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Radiation Exposure and Lifetime Attributable Risk of Cancer Incidence and Mortality from Low- and Standard-Dose CT Chest: Implications for COVID-19 Pneumonia Subjects

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DIAGNOSTICS
卷 12, 期 12, 页码 -

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MDPI
DOI: 10.3390/diagnostics12123043

关键词

computed tomography; chest; radiation risk; COVID-19; cancer

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Since the COVID-19 outbreak, there has been a significant increase in CT scans for the detection of lung disease. However, CT scans expose patients to ionizing radiation, which can increase the risk of cancer. This review discusses the known health effects of radiation, the risk of radiation-induced cancer at CT scan doses, and the potential increase in cancer incidence from CT scans performed during the COVID-19 pandemic.
Since the novel coronavirus disease 2019 (COVID-19) outbreak, there has been an unprecedented increase in the acquisition of chest computed tomography (CT) scans. Nearly 616 million people have been infected by COVID-19 worldwide to date, of whom many were subjected to CT scanning. CT exposes the patients to hazardous ionizing radiation, which can damage the genetic material in the cells, leading to stochastic health effects in the form of heritable genetic mutations and increased cancer risk. These probabilistic, long-term carcinogenic effects of radiation can be seen over a lifetime and may sometimes take several decades to manifest. This review briefly describes what is known about the health effects of radiation, the lowest dose for which there exists compelling evidence about increased radiation-induced cancer risk and the evidence regarding this risk at typical CT doses. The lifetime attributable risk (LAR) of cancer from low- and standard-dose chest CT scans performed in COVID-19 subjects is also discussed along with the projected number of future cancers that could be related to chest CT scans performed during the COVID-19 pandemic. The LAR of cancer Incidence from chest CT has also been compared with those from other radiation sources, daily life risks and lifetime baseline risk.

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