Related Experiment Video
Updated: May 20, 2026

Neuronavigation and Laparoscopy Guided Ventriculoperitoneal Shunt Insertion for the Treatment of Hydrocephalus
Published on: October 14, 2022
Three-day CSF drainage barely reduces ventricular size in normal pressure hydrocephalus
Niklas Lenfeldt1, William Hansson, Anne Larsson
1Department of Clinical Neuroscience, Centre for Biomedical Engineering and Physics, Umeå University, Umeå, Sweden. niklas.lenfeldt@neuro.umu.se
Objective:
External lumbar drainage (ELD) of CSF is a test to determine the suitability of a shunt for patients with normal pressure hydrocephalus (NPH), but its effect on ventricular volume is not known. This study investigates the effect of 3-day ELD of 500 mL on ventricular size and clinical features in patients with idiopathic NPH.
Methods:
Fifteen patients were investigated in a 1.5-T MRI scanner before and after ELD. Ventricular volume was measured manually. Clinical features involved motor and cognitive functions, testing primarily gait and attention. Reduction in ventricular volume was correlated to total drain volume and clinical parameters. Statistical tests were nonparametric, and p < 0.05 was required for significance.
Results:
Drain volume was 415 mL (median 470 mL, range 160-510 mL). Ventricular size was reduced in all patients, averaging 3.7 mL (SD 2.2 mL, p < 0.001), which corresponded to a 4.2% contraction. The ratio of volume contraction to drain volume was only 0.9%. Seven patients improved in gait and 6 in attention. Ventricular reduction and total drain volume correlated neither with improvement nor with each other. The 7 patients with the largest drain volumes (close to 500 mL), had ventricular changes varying from 1.3 to 7.5 mL.
Conclusions:
Clinical improvement occurs in patients with NPH after ELD despite unaltered ventricles, suggesting that ventricular size is of little relevance for postshunt improvement or determining shunt function. The clinical effect provided by ELD, mimicking shunting, is probably related to the recurring CSF extractions rather than to the cumulative effect of the drainage on ventricular volume.
Related Concept Videos
Increased Intracranial Pressure l: Introduction
Increased Intracranial Pressure ll: Pathophysiology
Cerebral Edema ll: Pathophysiology
Cerebral Edema l: Introduction
Cerebrospinal Fluid
CSF Production
CSF is produced mainly in the choroid plexus, a network of capillaries and ependymal cells located within the ventricular system of the brain.
Anatomy of the Brain: Ventricles
