Dataset for "Integrated Digital Garment Modeling and Monte Carlo Simulation of a Water-Based Radiation Protection Vest for Spaceflight Radiation Hazards"
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The CAD model of the vest created for this study is available upon reasonable request to the author Noora Archer. Water-suit-ellipsoid.csvOrgan Doses Equivalent calculated with an ellipsoid of water simulating a radiation protection vest, using the ICRP145 female anthropomorphic phantom. Simulated thickness for the vest are X=[0,1,2,5,10,20,30,40,50,70,100,150] millimeters. organId: Id of the organ as defined by ICRP organ/tissue: name of organ/tissue group: categorisation of organs wT: weighing tissue factor mass[g]: mass of the organ DE_X: Simulated dose equivalent with vest thickness X(mm) DE_std_X: Simulated standard deviation of the dose equivalent with vest thickness X(mm) organsInfo_IFHP.csv Description of the newly exported human phantom ICRP145 human female phantom (IFHP) organId: Id of the organ as defined by ICRP for most organs. Some organs are merged from the original version available in Geant4 and take the lowest Id of the concerned organs. organ/tissue: Name of organ/tissue following ICRP definitions vol[cm3]: Volume of the organ d[g/cm3]: Density of organ mass[g]: Mass of organ group: Categorization of organs, consistent with the one used for Water-suit-ellipsoid.csv WT: Weighting tissue factor for the group N_organs: Number of organs in the group category wT: Weighting tissue factor for the organ =WT/N_organs flux2DoseCoeffs.csv: flux to dose coefficients of the unshielded ICRP145 human female phantom for ions from hydrogen to nickel + deuteron, e+, e-, gamma, neutron and pions+/- (Appendix of manuscript) particle: [Al, Ar, B, Be, C, Ca, Cl, Co, Cr, F, Fe, H, He, K, Li, Mg, Mn, N, Na, Ne, Ni, O, P, S, Sc, Si, Ti, V, deuteron, e+, e-, gamma, neutron, pi+, pi-] organId: Id of the organ as defined by organsInfo_IFHP.csv E (MeV): Bottom value of the energy bin of the particle given in MeV or MeV/n for ions, top value of the highest bin is 100 GeV. AD(pGy.cm2): Absorbed dose (AD) multiplied by the surface of the simulated source per simulated particle in the corresponding energy bin. AD_b(pGy.cm2): Lower (bottom) value of standard deviation of absorbed dose (AD) multiplied by the surface of the simulated source per simulated particle in the corresponding energy bin. AD_t(pGy.cm2): Upper (top) value of standard deviation of absorbed dose (AD) multiplied by the surface of the simulated source per simulated particle in the corresponding energy bin. DE(pSv.cm2): Dose equivalent (DE) multiplied by the surface of the simulated source per simulated particle in the corresponding energy bin. DE_b(pSv.cm2): Lower (bottom) value of standard deviation of dose equivalent (DE) multiplied by the surface of the simulated source per simulated particle in the corresponding energy bin. DE_t(pSv.cm2): Upper (top) value of standard deviation of dose equivalent (DE) multiplied by the surface of the simulated source per simulated particle in the corresponding energy bin. flux2DoseCoeffs-spacecraft.csv: flux to dose coefficients of ICRP145 with and without the radiation protection vest, inside a shell of 50 g.cm-2 of aluminium modelling a spacecraft. Simulated particles are ions from hydrogen to nickel. scenario: [unclothed,vest] particle: [Al, Ar, B, Be, C, Ca, Cl, Co, Cr, F, Fe, H, He, K, Li, Mg, Mn, N, Na, Ne, Ni, O, P, S, Sc, Si, Ti, V] organId: Id of the organ as defined by organsInfo_IFHP.csv E (MeV): Bottom value of the energy bin of the particle given in MeV or MeV/n for ions, top value of the highest bin is 100 GeV. AD(pGy.cm2): Absorbed dose (AD) multiplied by the surface of the simulated source per simulated particle in the corresponding energy bin. AD_b(pGy.cm2): Lower (bottom) value of standard deviation of absorbed dose (AD) multiplied by the surface of the simulated source per simulated particle in the corresponding energy bin. AD_t(pGy.cm2): Upper (top) value of standard deviation of absorbed dose (AD) multiplied by the surface of the simulated source per simulated particle in the corresponding energy bin. DE(pSv.cm2): Dose equivalent (DE) multiplied by the surface of the simulated source per simulated particle in the corresponding energy bin. DE_b(pSv.cm2): Lower (bottom) value of standard deviation of dose equivalent (DE) multiplied by the surface of the simulated source per simulated particle in the corresponding energy bin. DE_t(pSv.cm2): Upper (top) value of standard deviation of dose equivalent (DE) multiplied by the surface of the simulated source per simulated particle in the corresponding energy bin Dose_timeseries.zip: Folder containing all the time series of doses computed from flux-to-dose coefficients, GCR, and SPE spectra. They include organ-specific absorbed doses (AD), dose equivalents (DE), and effective doses (EDE), along with their asymmetric standard deviations. All the following figures are derived from this data. For the naming of the files, "B2G" stands for "Blender to Geant4", referring to the newly exported female human phantom. Fig4-SixMonthMission.zip: Dose equivalent for a 180-day mission in several radiosensitive organs, extension of Figure 4 of the manuscript, shared along with row data CSV format for each figure. Fig5-SPE_ED_timeseries.zip: Folder containing figures and raw data (CSV) of the effective dose induced by GCR and SPE for all the SPE defined in the SEPEM database. This is an extension of Figure 5 of the manuscript. Fig6-SPE_OrganDE.zip: Organ-specific doses for different SPE periods. This is an extension of Figure 6 of the manuscript. plots_flux2doses.zip: Plots comparing flux to dose coefficients of ICRP110 (provided in ICRP 123) and ICRP145 for each organ and each particle.ICRP145_vest.tar.gz: Exported female human phantom with the vest in tetrahedra from Blender to Geant4; this data is intended to be used in Geant4, along with the code available on GitHub. CAD_ICRP145withVest.zip: Blender files of the ICRP145 with the radiation protection vest designed for this study.



