Study overviews

Mobile phone related articles are

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 mobile communications

1704 studies in total
  1. 743 studies
  2. 566 studies
  3. 512 studies
  4. 222 studies
  5. 204 studies
  6. 118 studies

Other

204 studies in total
  1. 123 studies
  2. 62 studies
  3. 35 studies

Effects on invertebrates 62 studies in total

Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Margaritis LH et al. 2014 invertebrate, <i>Drosophila melanogaster</i>/Oregon-R (wildtype) and <i>Drosophila virilis</i> reproduction of <i>Drosophila spec.</i> (apoptosis in follicles; quantification of F1 pupae) 27.15 MHz 1.2 W/kg 6 or 12 minutes daily for 1 (3rd day of experiment only), or 3 days (<i>D. virilis</i>) (follicles); 6 minutes daily for 7 days (<i>D. virilis</i>) (F1 pupae) mobile phone, GSM, mobile communications, CW continuous wave, Bluetooth, DECT, W-LAN/WiFi, FM broadcast (UKW), microw. oven/heating device
Weisbrot D et al. 2003 invertebrate, <i>Drosophila melanogaster</i>/Oregon-R, whole body different biological effects on <i>Drosophila melanogaster</i> 1,900 MHz 1.4 W/kg repeated daily exposure, 2 times 60 min with a 4-h interval, for 10 days GSM, mobile communications
Panagopoulos DJ et al. 2007 invertebrate, <i>Drosophila melanogaster</i>/Oregon-R, whole body reproductive capacity of <i>Drosophila melanogaster</i> 900 MHz - 6 min/day for 5 days digital mobile phone, GSM, mobile communications
Panagopoulos DJ et al. 2003 invertebrate, <i>Drosophila melanogaster</i>/Oregon-R, whole body reproductive capacity and malformations of the eggs in the ovaries 50 Hz - continuous for 5 days GSM, mobile communications, PW pulsed wave, electric field, magnetic field, low frequency, signals/pulses, 50/60 Hz, co-exposure
Sarapultseva EI et al. 2009 invertebrate, <i>Spirostomum ambiguum</i> spontaneous motor activity of a protozoa 1 GHz - continuous for 15 min, 30 min, 45 min, 1h, 2 hr, 3 hr, 4 hr, 6 hr, 8 hr, 10 hr mobile communications, mobile phone, low level microwaves, Radio/TV transmitter
Sarapultseva EI et al. 2011 invertebrate, <i>Spirostomum ambiguum</i> - 1 GHz - continuous for 1 min up to 11 h mobile communications, mobile phone
Sarapultseva EI et al. 2014 invertebrate, <i>Spirostomum ambiguum</i> - 1 GHz - - mobile communications, low level microwaves, radar
Syalima PR et al. 2017 invertebrate, American cockroach (<i>Periplaneta americana</i>) - 900 MHz - - mobile communications, mobile phone
Soleimani H et al. 2020 invertebrate, Echinococcus parasite - - - - mobile communications, mobile phone
Cammaerts MC et al. 2013 invertebrate, ant (<i>Myrmica sabuleti</i>) food collection and response to pheromones 900 MHz - continuous for 3 x 60 hours and 1 x 18 hours at intervals of 3 days each mobile phone, GSM, mobile communications
Cammaerts MC et al. 2014 invertebrate, ant (<i>Myrmica sabuleti</i>) - - - - GSM, mobile communications, mobile phone, RF field
Cammaerts MC et al. 2014 invertebrate, ant (<i>Myrmica sabuleti</i>) and (<i>Myrmica ruginodis</i>) motor activity of ants 900 MHz - not given mobile phone, GSM, mobile communications, RF field, DECT, W-LAN/WiFi, static electric field, PC/TV monitor
Cammaerts MC et al. 2012 invertebrate, ant (<i>Myrmica sabuleti</i>), whole body association between food sites and olfactory or visual cues 900 MHz - see add. information digital mobile phone, mobile phone base station, GSM, mobile communications
Bourdineaud JP et al. 2017 invertebrate, earthworm (<i>Eisenia fetida</i>) - 900 MHz - - mobile communications, mobile phone
Tkalec M et al. 2013 invertebrate, earthworm (<i>Eisenia fetida</i>), whole body genotoxicity, oxidative stress 900 MHz 0.13–9.33 mW/kg continuous for 2 hours mobile phone, mobile communications
Vijver MG et al. 2014 invertebrate, fruit fly/<i>Drosophila melanogaster</i>, springtails/<i>Folsomia candida</i>, parasitic wasps/<i>Asobara japonica</i> and predatory bug/<i>Orius laevigatus</i> - 900 MHz - - mobile phone base station, GSM, mobile communications
Kumar et al. 2012 invertebrate, honey bee (<i>Apis mellifera</i> L.) - - - - mobile phone, mobile communications
Mall P et al. 2014 invertebrate, honey bee (<i>Apis mellifera</i> L.) - 900 MHz - - mobile phone, mobile phone base station, GSM, mobile communications
Mahmoud EA et al. 2021 invertebrate, honey bee (<i>Apis mellifera</i>) - 900–1,900 MHz - - mobile communications, mobile phone
Molina-Montenegro MA et al. 2023 invertebrate, honey bee (<i>Apis mellifera</i>) and other pollinators - - - - mobile communications, mobile phone base station, power transmission line, magnetic field
Vilic M et al. 2017 invertebrate, honey bee (<i>Apis mellifera</i>), whole body - 900 MHz - - mobile communications, AM amplitude modulation
El Halabi N et al. 2013 invertebrate, honeybee - - - - mobile communications, mobile phone, GSM, UMTS
Migdal P et al. 2023 invertebrate, honeybee - 900 MHz - - mobile communications, mobile phone, RF field
Favre D 2011 invertebrate, honeybee (<i>Apis mellifera carnica</i>) honeybee behavior 900 MHz 0.271–0.98 W/kg continuous for 45 min - 20 h mobile phone, GSM, mobile communications
Sharma VP et al. 2010 invertebrate, honeybee (<i>Apis mellifera</i> L.) honeybee behaviour 900 MHz - continuous for 15 min. twice per day, twice per week from February to April ( 1100 hr and 1500 hr in total) mobile phone, GSM, mobile communications