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In vivo modulation of ETS genes induced by electromagnetic fields.

We have previously shown that electromagnetic field (EMF) exposure induces ETS1 oncogene overexpression in different cell lines. In order to investigate in vivo EMF effects, BALB/c mice were exposed at different times to 50 MHz radiation, modulated (80%) at 16 Hz. The exposed and control animals were sacrificed and the spleen excised for rt-pcr and western blot analysis. We observed an increase in ETS1 mRNA and protein expression, but a decrease in ETS2 protein levels. Preliminary results from this experimental model show in vivo evidence of the effect of EMF on ETS oncogene expression.

Animals↗

Treatment of migraine with pulsing electromagnetic fields: a double-blind, placebo-controlled study.

The effect of exposure to pulsing electromagnetic fields on migraine activity was evaluated by having 42 subjects (34 women and 8 men), who met the International Headache Society's criteria for migraine, participate in a double-blind, placebo-controlled study. Each subject kept a 1-month, pretreatment, baseline log of headache activity prior to being randomized to having either actual or placebo pulsing electromagnetic fields applied to their inner thighs for 1 hour per day, 5 days per week, for 2 weeks. After exposure, all subjects kept the log for at least 1 follow-up month. During the first month of follow-up, 73% of those receiving actual exposure reported decreased headaches (45% good decrease, 14% excellent decrease) compared to half of those receiving the placebo (15% worse, 20% good, 0% excellent). Ten of the 22 subjects who had actual exposure received 2 additional weeks of actual exposure after their initial 1-month follow-up. All showed decreased headache activity (50% good, 38% excellent). Thirteen subjects from the actual exposure group elected not to receive additional exposure. Twelve of them showed decreased headache activity by the second month (29% good, 43% excellent). Eight of the subjects in the placebo group elected to receive 2 weeks of actual exposure after the initial 1-month follow-up with 75% showing decreased headache activity (38% good, 38% excellent). In conclusion, exposure of the inner thighs to pulsing electromagnetic fields for at least 3 weeks is an effective, short-term intervention for migraine, but not tension headaches.

Adult↗

[Kinetic parameters of androgen receptor complexes and the activities of the glycolysis and oxidative pentose phosphate pathway key enzymes in rat testis cytosol after whole body 60-min exposure to high frequency electromagnetic field (39.5 Ghz)].

The effect of electromagnetic field of millimeter range on biochemical indices of testicles of totally exposed rats at various periods of observation (day 1, 10, 30, 90) was studied. The following functional shifts were revealed: the 6-phosphogluconate dehydrogenase activities enforced approximately up to 130% on 30th day in comparison with the controls, but in three months (90th day) the activity returned to normal values: glucose-6-phosphate dehydrogenase an puruvate kinase did not show obvious changes of activities. On the contrary, there were surprising differences in behavior of androgen-receptor system: the number of androgen-receptor sites in cytosol was increased significantly on 1st day after exposure (114%); on 10th day concentration of RA was quite oppositely 1.68-fold reduced in relation to the control; through 1-month after exposure the rising of [RA] (123%) was registered; however, to 3-month term the significant fall (1.42 times) of the RA contents in testicular cytosol persisted.

Animals↗

Electromagnetic fields in offices.

With the increased use of electric and electronic equipment in our offices, our daily exposure to electromagnetic fields has become increasingly complex due to the great variety of the frequency content of the fields. Today focus has shifted from monitors as the dominating sources of electromagnetic fields to other electronic equipment, cabling, nearby substations, power lines and stray currents in buildings. In the last 5 years wireless communication has become common in our offices. These devices use radio frequency waves to communicate and are therefore sources of radio frequency fields in our offices. To a certain degree, they all add to the complicated issue of the extensive field frequencies found in offices. The exposure of office workers is generally considered to be low and not in conflict with the existing guidelines, but if a precaution approach is applied there are a number of measures that can be taken to reduce the electromagnetic fields in offices in order to obtain a good electrical environment.

Computer Communication Networks↗

Induction of cAMP-dependent protein kinase A activity in human skin fibroblasts and rat osteoblasts by extremely low-frequency electromagnetic fields.

