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MR imaging of CSF pulsatory flow and its relation to intracranial pressure

S Ohara1, H Nagai, T Matsumoto

  • 1Department of Neurosurgery, Nagoya City University Medical School, Japan.

Journal of Neurosurgery
|November 1, 1988
PubMed

Insights

Magnetic resonance imaging can detect cerebrospinal fluid signal-void phenomena in the mesencephalic aqueduct. This finding may help differentiate normal from increased intracranial pressure in neurosurgical patients.

Area of Science:

  • Neurosurgery
  • Radiology
  • Medical Imaging

Background:

  • Cerebrospinal fluid (CSF) dynamics are crucial in managing intracranial pressure (ICP).
  • Magnetic resonance (MR) imaging offers insights into CSF flow patterns.

Observation:

  • Retrospective analysis of 289 neurosurgical patients' MR images.
  • Signal-void phenomenon (SVP) of CSF in the mesencephalic aqueduct observed in 77 patients.
  • SVP incidence differed significantly between normal and high ICP groups.

Findings:

  • SVP was more frequent in patients with normal ICP and communicating hydrocephalus (12/14) compared to those with high ICP (7/50).
  • MR imaging, synchronized with electrocardiography (EKG), revealed six distinct CSF signal intensity patterns.
  • These patterns altered after ICP reduction via lumbar CSF withdrawal.

Implications:

  • The CSF SVP may reflect the craniospinal cavity's pressure buffering capacity.
  • MR signal intensity of ventricular CSF could potentially differentiate normal from elevated ICP.
  • This non-invasive MR technique may aid in diagnosing and managing conditions affecting intracranial pressure.

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