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Published on: October 14, 2022
Ventricular Anatomy Across CT and MRI in Hydrocephalus: A Retrospective Study
Andrada-Iasmina Roşu1,2, Laura Andreea Ghenciu3,4, Dan Cristian Roşu5
1Doctoral School, University of Medicine and Pharmacy "Victor Babes", Eftimie Murgu Square No. 2, 300041 Timisoara, Romania.
Insights
Linear ventricular measurements like the Evans index show good agreement between CT and MRI for diagnosing hydrocephalus. These imaging markers are valuable clinical tools when used with patient assessments.
Area of Science:
- Neurology
- Radiology
- Medical Imaging
Background:
- Hydrocephalus involves abnormal cerebrospinal fluid dynamics and ventricular enlargement, posing diagnostic and monitoring challenges in clinical practice.
- Routine neuroimaging faces limitations in applying advanced volumetric techniques for hydrocephalus assessment.
- This study focuses on linear ventricular measurements under varied imaging conditions at a tertiary care center.
Purpose of the Study:
- To evaluate the behavior and cross-modality agreement of linear ventricular measurements in hydrocephalus patients.
- To assess the diagnostic utility of imaging markers for hydrocephalus under routine clinical settings.
- To analyze longitudinal changes and associations with Ventriculoperitoneal (VP) shunt placement.
Main Methods:
- Retrospective observational study of 68 adult hydrocephalus patients.
- Measurement of linear ventricular metrics (Evans index, third-ventricle width) on CT and MRI scans.
- Analysis of CT-MRI agreement, longitudinal changes, and association with VP shunt placement.
Main Results:
- Strong agreement observed between CT and MRI for Evans index (r=0.93) and third-ventricle width (r=0.90).
- Longitudinal analyses showed small ventricular size changes post-intervention with significant inter-individual variability.
- Transependymal cerebrospinal fluid exudation strongly correlated with subsequent VP shunting.
Conclusions:
- Standard linear ventricular parameters demonstrate adequate cross-modality agreement and clinically relevant longitudinal behavior.
- These imaging markers are valuable adjuncts to clinical assessment, though insufficient as standalone predictors.
- The findings support the continued use of readily available linear measurements in hydrocephalus management.
Abstract:
Background/Objectives: Hydrocephalus is a complex neurological disorder marked by abnormal cerebrospinal fluid dynamics and ventricular enlargement. Despite breakthroughs in neuroimaging, diagnosis and longitudinal the application of imaging markers for the diagnosis and longitudinal monitoring of hydrocephalus remains challenging in routine clinical practice. The present study examines the behavior and cross-modality agreement of commonly used linear ventricular measurements under routine imaging conditions, at a single Romanian tertiary-care center characterized by heterogeneous acquisition protocols and limited availability of advanced volumetric techniques. Methods: We conducted a single-center retrospective observational study of 68 adults with hydrocephalus. Linear ventricular metrics, including Evans index and third-ventricle width, were measured on all available CT and MRI scans. CT-MRI agreement was assessed using paired examinations within a 90-day window. Longitudinal changes were analyzed using first-last and pre-post VP shunt comparisons. Associations between baseline imaging features and VP shunt placement were evaluated using rule-based and odds ratio analyses. Results: CT and MRI measurements demonstrated strong agreement for both Evans index (r = 0.93) and third-ventricle width (r = 0.90), with minimal systematic bias. Longitudinal analyses demonstrated small-magnitude changes in ventricular size following intervention, with substantial inter-individual variability. VP utilization increased across Evans index strata, reaching 100% in patients with values ≥0.50. Transependymal cerebrospinal fluid exudation showed the strongest association with subsequent VP shunting. Imaging-based rules exhibited expected trade-offs between sensitivity and specificity. Conclusions: Standard linear ventricular parameters exhibited adequate cross-modality agreement and clinically important longitudinal behavior in this cohort. While insufficient as standalone predictors, these readily available imaging markers remain important tools when combined with a comprehensive clinical assessment.
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