Sinusoidal extremely low-frequency electromagnetic fields (ELF-EMF; 7-8 mT, 20 Hz) have already been shown to inhibit proliferation and to accelerate terminal differentiation of human skin fibroblasts in vitro. In order to elucidate the underlying processes of signal transduction, we analysed the activity of cAMP-dependent protein kinase (PKA). EMF exposure for 60 min resulted in an increased PKA activity in human skin fibroblasts (2-fold) and rat embryonic osteoblasts (1.7-fold). Long-term exposure for up to 7 days with a constant 1 h-on/1 h-off EMF exposure rhythm indicated a transient stimulation of PKA activity during the first two exposure rhythms followed by a decrease to the baseline levels of sham-exposed controls. Based on these results, we postulate that a modulation of proliferation and differentiation processes in cells of mesenchymal origin is triggered by an immediate and transient EMF-induced increase in PKA activity.

Animals↗

Light and electron microscopic study of the thyroid gland in rats exposed to power-frequency electromagnetic fields.

The effect of 50 Hz electromagnetic field (EMF) on thyroid gland was studied using light and transmission electron microscopes. Two-month-old male rats were exposed to an EMF (100-300 microT, 54-160 V m(-1)) for 4 h a day, 5 days a week for 1 month. A predominance of microfollicles with less colloid content and dilated blood capillaries was found in the EMF group. Stereological counting showed a statistically significant increase of the volume density of follicular epithelium, interfollicular tissue and blood capillaries as well as the thyroid activation index, as compared to the controls. The volume density of colloid significantly decreased. Ultrastructural analysis of thyroid follicular cells in the EMF group revealed the frequent finding of several colloid droplets within the same thyrocyte with the occasional presence of large-diameter droplets. Alterations in lysosomes, granular endoplasmic reticulum and cell nuclei compared to the control group were also observed. Taken together, the results of this study show the stimulative effect of power-frequency EMF on thyroid gland at both the light microscope and the ultrastructural level.

Animals↗

Treatment of ununited tibial fractures: a comparison of surgery and pulsed electromagnetic fields (PEMF).

The use of pulsed electromagnetic fields (PEMF) is gaining acceptance for the treatment of ununited fractures. The results of 44 articles published in the English language literature have been compiled to assess the effectiveness of PEMF vs surgical therapy. For ununited tibial fractures, 81% of reported cases healed with PEMF vs 82% with surgery. After multiple failed surgeries, the success rate of PEMF is reported to be greater than with surgery; this discrepancy increases with additional numbers of prior surgeries. In infected nonunions, the results of surgical treatment decreased by 21% and were less than the results utilizing PEMF (69% vs 81%). In open fractures, surgical healing exceeded PEMF (89% vs 78%), whereas in closed injuries PEMF cases healed more frequently (85% vs 79%). In general, PEMF treatment of ununited fractures has proved to be more successful than noninvasive traditional management and at least as effective as surgical therapies. Given the costs and potential dangers of surgery, PEMF should be considered an effective alternative. Experience supports its role as a successful method of treatment for ununited fractures of the tibia.

Electromagnetic Fields↗

Mutagenicity and toxicity of electromagnetic fields.

Humans are exposed daily to electromagnetic fields (EMFs) originating from a variety of devices and systems. During the 1980s many reports of potential mutagenic, teratogenic, and carcinogenic effects of EMFs were published, sometimes with contrasting results. To date, no study has established unequivocally a causal relationship between EMFs and cancer. Cell cultures can provide a simple and inexpensive tool for the study of the effects of EMFs. We have used the Chinese hamster V79 cell line to evaluate the influence of a sinusoidal EMF at 50-Hz with a constant flow of 2 G on the induction of HGPRT- mutants and on survival. Our results showed that the EMF employed did not induce any modification of mutation frequency, but the results on survival were contrasting. When only 10(2) cells were plated, a reduction in the number of colonies, reaching about 50% after 10 days of treatment, was observed; however, when 2 x 10(5) cells or more were seeded, no reduction in viability was recorded. An intercellular metabolic interaction may explain these results.

