Study overviews

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.

Experimental studies on magnetic power frequency fields (50/60 Hz)

2037 studies in total
  1. 760 studies
  2. 628 studies
  3. 509 studies
  4. 413 studies
  5. 326 studies
  6. 207 studies

Other

413 studies in total
  1. 250 studies
  2. 99 studies
  3. 82 studies
  4. 6 studies
Authors Year Exposed system Parameters Magnetic flux density/field strength
Guzmán-Armenteros TM et al. 2024 bacterium, microbial fermentation organism magnetic field, 50/60 Hz -
Sendera A et al. 2024 intact cell/cell culture, human adipose-derived mesenchymal stem cells magnetic field, 50/60 Hz, low frequency -
Nakanishi R et al. 2023 intact cell/cell culture, C2C12 cells (undifferentiated mouse myoblasts), animal, C57BL/6 mouse magnetic field, 50/60 Hz -
Ramazi S et al. 2023 intact cell/cell culture, MCF-7 (human breast cancer cell line) and HFF cells (human foreskin fibroblast cells) magnetic field, 50/60 Hz, also other exposures without EMF, co-exposure -
Mahato S et al. 2023 isolated bio./chem. substance, myofibrillar protein from grass carp magnetic field, 50/60 Hz, low frequency, also other exposures without EMF, co-exposure -
Mercado-Sáenz S et al. 2023 intact cell/cell culture, yeast (<i>Saccharomyces cerevisiae</i>)/WS8105-1C magnetic field, signals/pulses, 50/60 Hz, co-exposure, also other exposures without EMF -
Zablodskiy M et al. 2022 bacterium, methane-forming bacteria electric field, magnetic field, static magnetic field, 50/60 Hz, also other exposures without EMF -
Huang L et al. 2022 intact cell/cell culture, mouse bone marrow-derived mesenchymal stem cells, animal, C57BL/6 mouse magnetic field, signals/pulses, 50/60 Hz -
Kielbasa P et al. 2022 isolated bio./chem. substance, essential oil samples (tea tree and cedarwood) magnetic field, 50/60 Hz -
Kumar S et al. 2021 animal, rat/Wistar magnetic field, 50/60 Hz, low frequency 17.96 µT
Woroszyło M et al. 2021 bacterium magnetic field, 50/60 Hz, low frequency -
Woroszyło M et al. 2021 bacterium, <i>Staphylococcus aureus</i> magnetic field, low frequency, 50/60 Hz, also other exposures without EMF, co-exposure 8.1–8.5 mT
Hayashi S et al. 2021 intact cell/cell culture, human cancer cell lines (A549, MES-SA, MES-SA7Dx5) magnetic field, 50/60 Hz, co-exposure, also other exposures without EMF 50 mT
Jankowska M et al. 2021 isolated organ, invertebrate, American cockroach (<i>Periplaneta americana</i>) 50/60 Hz, magnetic field, also other exposures without EMF 7 mT
Xiong X et al. 2021 filamentous fungus (<i>Monascus purpureus</i>) 50/60 Hz, magnetic field, also other exposures without EMF, co-exposure 0.5–2 mT
Zheng Y et al. 2021 tissue slices magnetic field, 50/60 Hz 0.5–2 mT
Al-Delaimi MS et al. 2020 bacterium magnetic field, 50/60 Hz, also other exposures without EMF, co-exposure 0.3–0.42 mT
Bouisset N et al. 2020 human, partial body: ear, vestibular organ magnetic field, 50/60 Hz, DC, electric current application, low frequency 100–141.42 mT
Bouisset N et al. 2020 human, partial body: head magnetic field, 50/60 Hz 50 mT
Fei Y et al. 2020 - magnetic field, 50/60 Hz -
Gholami D et al. 2019 animal, rat/Wistar, whole body 50/60 Hz, magnetic field 5 mT
Demirkazik A et al. 2019 animal, rat/ Wistar albino magnetic field, signals/pulses, 50/60 Hz, co-exposure 5 mT
Ozdemir E et al. 2019 - magnetic field, 50/60 Hz, co-exposure -
Fei Y et al. 2019 - magnetic field, 50/60 Hz -
