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Size-Specific Dose Estimate and Effective Dose for Pediatric Computed Tomography
Rukhsar Khan1, Mudasir Ashraf Shah1, Shagufta Wahab1
1Department of Radiodiagnosis, Faculty of Medicine, J. N Medical College, Aligarh Muslim University, Aligarh, Uttar Pradesh, India.
Insights
This study analyzed size-specific dose estimates (SSDE) and effective dose (E) in pediatric CT scans. Results show SSDE correlates with scan parameters, and effective dose depends on dose length product, aiding radiation dose optimization.
Area of Science:
- Medical Physics
- Radiology
- Pediatric Imaging
Background:
- Accurate radiation dose assessment is critical in pediatric CT.
- Size-specific dose estimate (SSDE) and effective dose (E) are key metrics.
- Multivariate analysis can elucidate dose-related factors in pediatric patients.
Purpose of the Study:
- To perform a multivariate analysis of SSDE and E in pediatric CT.
- To investigate correlations between dose metrics and patient/scan parameters.
- To establish relationships for optimizing pediatric CT radiation doses.
Main Methods:
- Prospective study of pediatric patients undergoing head, thorax, and abdomen CT.
- Calculation of water-equivalent diameter (Dw), SSDE, and E from CT dose reports.
- Multivariate statistical analysis and linear regression to examine correlations.
Main Results:
- SSDE significantly correlates with CTDIvol and Dw.
- Effective dose (E) significantly depends on dose length product (DLP).
- A strong positive correlation exists between Dw and Size/(LAT+AP), suggesting Size/(LAT+AP) as a surrogate for SSDE estimation.
Conclusions:
- SSDE is crucial for pediatric CT dose evaluation and is becoming an international standard.
- Size/(LAT+AP) can serve as a practical surrogate for estimating SSDE when Dw calculation is challenging.
- Findings support optimized radiation dose management in pediatric CT imaging.
Abstract:
The purpose of this study is to present the multivariate analysis of the size-specific dose estimate (SSDE) and E in pediatric computed tomography (CT) imaging. Pediatric patients scheduled for CT scans of the head, thorax, and abdomen from July 2022 to February 2024 were included in the prospective study. The water-equivalent diameter (D w), SSDE, and E were computed for each examination using the dose report of CT console display computed tomography dose index (CTD1 vol) and dose length product (DLP). The correlation between SSDE and E on CTD1 vol, D w, Area ROI, body mass index, Size⁄(LAT+AP), age, f , and HU mean in the region of interest was examined using the multivariate statistical analysis with 95% level of significance (P < 0.05). The relationship between D w and Size⁄(LAT+AP), Size⁄(LAT+AP), and f versus age was investigated using linear regression analysis. The mean values of SSDE for noncontrast head CT and contrast-enhanced CT were found 71.36 mGy and 97.38 mGy, respectively. While as, the mean SSDE for contrast-enhanced thorax CT was observed to be 5.82 mGy, which is less than the mean SSDE of 6.40 mGy for noncontrast thorax CT imaging. The range of the SSDE for contrast-enhanced abdomen CT is 2.05 mGy to 22.13 mGy with a mean SSDE of around 5.71 mGy and for noncontrast abdomen imaging, mean value of SSDE was 5.58 mGy. The mean value of "E" for noncontrast thorax CT imaging was observed to be 2.7 mSv with minimum and maximum 1.17 mSv to 10.10 mSv respectively, which less than the mean effective dose is of 3.64 mSv observed for contrast enhanced thorax CT imaging. The multivariate analysis suggests that SSDE is significantly correlated with CTD1 vol, D w, and E is found significantly dependent on DLP for both contrast enhanced and noncontrast imaging with p < 0.05. A strong positive correlation was found between D w and Size⁄(LAT+AP), form linear regression analysis. The SSDE is crucial for radiologists evaluating pediatric CT scans and is now an international standard expected to be widely adopted. The strong positive correlation between D w versus Size⁄(LAT+AP), indicates that Size⁄(LAT+AP),can be used as surrogate in estimate SSDE when D w calculation is not feasible for pediatric CT imaging.
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