Animals↗

[Environmental exposure to electromagnetic fields and the risk of cancer].

Electromagnetic fields (EMFs) of power-line frequency are very common in the human environment. Electric tractions and transmission lines of high voltage are their major sources, however, household appliances are also involved in generating EMFs. Although their biological effect has not as yet been well documented, they evoke an increasing concern as being suspected of their carcinogenic effect. This concern arises mainly from epidemiological studies, which indicate an increased risk for leukemia in children living in the vicinity of transmission lines of high voltage. The author presents a review of epidemiological and experimental studies on a possible effect of power-line frequency EMFs on the development of neoplastic diseases. Epidemiological data obtained to date shows that power-line frequency EMFs do not induce cancer risk and if this is the case the risk is marginal (relevant risk of 1-4 order). Nevertheless, this risk seems to be more evident in occupational than in environmental exposure. The results of experimental studies carried out on animals disclose a possible effect of EMFs as a factor contributing to the development of cancer induced by a known carcinogen. In order to answer the question put in the title it is necessary to continue a large scale investigations especially experimental ones.

Electromagnetic Fields↗

Does head-only exposure to GSM-900 electromagnetic fields affect the performance of rats in spatial learning tasks?

The rapid expansion of mobile communication has generated intense interest, but has also fuelled ongoing concerns. In both humans and animals, radiofrequency radiations are suspected to affect cognitive functions. More specifically, several studies performed in rodents have suggested that spatial learning can be impaired by electromagnetic field exposure. However, none of these previous studies have simulated the common conditions of GSM mobile phones use. This study is the first using a head-only exposure system emitting a 900-MHz GSM electromagnetic field (pulsed at 217 Hz). The two behavioural tasks that were evaluated here have been used previously to demonstrate performance deficits in spatial learning after electromagnetic field exposure: a classical radial maze elimination task and a spatial navigation task in an open-field arena (dry-land version of the Morris water maze). The performances of rats exposed for 45 min to a 900-MHz electromagnetic field (1 and 3.5 W/kg) were compared to those of sham-exposed and cage-control rats. There were no differences among exposed, sham, and cage-control rats in the two spatial learning tasks. The discussion focuses on the potential reasons that led previous studies to conclude that learning deficits do occur after electromagnetic field exposure.

Animals↗

Biological and morphological effects on the reproductive organ of rats after exposure to electromagnetic field.

OBJECTIVE: The biological effect of electromagnetic field (EMF) emitted from mobile phones is a current debate and still a controversial issue. Therefore, little is known on the possible adverse effects on reproduction as mobile phone bio-effects are only a very recent concern. The aim of this experimental study was to determine the biological and morphological effects of 900 MHz radiofrequency (RF) EMF on rat testes. METHODS: The study was performed in the Physiology and Histology Research Laboratories of Süleyman Demirel University, Faculty of Medicine, Isparta, Turkey in May 2004. Twenty adult male Sprague-Dawley rats weighing 270-320 gm were randomized into 2 groups of 10 animals: Group I (control group) was not exposed to EMF and Group II (EMF group) was exposed to 30 minutes per day, 5 days a week for 4 weeks to 900 MHz EMF. Testes tissues were submitted for histologic and morphologic examination. Testicular biopsy score count and the percentage of interstitial tissue to the entire testicular tissue were registered. Serum testosterone, plasma luteinizing hormone (LH) and follicle stimulating hormone (FSH) levels were assayed biochemically. RESULTS: The weight of testes, testicular biopsy score count and the percentage of interstitial tissue to the entire testicular tissue were not significantly different in EMF group compared to the control group. However, the diameter of the seminiferous tubules and the mean height of the germinal epithelium were significantly decreased in EMF group (p<0.05). There was a significant decrease in serum total testosterone level in EMF group (p<0.05). Therefore, there was an insignificant decrease in plasma LH and FSH levels in EMF group compared to the control group (p>0.05). CONCLUSION: The biological and morphological effects resulting from 900 MHz RF EMF exposure lends no support to suggestions of adverse effect on spermatogenesis, and on germinal epithelium. Therefore, testicular morphologic alterations may possibly be due to hormonal changes.

