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- W2966719601 abstract "Medical imaging is an indispensable tool in radiotherapy for dose planning, image guidance and treatment monitoring. Cone beam CT (CBCT) is a low dose imaging technique with high spatial resolution capability as a direct by-product of using flat-panel detectors. However, certain issues such as x-ray scatter, beam hardening and other artifacts limit its utility to the verification of patient positioning using image-guided radiotherapy.Dual-energy (DE)-CBCT has recently demonstrated promise as an improved tool for tumor visualization in benchtop applications. It has the potential to improve soft-tissue contrast and reduce artifacts caused by beam hardening and metal. In this review, the practical aspects of developing a DE-CBCT based clinical and technical workflow are presented based on existing DE-CBCT literature and concepts adapted from the well-established library of work in DE-CT. Furthermore, the potential applications of DE-CBCT on its future role in radiotherapy are discussed.Based on current literature and an investigation of future applications, there is a clear potential for DE-CBCT technologies to be incorporated into radiotherapy. The applications of DE-CBCT include (but are not limited to): adaptive radiotherapy, brachytherapy, proton therapy, radiomics and theranostics." @default.
- W2966719601 created "2019-08-13" @default.
- W2966719601 creator A5009598063 @default.
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- W2966719601 creator A5062878158 @default.
- W2966719601 creator A5090099977 @default.
- W2966719601 date "2020-01-01" @default.
- W2966719601 modified "2023-10-17" @default.
- W2966719601 title "Technical Principles of Dual-Energy Cone Beam Computed Tomography and Clinical Applications for Radiation Therapy" @default.
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