The PRISME team is composed of physicists, biochemists, biologists and radiotherapists. We specialize in multidisciplinary research aimed at developing, optimizing and controlling innovative radiotherapies, whether it be hadrontherapy or therapies using radioactive ion-emitting elements or nanoparticles. These radiotherapies aim to improve the treatment of certain cancers by increasing the effect of ionizing radiation in the tumor while minimizing its harmful effects on healthy tissues.
Our multidisciplinary approach aims to quantify, understand and predict the effect of ionizing radiation on living organisms from processes induced at extremely short times (attosecond) at small scales (atomic nucleus) to long-term consequences (years) at the patient level.
We therefore design and carry out irradiation experiments on targets ranging from molecules or cells to small animals and patient samples (tumor, blood). These experiments feed an important part of our activity which consists in modeling the effects of radiation on living organisms.
One of the innovative techniques of radiotherapy is hadrontherapy, which is to send
an ion beam on the tumors to destroy them. We are working, in particular using simulations, data processing and predictions, to improve these systems by having on-line control over irradiation using dedicated detectors. These tools also have applications in imaging.
The activities can be divided into three research areas:
Axis 1 aims to develop simulations and detectors to control patient irradiation by detecting the particles emitted during hadrontherapy treatment. These developments also offer application prospects in the field of diagnostic imaging.
Axis 2 focuses on the development of multi-scale models and simulations to describe and predict the physical, chemical and biological processes induced by irradiation. It also develops irradiation and dosimetric control means for the measurement of radiobiological effects.
Axis 3 quantifies by experiment the effects induced by irradiation with molecular, cellular, multicellular, in-vitro or in-vivo systems. It focuses on the specificities of innovative radiotherapies and the personalization of care.
NON-PERMANENTS:
- DOCTORANTS / DOCTORAL STUDENTS:
- CHERCHEURS NON-PERMANENTS / NON-PERMANENT RESEARCHERS:
- T. Mizutani, C. Fayard, G.-H. Lamot, R. Nahabetian. Coupled
d-nn system at intermediate energies and the dibaryon problems. Physics Letters B, 1981, 107, pp.177-181. ⟨in2p3-00022940⟩
- M.N. Namboodiri, P. Gonthier, H. Ho, J.B. Natowitz, R. Eggers, et al.. Emission of light charged particles in the reactions of 120 MeV
Ne with
Al. Nuclear Physics A, 1981, 367, pp.313-322. ⟨in2p3-00013398⟩
- R. Béraud, A. Charvet, R. Duffait, M. Meyer, J. Treherne, et al.. Identification and decay of
In new neutron deficient isotope close to
Sn. Zeitschrift für Physik. A, Atoms and Nuclei, 1981, 299, pp.279-280. ⟨10.1007/BF01443947⟩. ⟨in2p3-00015083⟩
- A. Partensky. Deformation of nuclei as a function of angular momentum in the U(6)contains SU(3) model. Annals of Physics, 1981, 136, pp.340-370. ⟨in2p3-00005462⟩
- A. Gizon, J. Genevey, J. Gizon, V. Barci, A. Ploechocki, et al.. In beam spectroscopy and cross-section studies for the
Cd +
C reaction. Zeitschrift für Physik. A, Atoms and Nuclei, 1981, 302, pp.79-87. ⟨10.1007/BF01425106⟩. ⟨in2p3-00013420⟩
- E. Elbaz, J. Meyer, R. Nahabetian. Lepton and quark internal quantum numbers. Physical Review D, 1981, 23, pp.1170-1179. ⟨in2p3-00004098⟩
- M. Giffon, E. Predazzi. Jet states and a parametrization of hadronic exclusive amplitudes. Il Nuovo Cimento A, 1981, 64, pp.229-258. ⟨in2p3-00004038⟩
- J. Delorme. Status of nuclear critical opalescence.. Workshop On Nuclear Physics With Real And Virtual Photons, Nov 1980, Bologna, Italy. pp.82-92. ⟨in2p3-00004396⟩
- J. Delorme. Nuclear critical opalescence and electromagnetic probes. Symposium On Perspectives In Electro- And Photo-Nuclear Physics, Sep 1980, Saclay, France. pp.73-88. ⟨in2p3-00004398⟩
- M. Kibler, G. Grenet. The configuration d
in cubic symmetry : a symmetry adapted weak field approach. International Colloquium on Group Theoretical Methods in Physics 9, Jun 1980, Cocoyoc, Mexico. pp.17-21. ⟨in2p3-00003937⟩