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 |
---|---|---|---|---|
Darwish SM et al. | 2022 | isolated bio./chem. substance, Tau protein sample | static magnetic field | - |
Jaworska M et al. | 2016 | intact cell/cell culture, fungi, <i>Beaveria bassiana</i> and <i>Isaria fumosorosea</i> | static magnetic field | - |
Dueñas JA et al. | 2020 | isolated bio./chem. substance, water | static magnetic field | - |
Shui X et al. | 2023 | bacterium, mixed photosynthetic bacteria (<i>Rhodopseudomonas palustris</i>, <i>Rhodobacter sphaeroides</i>,<i> Rhodospirillum rubrum</i>, <i>Rhodobacter capsulatus</i> and <i>Rhodopseudomonas capsulate</i>) | static magnetic field | - |
Li C et al. | 2023 | plant, yellow iris (<i>Iris pseudacorus</i>) | static magnetic field | - |
Fan Y et al. | 2023 | intact cell/cell culture, PC12 (rat pheochromocytoma cells), C57BL/6 mouse | static magnetic field | - |
Sun Y et al. | 2023 | animal, C57BL/6 mouse | static magnetic field | - |
Ma S et al. | 2023 | bacterium, swine manure samples | static magnetic field | - |
Takeuchi Y et al. | 2023 | isolated bio./chem. substance, monosodium urate (MSU) and calcium pyrophosphate (CPP) crystals | static magnetic field | - |
Doltchinkova V et al. | 2023 | intact cell/cell culture, erythrocytes (healthy human and patientes with β-thalassemia) | static magnetic field | - |
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