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PURPOSE: The Global Medical Physics Training and Development Program (GMPTDP) is a novel initiative that provides United States (US)-based graduate students in medical physics with structured, immersive clinical training in Ghana. METHODS: The five-week program begins with a cultural and clinical orientation in the US, followed by 4 weeks of clinical rotations across leading Ghanaian medical institutions. During rotations, students gain experience with teletherapy (LINACs and cobalt-60), brachytherapy, treatment planning, imaging, and more. Trainees participate in clinical activities, conduct collaborative projects, and engage in community outreach and cultural immersion. The program culminates in a symposium highlighting student experiences and future directions with speakers including physicists, oncologists, engineers, and policymakers. RESULTS: The pilot year of the program was successfully completed by three students from May 28 2024-July 2 2024. This article outlines the development, structure, and implementation of GMPTDP as a replicable model for global health training in medical physics, emphasizing sustainable partnerships between high-income and low- and middle-income countries. Educational objectives include demonstrating effective cross-border training models, fostering collaborative research, and expanding global clinical experience in the field of medical physics. CONCLUSIONS: A model for a global medical physics training program was developed and successfully implemented.
Read paperBACKGROUND: There have been several proposals by researchers for the introduction of Artificial Intelligence (AI) technology due to its promising role in radiotherapy practice. However, prior to the introduction of the technology, there are certain general recommendations that must be achieved. Also, the current challenges of AI must be addressed. In this review, we assess how Africa is prepared for the integration of AI technology into radiotherapy service delivery. METHODS: To assess the readiness of Africa for integration of AI in radiotherapy services delivery, a narrative review of the available literature from PubMed, Science Direct, Google Scholar, and Scopus was conducted in the English language using search terms such as Artificial Intelligence, Radiotherapy in Africa, Machine Learning, Deep Learning, and Quality Assurance. RESULTS: We identified a number of issues that could limit the successful integration of AI technology into radiotherapy practice. The major issues include insufficient data for training and validation of AI models, lack of educational curriculum for AI radiotherapy-related courses, no/limited AI teaching professionals, funding, and lack of AI technology and resources. Solutions identified to facilitate smooth implementation of the technology into radiotherapy practices within the region include: creating an accessible national data bank, integrating AI radiotherapy training programs into Africa's educational curriculum, investing in AI technology and resources such as electronic health records and cloud storage, and creation of legal laws and policies to support the use of the technology. These identified solutions need to be implemented on the background of creating awareness among health workers within the radiotherapy space. CONCLUSION: The challenges identified in this review are common among all the geographical regions in the African continent. Therefore, all institutions offering radiotherapy education and training programs, management of the medical centers for radiotherapy and oncology, national and regional professional bodies for medical physics, ministries of health, governments, and relevant stakeholders must take keen interest and work together to achieve this goal.
Read paperAbstract The International Atomic Energy Agency (IAEA) developed a staffing model to estimate the number of clinically qualified medical physicists (CQMP) that are required in an imaging facility, including diagnostic radiology and nuclear medicine. For the first time this staffing model was applied on a large scale across Africa. Within the framework of the IAEA African Regional Agreement (AFRA) Technical Cooperation (TC) project RAF6/053 entitled “Enhancing Capacity Building of Medical Physics to Improve Safety and Effectiveness of Medical Imaging (AFRA)”, a survey based on the IAEA staffing model was used to investigate the current CQMP workforce needs in imaging and radionuclide therapy in Africa in order to establish a baseline, identify gaps and suggest steps for improvement. The survey was open for five months, after which data verification was performed. 82 responses were received from 21 countries, including data from 97 diagnostic radiology and 40 nuclear medicine departments, as well as 75 interventional radiology departments and/or catheterization laboratories. Only 26·8% of centres employed an adequate number of CQMPs. The staffing model indicated that 134·3 CQMPs were required for these centres, but only 63 are currently employed in medical imaging and/or nuclear medicine at these centres. At least 11 countries do not have a single institution with an adequate number of CQMPs. Data analysis indicated that the number of radiology and nuclear medicine CQMPs is largely inadequate, at least by a factor of 20 in almost all countries in the region.
