Risks to Health and Well-Being From Radio-Frequency Radiation Emitted by Cell Phones and Other Wireless Devices
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M. Oremus | C. Soskolne | A. Miller | M. Sears | L. Hardell | L. Morgan | D. Davis | L. L. Morgan
[1] Richard Odemer,et al. Effects of radiofrequency electromagnetic radiation (RF-EMF) on honey bee queen development and mating success , 2018, bioRxiv.
[2] Susanna Lagorio,et al. Brain and Salivary Gland Tumors and Mobile Phone Use: Evaluating the Evidence from Various Epidemiological Study Designs. , 2019, Annual review of public health.
[3] L. Giuliani,et al. The carcinogenic potential of non-ionizing radiations: The cases of S-50 Hz MF and 1.8 GHz GSM radiofrequency radiation. , 2019, Basic & clinical pharmacology & toxicology.
[4] R. Henriksson,et al. No Evidence for Increased Brain Tumour Incidence in the Swedish National Cancer Register Between Years 1980-2012 , 2019, AntiCancer Research.
[5] S. Meo,et al. Mobile Phone Base Station Tower Settings Adjacent to School Buildings: Impact on Students’ Cognitive Health , 2018, American journal of men's health.
[6] Lena K. Hedendahl,et al. High ambient radiofrequency radiation in Stockholm city, Sweden , 2018, Oncology letters.
[7] J. Nirala,et al. Oxidative stress‐mediated alterations on sperm parameters in male Wistar rats exposed to 3G mobile phone radiation , 2018, Andrologia.
[8] R. Melnick. Commentary on the utility of the National Toxicology Program study on cell phone radiofrequency radiation data for assessing human health risks despite unfounded criticisms aimed at minimizing the findings of adverse health effects , 2019, Environmental research.
[9] R. Croft,et al. Mobile phone use and incidence of brain tumour histological types, grading or anatomical location: a population-based ecological study , 2018, BMJ Open.
[10] A. Agarwal,et al. Radiations and male fertility , 2018, Reproductive Biology and Endocrinology.
[11] A. Auvinen,et al. Survival of glioma patients in relation to mobile phone use in Denmark, Finland and Sweden , 2018, Journal of Neuro-Oncology.
[12] A. Miller,et al. Cancer epidemiology update, following the 2011 IARC evaluation of radiofrequency electromagnetic fields (Monograph 102) , 2018, Environmental research.
[13] Joel D. Barnes,et al. Associations between 24 hour movement behaviours and global cognition in US children: a cross-sectional observational study. , 2018, The Lancet. Child & adolescent health.
[14] D. Carpenter,et al. Thermal and non-thermal health effects of low intensity non-ionizing radiation: An international perspective. , 2018, Environmental pollution.
[15] C Fernández,et al. Absorption of wireless radiation in the child versus adult brain and eye from cell phone conversation or virtual reality , 2018, Environmental research.
[16] T. Prihoda,et al. Comprehensive Review of Quality of Publications and Meta-Analysis of Genetic Damage in Mammalian Cells Exposed to Non-Ionizing Radiofrequency Fields , 2018, Radiation Research.
[17] Jill S Barnholtz-Sloan,et al. CBTRUS Statistical Report: Primary Brain and Other Central Nervous System Tumors Diagnosed in the United States in 2011-2015. , 2018, Neuro-oncology.
[18] R. Vermeulen,et al. Recall of mobile phone usage and laterality in young people: The multinational Mobi‐Expo study , 2018, Environmental research.
[19] C. Russell,et al. 5 G wireless telecommunications expansion: Public health and environmental implications , 2018, Environmental research.
[20] D. Mandrioli,et al. Report of final results regarding brain and heart tumors in Sprague‐Dawley rats exposed from prenatal life until natural death to mobile phone radiofrequency field representative of a 1.8 GHz GSM base station environmental emission , 2018, Environmental research.
[21] M. Eeftens,et al. A Prospective Cohort Study of Adolescents’ Memory Performance and Individual Brain Dose of Microwave Radiation from Wireless Communication , 2018, Environmental health perspectives.
[22] D. Henshaw,et al. Brain Tumours: Rise in Glioblastoma Multiforme Incidence in England 1995–2015 Suggests an Adverse Environmental or Lifestyle Factor , 2018, Journal of environmental and public health.
