Published March 2015 | Version v1
Journal article

Risk of cancer incidence before the age of 15 years after exposure to ionising radiation from computed tomography: results from a German cohort study

  • 1. International Agency for Research on Cancer, Lyon (France)
  • 2. University Medical Center Mainz, Institute of Medical Biostatistics, Epidemiology and Informatics, Mainz (Germany)
  • 3. University of Bremen, Leibniz - Institute for Prevention Research and Epidemiology - BIPS, Research Focus Health Sciences Bremen, Bremen (Germany)
  • 4. Vivantes, Klinikum Neukoelln, Institut fuer Radiologie und Interventionelle Therapie, Berlin (Germany)
  • 5. Zentralinstitut fuer Bildgebende Diagnostik, Staedtisches Klinikum Karlsruhe, Karlsruhe (Germany)
  • 6. Universitaetsklinikum Schleswig Holstein, Klinik fuer Radiologie und Nuklearmedizin, Campus Luebeck, Luebeck (Germany)
  • 7. Medizinische Hochschule Hannover, Institut fuer Diagnostische und Interventionelle Radiologie, Hannover (Germany)
  • 8. Klinikum Oldenburg GmbH, Institut fuer Diagnostische and Interventionelle Radiologie, Oldenburg (Germany)
  • 9. Universitaetsklinikum Tuebingen, Abt. fuer Diagnostische und Interventionelle Radiologie, Tuebingen (Germany)
  • 10. Universitaetsklinikum Essen, Institut fuer Diagnostische und Interventionelle Radiologie und Neuroradiologie, Essen (Germany)
  • 11. National Research Council, Institute of Clinical Physiology, Lecce (Italy)
  • 12. Klinikum Bremen-Mitte, Klinik fuer Radiologische Diagnostik und Nuklearmedizin, Bremen (Germany)
  • 13. Centre de Recherche Public Henri Tudor, Luxembourg (Luxembourg)
  • 14. Universitaetsklinikum Freiburg, Klinik fuer Radiologie, Freiburg (Germany)
  • 15. Universitaetsklinikum Carl Gustav Carus Dresden, Institut und Poliklinik fuer Radiologische Diagnostik, Dresden (Germany)
  • 16. Universitaetsmedizin Goettingen, Institut fuer Diagnostische und Interventionelle Radiologie, Goettingen (Germany)
  • 17. Universitaetsklinikum Jena, Institut fuer Diagnostische und Interventionelle Radiologie, Sektion Kinderradiologie, Jena (Germany)
  • 18. Universitaetsmedizin Mainz, Zentrum fuer Kinder- und Jugendmedizin, Mainz (Germany)
  • 19. Universitaetsklinikum Erlangen, Radiologisches Institut, Erlangen (Germany)
  • 20. Klinikum Nuernberg Sued, Institut fuer Radiologie und Neuroradiologie, Nuremberg (Germany)
  • 21. Institut fuer Klinische Radiologie, Klinikum der Universitaet Muenchen, Dr. von Haunersches Kinderspital, Munich (Germany)
  • 22. Universitaetsklinik Freiburg, Klinik fuer Neuroradiologie, Neurozentrum, Freiburg (Germany)
  • 23. University Medical Center Mainz, German Childhood Cancer Registry, Mainz (Germany)
  • 24. Charite - Universitaetsmedizin Berlin, Kinderradiologie, Standort Campus Virchow Klinikum, Berlin (Germany)
  • 25. Universitaetsmedizin Mainz, Klinik und Poliklinik fuer diagnostische und interventionelle Radiologie, Sektion Kinderradiologie, Mainz (Germany)
  • 26. Klinikum der Johann Wolfgang Goethe-Universitaet Frankfurt/Main, Institut fuer Diagnostische und Interventionelle Radiologie, Frankfurt (Germany)
  • 27. Vivantes, Klinikum im Friedrichshain, Institut fuer Radiologie und Interventionelle Therapie, Berlin (Germany)
  • 28. Universitaetsklinikum Mannheim, Institut fuer Klinische Radiologie und Nuklearmedizin, Mannheim (Germany)

Description

The aim of this cohort study was to assess the risk of developing cancer, specifically leukaemia, tumours of the central nervous system and lymphoma, before the age of 15 years in children previously exposed to computed tomography (CT) in Germany. Data for children with at least one CT between 1980 and 2010 were abstracted from 20 hospitals. Cancer cases occurring between 1980 and 2010 were identified by stochastic linkage with the German Childhood Cancer Registry (GCCR). For all cases and a sample of non-cases, radiology reports were reviewed to assess the underlying medical conditions at time of the CT. Cases were only included if diagnosis occurred at least 2 years after the first CT and no signs of cancer were recorded in the radiology reports. Standardised incidence ratios (SIR) using incidence rates from the general population were estimated. The cohort included information on 71,073 CT examinations in 44,584 children contributing 161,407 person-years at risk with 46 cases initially identified through linkage with the GCCR. Seven cases had to be excluded due to signs possibly suggestive of cancer at the time of first CT. Overall, more cancer cases were observed (O) than expected (E), but this was mainly driven by unexpected and possibly biased results for lymphomas. For leukaemia, the SIR (SIR = O/E) was 1.72 (95 % CI 0.89-3.01, O = 12), and for CNS tumours, the SIR was 1.35 (95 % CI 0.54-2.78, O = 7). Despite careful examination of the medical information, confounding by indication or reverse causation cannot be ruled out completely and may explain parts of the excess. Furthermore, the CT exposure may have been underestimated as only data from the participating clinics were available. This should be taken into account when interpreting risk estimates. (orig.)

Availability note (English)

Available from: http://dx.doi.org/10.1007/s00411-014-0580-3

Additional details

Identifiers

Publishing Information

Journal Title
Radiation and Environmental Biophysics
Journal Volume
54
Journal Issue
1
Journal Page Range
p. 1-12
ISSN
0301-634X
CODEN
REBPAT