Please note that a publication can be assigned to several endpoints, i.e. the sum of publications from the individual thematic points and subpoints can be greater than the total sum of actual publications.
Authors | Year | Exposed system | Parameters | Magnetic flux density/field strength |
---|---|---|---|---|
Goodman R et al. | 1992 | isolated organ, salivary glands of <i>Drosophila melanogaster</i> | magnetic field, 50/60 Hz, therapeutic/medical device | 0.38–3.5 mT |
Goodman R et al. | 1992 | isolated organ, salivary glands of <i>Drosophila melanogaster</i> | magnetic field, 50/60 Hz, therapeutic/medical device | 0.38–3.5 mT |
Ivancsits S et al. | 2003 | intact cell/cell culture, human fibroblasts | magnetic field, low frequency, 50/60 Hz | 20 µT–1 mT |
Pilger A et al. | 2004 | intact cell/cell culture, human diploid fibroblast cells | magnetic field, low frequency, 50/60 Hz | 1 mT |
Testa A et al. | 2004 | blood samples | magnetic field, low frequency, 50/60 Hz | 1 mT |
Yokus B et al. | 2005 | animal, rat/Wistar, whole body | magnetic field, low frequency, 50/60 Hz | 970 µT |
Ivancsits S et al. | 2005 | intact cell/cell culture, human diploid fibroblast cells; SV40-transformed GFSH-R17 rat granulosa cells; human melanocytes; skeletal muscle cells; human monocytes; human lymphocytes | magnetic field, low frequency, 50/60 Hz | 1 mT |
Del Re B et al. | 2004 | bacterium, <i>Escherichia coli</i>/Lac Z<sup>-</sup> strain (transformed with a plasmid containing a Tn10 derivative element expressing beta-galactosidase only after transposition)) | magnetic field, low frequency, 50/60 Hz | 0.05–1 mT |
Luceri C et al. | 2005 | intact cell/cell culture, yeast (<i>Saccharomyces cerevisiae</i>/strain DBY747) | magnetic field, low frequency, 50/60 Hz | 0.1–100 µT |
Udroiu I et al. | 2006 | animal, mouse/CD-1 Swiss, whole body | magnetic field, low frequency, 50/60 Hz | 650 µT |
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