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predictive medicine of the future. The position is based in VILLEURBANNE and you will be required to travel to the Léon Bérard Centre in Lyon to work in the diagnostic imaging and radiotherapy departments
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without overt side effect. Dietary methionine restriction has shown promising in various mouse cancer models alone or in combination with chemotherapy or radiotherapy. Job Duties Performs research under
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(FELs) such as FLASH and the European XFEL as well as on applications of high brightness beams like the world’s first high-power THz SASE FEL and unique research capabilities for tumor radiotherapy and
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contribute to ground-breaking research aimed at enhancing the effectiveness of radiotherapy treatments. Our focus lies in developing innovative approaches to sensitize tumor cells to radiotherapy, with
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of this project is to develop anticancer molecularly targeted radiotherapy agents (theranostics) for the imaging and treatment of cancer. The focus of the project will be on specific organelle targeting with
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tissues in a space- and time-controlled resolution. Theranostic prodrugs detectable by nuclear magnetic resonance imaging (MRI) and able to be activated by radiotherapy clinical beams, will be developed
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time-controlled resolution. Theranostic prodrugs detectable by nuclear magnetic resonance imaging (MRI) and able to be activated by radiotherapy clinical beams, will be developed. This project, based
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Postdoctoral Research Associate (Genomics, Data Integration, Deep Learning, AI) - Radiation Oncology
position in Jin Zhang, PhD, MPHS’s translational genomics lab (https://sites.wustl.edu/jinzhang ) at Washington University School of Medicine, St. Louis, MO. This postdoc will also be co-advised by Michael
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without overt side effect. Dietary methionine restriction has shown promising in various mouse cancer models alone or in combination with chemotherapy or radiotherapy. Job Duties Performs research under
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of experience in machine learning, working on both method and theory development and often with applications in e.g., automated radiotherapy or as in this project in the life sciences. Our current research