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Effect of exogenous frequency exposure on human cells
R Ja Podchernyaeva1, O A Lopatina, G R Mikhailova
1D. I. Ivanovsky Institute of Virology, Russian Academy of Medical Sciences, Moscow, Russia.
Bulletin of Experimental Biology and Medicine
|January 16, 2009
Summary
Exogenous bioresonance oscillations negatively impacted human lung and liver cells, reducing viability and causing disorders. However, specific frequencies showed potential in suppressing mycoplasma contamination in cell cultures.
Area of Science:
- Cell biology
- Biophysics
- Medical technology
Background:
- Cell cultures are vital for biological research.
- Understanding the effects of electromagnetic fields on cells is crucial.
- Mycoplasma contamination poses a significant challenge in cell culture.
Purpose of the Study:
- To investigate the impact of bioresonance oscillations on human lung and liver cells.
- To assess the effects of specific frequencies on cell viability and morphology.
- To explore the potential of bioresonance for mycoplasma suppression.
Main Methods:
- Continuous human lung and liver cell lines were utilized.
- Cells were exposed to exogenous bioresonance oscillations at various frequencies (8, 72, 78.5 Hz).
- Cell proliferation, viability, and morphological changes were analyzed. Mycoplasma contamination was assessed after exposure to F44, F45 programs, and specific frequencies (97.5, 69.5 Hz).
Main Results:
- Frequencies of 8 and 78.5 Hz led to decreased cell proliferation and viability.
- Cytopathic disorders were observed in lung and liver cells following exposure to 8 and 78.5 Hz.
- The frequency of 72 Hz demonstrated a less pronounced effect on both cell types.
- Provisional suppression of mycoplasma contamination was noted with F44, F45 programs, and frequencies of 97.5 and 69.5 Hz.
Conclusions:
- Specific bioresonance frequencies can adversely affect human cell viability and morphology.
- The frequency of 72 Hz appears to have a milder impact.
- Certain bioresonance frequencies and programs show promise in controlling mycoplasma contamination in cell cultures.

