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 |
---|---|---|---|---|
Ge S et al. | 2019 | invertebrate, zebrafish (<i>Danio rerio</i>) larvae | static magnetic field | - |
Grzesik J et al. | 1988 | animal, rat/Wistar albino | static magnetic field, DC | 0.4–0.49 T |
Hansson Mild K et al. | 1981 | animal, <i>Xenopus laevis</i> (embryo), whole body: <i>in ovo</i> | static magnetic field, DC | 250 mT |
Harsanyi P et al. | 2022 | invertebrate, European lobster (<i>Homarus gammarus</i>) and Edible crab (<i>Cancer pagurus</i>) | static magnetic field, underground cable | - |
He J et al. | 2023 | invertebrate, rose aphid (<i>Macrosiphum rosae</i>) | static magnetic field | - |
Heinrichs WL et al. | 1988 | animal, mouse/BALB/c, whole body | RF, static magnetic field, MRI, also other exposures without EMF | 7.38 µT–0.352 T |
High WB et al. | 2000 | animal, rat/Fischer 344, whole body | static magnetic field | 9.4 T |
Ho MW et al. | 1992 | animal, <i>Drosophila melanogaster</i> (embryo), whole body | static magnetic field, DC | 9 mT |
Iwasaki T et al. | 1978 | intact cell/cell culture, CHO (Chinese hamster ovary) cells, slime mold plasmodia (<i>Physarum polycepharum</i>), animal, frog embryos (<i>Xenopus laevis</i>) | static magnetic field, DC | 500 mT |
Jove M et al. | 1999 | animal, chicken embryos/White Leghorn, whole body: <i>in ovo</i> | static magnetic field, DC | 18–36 mT |
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