Patient-specific organ and effective dose estimates in pediatric oncology computed tomography. Academic Article uri icon

Overview

abstract

  • PURPOSE: Estimate organ and effective doses from computed tomography scans of pediatric oncologic patients using patient-specific information. MATERIALS AND METHODS: With IRB approval patient-specific scan parameters and patient size obtained from DICOM images and vendor-provided dose monitoring application were obtained for a cross-sectional study of 1250 pediatric patients from 0 through 20 y-olds who underwent head, chest, abdomen-pelvis, or chest-abdomen-pelvis CT scans. Patients were categorized by age. Organ doses and effective doses were estimated using VirtualDoseā„¢ CT based on patient-specific information, tube current modulation (TCM), and age-specific realistic phantoms. CTDIvol, DLP, and dose results were compared with those reported in the literature. RESULTS: CTDIvol and DLP varied widely as patient size varied. The 75th percentiles of CTDIvol and DLP were no greater than in the literature with the exception of head scans of 16-20 y-olds and of abdomen-pelvis scans of larger patients. Eye lens dose from a head scan was up to 69 mGy. Mean organ doses agreed with other studies at maximal difference of 38% for chest and 41% for abdomen-pelvis scans. Mean effective dose was generally higher for older patients. The highest effective doses were estimated for the 16-20 y-olds as: head 3.3 mSv, chest 4.1 mSv, abdomen-pelvis 10.0 mSv, chest-abdomen-pelvis 14.0 mSv. CONCLUSION: Patient-specific organ and effective doses have been estimated for pediatric oncologic patients from <1 through 20 y-olds. The effect of TCM was successfully accounted for in the estimates. Output parameters varied with patient size. CTDIvol and DLP results are useful for future protocol optimization.

publication date

  • December 22, 2017

Research

keywords

  • Neoplasms
  • Radiation Dosage
  • Tomography, X-Ray Computed

Identity

PubMed Central ID

  • PMC5828028

Scopus Document Identifier

  • 85042063701

Digital Object Identifier (DOI)

  • 10.1016/j.ejmp.2017.12.013

PubMed ID

  • 29472080

Additional Document Info

volume

  • 45