Animals↗

[Health protection of workers occupationally exposed to effects of electromagnetic fields in Poland and in the European Union member states].

Electromagnetic fields, one of potentially harmful physical agents present in the work environment in Poland, are under a constant surveillance regulated by the law. Among others, the surveillance involves periodical measurements of electromagnetic field (EMF) intensities in the work environment and medical prophylactic examination of workers at the employers' expense. The introduction of new MAC values imposes extra responsibilities on occupational health services, resulting from the need to verify the number of workers exposed to EMF at frequency bands corresponding with protection zones, and the need to set an appropriate range of prophylactic examinations, taking account of the current body of knowledge of biological effects of EMF and their hazards to workers' health. The suggestions how to change the range and frequency of medical prophylactic examinations are presented. The differences in occupational health care between Poland and the European Union members states, as well as changes in legal regulations on occupational diseases are discussed.

Electromagnetic Fields↗

[Effect of power-frequency electromagnetic fields on stroke during rehabilitation].

OBJECTIVE: To explore the effects and mechanism of power-frequency electromagnetic fields on lipoprotein metabolism and homodynamic during stroke rehabilitation. METHODS: One hundred fifteen patients with stroke were divided into 2 groups, 55 cases of them were treated by exposure to power-frequency electromagnetic fields, 60 cases were treated as control group. Barthel index and Functional Independence Measure (FIM) were used to evaluate rehabilitation outcome. The lipoprotein and its subclasses, homodynamic parameters were compared at pre- and post-rehabilitation. RESULTS: The treatment group showed a statistically significant better prognosis compared with the control group(P<0.01). The score of Barthel index also increased after treatment(P<0.001). Total cholesterol(Tc), triglycerides(TG), low-density lipoprotein cholesterol(LDL-c) levels dropped and high-density lipoprotein cholesterol(HDL-c) increased significantly. The Tc/HDL-c, LDL-c/HDL-c ratio along with the blood and plasma viscosity decreased significantly compared with the controls (P<0.01). The ratio of stroke recurrence decreased significantly after the treatment compared with the control group (P<0.05). CONCLUSION: The power-frequency electromagnetic fields can improve lipoprotein metabolism and homodynamic parameters. It can improve the ADL and FIM of stroke patients, which may have significant implications for stroke patients.

Aged↗

[The health risks of exposure to electromagnetic fields in work environments].

In the last few years the debate on possible health risks of electromagnetic fields has focused on specific sources, namely power lines and, more recently, base stations for cellular telephones. This has drastically diverted the attention of the research and prevention community towards residential exposures. On the other hand, the increasing number of technological process exploiting or generating electromagnetic fields requires greater attention to exposures at the workplace. The scope of research in this area is vast because of different emission characteristics of the sources, different interaction mechanisms at various frequencies, and different effects that have been identified or hypothesized. The paper presents an overview of health problems involved in exposure to electromagnetic fields at the workplace. Different frequency ranges and related sources are considered separately. In particular, the different levels of knowledge are noted and areas requiring further research are identified.

Electromagnetic Fields↗

Electromagnetic fields and health outcomes.

