Motion-sensitized Driven-equilibrium Steady-state Free Precession Method Applied to Various Types of Cerebrospinal Fluid Motion Disturbance.
Adolescent
Adult
Cerebral Ventricles
Cerebrospinal Fluid
/ physiology
Child
Child, Preschool
Cysts
/ cerebrospinal fluid
Female
Humans
Hydrocephalus
/ cerebrospinal fluid
Magnetic Resonance Imaging
/ instrumentation
Male
Middle Aged
Motion
Pinealoma
/ complications
Rheology
/ instrumentation
Subarachnoid Space
Young Adult
cerebrospinal fluid
dynamic improved motion-sensitized driven-equilibrium steady-state free precession
fluid dynamics
hydrocephalus
magnetic resonance imaging
Journal
Neurologia medico-chirurgica
ISSN: 1349-8029
Titre abrégé: Neurol Med Chir (Tokyo)
Pays: Japan
ID NLM: 0400775
Informations de publication
Date de publication:
15 Jan 2020
15 Jan 2020
Historique:
pubmed:
30
11
2019
medline:
20
11
2020
entrez:
29
11
2019
Statut:
ppublish
Résumé
The motion of cerebrospinal fluid (CSF) within the subarachnoid space and ventricles is greatly modulated when propagating synchronously with the cardiac pulse and respiratory cycle and path through the nerves, blood vessels, and arachnoid trabeculae. Water molecule movement that propagates between two spaces via a stoma, foramen, or duct presents increased acceleration when passing through a narrow area and can exhibit "turbulence." Recently, neurosurgeons have started to perform fenestration procedures using neuroendoscopy to treat hydrocephalus and cystic lesions. As part of the postoperative evaluation, a noninvasive diagnostic technique to visualize the water molecules at the fenestrated site is necessary. Because turbulence is observed at this fenestrated site, an imaging technique appropriate for observing this turbulence is essential. We therefore investigated the usefulness of a dynamic improved motion-sensitized driven-equilibrium steady-state free precession (Dynamic iMSDE SSFP) sequence of magnetic resonance imaging that is superior for ascertaining turbulent motions in healthy volunteers and patients. Images of Dynamic iMSDE SSFP from volunteers revealed that CSF motion at the ventral surface of the brainstem and the third ventricle is augmented and turbulent. Moreover, our findings confirmed that this technique is useful for evaluating treatments that utilize neuroendoscopy. As a result, Dynamic iMSDE SSFP, a simple sequence for visualizing CSF motion, entails a short imaging time, can extensively visualize CSF motion, does not require additional processes such as labeling or trigger setting, and is anticipated to have wide-ranging clinical applications in the future.
Identifiants
pubmed: 31776307
doi: 10.2176/nmc.oa.2019-0170
pmc: PMC6970069
doi:
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
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