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Updated: Sep 17, 2025

Neuronavigation and Laparoscopy Guided Ventriculoperitoneal Shunt Insertion for the Treatment of Hydrocephalus
Published on: October 14, 2022
Adjustable differential pressure versus adjustable gravitational valves in pediatric hydrocephalus
Isabel Fernandes Arroteia1, Hans Christoph Bock2, Andreas Schaumann1
11Pediatric Neurosurgery, Charité-Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin and Humboldt-Universität zu Berlin, Campus Virchow Klinikum, Berlin; and.
Insights
The adjustable gravitational (aG) valve showed better revision-free valve survival than the adjustable differential pressure (aDP) valve in pediatric hydrocephalus management. Lower valve settings in the aG group led to greater ventricle width reduction.
Area of Science:
- Pediatric Neurosurgery
- Cerebrospinal Fluid (CSF) Shunt Technology
- Hydrocephalus Management
Background:
- Hydrocephalus in children necessitates lifelong CSF-diverting shunt systems.
- A wide array of shunt valves exist, yet evidence for optimal type selection in pediatric hydrocephalus is limited.
- This study addresses the need for comparative data on different shunt valve types.
Purpose of the Study:
- To compare the efficacy and outcomes of two distinct shunt valve types in pediatric hydrocephalus treatment.
- Specifically, to compare an adjustable differential pressure (aDP) valve with a fixed gravitational unit against an adjustable gravitational (aG) valve with a fixed differential pressure unit.
Main Methods:
- Retrospective analysis of patient databases from two pediatric neurosurgical centers.
- Patients under 2 years at shunt implantation with a 3-year follow-up were included.
- Comparison of demographics, revision-free shunt/valve survival rates, total revisions, and ventricle width between aDP and aG valve groups.
Main Results:
- No significant difference in overall revision-free shunt survival between the aDP (59.6%) and aG (58.1%) groups.
- The aG group demonstrated significantly higher revision-free valve survival (86.0%) compared to the aDP group (69.5%).
- Conversely, the aDP group showed higher revision-free non-valve shunt component survival (85.8%) versus the aG group (65.1%).
- The aG group experienced a greater reduction in ventricle width (measured by frontooccipital horn ratio) due to lower valve settings.
Conclusions:
- Inverted revision rates for valve and non-valve components between groups may indicate differing surgical strategies.
- Lower valve settings in the aG group correlated with improved ventricle width reduction.
- Further research should explore head circumference and ventricular width as surrogate markers for ICP-guided CSF diversion, combined with neurodevelopmental outcomes.
Objective:
Hydrocephalus in children is mostly treated with a CSF-diverting shunt system as a lifelong implant. Presently, a variety of shunt valves are available on the market, but there is a lack of evidence guiding valve type selection for the management of pediatric hydrocephalus. The aim of this study was to compare two shunt valve types in the treatment of pediatric hydrocephalus.
Methods:
A retrospective analysis of synchronized patient databases was conducted at two pediatric neurosurgical centers. At one center, an adjustable differential pressure (aDP) valve with a fixed gravitational unit was utilized (aDP group). At the other center, an adjustable gravitational (aG) valve was combined with a fixed differential pressure unit (aG group). Inclusion criteria were an age less than 2 years at shunt implantation and a follow-up of 3 years. Patient demographics, revision-free shunt and valve survival rates, total number of revisions per patient, and ventricle width were compared between the two institutional cohorts.
Results:
Among 227 patients eligible for study inclusion, 141 received an aDP valve and 86 received an aG valve. The two patient cohorts showed no differences in overall revision-free shunt survival rates: 59.6% in the aDP group versus 58.1% in the aG group (p = 0.42, HR 0.8, 95% CI 0.6-1.3). The revision-free valve survival rate was significantly lower in the aDP group than in the aG group (69.5% vs 86.0%, p = 0.01, HR 2.3, 95% CI 1.3-3.9), but the revision-free nonvalve shunt components survival rate was higher (85.8% vs 65.1%, p < 0.001, HR 0.3, 95% CI 0.2-0.6). The total number of shunt revisions in the patients who underwent revision was significantly higher in the aG group (2 [IQR 1-2] vs 1 [IQR 0], p < 0.01). At follow-up, median valve settings were higher in the aDP group than in the aG group (10 [IQR 8-12]/30 [IQR 29-34] cmH2O vs 5 [IQR 0]/25 [IQR 20-25] cmH2O for lying/standing, respectively), which resulted in a significant, more pronounced reduction in the mean frontooccipital horn ratio as a measure of ventricle width in the aG group (-0.2 ± 0.1 vs -0.13 ± 0.09, p < 0.001).
Conclusions:
Differences in valve and nonvalve component revision rates were inverted for the aDP and aG groups and may reflect subtle differences in shunt surgery strategies at the two centers. Overall, lower valve settings led to a greater reduction in ventricle width measurements. Head circumference and ventricular width may need further analysis as possible surrogate parameters for intracranial pressure-guided CSF diversion and should be combined with neurodevelopmental outcome parameters in future studies.
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