Over the past two decades, there has been increasing interest in the biological effects and possible health outcomes of weak, low-frequency electric and magnetic fields. Epidemiological studies on magnetic fields and cancer, reproduction and neurobehavioural reactions have been presented. More recently, neurological, degenerative and heart diseases have also been reported to be related to such electromagnetic fields. Furthermore, the increased use of mobile phones worldwide has focussed interest on the possible effects of radiofrequency fields of higher frequencies. In this paper, a summary is given on electromagnetic fields and health outcomes and what policy is appropriate--"no restriction to exposure", "prudent avoidance" or "expensive interventions"? The results of research studies have not been unambiguous; studies indicating these fields as being a health hazard have been published and so were studies indicating no risk at all. In "positive" studies, different types of effects have been reported despite the use of the same study design, e.g., in epidemiological cancer studies. There are uncertainties as to exposure characteristics, e.g., magnetic field frequency and exposure intermittence, and not much is known about possible confounding or effect-modifying factors. The few animal cancer studies reported have not given much help in risk assessment; and in spite of a large number of experimental cell studies, no plausible and understandable mechanisms have been presented by which a carcinogenic effect could be explained. Exposure to electromagnetic fields occurs everywhere: in the home, at work, in school, etc. Wherever there are electric wires, electric motors and electronic equipment, electromagnetic fields are created. This is one of the reasons why exposure assessment is difficult. For epidemiologists, the problems is not on the effect side as registers of diseases exist in many countries today. The problem is that epidemiologists do not know the relevant exposure characteristics to be used in their studies. In international guidelines, limits for restrictions of field exposure are several orders of magnitude above what can be measured from overhead power lines and found in "electrical" occupations. These guidelines emphasize that the state of scientific knowledge today does not warrant limiting exposure levels for the public and the work force, and that further data are required to confirm whether health hazards are present. In some countries, however, the "principle of caution" or "prudent avoidance" has been adopted; meaning the low-cost avoidance of unnecessary exposure as long as there is scientific uncertainty about its health effects.

Cardiovascular Diseases↗

Effects of extremely low frequency electromagnetic fields on hematologic and immunologic parameters in welders.

BACKGROUND: Electric arc welding is known to cause considerable exposure to extremely low frequency magnetic fields. Although some studies of exposure to magnetic fields and epidemiologic studies have included groups of welders, typically little information is available concerning the hematologic and immunologic effects of ELF electromagnetic fields on welders. Therefore, the aim of the present study is to investigate whether or not extremely low frequency electromagnetic fields (ELF EMF) emitted from electric arc welding affect some hematologic and immunologic parameters of welders. METHODS: The study was carried out on 16 male welders and 14 healthy males between 20 and 40 years of age from the same geographic area and with similar life styles. The following hematologic and immunologic parameters were measured in both groups: red blood cells (RBC); hemoglobin (Hgb); hematocrit (Hct); platelets (Plt); total white blood cells (WBC); neutrophils; lymphocytes; eosinophils; and CD3, CD4, CD8, and CD4/CD8. RESULTS: Some of the hematologic and immunologic parameters under investigation were similar in both groups. Although T lymphocyte surface antigens, such as levels of CD4 and CD8(,) were found to be lower in the welders than in the control subjects (p <0.001, p <0.05), the hematocrit levels of the welders were found to be higher than those of the control subjects (p <0.05). However, the differences observed were not clinically significant. ELF electromagnetic field intensities in the welding areas varied between 0.10 and 0.25 mT. CONCLUSIONS: These results suggest that ELF electromagnetic fields do not affect the hematologic and immunologic parameters of welders.

Adult↗

[Biotropic effects of electromagnetic fields: benefit or harm?].

An overview contains the analysis of controversial literary data on possible therapeutic and pathogenic effects of electromagnetic fields on humans. The non-specific character of body shifts induced by electromagnetic fields with a prevalence of adaptive reactions at the onset and an emergence of dysadaptive processes during extremely long exposure was displayed. The leading role in the development of a therapeutic or pathogenic effect is played by the functional characteristics of an individual postulating the interaction of cumulative and adaptive processes in the body during long-term exposure in an electromagnetic field.

Adaptation, Physiological↗

[Is CNS activity modified by pulsed electromagnetic fields?].

In the present pilot study we examined the effects of electromagnetic fields on the biological organism. The study was prompted by discussions on the possible effects on the nervous system and cognitive processes of fields produced by mobile phones. The experiments were performed in an electrophysiological laboratory. Eleven volunteers were exposed to pulsed electromagnetic fields (GSM standard). The psychophysiological method of assessing the order threshold (Ordnungsschwelle = OS) was used to examine cognitive performance. Under the test conditions, nine of the subjects showed a loss of mental regeneration, as reflected by an increase in the OS, in comparison with the field-free situation. The results of our experiments suggest an influence of pulsed fields on the cognitive regeneration process.

Adult↗