[23] Mary Redmayne,et al. A novel database of bio-effects from non-ionizing radiation , 2018, Reviews on environmental health.
[24] Yuri Feldman,et al. The human skin as a sub‐THz receiver – Does 5G pose a danger to it or not? , 2018, Environmental research.
[25] S. Dasdag,et al. Exposure to non-ionizing electromagnetic fields emitted from mobile phones induced DNA damage in human ear canal hair follicle cells , 2018, Electromagnetic biology and medicine.
[26] Michael J Abramson,et al. Radiofrequency Electromagnetic Radiation and Memory Performance: Sources of Uncertainty in Epidemiological Cohort Studies , 2018, International journal of environmental research and public health.
[27] Lena K. Hedendahl,et al. Radiofrequency radiation from nearby base stations gives high levels in an apartment in Stockholm, Sweden: A case report , 2018, Oncology letters.
[28] K. Aldape. A change at the helm of Neuro-Oncology. , 2018, Neuro-oncology.
[29] Cindy Sage,et al. Electromagnetic Fields, Pulsed Radiofrequency Radiation, and Epigenetics: How Wireless Technologies May Affect Childhood Development. , 2018, Child development.
[30] Gunnar Heuser,et al. Functional brain MRI in patients complaining of electrohypersensitivity after long term exposure to electromagnetic fields , 2017, Reviews on environmental health.
[31] Raffaella Corvi,et al. In vitro genotoxicity testing-Can the performance be enhanced? , 2017, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[32] Murat Terzi,et al. Effects of short and long term electromagnetic fields exposure on the human hippocampus , 2017, Journal of Microscopy and Ultrastructure.
[33] E. Ha,et al. Neurodevelopment for the first three years following prenatal mobile phone use, radio frequency radiation and lead exposure , 2017, Environmental research.
[34] H. Azari,et al. Effects of radiofrequency exposure emitted from a GSM mobile phone on proliferation, differentiation, and apoptosis of neural stem cells , 2017, Anatomy & cell biology.
[35] Malka N. Halgamuge,et al. Review: Weak radiofrequency radiation exposure from mobile phone radiation on plants , 2017, Electromagnetic biology and medicine.
[36] Alfonso Balmori,et al. Radiofrequency radiation injures trees around mobile phone base stations. , 2016, The Science of the total environment.
[37] R. Aitken,et al. The effects of radiofrequency electromagnetic radiation on sperm function. , 2016, Reproduction.
[38] G. Rubio,et al. Cell-Phone Addiction: A Review , 2016, Front. Psychiatry.
[39] I. Belyaev,et al. EUROPAEM EMF Guideline 2016 for the prevention, diagnosis and treatment of EMF-related health problems and illnesses , 2016, Reviews on environmental health.
[40] M. Pall. Microwave frequency electromagnetic fields (EMFs) produce widespread neuropsychiatric effects including depression , 2016, Journal of Chemical Neuroanatomy.
[41] J. Olsen,et al. Prospective cohort analysis of cellphone use and emotional and behavioural difficulties in children , 2016, Journal of Epidemiology & Community Health.
[42] Jia Cao,et al. Effects of cell phone use on semen parameters: Results from the MARHCS cohort study in Chongqing, China. , 2016, Environment international.
[43] Frank Barnes,et al. Some Effects of Weak Magnetic Fields on Biological Systems: RF fields can change radical concentrations and cancer cell growth rates , 2016, IEEE Power Electronics Magazine.
[44] P. Brown,et al. Determining priority signs and symptoms for use as clinical outcomes assessments in trials including patients with malignant gliomas: Panel 1 Report. , 2016, Neuro-oncology.
[45] J. Barnholtz-Sloan,et al. American Brain Tumor Association Adolescent and Young Adult Primary Brain and Central Nervous System Tumors Diagnosed in the United States in 2008-2012. , 2016, Neuro-oncology.
[46] Adalbert F X Wilhelm,et al. Tumor promotion by exposure to radiofrequency electromagnetic fields below exposure limits for humans. , 2015, Biochemical and biophysical research communications.
[47] Lennart Hardell,et al. Mobile phone and cordless phone use and the risk for glioma - Analysis of pooled case-control studies in Sweden, 1997-2003 and 2007-2009. , 2015, Pathophysiology : the official journal of the International Society for Pathophysiology.
