Sleep monitoring method, device and server for preventing chronic hypoxia
A monitoring device and sleep technology, applied in blood characterization devices, sensors, medical science, etc., can solve problems such as difficulty in meeting the needs of sleep monitoring, and achieve the effects of being conducive to sleep and growth, avoiding cumbersome operations, and saving intervention time.
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Embodiment 1
[0087] like figure 1 As shown, according to an aspect of the embodiments of the present invention, a sleep monitoring method for preventing chronic hypoxia is provided, the method comprising:
[0088] S110: Obtain blood oxygen saturation, which is monitored by a wearable device worn on the ward;
[0089] S120: Determine whether the person under guardianship is in an abnormal state according to the blood oxygen saturation;
[0090] S130: If the ward is in an abnormal state, send abnormal information to the terminal, where the abnormal information includes the blood oxygen saturation level and the identity of the ward.
[0091] The sleep state can be judged by the blood oxygen saturation of the ward and sent to the terminal. The terminal is used by the school or parents, and it can be dealt with in time when it is found to be in an abnormal state.
[0092] like figure 2 As shown, in the specific implementation process, the step of judging whether the ward is in an abnormal ...
Embodiment 2
[0128] like Figure 9 As shown, according to an aspect of an embodiment of the present invention, a sleep monitoring device 1 for preventing chronic hypoxia is provided, and the device 1 includes:
[0129] An acquisition module 101, configured to acquire blood oxygen saturation, which is monitored by a wearable device worn on the body of the ward;
[0130] A judging module 102, configured to judge whether the person under guardianship is in an abnormal state according to the blood oxygen saturation;
[0131] The sending module 103 is configured to send abnormal information to the terminal if the ward is in an abnormal state, and the abnormal information includes the blood oxygen saturation level and the identity of the ward.
[0132] The sleep state can be judged by the blood oxygen saturation of the ward and sent to the terminal. The terminal is used by the school or parents, and it can be dealt with in time when it is found to be in an abnormal state.
[0133] like Figure...
Embodiment 3
[0158] like Figure 10 As shown, according to another aspect of the embodiments of the present invention, a sleep monitoring terminal 2 is provided, and the terminal 2 includes:
[0159] The receiving module 201 is configured to receive abnormal information, which is sent by the server after judging that the ward is in an abnormal state according to the blood oxygen saturation monitored by the wearable device, and the abnormal information includes the blood oxygen saturation degree and the identity of the guardian;
[0160] The creating module 202 is used to create an abnormal information window, and the abnormal information window displays abnormal information, including blood oxygen saturation and abnormal state.
[0161] In the specific implementation process, the abnormal information window also includes a real-time video trigger control, and the terminal 2 also includes:
[0162] The sending module 203 is used to send a real-time video request with the identity of the w...
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