Search Results - "DE CARLAN, L"

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  1. 1

    Assessment of small volume ionization chambers as reference dosimeters in high-energy photon beams by Le Roy, M, de Carlan, L, Delaunay, F, Donois, M, Fournier, P, Ostrowsky, A, Vouillaume, A, Bordy, J M

    Published in Physics in medicine & biology (07-09-2011)
    “…LNE-LNHB is involved in a European project aiming at establishing absorbed dose-to-water standards for photon-radiation fields down to 2 × 2 cm². This requires…”
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    Journal Article
  2. 2

    OEDIPE: a new graphical user interface for fast construction of numerical phantoms and MCNP calculations by Franck, D., de Carlan, L., Pierrat, N., Broggio, D., Lamart, S.

    Published in Radiation protection dosimetry (01-01-2007)
    “…Although great efforts have been made to improve the physical phantoms used to calibrate in vivo measurement systems, these phantoms represent a single average…”
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    Journal Article
  3. 3

    Application of voxel phantoms in whole-body counting for the validation of calibration phantoms and the assessment of uncertainties by Carlan, L. de, Roch, P., Blanchardon, E., Franck, D.

    Published in Radiation protection dosimetry (01-01-2007)
    “…This article is dedicated to the application of voxel phantoms in whole-body counting calibration. The first study was performed to validate this approach…”
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    Journal Article
  4. 4

    Automatic application of ICRP biokinetic models in voxel phantoms for in vivo counting and internal dose assessment by Lamart, S., de Carlan, L., Blanchardon, E., Franck, D.

    Published in Radiation protection dosimetry (01-01-2007)
    “…As part of the improvement of calibration techniques of in vivo counting, the Laboratory of Internal Dose Assessment of the Institute of Radiological…”
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    Journal Article
  5. 5

    New method of voxel phantom creation: application for whole-body counting calibration and perspectives in individual internal dose assessment by de Carlan, L., Roch, P., Blanchardon, E., Franck, D.

    Published in Radiation protection dosimetry (20-12-2005)
    “…The purpose of this work is to present an innovative approach for the creation and application of voxel phantoms associated with the Monte Carlo calculation…”
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    Journal Article
  6. 6

    A new single crystal diamond dosimeter for small beam: comparison with different commercial active detectors by Marsolat, F, Tromson, D, Tranchant, N, Pomorski, M, Le Roy, M, Donois, M, Moignau, F, Ostrowsky, A, De Carlan, L, Bassinet, C, Huet, C, Derreumaux, S, Chea, M, Cristina, K, Boisserie, G, Bergonzo, P

    Published in Physics in medicine & biology (07-11-2013)
    “…Recent developments of new therapy techniques using small photon beams, such as stereotactic radiotherapy, require suitable detectors to determine the…”
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    Journal Article
  7. 7

    Application of Monte Carlo calculation for the virtual calibration of a low-energy in vivo counting system by Pierrat, N., de Carlan, L., Cavadore, D., Franck, D.

    Published in IEEE transactions on nuclear science (01-10-2005)
    “…Internal dose assessment can be derived from the measurement of retained activity in the whole body or in an organ at a given time. In radiation protection,…”
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    Journal Article
  8. 8

    Development and implementation in the Monte Carlo code PENELOPE of a new virtual source model for radiotherapy photon beams and portal image calculation by Chabert, I, Barat, E, Dautremer, T, Montagu, T, Agelou, M, Croc de Suray, A, Garcia-Hernandez, J C, Gempp, S, Benkreira, M, de Carlan, L, Lazaro, D

    Published in Physics in medicine & biology (21-07-2016)
    “…This work aims at developing a generic virtual source model (VSM) preserving all existing correlations between variables stored in a Monte Carlo pre-computed…”
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    Journal Article
  9. 9

    Potential of modern technologies for improvement of in vivo calibration by Franck, D., Carlan, L. de, Fisher, H., Pierrat, N., Schlagbauer, M., Wahl, W.

    Published in Radiation protection dosimetry (01-01-2007)
    “…In the frame of IDEA project, a research programme has been carried out to study the potential of the reconstruction of numerical anthropomorphic phantoms…”
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    Journal Article
  10. 10
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    Dosimetric comparison of Monte Carlo codes (EGS4, MCNP, MCNPX) considering external and internal exposures of the Zubal phantom to electron and photon sources by Chiavassa, S., Lemosquet, A., Aubineau-Lanièce, I., de Carlan, L., Clairand, I., Ferrer, L., Bardiès, M., Franck, D., Zankl, M.

