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123 I-mIBG is described as a diagnostic tool for imaging neuroendocrine tumours, assessing heart function, detecting and monitoring malignant paragangliomas, and evaluating heart diseases.
Researchers and collaborators can review the SSC beam schedule at NRF-iThemba LABS for the upcoming months. The document states that the 2025 SSC beamtime application is closed.
An iodine-based radiopharmaceutical for non-invasive thyroid imaging, including assessing thyroid function and diagnosing conditions such as hyperthyroidism or thyroid nodules.
iThemba LABS makes its particle accelerator centre and cyclotron facilities available as part of its mission to advance isotope science and technology and collaborate across nuclear and particle physics, life sciences and material sciences.
The smaller accelerators at the Western Cape site include two injector cyclotrons—one producing intense beams of light ions, and the other beams of polarised light ions or heavy ions—available for research applications in nuclear and material sciences.
Researchers and scientists can access the k-200 separated sector cyclotron at iThemba LABS, which can accelerate protons to 200MeV and heavier particles to even higher energies. This facility supports advanced research in nuclear physics, materials science, and medical isotope development.
The South African Isotope Facility (SAIF), launched in June 2023, provides infrastructure for developing and producing medical and industrial isotopes. Researchers and institutions can collaborate to advance nuclear technology for societal benefit.
The Nuclear Medicine department at iThemba LABS offers advanced services in nuclear medicine, leveraging the country's only cyclotron facilities on the African continent. These services support medical research, diagnostics, and treatment through isotope production and application.
Students can participate in research projects at the SSC Laboratory, part of iThemba LABS, which operates one of the largest cyclotron facilities in the Southern Hemisphere. These projects are part of broader efforts in isotope science, nuclear physics, and applied research.
A course designed for university students and young specialists that reviews the basics of nuclear physics, including nuclear reactions and radiation interaction with matter. It also covers types of radiation detectors and electronic devices used in data processing.
Students can participate in virtual experiments focused on studying nuclear fission, allowing hands-on engagement with complex nuclear processes in a simulated environment.
The SA-JINR Virtual Laboratory offers students, researchers, and young specialists an immersive online platform to engage in interactive experiments, simulations, and advanced nuclear research. It covers topics such as experimental nuclear physics, nuclear electronics, and nuclear fission through virtual lab experiences.