Eye massage device and control method
An eye and electrode technology, used in medical science, artificial respiration, sensors, etc., can solve the problems that electrodes cannot be in close contact with patients around the eyes, and the treatment is inconvenient, so as to ensure continuous availability, reduce cross-infection, and reduce volume.
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Embodiment 1
[0050] Such as figure 1 , image 3 The illustrated embodiment is a kind of eye massage device, which includes a soft skin patch 1 in a large font shape, and 2 sets of electrodes arranged on the left and right sides of the soft skin patch, and each set of electrodes includes electrodes arranged from top to bottom. A number of sheet electrodes used to stimulate acupuncture points above the eyebrows, outside the inner corner of the eye and below the eyes, an EEG sensor 2 arranged on the inner surface of the soft skin, and a microprocessor 3, a memory 9, The electrical stimulation pulse generating circuit 4 and the power supply module 5 for power supply; the microprocessor is electrically connected to the memory and the electrical stimulating pulse generating circuit respectively, and the two pulse level output terminals of the electrical stimulating pulse generating circuit are respectively electrically connected to two groups of electrodes , the EEG sensor is electrically conne...
Embodiment 2
[0080] Embodiment 2 includes all structures and step parts in embodiment 1, also includes the following content in embodiment 2:
[0081] A heating wire 10 is arranged on the inner side of each electrode, and an insulating layer is arranged between the heating wire and the corresponding electrode and the soft skin, and the microprocessor is electrically connected with each heating wire. The heating wire is used to heat the corresponding electrode, thereby increasing the temperature of the skin at the corresponding acupuncture point and improving the therapeutic effect.
[0082] During the working process of each electrode, the microprocessor controls each heating wire to turn on and off periodically at the time interval T2, so that the temperature of the inner surface of the electrode changes within the temperature range A, and the lower limit of A is >37.5°C. A is 39°C to 42°C.
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