Facts, figures and data
Kleinsche Fields in research
Making the many subjective experiences of users explainable through objective studies — that is the goal of Kleinsche Fields research. For more than 30 years, doctors, therapists, and individual users have trusted in the effects of natural magnetic fields. But what exactly lies behind the success story of Kleinsche Fields technology?
Today, it is more important than ever to take a closer look in order to identify as many mechanisms as possible that contribute to these effects. Although research into permanent magnetic fields is extensive, much remains unclear. This is where Klein’s Fields research makes its contribution, offering valuable insights into the enormous potential of natural magnetic fields for maintaining the health of our cells — and our bodies.
Pilot Study
Increased cell energy
- Increased ATP production (cell energy) by Ø 29.4 %.
- Significant decrease in mitochondrial mutations (delta4977).
- Increased PGC-1-alpha expression Ø by 81-fold (new mitochondrial formation).
- Significantly increased stress resistance of the mitochondria.
- Improved mtDNA:ntDNA ratio Ø by a factor of 9 (increase in the number of mitochondria).
- Increase in mitochondrial mass Ø by a factor of 8.
The pilot study shows that Kleinsche Fields:
- Can increase the number of mitochondria while simultaneously reducing mitochondrial mutations.
- Can regenerate and reorganise mitochondria, making them more resistant to stress.
- Can significantly boost mitochondrial energy production (ATP).
- Can improve the energy supply to the cells.
- Can activate and regulate cell metabolism.
- Can have a positive influence on overall health, the body’s regenerative capacity, and a wide range of illnesses.
Follow-up study
More cell energy, more cell activity
- Improvement of the BHI (Bioenergetic Health Index).
- Increased mitochondrial ATP production (cell energy) by a factor of 1.6.
- Increased mitochondrial maximum respiration by 3.3 times.
- Increased reserve respiratory capacity by a factor of 5.5.
The follow-up study shows that Kleinsche Fields:
- can increase the activity of mitochondria, particularly improving the power reserves, providing the cells with more energy when needed.
- can improve the metabolic potential of human immune cells.
- can increase and regulate cell activity.
- can have a positive influence on overall health, the body's regenerative capacity, and numerous illnesses.
It could be shown as proof-of-principle that the Kleinsche Fields magnetic strips improve mitochondrial functions and optimise mitochondrial biogenesis.
In vitro preliminary study
More cell energy, higher stress resistance
- Improvement of the bioenergetics of mitochondria.
- Increased mitochondrial ATP production (cell energy).
- Increase in mitochondrial enzyme activity.
- Increase in mitochondrial mass.
- Stabilisation of the mitochondrial membrane potential.
- Increased PGC-1-alpha activity (new formation).
The preliminary study shows that Kleinsche Fields:
- mitochondria more resistant to stressors.
- can increase energy production in the mitochondria.
- can increase the mitochondrial mass.
- can make mitochondria more efficient.
- can reduce the "basic stress" of the cells and thus enable better regulation of the mitochondria.
In vitro preliminary study
More Cell Energy, Higher Stress Resistance
- Improvement of the bioenergetics of mitochondria.
- Increased mitochondrial ATP production (cell energy).
- Increase in mitochondrial enzyme activity.
- Increase in mitochondrial mass.
- Stabilisation of the mitochondrial membrane potential.
The preliminary study shows that Kleinsche Fields:
- mitochondria more resistant to stressors.
- can increase energy production in the mitochondria.
- can increase the mitochondrial mass.
- can make mitochondria more efficient.
- can reduce the "basic stress" of the cells and thus enable better regulation of the mitochondria.
Regular use of the sleeping pad with Kleinsche Fields magnetic field technology has significantly improved the overall situation of users in many areas.
Application monitoring
Better blood properties
- Signs of inflammation reduced by Ø 48.86 %.
- Build-up of red blood cells improved by Ø 57.89 %.
- Platelet aggregation improved by Ø 50 %.
- Uric acid reduced by Ø 30.77 %.
- Membrane stability improved by Ø 44 %.
- Oxidative stress reduced by Ø 14.29 %.
The application observation indicates that Kleinsche Fields:
- can reduce signs of inflammation.
- can improve oxygen transport in the blood.
- can improve blood circulation and reduce the tendency of the blood to clot.
- can be used as an accompanying therapy for numerous illnesses, e.g. microcirculatory disorders, chronic inflammation, metabolic disorders, chronic pain, sleep disorders and energy deficiency states.
- can make a major contribution to maintaining health and vitality
Measurement Series
Increase in Brain Activity
- Clear electrical signal activity has been detected in capillaries where blood is flowing.
- Microvoltages are generated directly within the capillaries through which blood circulates.
- The signalling activity observed is comparable to the body’s natural bioelectrical processes.
This series of experiments provides compelling evidence that Kleinsche Fields can influence the body's vital biophysical systems. In particular, the results suggest that Kleinsche Fields:
- can contribute to the normalisation of the bioelectric cell environment.
- can support the stimulation of energy production in the body's cells
- can contribute to changing the metabolic situation of the body's cells.
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