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1.
Stojcheva, N.* et al.: MicroRNA-138 promotes acquired alkylator resistance in glioblastoma by targeting the Bcl-2-interacting mediator BIM. Oncotarget 7, 12937-12950 (2016)
2.
Li, W.B. et al.: Radiation dose assessment of exposure to depleted uranium. J. Expo. Anal. Environ. Epidemiol. 19, 502-514 (2009)
3.
Gerstmann, U.C. et al.: Investigations on the solubility of corrosion products on depleted uranium projectiles by simulated body fluids and the consequences on dose assessment. Radiat. Environ. Biophys. 47, 205-212 (2008)
4.
Li, W.B. ; Höllriegl, V. ; Roth, P. & Oeh, U.: Influence of human biokinetics of strontium on internal ingestion dose of 90Sr and absorbed dose of 89Sr to organs and metastases. Radiat. Environ. Biophys. 47, 225-239 (2008)
5.
Andrasi, A.* et al.: Practical implications of procedures developed in IDEA project—comparison with traditional methods. Radiat. Prot. Dosim. 125, 456-459 (2007)
6.
Höllriegl, V. et al.: Observation of changes in urinary excretion of thorium in humans following ingestion of a therapeutic soil. J. Environ. Radioact. 95, 149-160 (2007)
7.
Li, W.B. ; Wahl, W. ; Oeh, U. ; Höllriegl, V. & Roth, P.: Biokinetic modelling of natural thorium in humans by ingestion. Radiat. Prot. Dosim. 125, 500-505 (2007)
8.
Oeh, U. et al.: Implementation of bioassay methods to improve assessment of incorporated radionuclides. Radiat. Prot. Dosim. 125, 444-448 (2007)
9.
Oeh, U. et al.: Daily uranium excretion in German peacekeeping personnel serving on the Balkans compared to ICRP model prediction. Radiat. Prot. Dosim. 127, 329-332 (2007)
10.
Oeh, U. et al.: Measurements of daily urinary uranium excretion in German peacekeeping personnel and residents of the Kosovo region to assess potential intakes of depleted uranium (DU). Sci. Total Environ. 381, 77-87 (2007)
11.
Schmitzer, C.* et al.: Improvements in routine internal monitoring— an overview of the IDEA project. Radiat. Prot. Dosim. 125, 472-476 (2007)
12.
Veronese, I.* et al.: A technique for the determination of ruthenium stable isotopes in urine samples. J. Radioanal. Nucl. Chem. 271, 497-501 (2007)
13.
Höllriegl, V. ; Li, W.B. ; Oeh, U. & Roth, P.: Methods for assessing gastrointestinal absorption of strontium in humans by stable tracer techniques. Health Phys. 90, 232-240 (2006)
14.
Li, W.B. et al.: Internal dose assessment of natural uranium from drinking water based of biokinetic modeling and individual bioassay monitoring : a study of a Finnish family. Health Phys. 90, 533-543 (2006)
15.
Li, W.B. ; Höllriegl, V. ; Roth, P. & Oeh, U.: Human biokinetics of strontium. Part I: Intestinal absorption rate and its impact on the dose coefficient of 90Sr after ingestion. Radiat. Environ. Biophys. 45, 115-124 (2006)
16.
Oeh, U. ; Höllriegl, V. ; Li, W.B. ; Roth, P. & Paretzke, H.G.: Biokinetic investigations with stable strontium, ruthenium and zirconium isotopes for dose estimate of incorporated radionuclides. In: Windisch, W.* ; Plitzner, Ch.* [Eds.]: Experimentelle Modelle der Systemforschung. München: Utz Verl., 2006. 106-113
17.
Oeh, U. et al.: Measurements of daily urinary uranium excretion by German KFOR personnel and residents of Kosovo to assess potential intakes of Depleted Uranium (DU). Vortrag: Internal Dosimetry of Radiokuclides, 2-5 October 2006, Montpellier, France. (2006)
18.
Höllriegl, V. ; Li, W.B. ; Oeh, U. ; Röhmuß, M. & Roth, P.: Can default ICRP f1 values be applied to determine radiation dose from the intake of diet-incorporated thorium? Radiat. Prot. Dosim. 113, 403-407 (2005)
19.
Höllriegl, V. ; Oeh, U. ; Röhmuß, M. ; Gerstmann, U.* & Roth, P.: Measuring extremely low levels of daily urinary Th excretions in adult German population. J. Radioanal. Nucl. Chem. 266, 441-444 (2005)
20.
Li, W.B. et al.: Biokinetic modeling of uranium in man after injection and ingestion. Radiat. Environ. Biophys. 44, 29-40 (2005)