Systematic review on the biological effects of electric, magnetic and electromagnetic fields in the intermediate frequency range (300 Hz to 1 MHz)
暂无分享,去创建一个
Thomas Kraus | Kristina Schmiedchen | Lukas Winter | Dominik Stunder | Sarah Driessen | L. Winter | Kristina Schmiedchen | T. Kraus | D. Stunder | Dagmar Dechent | Sarah Driessen | Lambert Bodewein | Dagmar Dechent | David Graefrath | Lambert Bodewein | David Graefrath
[1] Naoki Shinohara,et al. Intermediate frequency magnetic field at 23 kHz does not modify gene expression in human fetus‐derived astroglia cells , 2012, Bioelectromagnetics.
[2] Thomas Kraus,et al. Biological effects of exposure to static electric fields in humans and vertebrates: a systematic review , 2017, Environmental Health.
[3] W. H. Bailey,et al. Systematic review of biological effects of exposure to static electric fields. Part II: Invertebrates and plants , 2018, Environmental research.
[4] M. Levin,et al. Applied AC and DC magnetic fields cause alterations in the mitotic cycle of early sea urchin embryos. , 1995, Bioelectromagnetics.
[5] Luc Martens,et al. Measurements of intermediate‐frequency electric and magnetic fields in households , 2017, Environmental research.
[6] R. Caren,et al. Lack of an EMF-induced genotoxic effect in the Ames assay. , 1996, Life sciences.
[7] Akira Ushiyama,et al. Can intermediate-frequency magnetic fields affect memory function-related gene expressions in hippocampus of C57BL/6J mice? , 2013, The Journal of toxicological sciences.
[8] Naoki Shinohara,et al. Effect of an Intermediate-Frequency Magnetic Field of 23 kHz at 2 mT on Chemotaxis and Phagocytosis in Neutrophil-Like Differentiated Human HL-60 Cells , 2014, International journal of environmental research and public health.
[9] Jintian Tang,et al. Contribution of a 300 kHz alternating magnetic field on magnetic hyperthermia treatment of HepG2 cells , 2013, Bioelectromagnetics.
[10] E. Helerea,et al. Electromagnetic environment characteristics in an urban area , 2013, 2013 4th International Symposium on Electrical and Electronics Engineering (ISEEE).
[11] K R Foster,et al. Health and safety implications of exposure to electromagnetic fields in the frequency range 300 Hz to 10 MHz , 2002, Bioelectromagnetics.
[12] Y. Seo,et al. Combined effect of pulsed electromagnetic field and sound wave on In vitro and In vivo neural differentiation of human mesenchymal stem cells , 2017, Biotechnology progress.
[13] Low frequency electromagnetic radiation and hearing. , 2009, The Journal of laryngology and otology.
[14] P. Gowland,et al. Measurement of visual evoked potential during and after periods of pulsed magnetic field exposure , 2007, Journal of magnetic resonance imaging : JMRI.
[15] C. Lotan,et al. Electromagnetic fields promote severe and unique vascular calcification in an animal model of ectopic calcification. , 2014, Experimental and Toxicological Pathology.
[16] Praveen Thokala,et al. Preferred Reporting Items for Systematic Reviews and Meta-analyses statement checklist , 2012 .
[17] K. Jokela,et al. ICNIRP Guidelines GUIDELINES FOR LIMITING EXPOSURE TO TIME-VARYING , 1998 .
[18] V. Krylov. Effects of electromagnetic fields on parthenogenic eggs of Daphnia magna Straus. , 2010, Ecotoxicology and environmental safety.
[19] I. Belyaev,et al. Some recommendations for experimental work in magnetobiology, revisited , 2018, Bioelectromagnetics.
[20] J. Ricci,et al. Effects of low-intensity AC and/or DC electromagnetic fields on cell attachment and induction of apoptosis. , 1997, Bioelectromagnetics.
[21] I. Nishimura,et al. Lack of chick embryotoxicity after 20 kHz, 1.1 mT magnetic field exposure , 2009, Bioelectromagnetics.
[22] John T. Boys,et al. Evaluation of potential health effects of 10 kHz magnetic fields: a rodent reproductive study. , 1998 .
[23] Luc Martens,et al. Temporal trends of radio-frequency electromagnetic field (RF-EMF) exposure in everyday environments across European cities. , 2014, Environmental research.
