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Items Found: 21
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Your Search: (AUTHOR=Blackman AND C. AND F.)
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Action of 50 Hz Magnetic Fields on Neurite Outgrowth in Pheochromocytoma Cells.
Biological Influences of Low-Frequency Sinusoidal Electromagnetic Signals Alone and Superimposed on RF Carrier Waves.
Calcium Ion Efflux Induction in Brain Tissue by Radio-Frequency Radiation.
Calcium-Ion Efflux from Brain Tissue: Power-Density Versus Internal Field-Intensity Dependencies at 50-MHz RF Radiation.
Cellular Effects in Microbial Tester Strains Caused by Exposure to Microwaves or Elevated Temperatures.
Characteristics of Transverse Electric and Magnetic Field Transmission Cells at Extremely Low Frequencies.
Dose Dependence of Acetylcholinesterase Activity in Neuroblastoma Cells Exposed to Modulated Radio-Frequency Electromagnetic Radiation.
Effect of Ambient Levels of Power-Line-Frequency Electric Fields on a Developing Vertebrate (Journal Version).
Effects of ELF (Extremely Low Frequency) (1-120 Hz) and Modulated (50 Hz) RF (Radio Frequency) Fields on the Efflux of Calcium Ions from Brain Tissue In vitro.
Evidence for Direct Effect of Magnetic Fields on Neurite Outgrowth.
Importance of Alignment between Local DC Magnetic Field and an Oscillating Magnetic Field in Responses of Brain Tissue In vitro and In vivo.
Increase in Glial Fibrillary Acidic Protein Follows Brain Hyperthermia in Rats.
Influence of Temperature during Electric- and Magnetic-Field-Induced Alteration of Calcium-Ion Release from In vitro Brain Tissue.
Method for Calculating Electric and Magnetic Fields in TEM Cells at ELF (Journal Version).
Multiple Power-Density Windows and Their Possible Origin.
Quantitative Structure-Toxicity Relationships for a Series of Primary Alcohols in a Mammalian Viral Host Cell Reactivation Assay.
Radiofrequency Radiation-Induced Calcium Ion Efflux Enhancement from Human and Other Neuroblastoma Cells in Culture (Journal Article).
Radiofrequency Radiation-Induced Calcium-Ion-Efflux Enhancement from Human and Other Neuroblastoma Cells in Culture: (Final Technical Report).
Role for the Magnetic Field in the Radiation-Induced Efflux of Calcium Ions from Brain Tissue 'In vitro'.
Role of Sample Temperature in the Field-Induced Alteration of Calcium Release from Brain Tissue, In vitro.
Scheme for Incorporating DC Magnetic Fields into Epidemiological Studies of EMF Exposure.
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