3,138 Studies Reviewed. 77.4% Found Biological Effects. The Evidence is Clear.

Personal Device EMF Research

RFELF Magnetic

Research on EMF from devices you carry or wear daily - phones, earbuds, smartwatches, and laptops.

3
Sources
3,372
Studies
2
EMF Types

Related Studies (1,772)

The effect of electromagnetic waves on the growth of Entamoeba histolytica and Entamoeba dispar.

Aksoy U, Sahin S, Ozkoc S, Ergor G. · 2005

Turkish researchers exposed two types of parasites (Entamoeba histolytica and Entamoeba dispar) to 900 MHz electromagnetic radiation from a mobile phone for 24 hours. Both parasite species showed significant decreases in their numbers compared to unexposed control groups, with the electromagnetic field exposure causing cellular damage that led to parasite death. This demonstrates that mobile phone radiation can harm living single-cell organisms at the cellular level.

Cellular EffectsNo Effects Found

An investigation of the effects of TETRA RF fields on intracellular calcium in neurones and cardiac myocytes.

Green AC et al. · 2005

Researchers exposed brain and heart cells to TETRA radio signals (the frequency used by emergency services) to see if it disrupted calcium levels inside the cells. Calcium is crucial for cell function, especially in neurons and heart muscle. The study found no significant changes in calcium activity at any exposure level tested, suggesting TETRA fields don't interfere with this fundamental cellular process.

Study of effects of low level microwave field by method of face masking.

Rodina A, Lass J, Riipulk J, Bachmann T, Hinrikus H · 2005

Researchers exposed 10 volunteers to low-level microwaves (450 MHz at 0.16 mW/cm²) while testing their ability to recognize and order pairs of face photographs. The study found that microwave exposure caused a statistically significant 5% reduction in visual recognition performance compared to sham exposure. This suggests that even weak electromagnetic fields can subtly affect how the brain processes visual information.

Acute effects of pulsed microwaves and 3-nitropropionic acid on neuronal ultrastructure in the rat caudate-putamen.

Seaman RL, Phelix CF. · 2005

Researchers exposed rats to pulsed microwave radiation at cell phone-level intensities and examined brain cell structure under a microscope. High-intensity microwaves (6 W/kg) caused visible damage to brain cell components, while lower-intensity exposure (0.6 W/kg) appeared to have protective effects against a brain toxin. The findings suggest that microwave radiation can alter brain cell structure in complex ways that depend on the exposure intensity.

Influence of (460 MHz) electromagnetic fields on the induced lipid peroxidation in the structures of visual analyzer and hypothalamus in experimental animals

Musaev AV, Ismailova LF, Gadzhiev AM. · 2005

Researchers exposed rats to 460 MHz microwave radiation and measured oxidative stress (cellular damage from unstable molecules) in their brains and visual systems. They found that high-intensity microwaves caused harmful oxidative stress, while low-intensity microwaves actually activated protective antioxidant systems. This suggests that the biological effects of microwave radiation depend heavily on the exposure intensity.

Non-thermal DNA breakage by mobile-phone radiation (1800MHz) in human fibroblasts and in transformed GFSH-R17 rat granulosa cells in vitro.

Diem E, Schwarz C, Adlkofer F, Jahn O, Rudiger H. · 2005

Researchers exposed human cells and rat cells to 1800 MHz mobile phone radiation at levels similar to what phones emit during calls. After 16 hours of exposure, both cell types showed DNA strand breaks (damage to genetic material). The damage occurred at non-thermal levels, meaning it wasn't caused by heating effects, and intermittent exposure patterns caused more damage than continuous exposure.

Individual responsiveness to induction of micronuclei in human lymphocytes after exposure in vitro to 1800-MHz microwave radiation.

Zotti-Martelli L et al. · 2005

Italian researchers exposed blood cells to cell phone radiation (1800 MHz) for three hours. The radiation caused genetic damage that increased with longer exposure and higher power levels. Crucially, people showed dramatically different sensitivity levels, suggesting some individuals may be more vulnerable to EMF effects.

