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Electromagnetic Brain Animation is primarily a method for stimulating multiple specific areas of the brain by individual separate induction coils or multi-formulated coil collective penetrations with target initiation point range from 1 to 100 with the ability to inventively utilize a tube formed beam of ultrasound. This ultrasound tube is operated as a guiding system sent into and through the skull casing directly upon the soft, mucus tissue of the cerebral cortex aimed at specific neuron clusters relevant to particular mental disorder being treated.
A method whereas there is a pioneering coil variation in shapes from "double eight" to "quadruple eight" to "dumbbell" to "triple circle bar" to "double squared triangle" to "pentagon shaped and pentagon shaped with one or more cross core encasements which allow numerous original EBA formulations resulting in a higher percentage of success in view of the fact that the shape of a coil largely determines the shape of the electromagnetic induction and each additionally different induction shape directly correlate to a higher potential for positive results in neuron reorganization due to the corollary result of exponentially enhanced depolarization opportunities.
EBA includes a method where current amplitude in the coils are controlled individually by manually and separately modulated control boxes, making it possible to influence coil emission induction without moving the coils themselves, resulting in the ability of electromagnetic emissions to transmit from different positions at the same time, making it possible to initiate conduction from different positions at different amplitudes and formulations with the outcome being multi-directional and numerous variations in dynamisms of neurons, bubbling in-out, up-down, left-right and undulating toward being engagingly fluid, thus resulting in significantly broader surface areas available for treatment which automatically mandates superior percentages of successful outcome.
EBA Basics :
Involves placing one or more electromagnetic coils in close proximity to the scalp. High-intensity current is rapidly turned on and off in the coils through the discharge of capacitors. This produces a time-varying magnetic field that lasts for about 80 to 240 microseconds. The magnetic field typically has a strength of about 2 T (40,000 times the earth's magnetic field, or about the same intensity as the static magnetic field used in clinical magnetic resonance imaging). The proximity of the brain to the time-varying magnetic field results in current flow in neural tissue. The technological advances made in the last 15 years led to the development of magnetic stimulators that produce sufficient current in brain to result in neuronal depolarization.
The pulses of current are generated with a circuit containing a discharge capacitor connected with the coil in series by a thyristor. With the capacitor first charged to 1.5-5 kV, the gating of the thyristor into the conducting state will cause the discharging of the capacitor through the coil. The resulting current waveform is typically a damped sinusoidal pulse that lasts about 350 ms and has a peak value of 5-12 kA.
EBA is a method set forth where "UR/EBA" refers to ultra rapid electromagnetic brain animation of above 50 Hz, equals "high frequency EBA" or as in replication pulse rates above 1 Hz, equals "low frequency EBA" or as in replication rates below 1 Hz, and EBA/US is indicative of secondary usage of ultrasound. combined with electromagnetic brain animation and can be indicative of primary or secondary usage of ultrasound induction to target area used as a precursor cell softening instrument or as a combination guiding instrument or as follow up instrumentation used with or without EBA, indicative of resulting in a significant 68 + percent success rate of noticeable improvement in neuron activity relating directly to reorganization of neuron fusion.
Electromagnetic Brain Animation
Electricity Magnetism Ultrasound
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American Association for the Advancement of Science
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