Can Low-Level Exposure to Radiofrequency Fields Effect Cognitive Behaviour in Laboratory Animals? A Systematic Review of the Literature Related to Spatial Learning and Place Memory
This review considers whether exposure to low-level radiofrequency (RF) fields, mostly associated with mobile phone technology, can influence cognitive behaviour of laboratory animals. Studies were nominated for inclusion using an a priori defined protocol with preselected criteria, and studies were...
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doaj-b9c335c11065409494e1831004c8afee2020-11-24T20:43:08ZengMDPI AGInternational Journal of Environmental Research and Public Health1660-46012019-05-01169160710.3390/ijerph16091607ijerph16091607Can Low-Level Exposure to Radiofrequency Fields Effect Cognitive Behaviour in Laboratory Animals? A Systematic Review of the Literature Related to Spatial Learning and Place MemoryZenon Sienkiewicz0Eric van Rongen1Public Health England, Centre for Radiation, Chemical and Environmental Hazards, Chilton, Oxfordshire OX11 0RQ, UKHealth Council of the Netherlands, P.O. Box 16052, 2500 BB The Hague, The NetherlandsThis review considers whether exposure to low-level radiofrequency (RF) fields, mostly associated with mobile phone technology, can influence cognitive behaviour of laboratory animals. Studies were nominated for inclusion using an a priori defined protocol with preselected criteria, and studies were excluded from analysis if they did not include sufficient details about the exposure, dosimetry or experimental protocol, or if they lacked a sham-exposed group. Overall, 62 studies were identified that have investigated the effects of RF fields on spatial memory and place learning and have been published since 1993. Of these, 17 studies were excluded, 20 studies reported no significant field-related effects, 21 studies reported significant impairments or deficits, and four studies reported beneficial consequences. The data do not suggest whether these outcomes are related to specific differences in exposure or testing conditions, or simply represent chance. However, some studies have suggested possible molecular mechanisms for the observed effects, but none of these has been substantiated through independent replication. Further behavioural studies could prove useful to resolve this situation, and it is suggested that these studies should use a consistent animal model with standardized exposure and testing protocols, and with detailed dosimetry provided by heterogeneous, anatomically-realistic animal models.https://www.mdpi.com/1660-4601/16/9/1607radiofrequency electromagnetic fieldsspatial learningmemoryrodents |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zenon Sienkiewicz Eric van Rongen |
spellingShingle |
Zenon Sienkiewicz Eric van Rongen Can Low-Level Exposure to Radiofrequency Fields Effect Cognitive Behaviour in Laboratory Animals? A Systematic Review of the Literature Related to Spatial Learning and Place Memory International Journal of Environmental Research and Public Health radiofrequency electromagnetic fields spatial learning memory rodents |
author_facet |
Zenon Sienkiewicz Eric van Rongen |
author_sort |
Zenon Sienkiewicz |
title |
Can Low-Level Exposure to Radiofrequency Fields Effect Cognitive Behaviour in Laboratory Animals? A Systematic Review of the Literature Related to Spatial Learning and Place Memory |
title_short |
Can Low-Level Exposure to Radiofrequency Fields Effect Cognitive Behaviour in Laboratory Animals? A Systematic Review of the Literature Related to Spatial Learning and Place Memory |
title_full |
Can Low-Level Exposure to Radiofrequency Fields Effect Cognitive Behaviour in Laboratory Animals? A Systematic Review of the Literature Related to Spatial Learning and Place Memory |
title_fullStr |
Can Low-Level Exposure to Radiofrequency Fields Effect Cognitive Behaviour in Laboratory Animals? A Systematic Review of the Literature Related to Spatial Learning and Place Memory |
title_full_unstemmed |
Can Low-Level Exposure to Radiofrequency Fields Effect Cognitive Behaviour in Laboratory Animals? A Systematic Review of the Literature Related to Spatial Learning and Place Memory |
title_sort |
can low-level exposure to radiofrequency fields effect cognitive behaviour in laboratory animals? a systematic review of the literature related to spatial learning and place memory |
publisher |
MDPI AG |
series |
International Journal of Environmental Research and Public Health |
issn |
1660-4601 |
publishDate |
2019-05-01 |
description |
This review considers whether exposure to low-level radiofrequency (RF) fields, mostly associated with mobile phone technology, can influence cognitive behaviour of laboratory animals. Studies were nominated for inclusion using an a priori defined protocol with preselected criteria, and studies were excluded from analysis if they did not include sufficient details about the exposure, dosimetry or experimental protocol, or if they lacked a sham-exposed group. Overall, 62 studies were identified that have investigated the effects of RF fields on spatial memory and place learning and have been published since 1993. Of these, 17 studies were excluded, 20 studies reported no significant field-related effects, 21 studies reported significant impairments or deficits, and four studies reported beneficial consequences. The data do not suggest whether these outcomes are related to specific differences in exposure or testing conditions, or simply represent chance. However, some studies have suggested possible molecular mechanisms for the observed effects, but none of these has been substantiated through independent replication. Further behavioural studies could prove useful to resolve this situation, and it is suggested that these studies should use a consistent animal model with standardized exposure and testing protocols, and with detailed dosimetry provided by heterogeneous, anatomically-realistic animal models. |
topic |
radiofrequency electromagnetic fields spatial learning memory rodents |
url |
https://www.mdpi.com/1660-4601/16/9/1607 |
work_keys_str_mv |
AT zenonsienkiewicz canlowlevelexposuretoradiofrequencyfieldseffectcognitivebehaviourinlaboratoryanimalsasystematicreviewoftheliteraturerelatedtospatiallearningandplacememory AT ericvanrongen canlowlevelexposuretoradiofrequencyfieldseffectcognitivebehaviourinlaboratoryanimalsasystematicreviewoftheliteraturerelatedtospatiallearningandplacememory |
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