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

1711 studies in total
  1. 747 studies
  2. 570 studies
  3. 512 studies
  4. 225 studies
  5. 205 studies
  6. 118 studies

Other

205 studies in total
  1. 124 studies
  2. 62 studies
  3. 35 studies
Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Nasiar N et al. 2018 human - - - - mobile communications, mobile phone, mobile phone base station, residential
Nath A et al. 2022 animal, house sparrow (<i>Passer domesticus</i>) and tree sparrow (<i>Passer montanus</i>) - 50 MHz–3.5 GHz - - mobile communications, mobile phone base station, RF field, also other exposures without EMF
Nittby H et al. 2012 invertebrate, large garden snail (<i>Helix pomatia</i>) pain (nociception) 1,900 MHz 48 mW/kg continuous for 1 h digital mobile phone, GSM, mobile communications, therapeutic/medical device
Okano T et al. 2010 human, partial body: head (left ear) effects on eye (cortical processing/saccade performance) 1.95 GHz - continuous for 30 min mobile phone, mobile communications, PW pulsed wave
Olajide MB et al. 2020 animal, rat/ Wistar albino - 900 MHz - - mobile communications, mobile phone, CDMA
Ouadah NS et al. 2020 animal, rat/ Wistar - 900 MHz - - GSM, mobile communications, RF field, PW pulsed wave, co-exposure
Ozorak A et al. 2013 animal, rat/Wistar albino (<i>in utero</i> and young animals), whole body oxidative stress (kidney and testis) and level of trace elements (kidney) 900 MHz 0.18–1.2 W/kg 60 min/day (5 days/week) during gestation and up to 6 weeks following delivery mobile phone, mobile communications, W-LAN/WiFi, 2.45 GHz
Paredi P et al. 2001 human, partial body: head skin temperature, NO, and nasal resistence 900 MHz - 30 min GSM, mobile communications
Park J et al. 2018 intact cell/cell culture, HT22 (mouse hippocampus neuronal cells) and SH-SY5Y (human neuroblastoma cell line) - 837–1,950 MHz - - mobile phone, CDMA, W-CDMA, mobile communications, RF field
Partsvania B et al. 2011 isolated organ, nervous system (ganglia) of the snail <i>Helix pomatia</i> neuronal electrophysiology (neuron memory process and excitability) 900 MHz 0.63 W/kg continuous for 60 min mobile communications, mobile phone
Patrignoni L et al. 2024 intact cell/cell culture, human Xp6be fibroblasts and KHAT keratinocytes - 3.5 GHz - - mobile communications, 5G, also other exposures without EMF, co-exposure
Peyman A et al. 2001 different tissues in dead rats (brain, skin, skull, messeter muscle, salivary glands, liver, kidney, spleen, tongue, tail) dielectric properties of rat tissues 130 MHz–10 GHz - - mobile communications, digital mobile phone, GSM, UMTS, RF field, microwaves
Ravaioli F et al. 2023 intact cell/cell culture, HeLa cells, neuroblastoma BE(2)C cells and neuroblastoma SH-SY5Y cells - 900 MHz - - mobile communications, GSM, RF field
Roti Roti JL et al. 2001 intact cell/cell culture, C3H 10T1/2 cells (derived from mouse embryo fibroblasts) neoplastic transformation 835.62 MHz 0.6 W/kg continuous for 7 or 42 days mobile communications, CDMA, FDMA
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
Schmid G et al. 2005 human, partial body: head visual perception 1.97 GHz 0.37–0.63 W/kg see add. information UMTS, mobile communications
Seckin E et al. 2014 animal, rat/Wistar albino (<i>in utero</i> and young animals), whole body - 900 MHz - 1 h/day starting on the 12th day of pregnancy until 21 days after delivery mobile phone, GSM, mobile communications
Sefidbakht Y et al. 2013 isolated bio./chem. substance, luciferase solution luciferase structure and enzyme activity 940 MHz 0.021 W/g exposure duration not given clearly (30 min?) mobile phone, mobile communications, RF field
Sharma AB et al. 2018 bacterium, <i>Chryseobacterium Gleum, Staphylococcus spec., Pseudomonas spec., Stenotrophomonas maltophilia, Kocuria Rosea, Escherichia coli, Enterobacter cleacae</i> - - - - mobile phone base station, mobile communications
Sharma VP et al. 2009 plant, mung bean effects on plants: root growth and oxidative stress 900 MHz - continuous for 0.5 h, 1 h, 2 hr, 4 hr mobile phone, GSM, mobile communications
Sharma VP et al. 2010 plant, mung bean (<i>Vigna radiata</i>)/Wilczek cv. ML-5 effects on plants: germination and growth 900 MHz - continuous for 0.5 h, 1 h, 2 h, 4 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
Singh HP et al. 2012 plant, mung bean (<i>Vigna radiata</i>)/Wilczek, hypocotyls effects on plants: root growth (rhizogenesis) and oxidative stress 900 MHz - continuous for 0.5, 1, 2 h mobile phone, GSM, mobile communications
Sokolovic D et al. 2012 animal, rat/Wistar, whole body locomotor activity, stress and anxiety related behavior, exploratory behavior, body mass 900 MHz 0.043–0.135 W/kg continuous for 4 h/day on 60 days mobile phone, GSM, mobile communications, microwaves, CW continuous wave, co-exposure