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Use of computed tomography and diffusion weighted imaging in children with ventricular shunt
Altan Gunes1, Ibrahim Halil Oncel2, Serra Ozbal Gunes3
1Department of Radiology, Ankara Child Health and Diseases Hematology Oncology Training and Research Hospital, University of Health Sciences, Dıskapı, 06130, Ankara, Turkey. draltangunes@gmail.com.
Insights
Pediatric brain computed tomography (CT) scans are overused in children with shunts, leading to increased radiation exposure. Diffusion-weighted imaging (DWI) is effective for diagnosing shunt complications and should be preferred to reduce risks.
Area of Science:
- Pediatric neuroimaging
- Medical physics
- Radiology
Background:
- Ventriculoperitoneal shunts are crucial for managing hydrocephalus in children.
- Shunt-related complications (SRC) necessitate frequent neuroimaging.
- Computed tomography (CT) is commonly used but involves ionizing radiation.
Purpose of the Study:
- To evaluate brain CT and diffusion-weighted imaging (DWI) usage in children with ventriculoperitoneal shunts.
- To estimate radiation doses associated with these imaging modalities.
- To assess the effectiveness of DWI in diagnosing SRC.
Main Methods:
- Retrospective study of 54 pediatric patients with shunts.
- Analysis of CT and DWI scans for shunt-related complications.
- Comparison of ventricular size measurements (Evans index, horn ratio) between CT and DWI.
- Assessment of inter-observer agreement for imaging findings.
Main Results:
- Patients underwent a mean of 4.8 CT scans and 1.1 DWI scans.
- Higher CT use and radiation dose were observed in patients with SRC.
- DWI demonstrated high inter-observer agreement for catheter visualization and ventricular assessment.
- CT and DWI showed no significant difference in ventricular size measurements.
Conclusions:
- Inadequate awareness of CT use in pediatric shunt patients contributes to overuse.
- Diffusion-weighted imaging (DWI) is recommended for diagnosing SRC and patient follow-up.
- Reducing CT utilization is essential to mitigate risks of radiation-induced neoplasia.
Purpose:
To evaluate the indications, number, and imaging results of brain computed tomography (CT) and diffusion weighted imaging (DWI) in children with ventriculoperitoneal shunt, to estimate the radiation dose, and to evaluate the effectiveness of DWI.
Methods:
This retrospectively study included 54 consecutive patients (boys/girls = 30/24, mean age, 3 ± 4.1 years) with shunt that were placed due to congenital abnormalities-hypoxic ischemic encephalopathy between January 2015 and March 2018. The presence of shunt-related complications (SRC) was assessed using clinical and neuroimaging findings, and the standard reference was accepted as the shunt revision. Size comparisons of ventricles were performed using Evans index and the frontal and occipital horn ratio, and each measurement made by the observers were compared using Bland-Altman analysis. A kappa coefficient and the intraclass correlation coefficient were calculated to assess the agreement between observers.
Results:
The mean number of hospital admission, number of CT scans, and DWI were 5.8, 4.8, and 1.1, respectively per patient. A significant linear correlation was observed between hospital admission and CT scans (r = 0.288, p = 0.035). The number of CT scans and the cumulative effective dose per patient were higher in patients with SRC than in those without (p < 0.001). The mortality rate due to radiation-induced neoplasia has increased by 0.33% in the study period. The inter-observer agreement was perfect or substantial for the catheter visualization, assessment of the ventricular system on DWI, and for the image quality of DWI between observers (κ = 0.704-1, p ≤ 0.001). No significant difference was found between CT and DWI in the measurements of Evans index and the frontal and occipital horn ratio (p > 0.05). Inter-observer agreements between observers were almost perfect for the Evans index and the frontal and occipital horn ratio (ICC = 0.94-0.99, p < 0.001).
Conclusions:
An awareness of the use of CT in children is still inadequate and difficulties in the diagnosis of SRC probably cause the overuse of CT. DWI should be preferred in the diagnosis of SRC and the follow-up of patients. Otherwise, the increase in the prevalence of several diseases, particularly neoplasia, may be inevitable because of the over use of CT.
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