Integrated dynamic physiological parameter detecting and recording method and apparatus
A physiological parameter detection and recording device technology, which is applied in diagnostic recording/measurement, medical science, sensors, etc., can solve the problems of electrode sensor falling off, single parameter, application limitation, etc., and achieves convenient and simple use, electrode position determination, The effect of low cost of use
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Embodiment 1
[0051] The integrated dynamic physiological parameter detection and recording method integrates all the components required for detecting and recording the electrocardiogram, respiratory rate, body surface temperature, and triaxial acceleration human dynamic physiological parameters on a chest strap made of insulating soft materials. The components are connected by a flexible printed circuit board. The ECG electrodes for detecting the ECG are placed on the surface of the protruding chest belt. The respiration sensor for detecting the respiration rate is placed on the back of the ECG electrodes and stacked together. The acceleration sensor for detecting the triaxial acceleration is located on the The chest center adopts the recording method of MMC (Multimedia Card) memory card; the chest belt is tied to the chest of the human body through close contact with the human body to realize the detection record; the state of the detection record is controlled by the contact method.
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Embodiment 2
[0059] The difference from Example 1 is that, as Image 6 As shown, multiple ECG electrodes 1, chest pressure respiration sensor 2, abdominal pressure respiration sensor 3, body surface temperature sensor 4, armpit temperature sensor 5, triaxial acceleration sensor 6, micro-sound sensor 7, infrared pulse The sensor 8, the main circuit board 9, the display and key unit 10, the GPS satellite positioning module 11, and the connecting wire 12 between them are embedded in the shirt 13 made of insulating soft material.
[0060] Such as Figure 7 As shown, ECG electrode 1, respiration sensor 2 and 3, temperature sensor 4 and 5, acceleration sensor 6, micro-sound sensor 7, infrared pulse sensor 8, and the signal conditioning part 14 on the main circuit board 9, low power The MCU micro-controller 15 is connected to the storage part 16, while the above-mentioned elements are connected to the power part 17, and the display and key unit 10 is connected to the low-power MCU micro-controll...
Embodiment 3
[0065] Cardigan-style short-sleeved vest integrated dynamic physiological parameter detection and recording device is provided with a shirt button part 71 in the middle of the front of the shirt, such as Figure 11 As shown, it differs from Embodiment 2 in that the display and button unit 10 is located at the left abdomen, the lower end of the abdominal respiration sensor 3 . The infrared pulse sensor 8 and the infrared pulse sensor tightening belt 63 are omitted.
[0066] Such as Figure 12 As shown, when the short-sleeved vest embedded with the integrated dynamic physiological parameter detection and recording device is worn, except for the micro-sound sensor 7, the main circuit board 9, the display and key unit 10, the wireless transmitter 11, and the left upper limb lead electrodes are tightened Belt 61, right upper limb lead electrode tightening belt 62 are outside the short-sleeved vest outside, and all the other parts are all positioned at the short-sleeved vest inboar...
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