MICELLE, the micelle size effect on the LS counting efficiency
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[1] A. G. Malonda,et al. Mean values of the LMM Auger transition in a KLM model. , 2006, Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine.
[2] K. Kossert,et al. The LSC efficiency for low-Z electron-capture nuclides. , 2006, Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine.
[3] A. G. Malonda,et al. Combined electron emission effects on the biologically damaging efficiency of 125I , 2006, International journal of radiation biology.
[4] W. V. Prestwich,et al. Calculation of radiation-induced DNA damage from photons and tritium beta-particles , 2001, Radiation and environmental biophysics.
[5] P. Lobachevsky,et al. Iodine-125 Decay in a Synthetic Oligodeoxynucleotide. I. Fragment Size Distribution and Evaluation of Breakage Probability , 2000, Radiation research.
[6] A. G. Malonda,et al. EMI2, the counting efficiency for electron capture by a KL1L2L3M model , 1999 .
[7] A. G. Malonda,et al. CAPMULT, the counting efficiency for electron capture by a KLMN four-shell model , 1995 .
[8] A. G. Carles. Standardization of beta and electron-capture nuclides in liquid scintillation gel samples , 1994 .
[9] A. G. Malonda,et al. EMI, the counting efficiency for electron capture, electron capture-gamma and isomeric transitions , 1994 .
[10] D. Charlton,et al. A Monte Carlo simulation of Auger cascades. , 1987, Radiation research.
[11] D. Charlton,et al. A Monte Carlo treatment of the decay of 125I. , 1981, Radiation research.
[12] Mau H. Chen,et al. Relativistic Radiationless Transition Probabilities for Atomic K- and L-Shells , 1979 .
[13] H. Pauli,et al. Internal conversion coefficients for all atomic shells , 1978 .
[14] F. Larkins. Semiempirical Auger-electron energies for elements 10 ≤ Z ≤ 100 , 1977 .
[15] R. W. Fink,et al. X-Ray Fluorescence Yields, Auger, and Coster-Kronig Transition Probabilities , 1972 .
[16] R. White,et al. Formation of Fragment Ions from CH3Te125 and C2H5Te125 Following the Nuclear Decays of CH3I125 and C2H5I125 , 1963 .
[17] R. White,et al. Decomposition of (CH3Xe131)+ Following the Nuclear Decay of CH3I131 , 1962 .
[18] A. G. Malonda,et al. The photoionization-reduced energy in LSC. , 2006 .
[19] E. Gunther. What can we expect from the CIEMAT/NIST method? , 2002 .
[20] S Kandaiya,et al. Modelling of Auger-induced DNA damage by incorporated 125I. , 1996, Acta oncologica.
[21] P. Lobachevsky,et al. DNA strand breakage by 125I-decay in a synthetic oligodeoxynucleotide--2. Quantitative analysis of fragment distribution. , 1996, Acta oncologica.
[22] W. Bambynek,et al. Orbital electron capture by the nucleus , 1976 .
[23] J. Bearden,et al. REEVALUATION OF X-RAY ATOMIC ENERGY LEVELS. , 1967 .