Lundberg L et al. 2019 - 50/60 Hz, magnetic field, co-exposure, also other exposures without EMF -
Saikia J et al. 2019 isolated bio./chem. substance, beta-amyloid protein electric field, magnetic field, 50/60 Hz, static electric field -
Calabrò E et al. 2018 isolated bio./chem. substance, hemoglobin aqueous solution static magnetic field, magnetic field, 50/60 Hz -
Pazur A 2018 isolated bio./chem. substance, phospholipids magnetic field, static magnetic field, 50/60 Hz -
Drozd R et al. 2018 bacterium, <i>Komagataeibacter xylinus</i> 50/60 Hz, magnetic field -
Kilfoyle AK et al. 2018 animal, fish, whole body magnetic field, static magnetic field, high-voltage direct current (HVDC), underground cable, 50/60 Hz, DC 0.4–559 nT
Owjfard M et al. 2017 animal, rat/ Wistar magnetic field, 50/60 Hz -
Dey S et al. 2017 - magnetic field, 50/60 Hz -
Kim YM et al. 2017 - magnetic field, low frequency, 50/60 Hz -
Struk M et al. 2017 - magnetic field, 50/60 Hz, co-exposure -
Fijałkowski K et al. 2017 bacterium, <i>Komagataeibacter xylinus</i> magnetic field, 50/60 Hz -
Beaulieu K et al. 2016 human, partial body: forearm magnetic field, signals/pulses, 50/60 Hz, therapeutic/medical device 0.9 mT
Hu Y et al. 2016 animal, mouse/3xTg and 129/C57BL/6, whole body magnetic field, 50/60 Hz 500 µT
Zhang J et al. 2015 fungus, <i>Monascus purpureus</i> SKY219 magnetic field, 50/60 Hz 0.05–1 mT
Hässig M et al. 2015 animal, different animals (mainly farm animals) mobile communications, RF field, wireless transmitter, electric field, magnetic field, intermediate frequency, touch current, 50/60 Hz, power transmission line, 16 2/3 Hz (train), other domestic appliance -
Liu Y et al. 2015 intact cell/cell culture, GC-2 cells (murine spermatocyte-derived cell line) magnetic field, 50/60 Hz 1–3 mT
Majidian Eydgahi S et al. 2015 animal, chicken/Ross (egg), whole body magnetic field, 50/60 Hz, also other exposures without EMF, co-exposure -
Liebl MP et al. 2015 animal, mouse/APP23, SOD1<sup>G85R</sup>, SOD1<sup>G93A</sup>, SOD1<sup>WT</sup>, wild type, whole body magnetic field, 50/60 Hz 1 mT
Shi Z et al. 2015 invertebrate, nematode (<i>Caenorhabditis elegans</i>), whole body magnetic field, 50/60 Hz 0.5–3 mT
Zhang Y et al. 2015 animal, rat/Sprague-Dawley, whole body magnetic field, 50/60 Hz 100 µT
Celik MS et al. 2015 animal, rat/Sprague-Dawley, whole body magnetic field, 50/60 Hz 1.5 mT
Haghnegahdar A et al. 2014 animal, rat/Wistar, whole body magnetic field, signals/pulses, 50/60 Hz 97.6 µT
Fedele G et al. 2014 tissue slices, brain slices from the suprachiasmatic nucleus, mouse/<i>Per2:Luc</i>, invertebrate, <i>Drosophila melanogaster</i>/wildtype (Canton-S) and cryptochrome mutants (cry<sup>02</sup>, tim>cry, tim>cryW342F;cry<sup>02</sup>, tim>cry&Delta;;cry<sup>02</sup>, tim>hCRY1;cry<sup>02</sup>, tim>hCRY2;cry<sup>02</sup>), whole body magnetic field, static magnetic field, low frequency, 50/60 Hz, co-exposure 50–1,000 µT
Choi YK et al. 2014 intact cell/cell culture, human bone marrow-derived mesenchymal stem cells (hBM-MSCs) magnetic field, 50/60 Hz, co-exposure 1 mT
Seong Y et al. 2014 intact cell/cell culture, human bone marrow-derived mesenchymal stem cells (hBM-MSCs), mouse neural stem cells, animal, mouse, whole body magnetic field, 50/60 Hz 1–2 mT
De Ninno A et al. 2014 isolated bio./chem. substance, L-phenylalanine and L-glutamine aqueous solution magnetic field, static magnetic field, 50/60 Hz, DC 50–150 µT