[24] Akira Ushiyama,et al. Early Exposure to Intermediate-Frequency Magnetic Fields Alters Brain Biomarkers without Histopathological Changes in Adult Mice , 2015, International journal of environmental research and public health.
[25] J. Wiskirchen,et al. In Vitro Evaluation of Teratogenic Effects by Time‐Varying MR Gradient Fields on Fetal Human Fibroblasts , 2000, Journal of magnetic resonance imaging : JMRI.
[26] Kenichi Yamazaki,et al. A review of studies of the biological effects of electromagnetic fields in the intermediate frequency range , 2007 .
[27] I. Nishimura,et al. Intermediate frequency magnetic field and chick embryotoxicity , 2013, Congenital anomalies.
[28] Vladyslava Fantova,et al. Impact of Low Frequency Electromagnetic Field Exposure on the Candida Albicans , 2015 .
[29] Y. Siu,et al. Impact of magnetic field generated by wireless power transfer system of electric vehicle on retinal pigment epithelium cell in vitro , 2017, 2017 Asia-Pacific International Symposium on Electromagnetic Compatibility (APEMC).
[30] Guidelines Icnirp. Guidelines for limiting exposure to time-varying electric, magnetic, and electromagnetic fields (up to 300 GHz) , 1998 .
[31] Y. Li,et al. Pulsed electromagnetic field may accelerate in vitro endochondral ossification , 2015, Bioelectromagnetics.
[32] Keiji Wada,et al. Effects of 21-kHz intermediate frequency magnetic fields on blood properties and immune systems of juvenile rats , 2014, International journal of radiation biology.
[33] The stimulatory effect of magnetic fields on regeneration of the rat sciatic nerve is frequency dependent , 1992, Experimental Neurology.
[34] Naoki Shinohara,et al. Alteration of gene expression by exposure to a magnetic field at 23 kHz is not detected in astroglia cells , 2013, Journal of radiation research.
[35] John M. Miller,et al. The reality of safety concerns relative to WPT systems for automotive applications , 2016, 2016 IEEE PELS Workshop on Emerging Technologies: Wireless Power Transfer (WoW).
[36] Wenjau Lee,et al. Using medaka embryos as a model system to study biological effects of the electromagnetic fields on development and behavior. , 2014, Ecotoxicology and environmental safety.
[37] E. Berman,et al. Lack of effects from 2000-Hz magnetic fields on mammary adenocarcinoma and reproductive hormones in rats. , 1989, Bioelectromagnetics.
[38] Chunbo Zhu,et al. Intermediate frequency magnetic field generated by a wireless power transmission device does not cause genotoxicity in vitro , 2014, Bioelectromagnetics.
[39] J. Miyakoshi,et al. Magnetic fields generated by an induction heating (IH) cook top do not cause genotoxicity in vitro , 2007, Bioelectromagnetics.
[40] V. Krylov,et al. Delayed consequences of extremely low-frequency magnetic fields and the influence of adverse environmental conditions on roach Rutilus rutilus embryos. , 2016, Journal of fish biology.
[41] D. House,et al. Influence of electromagnetic fields on the efflux of calcium ions from brain tissue in vitro: a three-model analysis consistent with the frequency response up to 510 Hz. , 1988, Bioelectromagnetics.
[42] Dimitris J. Panagopoulos,et al. Pulsed electric field increases reproduction , 2016, International journal of radiation biology.
[43] Y. Jimbo,et al. Real-time detection of stimulus response in cultured neurons by high-intensity intermediate-frequency magnetic field exposure. , 2018, Integrative biology : quantitative biosciences from nano to macro.
[44] C. Gómez-Perretta,et al. Low intensity magnetic field influences short‐term memory: A study in a group of healthy students , 2016, Bioelectromagnetics.
[45] H. Tanila,et al. Effects of intermediate frequency magnetic fields on male fertility indicators in mice , 2017, Environmental research.
[46] J. Juutilainen,et al. Effects of low frequency electric fields on the sedimentation rate of human blood. Preliminary observations , 1985, International journal of biometeorology.
[47] E. Save,et al. Oxidative stress and prevention of the adaptive response to chronic iron overload in the brain of young adult rats exposed to a 150 kilohertz electromagnetic field , 2011, Neuroscience.
[48] P. Glover,et al. Exposure to alternating electromagnetic fields and effects on the visual and visuomotor systems. , 2007, The British journal of radiology.
