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1.
Phys Med ; 29(3): 261-72, 2013 May.
Article in English | MEDLINE | ID: mdl-22522034

ABSTRACT

Continuing professional development (CPD) and continuing professional education (CPE) are seen as being necessary for medical physicists to ensure that they are up-to-date with current clinical practice. CPD is more than just continuing professional education, but can include research publication, working group contribution, thesis examination and many other activities. A systematic way of assessing and recording such activities that a medical physicist undertakes is used in a number of countries. This can be used for certification and licensing renewal purposes. Such systems are used in 27 countries, but they should be implemented in all countries where clinical medical physicists are employed. A survey of the CPD systems that are currently operated around the world is presented. In general they are quite similar although there are a few countries that have CPD systems that differ significantly from the others in many respects. Generally they ensure that medical physicists are kept up-to-date, although there are some that clearly will fail to achieve that. An analysis of what is required to construct a useful medical physics CPD system is made. Finally, the need for medical physicist professional organizations to cooperate and share in the production and distribution of CPD and CPE materials is emphasized.


Subject(s)
Education, Continuing/statistics & numerical data , Education, Professional/statistics & numerical data , Health Physics/education , Health Physics/statistics & numerical data , Professional Competence/statistics & numerical data , Societies/statistics & numerical data , Curriculum , Data Collection , Internationality
2.
Australas Phys Eng Sci Med ; 33(2): 153-62, 2010 Jun.
Article in English | MEDLINE | ID: mdl-20614207

ABSTRACT

A survey of the Australasian clinical medical physics and biomedical engineering workforce was carried out in 2009 following on from a similar survey in 2006. 621 positions (equivalent to 575 equivalent full time (EFT) positions) were captured by the survey. Of these 330 EFT were in radiation oncology physics, 45 EFT were in radiology physics, 42 EFT were in nuclear medicine physics, 159 EFT were in biomedical engineering and 29 EFT were attributed to other activities. The survey reviewed the experience profile, the salary levels and the number of vacant positions in the workforce for the different disciplines in each Australian state and in New Zealand. Analysis of the data shows the changes to the workforce over the preceding 3 years and identifies shortfalls in the workforce.


Subject(s)
Biomedical Engineering , Health Physics , Australasia , Biomedical Engineering/economics , Biomedical Engineering/statistics & numerical data , Data Collection , Employment/statistics & numerical data , Health Physics/economics , Health Physics/statistics & numerical data , Humans , Nuclear Medicine/economics , Nuclear Medicine/statistics & numerical data , Radiation Oncology/economics , Radiation Oncology/statistics & numerical data , Salaries and Fringe Benefits/statistics & numerical data , Workforce
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