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A Murine Model of Subarachnoid Hemorrhage
Published on: November 21, 2013
Preoperative risk and postoperative outcome from subdural fluid collections in African infants with postinfectious
Jessica R Lane1, Paddy Ssentongo2,3, Mallory R Peterson2
11Department of Neurosurgery, Penn State College of Medicine, Hershey.
Insights
Postoperative subdural collections in infants with hydrocephalus were linked to larger preoperative fluid volumes and shunt surgery. These collections negatively impacted cognitive scores and brain volume, suggesting a need for risk stratification and improved shunt technologies.
Area of Science:
- Pediatric Neurosurgery
- Neurocritical Care
- Infant Neurology
Background:
- Postinfectious hydrocephalus is a significant concern in infants.
- Subdural collections can complicate hydrocephalus treatment.
- Identifying risk factors and outcomes is crucial for pediatric neurosurgical care.
Purpose of the Study:
- To determine the incidence of postoperative subdural collections in African infants with postinfectious hydrocephalus.
- To identify preoperative factors predicting subdural collection development.
- To analyze the association between subdural collections and postoperative neurodevelopmental outcomes.
Main Methods:
- Post hoc analysis of a randomized controlled trial in Uganda.
- Inclusion of infants (<180 days) with postinfectious hydrocephalus.
- Comparison of endoscopic third ventriculostomy plus choroid plexus cauterization versus ventriculoperitoneal shunt.
- Assessment using Bayley Scales of Infant and Toddler Development (Bayley-III) and CT scans.
- Statistical analysis including regression and causal mediation.
Main Results:
- Subdural collections were more frequent in infants receiving shunts and those with larger preoperative cerebrospinal fluid (CSF) volumes.
- Subdural fluid volume showed a linear relationship with preoperative CSF volume.
- Subdural collections were associated with lower Bayley-III cognitive scores and reduced brain volume at 12 months post-surgery.
- Causal mediation analysis indicated both direct and indirect (via brain volume) effects of subdural collections on cognitive outcomes.
Conclusions:
- Increased preoperative CSF volume and ventriculoperitoneal shunt placement are risk factors for postoperative subdural collections.
- The presence and size of subdural collections negatively correlate with cognitive function and brain volume in infants.
- Preoperative CSF volume may aid in risk stratification for treatment decisions.
- Further research into shunt technologies to mitigate overdrainage is warranted.
Objective:
This study investigated the incidence of postoperative subdural collections in a cohort of African infants with postinfectious hydrocephalus. The authors sought to identify preoperative factors associated with increased risk of development of subdural collections and to characterize associations between subdural collections and postoperative outcomes.
Methods:
The study was a post hoc analysis of a randomized controlled trial at a single center in Mbale, Uganda, involving infants (age < 180 days) with postinfectious hydrocephalus randomized to receive either an endoscopic third ventriculostomy plus choroid plexus cauterization or a ventriculoperitoneal shunt. Patients underwent assessment with the Bayley Scales of Infant and Toddler Development, Third Edition (Bayley-III; sometimes referred to as BSID-III) and CT scans preoperatively and then at 6, 12, and 24 months postoperatively. Volumes of brain, CSF, and subdural fluid were calculated, and z-scores from the median were determined from normative curves for CSF accumulation and brain growth. Linear and logistic regression models were used to characterize the association between preoperative CSF volume and the postoperative presence and size of subdural collection 6 and 12 months after surgery. Linear regression and smoothing spline ANOVA were used to describe the relationship between subdural fluid volume and cognitive scores. Causal mediation analysis distinguished between the direct and indirect effects of the presence of a subdural collection on cognitive scores.
Results:
Subdural collections were more common in shunt-treated patients and those with larger preoperative CSF volumes. Subdural fluid volumes were linearly related to preoperative CSF volumes. In terms of outcomes, the Bayley-III cognitive score was linearly related to subdural fluid volume. The distribution of cognitive scores was significantly different for patients with and those without subdural collections from 11 to 24 months of age. The presence of a subdural collection was associated with lower cognitive scores and smaller brain volume 12 months after surgery. Causal mediation analysis demonstrated evidence supporting both a direct (76%) and indirect (24%) effect (through brain volume) of subdural collections on cognitive scores.
Conclusions:
Larger preoperative CSF volume and shunt surgery were found to be risk factors for postoperative subdural collection. The size and presence of a subdural collection were negatively associated with cognitive outcomes and brain volume 12 months after surgery. These results have suggested that preoperative CSF volumes could be used for risk stratification for treatment decision-making and that future clinical trials of alternative shunt technologies to reduce overdrainage should be considered.
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