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LITERATURVERZEICHNIS
 Salford LG, Brun AE, Eberhardt JL, Malmgren L, Persson BR (2003)
Nerve cell damage in mammalian brain after exposure to microwaves from GSM mobile phones. Environ Health Perspect. 111(7): 881-3
Salford LG, Brun AE, Sturesson K, Eberhardt JL, Persson BRR (1994)
Permeability of the blood–brain barrier induced by 915 MHz electromagnetic radiation, continuous wave and modulated at 8, 50 and 200Hz.
Microsc Res Tech 27: 535–542
Schanker LS und Hogben CA (1961)
Billiary excretion of inulin, sucrose and mannitol: analysis of bile formation. Am J Physiol. 200: 1087-1090
Schelkshorn S, Tejero S, Detlefsen J (2007)
Exposure setup for animal experiments using a parabolic reflector. Radiation Protection Dosimetry 2007: 1-4
Schirmacher A, Winters S, Fischer S, Goeke J, Galla HJ, Kullnick U, Ringelstein EB, Stögbauer F (2000)
Electromagnetic fields (1.8 GHz) increase the permeability to sucrose of the blood–brain barrier in vitro.
Bioelectromagnetics 21: 338–345
Sims DE (2000)
Diversity within pericytes.
Clin Exp Pharmacol Physiol 27(10): 842-846
Smith QR, Ziylan YZ, Robinson PJ, Rapoport SI (1988)
Kinetics and distribution volumes for tracers of different sizes in the brain plasma space. Brain Research 462: 1-9
Stagg RB, Hawel LH, Pastorian K, Cain C, Adey WR, Byus CV (2001)
Effect of immobilization and concurrent exposure to a pulse-modulated microwave field on core body temperature, plasma ACTH and corticosteroid and brain ornithine decarboxylase, Fos and Jun mRNA.
Radiation Research 155(4): 584-592
Stevens RG (1987)
Electric power use and breastcancer: a hypothesis. Am J Epidemiol 125(4): 556-561
Sutton CH und Carrol FB (1979)
Effects of microwave-induced hyperthermia on the blood–brain barrier of the rat. Radiat Sci 14: 329–334
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