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Published on: February 15, 2022
Neuroophthalmological manifestations of congenital aqueductal stenosis
Aneek Patel1, Hussam Abou-Al-Shaar2, Michael C Chiang2
11Department of Neurosurgery, New York University School of Medicine, New York, New York.
Insights
Congenital aqueductal stenosis (CAS) in infants is linked to a higher risk of vision problems and developmental delays. These ophthalmological issues significantly correlate with delayed milestones, independent of hydrocephalus treatment.
Area of Science:
- Pediatric Neurology
- Ophthalmology
- Developmental Pediatrics
Background:
- Congenital aqueductal stenosis (CAS) is a frequent cause of hydrocephalus in infants.
- CAS can be associated with ophthalmological abnormalities and developmental delays.
- Limited research exists on isolated CAS and its specific ophthalmological effects.
Purpose of the Study:
- To investigate the spectrum of ophthalmological abnormalities in infants with isolated CAS.
- To analyze the correlation between ophthalmological deficits and developmental milestones in this cohort.
Main Methods:
- A prospective database analysis of 41 infants with isolated CAS.
- Exclusion criteria included genetic forms, family history, and secondary causes of stenosis.
- Data collected: prenatal/perinatal history, CSF diversion, ophthalmological outcomes, and developmental milestones.
Main Results:
- 63.4% of patients developed neuroophthalmological complications.
- Common issues included strabismus (34.1%) and astigmatism (26.8%).
- 76.9% of those with eye problems also had delayed developmental milestones (p=0.045).
Conclusions:
- Infants with isolated CAS face increased risks of vision impairment and developmental delays.
- A significant link exists between ophthalmological abnormalities and delayed milestones.
- Further research is needed to explore early intervention and outcomes.
Objective:
Congenital aqueductal stenosis (CAS) is a common etiology of hydrocephalus that occurs in a subset of infants and may be linked to an increased incidence of ophthalmological abnormalities and delayed developmental milestones. Although hydrocephalus is common and widely studied, sparse literature exists on patients with isolated (no identifiable genetic link) CAS along with analysis of ophthalmological manifestations. In this study, the authors sought to describe the ophthalmological abnormalities and delayed developmental milestones of patients with isolated CAS.
Methods:
Data of patients with CAS were prospectively entered and monitored in a surgical database maintained by the Department of Neurological Surgery at Children's Hospital of Pittsburgh from January 2005 to October 2016. Patients with a family history of congenital hydrocephalus, positive testing for genetic forms of aqueductal stenosis, other congenital abnormalities suggesting an underlying genetic syndrome, and stenosis/obstruction due to secondary causes were excluded from this study. Prenatal and perinatal history, CSF diversion history, and a variety of outcomes, including ophthalmological deficits and developmental milestones, were collected and analyzed.
Results:
A total of 41 patients with isolated CAS were identified, with a mean follow-up duration of 6 years. Among that cohort, 26 patients (63.4%) developed neuroophthalmological complications, which were further stratified. Fourteen patients (34.1%) developed strabismus and 11 (26.8%) developed astigmatism, and 1 patient (2.4%) with papilledema was recorded. Among patients with ophthalmological abnormalities, 76.9% had delayed developmental milestones (p = 0.045).
Conclusions:
Patients with CAS were found to have increased risk of ophthalmological abnormalities requiring correction, along with an increased risk of delayed developmental milestones. Importantly, there was a significant correlation between the development of ophthalmological abnormalities and delayed developmental milestones that was independent of CSF diversion history. Larger patient cohort studies are required to explore whether earlier development of hydrocephalus, as is the case in CAS, causes elevated rates of neurological and ophthalmological complications, and if earlier CSF diversion correlates with improved outcomes.
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