Aussies getting less radiation from CT scans than 5 years ago

CT scan
Credit: CC0 Public Domain

Computed tomography (CT) procedures use ionising radiation to produce images of patients for better medical diagnosis and treatment, often avoiding more invasive tests.

The from a CT scan, while low, is nonetheless assumed to contribute a small additional risk to a patient's lifetime risk of cancer. International guidelines are in place to keep radiation dose as low as possible.

The Australian Radiation Protection and Nuclear Safety Agency (ARPANSA) collects and reviews data on patient dose from CT scans to produce diagnostic reference levels (DRLs) showing typical doses from scans. ARPANSA also advises on how their practice compares, to encourage best practice in radiation safety.

"In 2018, we analysed data from more than 47,000 CT scans at 381 facilities around Australia' said Dr. Peter Thomas, Director Medical Imaging at ARPANSA. "The data shows that, on average, patients are receiving much lower doses from CTs than we saw 5-10 years ago. Average dose has decreased by around 15 to 20 percent since the original DRLs were published."

The change is due to advances in CT practices and technologies.

The national DRLs published by ARPANSA give a valuable point of comparison to improve patient safety.

"If a facility finds that patient doses are consistently above the reference levels, they are required to investigate if the higher dose is justified," said Dr. Thomas. "Conversely, if patients are receiving doses well below the reference levels, the facility may need to review image quality to ensure procedures are effective."

The analysis used to develop the DRLs is explained in a new article in the Journal of Medical Radiation Sciences.

More information: Kam L. Lee et al. Updated Australian diagnostic reference levels for adult CT, Journal of Medical Radiation Sciences (2020). DOI: 10.1002/jmrs.372

Provided by Australian Radiation Protection and Nuclear Safety Agency (ARPANSA)
Citation: Aussies getting less radiation from CT scans than 5 years ago (2020, February 11) retrieved 5 March 2024 from
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