Method and system for judging sleep depth based on sternal manubrium anterior area brain waves
A brain wave and sleep technology, applied in diagnosis, hypnosis device, diagnostic recording/measurement, etc., can solve the problems of inaccurate sleep depth judgment data, inability to accurately push rest suggestions, etc., to achieve effective detection accuracy, accurate detection accuracy and, Method Accurate Effect
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Embodiment 1
[0038] see figure 1 , the method for judging the depth of sleep based on the brain waves of the manubrium sternum region of the present embodiment comprises the following steps:
[0039] Step 1. Collect brain wave information at the presternal manubrium of the subject through the physiological information pickup transmitter;
[0040] Step two, such as figure 2 As shown, the brain wave information collected is continuously interpreted during the collection period, and the brain wave information includes: at least one of α brain waves, β brain waves, and θ brain waves; when the brain wave information is only When the α brain wave is included, it is judged that the tester's sleep depth is a closed-eye state; when the brain wave information only includes α brain waves and β brain waves, it is judged that the tester's sleep depth is a light sleep state; when the brain wave information When only θ brain waves are included in , it is judged that the sleep depth of the tester is a de...
Embodiment 2
[0049] On the basis of Embodiment 1, this embodiment further provides a system for judging sleep depth based on brain waves in the manubrium sternum area, which is suitable for the aforementioned method. Such as Figure 5 As shown, in one of the preferred technical solutions, the system includes:
[0050] Physiological information pickup transmitter 100, used to collect and send the tester's ECG information, respiratory waveform information and body position information;
[0051] The mobile terminal 200 is provided with a receiving module 210 and a data processing module 220 in the mobile terminal 200; the receiving module 210 is wirelessly connected to the physiological information pickup transmitter 100 for receiving the physiological information pickup transmitter 100 The sent tester's ECG information, brain wave information, respiratory waveform information, body position and body movement information; the data processing module 220 is connected with the receiving module ...
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