[49] J. Barabas,et al. Modification of S. cerevisiae Growth Dynamics Using Low Frequency Electromagnetic Fields in the 1-2 kHz Range , 2015, BioMed research international.
[50] Vijayalaxmi. Biological and health effects of radiofrequency fields: Good study design and quality publications. , 2016, Mutation research.
[51] A. Zervins. Chick embryo development in a 26-KHz electromagnetic field. , 1973, American Industrial Hygiene Association journal.
[52] S. Nakasono,et al. Intermediate frequency magnetic fields do not have mutagenic, co-mutagenic or gene conversion potentials in microbial genotoxicity tests. , 2008, Mutation research.
[53] Izumi Nishimura,et al. Absence of reproductive and developmental toxicity in rats following exposure to a 20-kHz or 60-kHz magnetic field. , 2012, Regulatory toxicology and pharmacology : RTP.
[54] J Juutilainen. Effects of low-frequency magnetic fields on embryonic development and pregnancy. , 1991, Scandinavian journal of work, environment & health.
[55] M N Zhadin,et al. Influence of combined DC and AC magnetic fields on rat behavior. , 1999, Bioelectromagnetics.
[56] R. Goodman,et al. Sine waves enhance cellular transcription. , 1986, Bioelectromagnetics.
[57] K. Shibuya,et al. Lack of Teratological Effects in Rats Exposed to 20 or 60 kHz Magnetic Fields , 2011, Birth defects research. Part B, Developmental and reproductive toxicology.
[58] D. D. Streeter,et al. Inhibition of growth rate of Escherichia coli induced by extremely low-frequency weak magnetic fields. , 1981, Bioelectromagnetics.
[59] J. Juutilainen,et al. Development of chick embryos in 1 Hz to 100 kHz magnetic fields , 1986, Radiation and environmental biophysics.
[60] Izumi Nishimura,et al. Acute and subchronic toxicity of 20 kHz and 60 kHz magnetic fields in rats , 2016, Journal of applied toxicology : JAT.
[61] M. Vacha,et al. The magnetic orientation of the Antarctic amphipod Gondogeneia antarctica is cancelled by very weak radiofrequency fields , 2016, Journal of Experimental Biology.
[62] J. Juutilainen,et al. Epilepsy and electromagnetic fields: effects of simulated atmospherics and 100-Hz magnetic fields on audiogenic seizure in rats , 1988, International journal of biometeorology.
[63] Laura A. Levit,et al. Finding what works in health care : standards for systematic reviews , 2011 .
[64] K. Guan,et al. INTERFERENTIAL ELECTRIC FIELD TREATMENT REVEALED A LOW INCREASE OF SPONTANEOUS CARDIAC DIFFERENTIATION BUT NO CYCLIC AMP CHANGES NOR INDUCTION OF CARDIAC-SPECIFIC GENE EXPRESSION IN PLURIPOTENT EMBRYONAL CARCINOMA P19 CELLS , 2002 .
[65] D. Moher,et al. Preferred reporting items for systematic reviews and meta-analyses: the PRISMA statement. , 2010, International journal of surgery.
[66] P A Valberg,et al. Designing EMF experiments: what is required to characterize "exposure"? , 1995, Bioelectromagnetics.
[67] R. Lazzara,et al. Magnetism and Cardiac Arrhythmias , 2004, Cardiology in review.
[68] M. Powell,et al. Low-level, magnetic-field-induced growth modification of Bacillus subtilis. , 1987, Bioelectromagnetics.
[69] J. Miyakoshi,et al. Intermediate frequency magnetic fields generated by an induction heating (IH) cooktop do not affect genotoxicities and expression of heat shock proteins , 2009, International journal of radiation biology.
[70] A. Buczyński,et al. The impact of electromagnetic radiation of different parameters on platelet oxygen metabolism - in vitro studies. , 2015, Advances in clinical and experimental medicine : official organ Wroclaw Medical University.
[71] P. Ravazzani,et al. Electromagnetic field exposure assessment in Europe radiofrequency fields (10 MHz–6 GHz) , 2013, Journal of Exposure Science and Environmental Epidemiology.
[72] J T Boys,et al. Evaluation of potential health effects of 10 kHz magnetic fields: a short-term mouse toxicology study. , 1996, Bioelectromagnetics.
[73] M. Cifra,et al. Low frequency electromagnetic field effects on ultra-weak photon emission from yeast cells , 2016, 2016 ELEKTRO.