Studying the synergistic damage effects induced by 1.8 GHz radiofrequency field radiation (RFR) with four chemical mutagens on human lymphocyte DNA using comet assay in vitro.

Baohong Wang et al. · 2005

Scientists tested whether cell phone radiation (1.8 GHz) makes DNA more vulnerable to damage from toxic chemicals. While radiation alone caused no harm, it significantly increased genetic damage when combined with two specific chemicals, suggesting phone exposure may amplify other environmental toxins' effects.

Studying the synergistic damage effects induced by 1.8GHz radiofrequency field radiation (RFR) with four chemical mutagens on human lymphocyte DNA using comet assay in vitro.

Baohong Wang et al. · 2005

Researchers exposed human immune cells to 1.8 GHz cell phone radiation (the same frequency used by many mobile phones) for 2-3 hours to see if it damages DNA. While the radiation alone didn't harm DNA, it significantly amplified the damage when cells were also exposed to certain toxic chemicals. This suggests cell phone radiation may make our cells more vulnerable to other environmental toxins.

Low-intensity electromagnetic fields induce human cryptochrome to modulate intracellular reactive oxygen species

Regoli F et al. · 2005

Researchers exposed land snails to 50-Hz magnetic fields (the same frequency used in power lines) for up to two months and measured cellular damage. The magnetic field exposure triggered oxidative stress, causing the snails' cells to produce harmful molecules that damaged DNA and cellular membranes. This study demonstrates that power-line frequency electromagnetic fields can disrupt cellular defenses and cause biological damage in living organisms.

Genetic damage in mobile phone users: some preliminary findings.

Gandhi G, Anita · 2005

Researchers tested 24 mobile phone users' blood cells for genetic damage and found significantly more DNA breaks and chromosomal abnormalities compared to non-users. The study used two different laboratory tests to measure cellular damage in white blood cells from people exposed to mobile phone radiation between 800-2000 MHz. These findings suggest that everyday mobile phone use may cause measurable genetic damage at the cellular level.

Electromagnetic fields affect transcript levels of apoptosis-related genes in embryonic stem cell-derived neural progenitor cells.

Nikolova T et al. · 2005

German researchers exposed developing brain cells to both power line frequencies (50 Hz) and cell phone frequencies (1.71 GHz) for 6 hours to study genetic effects. They found that both types of electromagnetic fields triggered changes in genes that control cell death and DNA damage responses, though the cells themselves appeared to function normally afterward. This suggests that EMF exposure can activate cellular stress responses even when no obvious harm is visible.

DNA & Genetic DamageNo Effects Found

Genotoxicity evaluation of electromagnetic fields generated by 835-MHz mobile phone frequency band.

Chang SK et al. · 2005

Researchers exposed bacterial cells to 835-MHz mobile phone radiation at high intensity (4 W/kg SAR) for 48 hours to test whether it causes DNA damage or genetic mutations. The study found no evidence that this radiofrequency radiation caused DNA breakdown or increased mutation rates in the bacterial test systems. This suggests that mobile phone frequencies may not directly damage genetic material under these laboratory conditions.

Magnetic-field-induced DNA strand breaks in brain cells of the rat.

Lai H, Singh NP · 2004

Researchers exposed rats to extremely low-frequency magnetic fields (the type from power lines) at levels commonly found in homes and workplaces. After 24-48 hours of exposure, they found significant DNA damage in brain cells, with longer exposure causing more damage. The study suggests this damage occurs through iron-mediated free radical formation, potentially leading to brain cell death.

Ginkgo biloba prevents mobile phone-induced oxidative stress in rat brain.

Ilhan A et al. · 2004

Turkish researchers exposed rats to 900 MHz mobile phone radiation for one hour daily over seven days and found significant oxidative stress damage in brain tissue. The damage included increased harmful molecules and decreased protective antioxidant enzymes. However, when rats were pre-treated with Ginkgo biloba extract, this brain damage was completely prevented, suggesting that antioxidants may protect against EMF-induced cellular harm.

