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Comparative Study
. 2020 Jan:133:e397-e400.
doi: 10.1016/j.wneu.2019.09.043. Epub 2019 Sep 14.

Neonatal Hydrocephalus Treatment with Ultrasmall Valve Implantation

Affiliations
Comparative Study

Neonatal Hydrocephalus Treatment with Ultrasmall Valve Implantation

Samuel W Reed et al. World Neurosurg. 2020 Jan.

Abstract

Objective: Neonatal hydrocephalus remains a difficult condition to manage, due to high failure rates among all management strategies. Neurosurgeons commonly manage hydrocephalus with ventriculoperitoneal shunt (VPS) implantation, and valves of variable sizes and profiles are available for implantation. This study examines primary ventricular shunt valve implantation complication rates based on valve profiles in pediatric patients with hydrocephalus.

Methods: This study retrospectively reviews pediatric patients younger than 1 year of age who underwent ventricular shunt placement at a single institution from January 2001 to January 2017. Patients were classified by valve profile and categorized as either ultrasmall valves or regular-sized valves. Time until complication and type of complication were studied.

Results: A total of 156 patients met the inclusion criteria. Forty-eight (31%) patients received an ultrasmall shunt valve, while 108 patients received a regular valve. On average, patients undergoing ultrasmall valve placement were younger (2.1 months) than patients undergoing placement of regular valves (3.1 months) (P = 0.03). The overall complication rate within 2 years of VPS placement was 37.5% in patients with the ultrasmall valve and 41.7% in the regular valve population. There was no difference in 1-year shunt survival rate between the 2 cohorts.

Conclusion: Our review did not find a significant difference in complication rates between ultrasmall and regular valves in patients under 1 year of age. However, the etiology of shunt malfunction did differ between the groups. This work further supports evidence suggesting a surgeon's preference for shunt hardware alone does not significantly impact outcome.

Keywords: Hydrocephalus; Ultra-small valve; Ventriculoperitoneal shunt.

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