Intracerebral microdialysis and CSF hydrodynamics in idiopathic adult hydrocephalus syndrome

J Neurol Neurosurg Psychiatry. 2003 Feb;74(2):217-21. doi: 10.1136/jnnp.74.2.217.

Abstract

Background: In idiopathic adult hydrocephalus syndrome (IAHS), a pathophysiological model of "chronic ischaemia" caused by an arteriosclerotic process in association with a CSF hydrodynamic disturbance has been proposed.

Objective: To investigate whether CSF hydrodynamic manipulation has an impact on biochemical markers related to ischaemia, brain tissue oxygen tension (PtiO(2)), and intracranial pressure.

Methods: A microdialysis catheter, a PtiO(2) probe, and an intracerebral pressure catheter were inserted into the periventricular white matter 0-7 mm from the right frontal horn in 10 patients with IAHS. A subcutaneous microdialysis probe was used as reference. Intracranial pressure and intracerebral PtiO(2) were recorded continuously. Samples were collected for analysis between 2 and 4 pm on day 1 (baseline) and at the same time on day 2, two to four hours after a lumbar CSF hydrodynamic manipulation. The concentrations of glucose, lactate, pyruvate, and glutamate on day 1 and 2 were compared.

Results: After CSF drainage, there was a significant rise in the intracerebral concentration of lactate and pyruvate. The lactate to pyruvate ratio was increased and remained unchanged after drainage. There was a trend towards a lowering of glucose and glutamate. Mean intracerebral PtiO(2) was higher on day 2 than on day 1 in six of eight patients.

Conclusions: There is increased glucose metabolism after CSF drainage, as expected in a situation of postischaemic recovery. These new invasive techniques are promising tools in the future study of the pathophysiological processes in IAHS.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Aged
  • Blood Glucose / metabolism
  • Brain / physiopathology
  • Brain Ischemia / complications
  • Brain Ischemia / physiopathology
  • Cerebrospinal Fluid / physiology*
  • Cerebrospinal Fluid Shunts
  • Female
  • Glutamic Acid / metabolism
  • Humans
  • Hydrocephalus / physiopathology*
  • Hydrocephalus / surgery
  • Intracranial Arteriosclerosis / complications
  • Intracranial Arteriosclerosis / physiopathology
  • Intracranial Pressure / physiology
  • Lactic Acid / metabolism
  • Male
  • Microdialysis*
  • Middle Aged
  • Oxygen Consumption / physiology
  • Pyruvic Acid / metabolism

Substances

  • Blood Glucose
  • Lactic Acid
  • Glutamic Acid
  • Pyruvic Acid