Wellness Device Using Interference Frequencies for Neurostimulation
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Solution Overview
Problem
Current electrostimulation methods for treating pain and psycho-emotional disorders are not fully effective in activating serotonergic and beta-endorphinergic structures in the brain, leading to incomplete normalization of neurohumoral homeostasis and potential side effects.
Innovation Solution
A wellness device employing interference frequencies between bipolar pulses and a carrier frequency, specifically using frequencies of 68-88 Hz and 300-500 kHz, applied via multiple electrode pairs to create interference patterns that enhance serotonin and beta-endorphin production in deep brain structures.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional electrostimulation methods are used to treat pain and psycho-emotional disorders, then some therapeutic benefit is achieved, but the activation of serotonergic and beta-endorphinergic structures in the brain is incomplete, leading to side effects
Solution Approach 1:
The device employs dynamic interference frequencies that are not fixed but vary to optimize brain structure activation. The system uses multiple electrode pairs with adjustable frequencies that interfere to create beat frequencies specifically targeting serotonergic and beta-endorphinergic structures, making the stimulation adaptive rather than static
Solution Approach 2:
The invention changes the key parameter of stimulation frequency from traditional fixed frequencies to interference frequencies created by the interaction of multiple frequencies. By adjusting the frequencies of individual electrode pairs, the system generates specific beat frequencies (e.g., 40 Hz, 80 Hz) that selectively activate target brain structures, thereby improving therapeutic effectiveness while reducing side effects
2Length of stationary object
If higher frequency electrical pulses are applied to penetrate deep brain structures, then better stimulation of deep brain areas is achieved, but the selectivity and precision of activation decreases
Solution Approach 1:
The device divides the stimulation into multiple independent electrode pairs, each operating at its own frequency. This segmentation allows the system to create multiple interference patterns simultaneously, with each pattern targeting specific deep brain structures. The segmentation of frequencies (e.g., 60 Hz, 100 Hz, 140 Hz) enables precise control over which brain areas are activated
Solution Approach 2:
The interference pattern created by frequency interaction serves as an intermediary mechanism that translates high-frequency electrical pulses into selective low-frequency beat patterns. This intermediary process allows high-frequency energy to penetrate deep brain structures while the resulting beat frequencies provide selective activation of specific neural circuits, resolving the contradiction between penetration depth and activation precision
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The device effectively increases pain threshold and slows down conditioned reflex development by stimulating serotonergic structures, with the interference frequencies optimizing neurotransmitter concentration and reducing side effects.
Implementation Method 1
two (or more) currents that are independent of each other are applied by means of electrodes placed on the skin. These currents, which may respectively be ineffective for stimulation, present frequencies that differ by a low-frequency difference. These currents penetrate the depth of the area of treatment so as to interfere with each other and thereby produce a low-frequency beat that corresponds to the frequency difference.
Data Source
AI summary
A wellness device is provided that utilizes interference frequencies. The wellness device applies frequencies modulated by one another to interfere with one another to create a unique frequency delivery to achieve a desired result.


