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.
Authors | Year | Exposed system | Endpoints | Frequency range | SAR | Exposure duration | Parameters |
---|---|---|---|---|---|---|---|
Vecchio F et al. | 2012 | human, partial body: left side of the head | cortical activity (EEG), visual reaction time task | 902.4 MHz | 0.5 W/kg | continuous for 45 min | digital mobile phone, GSM, mobile communications, PW pulsed wave |
Sauter C et al. | 2015 | human, partial body: left side of the head | working memory and attention, well-being | 385 MHz | 1.5–6 W/kg | continuous for 2.5 hours | TETRA/TETRAPOL, mobile communications |
Leung S et al. | 2011 | human, partial body: left/right hemisphere | event-related potentials and performance during oddball paradigma and n-back task | 894.6 MHz | 0.7–1.7 W/kg | continuous for 55 min | GSM, W-CDMA, mobile communications |
Papageorgiou CC et al. | 2004 | human, partial body: right ear | brain activity/EEG | 900 MHz | - | continuous for about 45 min | mobile communications, mobile phone |
Curcio G et al. | 2012 | human, partial body: right ear | brain BOLD (blood-oxygen-level dependent) response, somatosensory reaction time task | 902.4 MHz | 0.212–1.25 W/kg | continuous for 45 min | digital mobile phone, GSM, mobile communications, PW pulsed wave |
Mortazavi SM et al. | 2012 | human, partial body: right ear | visual reaction time | - | 1.23 W/kg | 5 x 10 min. (in random order with sham exposure and 30 min. rest in between) | mobile phone, GSM, mobile communications |
Cinel C et al. | 2008 | human, partial body: right or left ear | short-term memory, vigilance, attention | 888 MHz | 1.4–11.2 W/kg | continuous for 45 min (experiment 1) or 40 min (experiment 2) | mobile phone, digital mobile phone, GSM, mobile communications, RF field |
Zwamborn APM et al. | 2003 | human, whole body | cognitive performance, well-being | 945 MHz | 0.000316 µW/kg–0.082 mW/kg | continuous for 20 min | mobile phone base station, GSM, UMTS, CDMA, TDMA, mobile communications |
Hutter HP et al. | 2006 | human, whole body | cognitive performance, sleep quality | 80–900 MHz | - | - | mobile communications, mobile phone base station |
Regel SJ et al. | 2006 | human, whole body | well-being, cognitive performance, and perceived field strength | 2,140 MHz | 6.2 µW/kg–32 mW/kg | continuous for 45 min | mobile phone base station, UMTS, mobile communications |
Abdel-Rassoul G et al. | 2007 | human, whole body | neurobehavioral effects | - | - | repeated daily exposure for 8 or 15 h/day | mobile communications, mobile phone base station |
Riddervold IS et al. | 2008 | human, whole body | cognitive performance | 2,140 MHz | - | continuous for 45 min | mobile phone base station, UMTS, mobile communications |
Eltiti S et al. | 2009 | human, whole body | cognitive functioning: short-term memory, attention and perceptual motor speed, working memory, blood volume pulse, heart rate, skin conductance | 900–1,800 MHz | - | continuous for 50 min | mobile phone base station, GSM, UMTS, mobile communications |
Wallace D et al. | 2012 | human, whole body | cognitive function | 420 MHz | 217 µW/kg | 25 min in session 1 (1 x 15 min and 2 x 5 min), 50 min each in session 2 and 3 | mobile communications, mobile phone base station, TETRA/TETRAPOL, TDMA |
Malek F et al. | 2015 | human, whole body | physiological changes and cognitive performance | 945 MHz | - | not specified | mobile phone base station, GSM, UMTS, mobile communications |
Meo SA et al. | 2019 | human, whole body | - | 925 MHz | - | - | mobile phone base station, mobile communications |
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 |
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