Wearable intelligent hand ring and method for continuously monitoring human body physiological signs
A technology of smart bracelet and human physiology, applied in medical science, sensors, diagnostic recording/measurement, etc., can solve the problems that cannot be realized
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Embodiment 1
[0056] A wearable smart wristband for continuous monitoring of human physiological signs comprises a wristband body 1 , and a monitoring circuit 2 is embedded in the wristband body 1 . In this embodiment, the smart bracelet is used to be worn on the wrist of the human body, and the physiological signs of the human body can be obtained through contact with the skin of the human body.
[0057] Such as figure 1 As shown, the monitoring circuit 2 includes a main control unit 21 , and a blood oxygen concentration monitoring unit, a blood pressure heart rate monitoring unit and an ECG signal monitoring unit 24 respectively connected to the main control unit 21 . in:
[0058] The blood oxygen concentration monitoring unit includes an LED photosensor 221 and a first matching circuit 222 . The LED photosensor 221 includes a dual-wavelength light source for emitting dual-wavelength light beams, including red light (RED) and infrared light (IR). When monitoring the blood oxygen concen...
Embodiment 2
[0075] Such as figure 2 with image 3 As shown, the difference between this embodiment and Embodiment 1 is that this embodiment provides the position design of the sensing point on the wristband body 1, which can make the data collection more natural and accurate, specifically including the following:
[0076] The LED photosensor 221 protrudes from the outer surface of the bracelet body 1; in this embodiment, the touch portion of the LED photosensor 221 is designed as a square.
[0077] The electrocardiographic signal detection processing chip comprises the inner electrocardiographic electrode 122 and the outer electrocardiographic electrode 121 that are used to contact the human skin for sensing, namely including a positive pole and a negative pole; if the inner electrocardiographic electrode 122 is a positive pole, the outer electrocardiographic electrode 121 is a negative pole; if the inner electrocardiographic electrode 122 is a negative pole, then the outer electrocardi...
Embodiment 3
[0083] Such as Figure 4 As shown, the present embodiment provides a method for continuously monitoring human physiological signs, which can be realized by using the wearable smart bracelet provided by Embodiment 1, and specifically includes the following steps:
[0084] Step S101, performing blood oxygen concentration monitoring, blood pressure heart rate monitoring and ECG signal monitoring at the same time;
[0085] Blood oxygen concentration monitoring is specifically: use the blood oxygen concentration monitoring unit to emit red light and infrared light to the human skin, and receive the reflected light intensity, then convert the received light intensity into an electrical signal, and then analyze the light intensity that reflects the change. The electrical signal is properly filtered, amplified and converted from analog to digital to obtain light intensity change data, and finally the light intensity change data is sent to the main control unit 21;
[0086] Blood pres...
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