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Published on: October 14, 2022
Ventriculosubgaleal shunts in the management of neonatal post-haemorrhagic hydrocephalus: technical note
Cristina Bleil1, Francesca Vitulli2,3, Asfand Baig Mirza1
1Department of Neurosurgery, King's College Hospital NHS Foundation Trust, Denmark Hill, London, UK.
Insights
A modified ventriculosubgaleal shunt (VSGS) technique, creating the pocket away from the surgical wound, reduced cerebrospinal fluid (CSF) leaks and infections in premature infants with post-hemorrhagic hydrocephalus.
Area of Science:
- Neonatal surgery
- Pediatric neurosurgery
- Prematurity complications
Background:
- Germinal matrix/intraventricular hemorrhage (GMIVH) is a serious complication in premature infants.
- Severe GMIVH can lead to parenchymal hemorrhagic infarction and hydrocephalus.
- Neonatal post-hemorrhagic hydrocephalus (nPHH) management often requires temporary cerebrospinal fluid (CSF) diversion due to high failure rates of permanent shunts early on.
Purpose of the Study:
- To describe a modified technique for ventriculosubgaleal shunt (VSGS) insertion.
- To evaluate the efficacy of this modified technique in reducing CSF leak and infection rates.
- To assess the outcomes of VSGS as a temporizing procedure for nPHH.
Main Methods:
- Retrospective analysis of patients undergoing VSGS insertion between September 2014 and February 2023.
- Description of a modified VSGS technique where the shunt pocket is created away from the surgical wound.
- Comparison of outcomes, including CSF leak, infection rates, and need for permanent shunt conversion.
Main Results:
- Twenty premature infants (mean gestational age 31 weeks + 4 days) were included.
- The modified technique resulted in low CSF leak rates (2 patients) and no VSGS-related infections in patients without pre-existing CNS infection.
- 75% of patients required conversion to a permanent ventriculoperitoneal shunt (VPS) after an average of 72 days.
Conclusions:
- The modified VSGS surgical approach effectively reduces CSF leak and subsequent infection rates.
- Fashioning the VSGS pocket away from the surgical wound is a key factor in improving safety.
- This modified technique offers a promising temporizing solution for neonatal post-hemorrhagic hydrocephalus.
Introduction:
Germinal matrix / intraventricular haemorrhage (GMIVH) remains a significant complication of prematurity. The more severe grades are associated with parenchymal haemorrhagic infarction (PHI) and hydrocephalus. A temporising procedure is usually the first line in management of neonatal post-haemorrhagic hydrocephalus (nPHH) as the risk of failure of a permanent cerebrospinal fluid (CSF) diversion is higher in the early stage. Our choice of temporising procedure is a ventriculosubgaleal shunt (VSGS). In this technical note, we describe a modification in technique whereby the pocket of the VSGS is fashioned away from the surgical wound. This resulted in lower CSF leak and subsequent infection rates in our centre.
Methods:
We conducted a retrospective analysis of all patients who underwent insertion of a VSGS between September 2014 and February 2023.
Results:
Twenty children were included in our study with a mean gestational age of 31 weeks + 4 days. Post-operatively, 10% of patients did not need a tap, and 10%, 20%, 15%, 25% and 20% respectively had 1, 2, 3, 4 and 5 taps. Two patients experienced CSF leak from their wounds. In both these patients, the pocket was deemed too close to the wound. None of the patients without suspected pre-existing CNS infection at the time of insertion of VSGS had a subsequent VSGS-related infection. VSGS conversion to permanent ventriculoperitoneal shunts (VPS) was required in 15 (75%) of the patients with an average interval duration of 72 days. On reviewing the literature, the infection rate following VSGS is quoted up to 13.5%. In our own centre, 13 patients had undergone VSGS insertion between 2005 and 2013 with a 30.8% infection rate which seemed related to increased leak rates.
Conclusion:
Our modified surgical approach seems to be effective in reducing the risk of infection, which we postulate is a direct result of reduction in the risk of leak from the surgical wound.
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