Page 94 - Elektromagnetische Befeldung mit Mobilfunkstrahlen
P. 94

LITERATURVERZEICHNIS
 Masuda H, Ushiyama A, Hirota S, Wake K, Watanabe S, Yamanaka Y, Taki M, Okhubo C (2007)
Effects of subchronic exposure to a 1439 MHz electromagnetic field on the microcirculatory parameters in rat brain.
In Vivo 21(4): 563-570
Merritt JH, Chamness AP und Allen SJ (1978)
Studies on blood–brain barrier permeability after microwave radiation. Radiat Environ Biophys 15(4): 367–377
Moriyama E, Salcman M, Broadwell RD (1991)
Blood–brain barrier alteration after microwave-induced hyperthermia is purely a thermal effect: I. Temperature and power measurements.
Surgical Neurology 35(5): 177-182
Moulder JE, Erdreich LS, Malyapa RS. Merritt J, Pickard WF, Vijayalaxmi (1999)
Cell Phones and Cancer: What is the evidence for a connection? Radiation Research 151: 513-531
Mullins JM, Penafiel LM, Juutilainen J, Litovitz TA (1999)
Dose–response of electromagnetic field-enhanced ornithine decarboxylase activity. Bioelectrochem Bioenerg 48: 193–199
Neilly JP und Lin JC (1986)
Interaction of ethanol and microwaves on the blood-brain barrier of rats. Bioelectromagnetics 7(4): 405-414
Neubauer C, Phelan AM, Kues H, Lange DG (1990)
Microwave irradiation of rats at 2.45 GHz activates pinocytotic-like uptake of tracer by capillary endothelial cells of cerebral cortex.
Bioelectromagnetics 11: 261–268
Neuwelt EA (2004)
Mechanism of disease: the blood-brain barrier. Neurosurgery 54(1): 131-142
Neuwelt EA, Goldman DL, Dahlborg SA, Crosen J, Ramsey F, Roman-Goldstein S, Brazoel R, Dana B (1991)
Primary CNS lymphoma treated with osmotic blood-brain barrier disruption, prolonged survival and preservation of cognitive function.
J Clin Oncol 9: 1580-1590
89











































































   92   93   94   95   96