Acute exposure to GSM 900-MHz electromagnetic fields induces glial reactivity and biochemical modifications in the rat brain

Mausset-Bonnefont AL et al. · 2004

French researchers exposed rats to cell phone radiation (900 MHz GSM) for just 15 minutes and found immediate brain damage. The exposure triggered a strong inflammatory response from brain support cells (glial reaction) and disrupted key brain chemical systems involved in movement, memory, and mood. Despite these cellular changes, the rats showed no obvious behavioral problems in the short term.

High frequency electromagnetic fields (GSM signals) affect gene expression levels in tumor suppressor p53-deficient embryonic stem cells.

Czyz J et al. · 2004

Researchers exposed embryonic stem cells to cell phone radiation at 1.71 GHz (similar to GSM signals) and found that cells lacking the tumor suppressor gene p53 showed increased stress responses, including elevated heat shock proteins. Normal cells with functioning p53 showed no such effects. This suggests that genetic background determines how vulnerable cells are to radiofrequency radiation damage.

Oxidative Stress135 citations

Acute exposure to 930 MHz CW electromagnetic radiation in vitro affects reactive oxygen species level in rat lymphocytes treated by iron ions.

Zmyslony M, Politanski P, Rajkowska E, Szymczak W, Jajte J. · 2004

Polish researchers exposed rat immune cells (lymphocytes) to 930 MHz radiation at levels similar to cell phone emissions for 5-15 minutes. While the radiation alone didn't increase harmful free radicals, it significantly amplified free radical production when cells were already under oxidative stress from iron exposure. This suggests cell phone radiation may worsen cellular damage when your immune system is already compromised.

Radio Frequency126 citations

Output power levels from mobile phones in different geographical areas; implications for exposure assessment.

Lonn S, Forssen U, Vecchia P, Ahlbom A, Feychting M. · 2004

Swedish researchers analyzed mobile phone power output data from over one million calls across rural and urban areas to understand how location affects radiation exposure. They found that phones in rural areas operate at maximum power 50% of the time compared to only 25% in cities, while using minimum power just 3% of the time versus 22% in urban areas. This means people living in rural areas receive significantly higher radiofrequency radiation exposure from their mobile phones due to greater distances between cell towers.

Reproductive Health126 citations

Effect of gsm 900-mhz mobile phone radiation on the reproductive capacity of drosophila melanogaster.

Panagopoulos DJ, Karabarbounis A, Margaritis LH · 2004

Researchers exposed fruit flies to GSM mobile phone radiation at 900 MHz for just 6 minutes daily during their early adult lives. They found that phone radiation dramatically reduced the flies' ability to reproduce - by 50-60% when the phone was actively transmitting voice calls, and by 15-20% even when just connected but not in use. This suggests that the radiofrequency fields from cell phones can interfere with the cellular processes needed for healthy reproductive organ development.

Brain & Nervous SystemNo Effects Found118 citations

Effects of electromagnetic field emitted by cellular phones on the EEG during an auditory memory task: a double blind replication study.

Krause CM et al. · 2004

Researchers exposed 24 people to cell phone radiation (902 MHz) while they performed memory tests and measured their brain waves. Unlike their previous study which found brain wave changes, this double-blind replication study found no consistent effects on brain activity, though it did find more memory errors during EMF exposure. The inconsistent results highlight how difficult it can be to replicate EMF research findings.

FAQs: EMF in Personal Devices & Wearables

The personal devices & wearables environment contains several common sources of electromagnetic field exposure including cell phones, laptops, bluetooth devices. Together, these 3 sources account for 3,372 peer-reviewed studies in the BioInitiative Report database examining their potential health effects.
There are 3,372 peer-reviewed studies in our database examining EMF sources commonly found in personal devices & wearables environments. These studies cover 3 different EMF sources: Cell Phones (1,326 studies), Laptops (1,772 studies), Bluetooth Devices (274 studies). The research includes both laboratory experiments and epidemiological studies from scientists worldwide.
Laptops has the most research with 1,772 studies, followed by Cell Phones (1,326) and Bluetooth Devices (274). This research examines various biological endpoints including cellular effects, neurological impacts, and other health outcomes from EMF exposure in personal devices & wearables settings.