Estimates of the number of patients with high cumulative doses through recurrent CT exams in 35 OECD countries

Phys Med. 2020 Aug:76:173-176. doi: 10.1016/j.ejmp.2020.07.014. Epub 2020 Jul 18.

Abstract

Purpose: To estimate the number of patients in OECD (Organization for Economic Co-operation and Development) countries who receive a cumulative effective dose (CED) ≥ 100 mSv from recurrent computed tomography (CT) exams.

Methods: Taking into account recently published data on the number of CTs per patient and the fraction of patients with CED ≥ 100 mSv as well as country-specific data for the number of CT exams/1,000 population from OECD publication, this paper makes estimations for 35 OECD countries.

Results: The estimated total number of patients with CED ≥ 100 mSv for all 35 OECD countries combined in a 5-year period is around 2.5 million (2,493,685) in a population of 1.2 billion (1,176,641,900), i.e., 0.21% of the population. Expressed per 1,000 population, the range is from 0.51 for Finland to 2.94 for the US, a nearly six-fold difference. Countries with more than 2 patients with CED ≥ 100 mSv in a 5-yr period per 1,000 population are: Belgium, France, Iceland, Japan, Korea, Luxembourg, Portugal, Turkey, and US.

Conclusions: The first estimates of the number of patients likely receiving CED ≥ 100 mSv through recurrent CT exams in 35 OECD countries indicate that 2.5 million patients reach this level in a 5-year period. There is an urgent need for various stakeholders including medical physicists, referring physicians, health policy makers, manufacturers of CT equipment and epidemiologists to attend to the issue in the interest of patient radiation safety.

Keywords: CT imaging; Cumulative effective dose; Effective dose; High cumulative dose; OECD countries; Patient radiation safety; Radiation dose.

MeSH terms

  • Belgium
  • Finland
  • France
  • Humans
  • Japan
  • Organisation for Economic Co-Operation and Development*
  • Portugal
  • Radiation Dosage
  • Republic of Korea
  • Tomography, X-Ray Computed*