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
Adang D et al. 2009 animal, rat/Charles River, whole body - 970 MHz 0.08 W/kg - mobile phone base station, GSM, mobile communications, low level microwaves, CW continuous wave, PW pulsed wave, radar
Jelodar G et al. 2013 animal, rat/Sprague-Dawley, whole body oxidative stress in the eye 900 MHz - continuous for 4 h/day on 45 days mobile phone base station, mobile communications
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
Aziz A et al. 2010 animal, albino rats - 900 MHz - - mobile phone base station, mobile communications, GSM
Balmori A et al. 2007 animal, house sparrow (<i>Passer domesticus</i>), whole body number of house sparrows 1 MHz–3 GHz - 3 years and 8 months mobile phone base station, mobile communications, RF field, microwaves
Adebayo EA et al. 2014 bacterium, Bacillus, Clostridium, Corynebacterium and Sporosarcina - - - - mobile phone base station, mobile communications, TV broadcast (VHF/UHF), Radio/TV transmitter, RF field
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
Kang KA et al. 2014 intact cell/cell culture, NIH3T3 cells (mouse fibroblasts), U87 (human glioma cells), PC12 (rat pheochromocytoma cells), SH-SY5Y (human neuroblastoma cells) cell viability, oxidative stress 837–1,950 MHz 2 W/kg continuous for 2 hours mobile phone, CDMA, W-CDMA, mobile communications, co-exposure
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
Bartsch H et al. 2010 animal, rat/Sprague-Dawley, whole body health and survival (mortality) 900 MHz 38–80 mW/kg continuous (except times for feeding, cleaning, health inspection, etc.): 24 months (exp. I), 17 (exp. II), 36 (exp. III), and 37 (exp. IV) months mobile phone, GSM, mobile communications
Cammaerts MC et al. 2011 intact cell/cell culture, <i>Paramecium caudatum</i> swimming behaviour of <i>Paramecium caudatum</i>, different morphological and physiological parameters 900 MHz - continuous for at least 2 min, at least for four times 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
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
Meo SA et al. 2013 animal, rat/Wistar albino, whole body insulin level in serum, fasting blood glucose level 1,800 MHz - less than 15 min/day for 3 month mobile phone, GSM, 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
Taberski K et al. 2014 animal, Djungarian hamster (<i>Phodopus sungorus</i>), whole body - 900 MHz 0.08–4 W/kg - mobile phone, GSM, mobile communications
Dasdag S et al. 2014 animal, rat/Wistar albino, partial body: head enamel micro hardness 890–915 MHz 0.0369–2.023 W/kg continuous for 2 hours/d for 10 months mobile phone, GSM, mobile communications
Adiguzel O et al. 2008 animal, rat/Wistar albino, partial body: head trace elements content of rat teeth 900 MHz - repeated daily exposure of 2 h for 10 months mobile phone, GSM, mobile communications
Aydogan F et al. 2015 animal, rat/Wistar albino - 2,100 MHz 0.4 W/kg - mobile phone, GSM, mobile communications
Mortazavi SM et al. 2015 isolated organ, isolated gastrocnemius muscles, frog, animal, frog, whole body - - - - mobile phone, GSM, mobile communications
Esmekaya MA et al. 2010 animal, rat/Wistar, whole body effects on thyroid gland 900 MHz 1.35 W/kg continuous for 20 min./day on 21 days mobile phone, GSM, mobile communications, PW pulsed wave
Fasseas MK et al. 2015 invertebrate, nematode (<i>Caenorhabditis elegans</i>)/N2 (wild type), DR1572, DR26, TK22, CL4176, NL5901, RB864, CL2070 (<i>hsp-16.2</i>), CF1553 (<i>sod-3</i>), SJ4005 (<i>hsp-4</i>), LG333 (<i>skn-1</i>), LD1171 (<i>gcs-1</i>) and CL2166 (<i>gst-4</i>) effects on fertility, neurodegeneration, short-term memory, chemotaxis, stress, apoptosis, life span and growth of <i>Caenorhabditis elegans</i> 1,780–1,800 MHz - continuous for 0.5, 1, 3, 6 or 24 h mobile phone, GSM, mobile communications, PW pulsed wave, DECT, W-LAN/WiFi
Mortazavi S et al. 2013 animal, mouse/BALB/c and rat/Wistar, whole body survival rate 900 MHz - mice: 6 h/day for 5 days; rats: 6 h/day for 6 days (or 4 days?, contradictory information) mobile phone, GSM, mobile communications, co-exposure