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Published on: August 14, 2019
Diffusion tensor imaging study of pediatric patients with congenital hydrocephalus: 1-year postsurgical outcomes
Francesco T Mangano1,2, Mekibib Altaye3,2, Robert C McKinstry4,5
1Division of Pediatric Neurosurgery.
Insights
Diffusion tensor imaging (DTI) revealed white matter abnormalities in children with hydrocephalus before and after surgery. These DTI findings correlated with neurodevelopmental outcomes, suggesting DTI
Area of Science:
- Neuroimaging
- Pediatric Neurology
- Biomarkers
Background:
- Congenital hydrocephalus involves cerebrospinal fluid (CSF) accumulation, potentially causing white matter (WM) structural abnormalities.
- Diffusion tensor imaging (DTI) is a neuroimaging technique that can detect microstructural changes in WM.
- Understanding WM changes in hydrocephalus is crucial for assessing neurodevelopmental outcomes.
Purpose of the Study:
- To investigate WM structural abnormalities using DTI in pediatric hydrocephalus patients before and after CSF diversionary surgery.
- To correlate DTI findings with neuropsychological and behavioral outcomes during recovery.
- To evaluate DTI as a potential imaging biomarker for neuroanatomical changes and developmental prognosis.
Main Methods:
- Prospective study including 54 pediatric hydrocephalus patients and 64 normal controls.
- DTI data (FA, MD, AD, RD) collected preoperatively and at 3 and 12 months postoperatively in patients.
- Neurodevelopmental outcomes assessed using standardized tests; correlation analyses performed between DTI and behavioral measures.
Main Results:
- Significant DTI abnormalities (e.g., altered fractional anisotropy, diffusivity) found in the genu of the corpus callosum (gCC) and posterior limb of the internal capsule (PLIC) before surgery.
- WM abnormalities persisted in gCC at 3 and 12 months postoperatively; PLIC abnormalities improved by 12 months.
- Significant correlations observed between DTI measures and developmental outcomes at all time points, notably between PLIC DTI at 3 months and outcome at 12 months.
Conclusions:
- Congenital hydrocephalus is associated with significant WM abnormalities detectable by DTI.
- DTI findings correlate with neurodevelopmental outcomes, indicating its utility in assessing disease impact and recovery.
- DTI serves as a sensitive imaging biomarker for neuroanatomical changes and can predict postsurgical developmental outcomes in pediatric hydrocephalus.
Abstract:
OBJECTIVE The purpose of this study was to investigate white matter (WM) structural abnormalities using diffusion tensor imaging (DTI) in children with hydrocephalus before CSF diversionary surgery (including ventriculoperitoneal shunt insertion and endoscopic third ventriculostomy) and during the course of recovery after surgery in association with neuropsychological and behavioral outcome. METHODS This prospective study included 54 pediatric patients with congenital hydrocephalus (21 female, 33 male; age range 0.03-194.5 months) who underwent surgery and 64 normal controls (30 female, 34 male; age range 0.30-197.75 months). DTI and neurodevelopmental outcome data were collected once in the control group and 3 times (preoperatively and at 3 and 12 months postoperatively) in the patients with hydrocephalus. DTI measures, including fractional anisotropy (FA), mean diffusivity (MD), axial diffusivity (AD), and radial diffusivity (RD) values were extracted from the genu of the corpus callosum (gCC) and the posterior limb of internal capsule (PLIC). Group analysis was performed first cross-sectionally to quantify DTI abnormalities at 3 time points by comparing the data obtained in the hydrocephalus group for each of the 3 time points to data obtained in the controls. Longitudinal comparisons were conducted pairwise between different time points in patients whose data were acquired at multiple time points. Neurodevelopmental data were collected and analyzed using the Adaptive Behavior Assessment System, Second Edition, and the Bayley Scales of Infant Development, Third Edition. Correlation analyses were performed between DTI and behavioral measures. RESULTS Significant DTI abnormalities were found in the hydrocephalus patients in both the gCC (lower FA and higher MD, AD, and RD) and the PLIC (higher FA, lower AD and RD) before surgery. The DTI measures in the gCC remained mostly abnormal at 3 and 12 months after surgery. The DTI abnormalities in the PLIC were significant in FA and AD at 3 months after surgery but did not persist when tested at 12 months after surgery. Significant longitudinal DTI changes in the patients with hydrocephalus were found in the gCC when findings at 3 and 12 months after surgery were compared. In the PLIC, trend-level longitudinal changes were observed between preoperative findings and 3-month postoperative findings, as well as between 3- and 12-month postoperative findings. Significant correlation between DTI and developmental outcome was found at all 3 time points. Notably, a significant correlation was found between DTI in the PLIC at 3 months after surgery and developmental outcome at 12 months after surgery. CONCLUSIONS The data showed significant WM abnormality based on DTI in both the gCC and the PLIC in patients with congenital hydrocephalus before surgery, and the abnormalities persisted in both the gCC and the PLIC at 3 months after surgery. The DTI values remained significantly abnormal in the gCC at 12 months after surgery. Longitudinal analysis showed signs of recovery in both WM structures between different time points. Combined with the significant correlation found between DTI and neuropsychological measures, the findings of this study suggest that DTI can serve as a sensitive imaging biomarker for underlying neuroanatomical changes and postsurgical developmental outcome and even as a predictor for future outcomes.

