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Updated: Dec 29, 2025

Neuronavigation and Laparoscopy Guided Ventriculoperitoneal Shunt Insertion for the Treatment of Hydrocephalus
Published on: October 14, 2022
"Two-Birds-One-Stone" Approach for Treating an Infant with Chiari I Malformation and Hydrocephalus: Is Cerebrospinal
Mansour Mathkour1, Joseph R Keen2, Brendan Huang3
1Department of Neurosurgery, Ochsner Clinic Foundation, New Orleans, Louisiana, USA; Department of NeurosurgeryTulane Medical Center, New Orleans, Louisiana, USA.
Insights
Ventriculoperitoneal shunting effectively treated a symptomatic infant with Chiari I malformation (CIM), syrinx, and hydrocephalus. This approach avoided invasive surgery and resolved the infant's symptoms and associated conditions.
Area of Science:
- Neurosurgery
- Pediatric Neurology
- Developmental Biology
Background:
- Chiari I malformation (CIM) involves cerebellar tonsil displacement below the foramen magnum, often linked to syringomyelia and hydrocephalus.
- Standard treatment for CIM is posterior fossa decompression, but optimal management for infants with symptomatic CIM remains unclear.
- Hydrocephalus can be a significant factor in the pathophysiology of CIM, influencing treatment decisions.
Observation:
- A 6-month-old infant presented with stridor, lower cranial nerve dysfunction, and increased tone due to CIM, a cervicothoracic syrinx, and obstructive hydrocephalus.
- Cerebellar tonsillar herniation extended to C3-C4, with a syrinx from C4 to T4, and cervicomedullary junction compression.
- A ventriculoperitoneal shunt (VPS) was chosen as the initial intervention over decompressive surgery.
Findings:
- The infant experienced significant symptomatic improvement following VPS placement.
- Postoperative imaging at 6 months showed syrinx resolution, reduced ventriculomegaly, and cerebellar tonsil ascent.
- Ventriculoperitoneal shunting alone successfully managed concurrent CIM, syrinx, and hydrocephalus in this infant.
Implications:
- This case highlights the potential for ventriculoperitoneal shunting as a primary treatment for symptomatic infants with CIM, syrinx, and hydrocephalus.
- It suggests that hydrocephalus may be the primary driver in some CIM cases, allowing for less invasive management.
- Avoiding decompressive surgery in infants with CIM may reduce associated morbidity.
Background:
Chiari I malformation (CIM) is a disorder characterized by caudal displacement of the cerebellar tonsils below the foramen magnum. It is often associated with syringomyelia and occasionally with hydrocephalus. CIM is commonly treated by posterior fossa decompression with or without removal of the posterior arch of C1 and duraplasty, but the treatment for infants with symptomatic CIM is not well established. We present a case of symptomatic CIM in an infant that was successfully treated with a ventriculoperitoneal shunt (VPS) and discuss the importance of the pathophysiology in management decisions.
Case Description:
A 6-month-old male with a CIM and a cervicothoracic syrinx presented with stridor, lower cranial nerve dysfunction, and increased tone that worsened with crying. Magnetic resonance imaging studies revealed cerebellar tonsillar displacement extending to the level of C3-C4 with a syrinx extending from C4 to T4. In addition, there was compression of the cervicomedullary junction, fourth ventricular outflow obstruction, and obstructive hydrocephalus. The decision was made to place a ventriculoperitoneal shunt (VPS) instead of performing decompressive surgery as the initial treatment intervention. The infant had significant symptomatic relief at 6-, 9-, and 12-month follow-ups. Postoperative magnetic resonance imaging at 6-month follow-up revealed resolution of the syrinx and ventriculomegaly and ascent of the cerebellar tonsils.
Conclusions:
Ventriculoperitoneal shunting alone was successfully used to treat an infant with concurrent CIM, syrinx, and hydrocephalus. This case underscores not only the importance of hydrocephalus as the pathogenesis of CIM in some cases but also the possibility of avoiding the morbidity of decompressive surgery in infants.
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