[48] Jill S Barnholtz-Sloan,et al. Trends in central nervous system tumor incidence relative to other common cancers in adults, adolescents, and children in the United States, 2000 to 2010 , 2014, Cancer.
[49] L. Hardell,et al. Decreased Survival of Glioma Patients with Astrocytoma Grade IV (Glioblastoma Multiforme) Associated with Long-Term Use of Mobile and Cordless Phones , 2014, International journal of environmental research and public health.
[50] Fiona Mathews,et al. Effect of mobile telephones on sperm quality: a systematic review and meta-analysis. , 2014, Environment international.
[51] J. Barnholtz-Sloan,et al. CBTRUS statistical report: primary brain and central nervous system tumors diagnosed in the United States in 2007-2011. , 2012, Neuro-oncology.
[52] P. Héroux,et al. Extra-low-frequency magnetic fields alter cancer cells through metabolic restriction , 2012, Electromagnetic biology and medicine.
[53] Mary Redmayne,et al. The relationship between adolescents’ well-being and their wireless phone use: a cross-sectional study , 2013, Environmental Health.
[54] Lisa Bailey,et al. Multifocal Breast Cancer in Young Women with Prolonged Contact between Their Breasts and Their Cellular Phones , 2013, Case reports in medicine.
[55] Ronald N. Kostoff,et al. Combined biological and health effects of electromagnetic fields and other agents in the published literature , 2013 .
[56] K. H. Mild,et al. Pooled analysis of case-control studies on acoustic neuroma diagnosed 1997–2003 and 2007–2009 and use of mobile and cordless phones , 2013, International journal of oncology.
[57] George L. Carlo,et al. Evaluation of Specific Absorption Rate as a Dosimetric Quantity for Electromagnetic Fields Bioeffects , 2013, PloS one.
[58] G. Morgia,et al. The semen quality of the mobile phone users , 2013, Journal of Endocrinological Investigation.
[59] Theodore S. Rappaport,et al. Millimeter Wave Mobile Communications for 5G Cellular: It Will Work! , 2013, IEEE Access.
[60] Hyung-Do Choi,et al. Mobile Phone Use, Blood Lead Levels, and Attention Deficit Hyperactivity Symptoms in Children: A Longitudinal Study , 2013, PloS one.
[61] Lennart Hardell,et al. 21 Mobile phone use and brain tumour risk : early warnings , early actions ? , 2013 .
[62] Lennart Hardell,et al. Review of four publications on the Danish cohort study on mobile phone subscribers and risk of brain tumors , 2012, Reviews on environmental health.
[63] Xiao-Bing Gao,et al. Fetal Radiofrequency Radiation Exposure From 800-1900 Mhz-Rated Cellular Telephones Affects Neurodevelopment and Behavior in Mice , 2012, Scientific Reports.
[64] Frank Telang,et al. Effects of cell phone radiofrequency signal exposure on brain glucose metabolism. , 2011, JAMA.
[65] A. Zuckerman,et al. IARC Monographs on the Evaluation of Carcinogenic Risks to Humans , 1995, IARC monographs on the evaluation of carcinogenic risks to humans.
[66] I. Belyaev. Dependence of non-thermal biological effects of microwaves on physical and biological variables: implications for reproducibility and safety standards , 2010 .
[67] Leeka Kheifets,et al. Prenatal and Postnatal Exposure to Cell Phone Use and Behavioral Problems in Children , 2008, Epidemiology.
[68] Martin Röösli,et al. Source of Funding and Results of Studies of Health Effects of Mobile Phone Use: Systematic Review of Experimental Studies , 2006, Environmental health perspectives.
[69] Daniel Krewski,et al. The effects of recall errors and of selection bias in epidemiologic studies of mobile phone use and cancer risk , 2006, Journal of Exposure Science and Environmental Epidemiology.
[70] N. Kuster,et al. Exposure to pulse‐modulated radio frequency electromagnetic fields affects regional cerebral blood flow , 2005, The European journal of neuroscience.
[71] N. Kuster,et al. Electromagnetic fields, such as those from mobile phones, alter regional cerebral blood flow and sleep and waking EEG , 2002, Journal of sleep research.
[72] A. Ahlbom. Guidelines for limiting exposure to time-varying electric, magnetic, and electromagnetic fields (up to 300 GHz) , 1998 .
[73] K. Shadan,et al. Available online: , 2012 .