Showing 1,021 - 1,040 results of 1,299 for search '"Radiobiology"', query time: 0.10s Refine Results
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    Proof of Concept of the Radiosensitizing Effect of Gadolinium Oxide Nanoparticles in Cell Spheroids and a Tumor-Implanted Murine Model of Chondrosarcoma by Aloy MT, Sidi Boumedine J, Deville A, Kryza D, Gauthier A, Brichart-Vernos D, Ollier G, La Padula V, Lux F, Tillement O, Rodriguez-Lafrasse C, Janier M

    Published 2022-12-01
    “…Marie-Thérèse Aloy,1,* Jacqueline Sidi Boumedine,2,* Agathe Deville,2,3 David Kryza,2 Arnaud Gauthier,1,4 Delphine Brichart-Vernos,1,5 Grégoire Ollier,1 Veronica La Padula,5 François Lux,5 Olivier Tillement,5 Claire Rodriguez-Lafrasse,1,4,* Marc Janier2,3,* 1Laboratory of Cellular and Molecular Radiobiology, UMR CNRS5822/IP2I, Lyon-Sud Medical School, Univ Lyon, Lyon 1 University, Oullins, France; 2CNRS, LAGEPP, UMR5007, IMTHERNAT, Lyon 1 University, Hospital Edouard Herriot, Lyon, France; 3Department of Nuclear Medicine, Groupement Hospitalier Est, Hospices Civils de Lyon, Lyon, France; 4Department of Biochemistry and Molecular Biology, Groupement Hospitalier Sud, Hospices Civils de Lyon, Pierre-Bénite, France; 5Light Matter Institut UMR CNRS 5306, Lyon 1 University, Villeurbanne, France*These authors contributed equally to this workCorrespondence: Marc Janier, Department of Nuclear Medicine, Groupement Hospitalier Est, Hospices Civils de Lyon, Lyon, 69634, France, Tel +33472356999, Fax +33472357345, Email marc.janier@univ-lyon1.frPurpose: Chondrosarcomas (CHSs), which represent 20% of primary bone tumors in adults, are mostly resistant to radio- and chemotherapy. …”
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    OCTOPOD: single-bunch tomography for angular-spectral characterization of laser-driven protons by M. Reimold, S. Assenbaum, E. Beyreuther, E. Bodenstein, F.-E. Brack, C. Eisenmann, F. Englbrecht, F. Kroll, F. Lindner, U. Masood, J. Pawelke, U. Schramm, M. Schneider, M. Sobiella, M. E. P. Umlandt, M. Vescovi, K. Zeil, T. Ziegler, J. Metzkes-Ng

    Published 2023-01-01
    “…Laser–plasma accelerated (LPA) proton bunches are now applied for research fields ranging from ultra-high-dose-rate radiobiology to material science. Yet, the capabilities to characterize the spectrally and angularly broad LPA bunches lag behind the rapidly evolving applications. …”
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    miniSCIDOM: a scintillator-based tomograph for volumetric dose reconstruction of single laser-driven proton bunches by A. Corvino, M. Reimold, E. Beyreuther, F.-E. Brack, F. Kroll, J. Pawelke, J. D. Schilz, M. Schneider, U. Schramm, M. E. P. Umlandt, K. Zeil, T. Ziegler, J. Metzkes-Ng

    Published 2024-01-01
    “…Laser plasma accelerators (LPAs) enable the generation of intense and short proton bunches on a micrometre scale, thus offering new experimental capabilities to research fields such as ultra-high dose rate radiobiology or material analysis. Being spectrally broadband, laser-accelerated proton bunches allow for tailored volumetric dose deposition in a sample via single bunches to excite or probe specific sample properties. …”
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    Calidad del hueso en mujeres de edad mediana con hipertiroidismo subclínico farmacológico Bone quality in middle age women presenting with pharmacological subclinical hyperthyroidi... by Daysi Antonia Navarro Despaigne

    Published 2010-12-01
    “…METHODS: the case-control study conducted between March, 2006 and December, 2008 includes 113 women aged 40-59 seen in external consultation of National Institutes of Endocrinology, Oncology and Radiobiology where 43 of them were under treatment with thyroid hormones (study group) and 70 not (control group). …”
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    Treatment planning with high-resolution 3D dose maps in preclinical and translational synchrotron microbeam radiation therapy by Sarvenaz Keshmiri, Gaëtan Lemaire, Sylvan Brocard, Camille Verry, Yacine Bencheikh, Samy Kefs, Laura Eling, Raphaël Serduc, Jean-François Adam

    Published 2024-04-01
    “…High-resolution dose-volume histograms were extracted and analyzed against radiobiology studies. Results: The complexity of the MRT dose distribution was properly rendered at a micrometer scale on 3D dose maps, with well separated dose regions observed on the differential dose-volume histograms. …”
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