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Projecting the Radiation Oncology Workforce in Australia

  • Published : 2012.04.30

Abstract

Research on radiation oncologists has indicated that there is a shortage in supply of specialist workers in this field internationally, and also within Australia. However, there are no current estimates as to what the future Australian radiotherapy workforce will look like. This paper aims to review the current status and capacity of the three main disciplines that make up the radiation oncology workforce in Australia and project the workforce supply and demand for 2014 and 2019. Using data on the workforce from a survey of all radiotherapy facilities operating in Australia in 2008 a workforce model was constructed. This study found that there will be a future shortfall of radiation oncologists, radiation therapists and radiation oncology medical physicists working in radiation oncology treatment. By 2014 there will be 109 fewer radiation oncologists than what will be demanded, and by 2019 this figure will increase to a shortfall of 155 radiation oncologists. There was a projected shortfall of 612 radiation therapists by 2014, with this figure slightly decreasing to a shortfall of 593 radiation therapists in 2019. In 2014, there was projected to be a deficit of 104 radiation oncology medical physicists with a persisting shortfall of 78 in 2019. This future projected shortage highlights the need for radiation oncology workforce planning.

Keywords

References

  1. Adams E, Schofield D, ONE AUTHOR, et al (2008). Will the Australian nuclear medicine technologist workforce meet anticipated health care demands. Australian Health Review, 32, 282-91. https://doi.org/10.1071/AH080282
  2. Adams EJ, Cox JM, ONE AUTHOR, et al (2008). A profile of Australian nuclear medicine technologist practice. Nuclear Medicine Communications, 29, 84-90.
  3. Adams EJ, Cox JM, ONE AUTHOR, et al (2010). The work environment and its effects on engagement and retention of numclear medicine technologists: differences between public and private sector workers. Nuclear Medicine Communications, 31, 513-20.
  4. Allied Health Professional Workforce Planning Group (2003). Allied health professional workforce planning project: Radiation therapy information. Hobart, Tasmanian Department of Human Services.
  5. Australian Government (2004). Australia's demographic challenges. Canberra, Commonwealth of Australia.
  6. Australian Institute of Health and Welfare (2003). Nursing labour force 2001. Canberra, AIHW.
  7. Australian Institute of Health and Welfare (2008). Medical labour force 2005. Canberra, AIHW.
  8. Australian Medical Workforce Advisory Committee (2000). Medical workforce planning in Australia. Australian Health Review, 23, 8-26.
  9. Australian Medical Workforce Advisory Committee (2004). Australian Medical Workforce Advisory Committee Annual Report 2003-04. Sydney, AMWAC.
  10. Baume P (2002). Radiation oncology inquiry: A vision for radiotherapy. Canberra, Commonwealth of Australia.
  11. Begg S, Vos T, et al (2003). The burden of disease and injury in Australia 2003. Canberra, Australian Institute of Health and Welfare.
  12. Borland J (2002). The markets for medical specialists in Australia. Health Policy Roundtable: Suplier-induced demand and occupational regulation. Melbourne, Productivity Commission.
  13. Committee AMWA (1998). The specialist radiation oncology workforce in Australia. Canberra, AMWAC.
  14. Delaney G, Jacob S, ONE AUTHOR, et al (2005). The role of radiotherapy in cancer treatment: Estimating the optimal utilisiation from a review of evidence-based clinical guidelines. Cancer, 104, 1129-37. https://doi.org/10.1002/cncr.21324
  15. Department of Health (2003). "Radiography skill mix: A report on the four-tier service delivery model."
  16. Department of Health and Ageing (2009). Radiation Oncology Workforce Planning. Canberra, DoHA.
  17. Duckett S (2000). The Australian health workforce: facts and figures. Australian Health Review, 23, 60-77.
  18. Goldacre M (1998). Planning in the United Kingdom's medical workforce. BMJ, 316, 1846-7. https://doi.org/10.1136/bmj.316.7148.1846
  19. Jones N, O'Donnell C, ONE AUTHOR, et al (2000). 1998 Australian radiology workforce report. Australasian Radiology, 44, 41-52. https://doi.org/10.1046/j.1440-1673.2000.00780.x
  20. Mathers C, Vos T, ONE AUTHOR, et al (2000). The Australian Burden of Disease Study: measuring the loss of health from diseases, injuries and risk factors. MJA, 172, 592-6.
  21. Mills MD, Thornwill J, ONE AUTHOR, et al (2010). Future trends in the supply and demand for radiation oncology physicists. J Appl Clin Med Phys, 11, 3005.
  22. National Radiotherapy Advisory Group (2007). Radiotherapy, developing a worl class service for England.
  23. Productivity Commission (2005). Economic Implications of an Ageing Australia. Research Report. Productivity Commission. Canberra. Canberra, Australian Government.
  24. Rivera P, Delord JP, ONE AUTHOR, et al (2004). Demography of oncologic practitioners working in France: Projection elements for the next 30 years. Bulletin Cancer, 91, 271-7.
  25. Royal Australian and New Zealand College of Radiographers (2002). Huge effort needed for Australians to receive the cancer treatment they deserve (media release). Sydney, RANZCR.
  26. Schofield D, Fletcher S, ONE AUTHOR, et al (2009). Ageing medical workforce in Australia - where will the medical educators come from. Human Resources for Health, 7, 82. https://doi.org/10.1186/1478-4491-7-82
  27. The Royal College of Radiologists (2005). Equipment, workload and staffing for radiotherapy in Scotland 1997-2003.

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