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 |
---|---|---|---|---|---|---|---|
Perentos N et al. | 2013 | human, partial body: right ear | resting EEG | 2.1–217 Hz | 0.06–1.95 W/kg | continuous for 3 x 20 min | mobile phone, GSM, mobile communications |
Lv B et al. | 2014 | human, partial body: right ear | resting state brain activity | 2.573 GHz | 0.9–2.36 W/kg | continuous for 30 minutes | mobile phone, LTE, mobile communications |
Lv B et al. | 2014 | human, partial body: right ear | neural synchronization in the brain | 2.573 GHz | - | continuous for 30 min | mobile phone, LTE, mobile communications |
Yang L et al. | 2017 | human, partial body: right ear | resting EEG | 2.61 GHz | 1.34–1.96 W/kg | continuous for 30 minutes | mobile phone, LTE, mobile communications |
Smitha CK et al. | 2015 | human, partial body: right ear, vertex (Cz position) | brain activity in the EEG | - | - | continuous for 5 minutes/position/phone (20 minutes in total) | mobile phone, mobile communications |
Loughran SP et al. | 2012 | human, partial body: right side of the head | sleep EEG | 894.6 MHz | 0.11–0.674 W/kg | continuous for 30 min | mobile phone, digital mobile phone, GSM, mobile communications |
Kwon MS et al. | 2011 | human, partial body: right side of the head | brain activity (brain glucose metabolism) | 902.4 MHz | 0.23–1.5 W/kg | continuous for 33 min | digital mobile phone, GSM, mobile communications, PW pulsed wave |
Carrubba S et al. | 2010 | human, whole body | pulse-induced evoked potentials | 217 Hz | - | 80 trials of 3 s - 0.7 ms on - 2.9993 s off | mobile phone, mobile communications, electric field, magnetic field, signals/pulses |
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