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March 6, 2026Tomography0 citationsOpen Access

Evaluation of Radiation Dose and Image Quality in the Transition from Conventional Pelvimetry to Low-Dose Helical CT Pelvimetry

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KSKaveh ShahgeldiMPM ParenmarkLCLinda Claesson

Key Points

  • This research evaluates the radiation dose and image quality of low-dose CT pelvimetry compared to conventional methods.
  • Measured absorbed dose using thermoluminescent dosimeters in a phantom model.
  • Performed conventional and low-dose CT pelvimetry using established clinical protocols.
  • Calculated effective dose with Monte Carlo modeling and patient dose registry data.
  • Evaluated image quality through a four-point ordinal scale in 14 clinical cases.
  • Low-dose CT pelvimetry reduced the mean absorbed pelvic dose by approximately 50% (0.18 vs. 0.39 mGy).
  • Decreased estimated fetal dose by 40% (0.21 vs. 0.37 mGy).
  • CT showed a more uniform dose distribution, unlike conventional pelvimetry which had heterogeneity of doses up to 2.3 mGy.
  • Maternal effective dose was lower for low-dose CT (0.16 mSv) compared to conventional (0.36 mSv), rising to 0.71 mSv with retakes.
  • All CT images were diagnostically adequate; no recalls were needed.

Abstract

Purpose: The present study aimed to assess the radiation dose associated with low-dose (LD) CT pelvimetry compared with conventional radiography and to evaluate the adequacy of the resulting image quality. Methods: The absorbed dose was measured using thermoluminescent dosimeters positioned in an anthropomorphic female phantom, including uterine locations, to estimate the fetal dose. Conventional radiographic pelvimetry and LD-CT pelvimetry were performed using clinically implemented protocols. Effective dose was calculated using Monte Carlo–based modeling applying acquisition parameters and retrospective patient dose registry data. Image quality of LD-CT pelvimetry was independently evaluated in 14 consecutive clinical cases using a four-point ordinal scale. Results: LD-CT pelvimetry reduced the mean absorbed pelvic dose by approximately 50% compared with conventional pelvimetry (0.18 vs. 0.39 mGy) and decreased estimated fetal dose by 40% (0.21 vs. 0.37 mGy). These estimates were based on standardized single acquisitions and did not incorporate additional radiation from retakes commonly observed in conventional practice. CT demonstrated substantially more homogeneous dose distribution, whereas conventional pelvimetry exhibited marked heterogeneity with peak values up to 2.3 mGy. The maternal effective dose was lower for LD-CT (0.16 mSv) than for conventional pelvimetry (0.36 mSv); inclusion of retakes increased the conventional effective dose to 0.71 mSv. All CT examinations were diagnostically adequate, and no recalls were required. Conclusions: Optimized low-dose CT pelvimetry significantly reduces radiation dose compared with conventional radiographic pelvimetry while maintaining reliable diagnostic image quality. These results support the clinical adoption of CT-based pelvimetry as a dose-efficient and reproducible alternative to conventional techniques.

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Cite This Study

Shahgeldi et al. (2026) studied this question.

synapsesocial.com/papers/69aa70e7531e4c4a9ff5b25bhttps://doi.org/10.3390/tomography12030035
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