Read paperAfrica tends to be isolated and sometimes forgotten when it comes to scientific research and in particular physics. But the region has great potential, being home to the youngest population in the world, and despite a variety of issues, there has been steady, albeit uneven progress towards establishing a scientific infrastructure. Ten African researchers discuss the diverse challenges and opportunities faced by physicists across the continent. Ten African researchers discuss the varied challenges and opportunities faced by physicists across the continent. Rabia Salihu Sa’id is a full professor of Atmospheric Physics at Bayero University, Kano, in Nigeria. She holds a PhD, MSc and BSc in Physics and an MSc in Environment and Development, and is an expert in the effects of dust aerosols on climate and air quality measurements. In 2015, she received the OWSD (Organization for Women in Science for the Developing World)/ TWAS (The World Academy of Sciences)/Elsevier Foundation Award for Early Career (Physics), which rewards and encourages women working and living in developing countries who are in the early stages of their scientific careers, having often overcome great challenges to achieve research excellence. Ibiyinka Fuwape has been a professor of physics at the Federal University of Technology, Akure, Nigeria since 1989. She is currently the Vice Chancellor of the Michael and Cecilia Ibru University, Agbarha-Otor, Delta State, Nigeria. Her research interests include theory of chaos and application of nonlinear dynamics in coupled oscillator systems, neuronal systems, and lower and upper atmospheric research. She is an alumna of the Schlumberger Faculty of the Future Fellowship programme. Alain Moise Dikandé (full professor in physics) is Head of the Physics Department, Faculty of Science, University of Buea, Cameroon. He is an Alexander von Humboldt Fellow in the ‘Experienced Researchers’ Category, a Senior Associate of the Abdus Salam International Centre for Theoretical Physics (ICTP, Trieste, Italy), guest editor of the special issue of the Journal of the Optical Society of America (JOSA A and B): Optics in Africa and member of the editorial board of Journal of Optics. Jamal Mimouni is an Algerian astrophysicist, who received his higher education between Algiers University and the United States (PhD in Particle Physics in 1985, University of Pennsylvania). He is the head of a graduate programme in astrophysics at Constantine 1 University in Algeria, and the President of the African Astronomical Society. He is an active participant in the debate on science and society in the Arab-Muslim World. Francis Hasford is the Head of Medical Physics at the University of Ghana and Ghana Atomic Energy Commission, Secretary General of the Federation of African Medical Physics Organizations, expert medical physicist for the International Atomic Energy Agency and member of the IOMP (International Organization for Medical Physics) Web Sub-committee. He received his PhD from the University of Ghana and is an associate of the International Centre for Theoretical Physics. He is the recipient of the 2016 International Union of Pure and Applied Physics (IUPAP)/IOMP Young Scientist Award in Medical Physics. Delia Haynes did her PhD at Trinity Hall at the University of Cambridge, followed by a postdoctoral fellowship with the Pfizer Institute for Pharmaceutical Materials Science, also at Cambridge. She has been at Stellenbosch University since 2007, where she is now a professor in the Department of Chemistry and Polymer Science. Delia is the chair of the Steering Committee to form the African Crystallographic Association. Irvy (Igle) Gledhill spent time at the University of California, Los Angeles and Stanford before moving to the Council for Scientific and Industrial Research in South Africa, her home country. She is now Visiting Professor of Flow Physics at the University of the Witwatersrand. She is a past president of the South African Institute of Physics and a Vice-President of the Network of African Science Academies. She edits . George Amolo is a professor of physics and Director of the School of Physics and Earth Science, The Technical University of Kenya, Nairobi, and a research associate in Computational Modelling and Materials Science with the Kenya Education Network (KENET). He received his PhD from the University of the Witwatersrand, South Africa, and worked in the University of Eldoret and Moi University, Eldoret, Kenya, before moving to the Technical University of Kenya in 2016. Omololu Akin-Ojo received his BSc and MSc Physics degrees from the University of Ibadan, and his PhD from the University of Delaware (USA). Following two postdoctoral stints at Boston University and the Abdus Salam International Centre for Theoretical Physics (ICTP) Trieste, Italy, he returned to Africa — first to Nigeria and now Rwanda as Director of the East African Institute for Fundamental Research , a physics training and research hub. His main research interest is in condensed matter physics and its applications for African development and advancement. Nashwa Eassa is an associate professor of physics and the Dean of the Deanship of Scientific Research at Al Neelain University. She undertook a postdoctoral fellowship in the Nanophotonics group at Nelson Mandela Metropolitan University (NMMU), South Africa. She holds a PhD in physics from NMMU and Master of Science in material physics and nanotechnology from Linköping University, Sweden.
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University of Ghana
6 shared publicationsGhana Atomic Energy Commission
6 shared publicationsUniversity of Ghana
4 shared publicationsStellenbosch University
4 shared publicationsUniversity of Ghana
4 shared publicationsUniversity of Ghana
3 shared publicationsKorle Bu Teaching Hospital
3 shared publicationsMedical University Plovdiv
3 shared publicationsCentre de Recherche Nucléaire d’Alger
2 shared publicationsUniversity of Ghana
2 shared publicationsUniversity of Abuja
2 shared publicationsUniversity of Ghana
2 shared publications