    Published in Radiation protection dosimetry (20-12-2005)
    “…This paper aims at comparing dosimetric assessments performed with three Monte Carlo codes: EGS4, MCNP4c2 and MCNPX2.5e, using a realistic voxel phantom,…”
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    Journal Article
  12. 12

    Implementation of bioassay methods to improve assessment of incorporated radionuclides by Oeh, U., Andrasi, A., Bouvier-Capely, C., Carlan, L. De, Fischer, H., Franck, D., Höllriegl, V., Li, W.B., Ritt, J., Roth, P., Schmitzer, Ch, Wahl, W., Zombori, P.

    Published in Radiation protection dosimetry (01-01-2007)
    “…The present work which was carried out in the framework of an EU project (IDEA: Internal Dosimetry—Enhancements in Application; Contract Number: FIKR CT2001…”
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    Journal Article
  13. 13

    Application of Monte Carlo calculations to calibration of anthropomorphic phantoms used for activity assessment of actinides in lungs by Franck, D., Borissov, N., de Carlan, L., Pierrat, N., L. Genicot, J., Etherington, G.

    Published in Radiation protection dosimetry (01-01-2003)
    “…This paper reports on a new utility for development of computational phantoms for Monte Carlo calculations and data analysis for in vivo measurements of…”
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    Journal Article Conference Proceeding
  14. 14

    Current developments at IRSN on computational tools dedicated to assessing doses for both internal and external exposure by Aubineau-Lanièce, I., de Carlan, L., Clairand, I., Lemosquet, A., Chiavassa, S., Pierrat, N., Bardiès, M., Franck, D.

    Published in Radiation protection dosimetry (01-01-2005)
    “…The paper presents the OEDIPE (French acronym that stands for tool for personalised internal dose assessment) and SESAME (for simulation of external source…”
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    SU‐E‐T‐230: Intracavitary in Vivo Dosimetry Based on Multichannel Real‐Time Fiber‐Coupled Radioluminescence (RL) and Optically Stimulated Luminescence (OSL) of Al2O3:C by Spasic, E, Magne, S, de Carlan, L, Aubineau‐Lanièce, I, Malet, C, Ginestet, C, Ferdinand, P

    Published in Medical Physics (01-06-2011)
    “…Purpose: This work is aimed at developing a new probe to improve the accuracy of the dose delivery follow up in some Radiotherapy (RT) treatments that involve…”
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    Conference Proceeding Journal Article
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    Application of new imaging and calculation techniques to activity and dose assessment in the case of a 106Ru contaminated wound by de Carlan, L., Aubineau-Laniéce, I., Lemosquet, A., Borissov, N., R. Jourdain, J., Jeanbourquin, D., Le Guen, B., Franck, D.

    Published in Radiation protection dosimetry (01-07-2003)
    “…The aim of this paper is to describe the dosimetric evaluation of a point contamination that occurred in a laboratory during the examination of an irradiated…”
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    Journal Article Conference Proceeding
  19. 19

    Analytical and Monte Carlo assessment of activity and local dose after a wound contamination by activation products by Broggio, D, Zhang, B, de Carlan, L, Desbrée, A, Lamart, S, le Guen, B, Bailloeuil, C, Franck, D

    Published in Health physics (1958) (01-02-2009)
    “…The activity and local dose following a right index finger wound contamination by activation products are assessed. Measurements with a high purity germanium…”
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    Journal Article
  20. 20

    SESAME: A SOFTWARE TOOL FOR THE NUMERICAL DOSIMETRIC RECONSTRUCTION OF RADIOLOGICAL ACCIDENTS INVOLVING EXTERNAL SOURCES AND ITS APPLICATION TO THE ACCIDENT IN CHILE IN DECEMBER 2005 by Huet, C, Lemosquet, A, Clairand, I, Rioual, J B, Franck, D, de Carlan, L, Aubineau-Lanièce, I, Bottollier-Depois, J F

    Published in Health physics (1958) (01-01-2009)
    “…ABSTRACT—Estimating the dose distribution in a victim’s body is a relevant indicator in assessing biological damage from exposure in the event of a…”
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    Journal Article