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 |
---|---|---|---|---|---|---|---|
Yinhui P et al. | 2019 | animal, mouse/BALB/c | - | 1,800–1,900 MHz | - | - | mobile communications, mobile phone, CDMA, LTE |
Andrianome S et al. | 2019 | human | - | - | - | - | mobile communications, mobile phone, GSM, DECT, W-LAN/WiFi |
Occelli F et al. | 2018 | animal, rat/Wistar, partial body | - | 1,800 MHz | - | - | GSM, mobile communications, RF |
Lameth J et al. | 2017 | animal, rat/Wistar (adults and pubs), partial body | - | 1,800 MHz | - | - | mobile communications, mobile phone, GSM, PW pulsed wave |
Taheri M et al. | 2017 | human | - | - | - | - | mobile phone base station, mobile communications |
El-Gohary OA et al. | 2017 | - | - | 900 MHz | - | - | mobile phone, mobile communications, co-exposure |
Siqueira EC et al. | 2016 | human | cytokine expression in parotid gland saliva | - | - | up to 200 minutes per month for up to 10 years | mobile phone, mobile communications |
Lippi G et al. | 2016 | intact cell/cell culture, human peripheral blood | leukocyte count and neutrophil activation | 900 MHz | - | continuous for 30 minutes | mobile phone, mobile communications |
Ohtani S et al. | 2015 | - | - | 2.14 GHz | - | - | mobile communications, W-CDMA |
Rosado MM et al. | 2014 | animal, mouse/C57BL/6Thy1<sup>b</sup>Igh<sup>b</sup> (wild type B/6), whole body | hematopoietic precursor cell differentiation and proliferation in thymus and spleen (ability of bone marrow precursor cells to colonize lymphoid organs and to differentiate in mature T cells and B lymphocytes) | 900 MHz | 2 W/kg | continuous for 2 h/day and 5 days/week for 4 weeks | GSM, mobile communications |
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