Yu. A. Kholodov, G. R. Solov'yeva · 1971
This 1971 Soviet research investigated how magnetic fields from solenoids (electromagnetic coils) affect the central nervous system in rodents. The study used EEG monitoring and conditioned reflex testing to measure neurological changes from magnetic field exposure. This represents some of the earliest scientific investigation into how artificial magnetic fields might influence brain function.
Unknown authors · 1970
This 1970 conference brought together researchers studying how electrical fields affect the nervous system, focusing on medical applications like electrosleep and electroanesthesia. The gathering explored bioelectricity and medical instrumentation during an era when scientists were beginning to understand how external electrical fields could influence brain and nerve function. This early work laid groundwork for understanding both therapeutic and potentially harmful effects of electromagnetic fields on human biology.
L. M. Libber · 1970
This 1970 research paper reviewed biological effects of extremely low frequency (ELF) electromagnetic radiation, particularly in relation to Project SANGUINE, the U.S. Navy's proposed submarine communication system. The study examined what was known about ELF radiation's impact on living organisms during early development of this massive military communication network.
Blashy MRM · 1970
This 1970 medical research examined advances in shortwave therapy, a treatment method that uses radiofrequency electromagnetic fields to heat deep tissues for therapeutic purposes. The study focused on diathermy applications, where controlled EMF exposure generates therapeutic heat in muscles, joints, and other tissues. This represents early medical documentation of intentional high-power EMF exposure for healing purposes.
H. W. Ludwig · 1968
This 1968 research by Ludwig proposed a theoretical mechanism for how natural electromagnetic pulses from lightning (called atmospherics) might be absorbed by the human nervous system. The study focused on extremely low frequency (ELF) electromagnetic fields and their potential interaction with neural tissue, particularly at synapses where nerve cells communicate.
Sanford J. Larson, Anthony Sances, Jr. · 1968
This 1968 study by Larson examined how electrical currents affect the nervous system during electroanesthesia, focusing on brain wave activity in visual and auditory regions. The research explored how extremely low frequency electrical fields influence neural transmission and sensory processing. This early work helped establish scientific understanding of how external electrical fields can alter normal brain function.
Herbert L. König · 1965
This 1965 technical report by König examined the environmental effects of very low frequency (VLF) atmospheric electrical processes. The research focused on understanding how natural and artificial VLF electromagnetic fields in the atmosphere might impact the environment. This work represents early scientific investigation into VLF electromagnetic phenomena and their potential biological effects.
R. T. KADO, W. R. ADEY, M.D. · 1965
This 1965 research developed methods for measuring electrical impedance changes in brain tissue, focusing on how electrical properties of neural tissue change during brain activity. The study established foundational techniques for detecting electrical changes in living brain tissue using bridge measurement methods. This early work laid groundwork for understanding how external electromagnetic fields might interact with the brain's electrical systems.
Sazonova, T.Y. · 1964
This 1964 Soviet research examined how high-gradient, low-frequency electromagnetic fields affected the functioning of altered motor structures in laboratory animals. The study focused on measuring working ability or performance changes when motor systems were exposed to specific EMF conditions. This represents early scientific investigation into how electromagnetic fields might influence biological motor function.
Multiple authors including M.E. Hoff et al. · 1963
This 1963 conference paper examined how alternating current and various chemical agents affected electrical potentials across frog skin, a classic model for studying how electromagnetic fields interact with biological membranes. The research investigated how AC current influenced the skin's natural electrical properties alongside oxidizing and reducing chemicals. This early work helped establish fundamental understanding of how electrical fields interact with living tissue barriers.
A. J. KOSMAN, S. L. OSBORNE, A. C. IVY · 1948
This 1948 research studied how different electrical current types and frequencies affect muscle function in dogs, specifically examining whether electrical stimulation could prevent muscle wasting after nerve damage. The study focused on understanding which electrical parameters work best for maintaining muscle health when natural nerve signals are disrupted.
Unknown authors
Researchers exposed aged mouse cells to 50 Hz magnetic fields (the same frequency as power lines) and found the exposure promoted cancer-like changes. However, when they treated the cells with metformin, a diabetes drug, it blocked these harmful effects by reducing inflammation pathways. This suggests power line frequency EMF may be particularly concerning for older adults.
Unknown authors
This research examined how direct current (DC) magnetic fields affected the heart rhythms of laboratory rats and dogs by measuring changes in their electrocardiograms (ECGs). The study specifically looked at alterations in T wave patterns, which reflect the heart's electrical recovery phase between beats. This type of cardiovascular research helps scientists understand how magnetic field exposure might influence heart function in mammals.
Unknown authors
Researchers tested whether 60 Hz electrical fields (the frequency used in North American power systems) affect motor coordination and balance in rats using specialized equipment called a rotorod. The study found measurable differences between rats exposed to these electrical fields and control rats, suggesting that power frequency EMF exposure may impact basic motor functions.
E.V. Prokhvatilo
This study investigated how electromagnetic fields from power lines affect heart function in animals. The research focused on industrial frequency EMF (typically 50-60 Hz) and measured changes in cardiac activity using electrocardiogram monitoring. The findings suggest that exposure to power line frequencies can decrease the heart's functional abilities.
C. J. Chilton
This review examined research on biological radio communication, exploring whether humans and other organisms might naturally transmit or receive electromagnetic signals. The study investigated concepts like telepathy, biocurrents, and electromagnetic field interactions with biological systems. While no specific findings are available, this represents early scientific inquiry into whether living beings use electromagnetic frequencies for communication.
Rutger Wever
This research by Wever examined how electric fields influence human circadian rhythms, the internal biological clock that regulates sleep-wake cycles and other daily functions. The study investigated whether exposure to electric fields can act as a zeitgeber (external time cue) that affects our natural 24-hour biological patterns. This research is significant because it explores how man-made electromagnetic environments might disrupt our fundamental biological timing systems.
Leonard L. Libber, Thomas C. Rozzell
This technical report examined potential biological effects of SANGUINE, the U.S. Navy's extremely low frequency (ELF) communication system used to communicate with submarines worldwide. The study investigated whether the powerful ELF transmissions could impact human health or biological systems. This research was part of early efforts to understand health implications of large-scale military ELF installations.
Unknown authors
This technical report examined occupational exposure to electromagnetic fields among workers near power lines and those using video display terminals (VDTs), focusing on potential links to leukemia and reproductive health effects. The research addressed workplace EMF exposure levels and associated health risks in occupational settings. This type of occupational health research helps establish safety guidelines for workers routinely exposed to EMF sources.
Unknown authors
This technical report examined how 60 Hz electric fields from power lines affect the central nervous system of laboratory rats. The study investigated whether the electrical fields surrounding power transmission equipment could influence brain and nervous system function in animal models. The research contributes to understanding potential neurological effects from power frequency electromagnetic field exposure.
Donald R. King, John W. Hathaways, Donald C. Reynolds
This research examined how pulsed short wave therapy affects healing in tooth sockets (alveolar bone) after tooth extraction in animals. The study investigated whether controlled radiofrequency electromagnetic fields could accelerate wound healing and collagen formation in oral surgery recovery. This adds to evidence that specific EMF exposures may have therapeutic applications for tissue repair.
Bryan Parker, Seymour Furman, Doris J. W. Escher
This research examined how electromagnetic signals in hospital environments might interfere with cardiac pacemaker function. The study focused on input signals reaching pacemaker electrodes and how ventricular electrical activity could be affected by hospital equipment. This work addressed critical safety concerns about EMF interference with life-sustaining medical devices.