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The SMIS Sleep Monitoring Intervention System is a system that uses bionic pulse magnetic resonance, extremely low frequency electromagnetic field control technology and zero variable frequency harmonics with extreme low frequency PEMF emission by rearranging multiple pulse emission sources.

During the simulation sleep process, the EEG pattern is connected to the human brain via an external pulsed magnetic field. It creates an induced current in the brain and initiates the active sleep center. It causes resonance with the pulsed magnetic field, which actively passes into the network system, causing nerve impulses and tissue cell proliferative responses. To transmit stimulation, as the stimulating magnetic field gradually awakens from simulating the EEG rhythm and relaxes, while the slow wave turns to simulate the EEG rhythm, the movement of neurons gradually decreases and the inhibition state becomes dominant.

This promotes sleep and interferes with sleep disorders.