Optimizing Radiation Dose in High-Resolution Chest CT: The Impact of Patient-Specific Factors and Size-Specific Dose

Mohamed Abuzaid1,2

  • 1Medical Diagnostic Imaging Department, College of Health Science, University of Sharjah, Sharjah P.O. Box 27272, United Arab Emirates.

PubMed

Insights

Size-specific dose estimates (SSDEs) offer a more accurate assessment of radiation dose in high-resolution chest computed tomography (HRCT). This patient-centered approach aids in optimizing radiation safety and tailoring protocols for individual patients.

Area of Science:

  • Medical Imaging
  • Radiology
  • Radiation Dosimetry

Background:

  • High-resolution chest computed tomography (HRCT) is essential for diagnosis but faces challenges in radiation dose optimization.
  • Traditional dose metrics (CTDIvol, DLP) fail to account for patient size variations.
  • Accurate dose assessment is crucial for patient safety in medical imaging.

Purpose of the Study:

  • To evaluate radiation dose in HRCT using size-specific dose estimates (SSDEs).
  • To assess the impact of patient-specific factors on dosimetric parameters in HRCT.
  • To compare SSDEs with traditional dose metrics for HRCT procedures.

Main Methods:

  • Retrospective analysis of 1970 adult HRCT scans.
  • Extraction of radiation dose data (CTDIvol, DLP, SSDE, effective dose) using DoseWatch™.
  • Statistical analysis including correlation and significance testing (SPSS v26).

Main Results:

  • A significant positive correlation exists between radiation dose parameters and patient BMI (rpb = 0.445, p < 0.01).
  • SSDE values ranged from 2.7 to 12.4 mGy, offering patient-specific dose insights.
  • Male patients received higher radiation doses (p < 0.01), and scanning range correlated negatively with dose.

Conclusions:

  • SSDEs provide a more accurate, patient-centered dose assessment in HRCT.
  • Findings support the need for size-adapted scan protocols to minimize radiation exposure.
  • Routine integration of SSDEs is recommended for individualized dose management in HRCT.