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Updated: Mar 7, 2026

Neuronavigation and Laparoscopy Guided Ventriculoperitoneal Shunt Insertion for the Treatment of Hydrocephalus
Published on: October 14, 2022
Factors related to shunt survival in paediatric hydrocephalus. Could failure be avoided?
Sara Iglesias1, Bienvenido Ros1, Álvaro Martín1
1Neurosurgery Department, Hospital Regional Universitario de Málaga, Spain.
Insights
Paediatric hydrocephalus shunt survival is improved by avoiding meningitis and symptomatic over-drainage. Antibiotic-impregnated catheters and frontal burr hole placement are protective factors against shunt failure.
Area of Science:
- Neurosurgery
- Paediatric Neurology
- Medical Device Research
Background:
- Paediatric hydrocephalus presents challenges in shunt survival and identifying failure factors.
- Revision surgeries for shunt failure incur significant morbidity, mortality, and economic costs.
Purpose of the Study:
- To analyze factors influencing first shunt failure in paediatric hydrocephalus.
- To identify prognostic indicators for improved shunt survival in long-term follow-up.
Main Methods:
- Retrospective review of 166 paediatric patients undergoing their first shunt implantation (2000-2014).
- Statistical analysis of demographic, etiological, surgical, and clinical variables related to first shunt failure.
Main Results:
- 111 of 166 shunts required revision over a mean 93-month follow-up.
- Significant failure factors included post-hemorrhagic/infectious hydrocephalus, meningitis, posterior burr hole, differential pressure valve, standard catheter, and over-drainage.
- Independent risk factors for failure were prior meningitis and symptomatic over-drainage; protective factors were frontal burr hole and antibiotic-impregnated catheters.
Conclusions:
- Meningitis, symptomatic over-drainage, frontal burr hole, and antibiotic-impregnated catheters significantly impact shunt survival.
- Shunt infection and symptomatic over-drainage are independent predictors of shorter shunt survival.
- Prospective, randomized trials are needed to validate these findings.
Background:
Improved shunt survival and a better understanding of factors related to failure in paediatric hydrocephalus still pose a challenge for neurosurgeons, in order to avoid morbidity and mortality, as well as the economic impact of repeated revision surgeries. For these reasons, an analysis is performed on the factors related to the first shunt failure in the long-term follow-up of a series in a single centre.
Methods:
A retrospective review was conducted on 166 hydrocephalic paediatric patients shunted for the first time between 2000 and 2014. An analysis was made of the statistical relationships between first shunt failure and the demographic, aetiological, surgical and clinical variables.
Results:
Of the 166 shunts implanted in our centre during the study period, 111 required revision over a mean follow-up period of 93 months. Factors significantly related to failure were post-haemorrhagic and post-infectious hydrocephalus, meningitis episode, posterior burr hole, differential pressure valve, standard catheter in first surgery, and symptomatic over-drainage. Multivariable analysis showed that previous meningitis and symptomatic over-drainage were risk factors for shunt failure, whereas frontal burr hole location and antibiotic-impregnated catheters were protective factors. Cox regression determined that independent factors significantly related to a worse shunt survival, were shunt infection and symptomatic over-drainage.
Conclusions:
Meningitis, symptomatic over-drainage, frontal burr hole, and antibiotic impregnated catheters are significant prognostic factors for shunt survival. Shunt infection and symptomatic over-drainage are independent factors significantly related to a shorter shunt survival. Prospective, randomised, controlled trials are required to validate these results.
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