Study overviews

Experimental studies on the effects of young animals include studies with young animals prenatally or postnatally (before or after hatching) exposed to electromagnetic fields.

Young animals in this spirit means animals of the whole animal kingdom (but in this context mainly mammals and birds), exposed and investigated before their adulthood.

The graphics also include some experimental studies with children.

Experimental studies on the effects of low and radio frequency on young animals

840 studies in total
  1. 308 studies
  2. 295 studies
  3. 115 studies
  4. 52 studies
  5. 45 studies
  6. 15 studies
  7. 10 studies

Teratogenicity, embryogenesis

308 studies in total
  1. 156 studies
  2. 134 studies
  3. 38 studies
  4. 2 studies
Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Tang LS et al. 2023 animal, zebrafish embryos and larvae (<i>Danio rerio</i>) - - - - static magnetic field, MRI
Kamel NF et al. 2022 animal, Japanese quail eggs - - - - static magnetic field
Krylov VV et al. 2021 animal, roach (<i>Rutilus rutilus</i>) (embryos) - - - - static magnetic field, geomagnetic field, shielding/field deprivation
Orlov OI et al. 2020 animal, Japanese quail embryos - - - - geomagnetic field, shielding/field deprivation
Brysiewicz A et al. 2019 animal, sea trout (<i>Salmo trutta</i> m. <i>trutta</i> L.) (eggs and larvae) - - - - static magnetic field
Ge S et al. 2019 invertebrate, zebrafish (<i>Danio rerio</i>) larvae - - - - static magnetic field
Krylov VV et al. 2019 animal, roach (<i>Rutilus rutilus</i>) (embryos) - - - - geomagnetic field, static magnetic field
Sun W et al. 2019 animal, Japanese rice fish (<i>Oryzias latipes</i>) (embryo) - - - - static magnetic field
Fey DP et al. 2019 animal, pike (<i>Esox lucius</i> L.) (larvae) - - - - static magnetic field
Brysiewicz A et al. 2017 animal, vendace (<i>Coregonus albula</i> L.) and European whitefish (<i>Coregonus lavaretus</i>) (embryos and larvae) - - - - static magnetic field
Zahedi Y et al. 2014 animal, mouse/C57BL/6J (embryo), whole body: <i>in utero</i> - 0 Hz - - static magnetic field, MRI
Mo WC et al. 2012 animal, African clawed frog (<i>Xenopus laevis</i>) (embryos and adults), whole body cleavage and malformation in early embryonal stage 0 Hz - parental animals continuous for 7 days; afterwards, embryos continuous for up to 4 days geomagnetic field, shielding/field deprivation
Laszlo JF et al. 2011 animal, mouse/C57BL/6 - 0 Hz - - static magnetic field
Popova E et al. 2011 animal, mouse and rat embryos - 500 kHz - 30 minutes intermediate frequency, signals/pulses, electric current application, DC
Fesenko EE et al. 2010 animal, mouse/NMRI - 0 Hz - - geomagnetic field, shielding/field deprivation
Tyler SE et al. 2006 invertebrate, slipper limpet (<i>Crepidula fornicata</i>) (embryos) - - - - static magnetic field
Eguchi Y et al. 2006 animal, spawn of <i>Xenopus laevis</i> - 0 Hz - continuous for 5 days static magnetic field, DC
Mietchen D et al. 2005 animal, African clawed frog (<i>Xenopus laevis</I>) (eggs) - - - continuous for 15, 29, 42, 63, and 76 min static magnetic field
Ruggiero M et al. 2004 animal, chicken embryos (eggs), whole body - 0 Hz - continuous for 3 h static magnetic field, MRI
Valles Jr JM et al. 2002 animal, fertilized eggs of <i>Xenopus laevis</i> - 0 Hz - - static magnetic field
Chew S et al. 2001 animal, CBA/C57 F1 mouse, whole body: in utero - 0 Hz 3–7 µW/g continuous static magnetic field, MRI
Jove M et al. 1999 animal, chicken embryos/White Leghorn, whole body: <i>in ovo</i> - 0 Hz - continuous for 15 days static magnetic field, DC
Herrid M et al. 1998 animal, mouse embryos - - - - static electric field
Denegre JM et al. 1998 animal, eggs of the frog <i>Xenopus</i> - 0 Hz - - static magnetic field
Formicki K et al. 1998 animal, rainbow trout (<i>Oncorhynchus mykiss</i>) and trout (<i>Salmo trutta</i>) - - - from fertilization until hatching DC, static magnetic field