Pressure and emotion adjustment method, system and a physiology signal acquisition device
A technology of physiological signals and adjustment methods, applied in the field of data processing, to achieve the effects of increasing enthusiasm and interest, strong operability, and strong system interaction
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Embodiment 1
[0048] refer to figure 1 , is a structural diagram of the stress and emotion regulation system according to Embodiment 1 of the present invention. The system mainly includes:
[0049] A stress test unit U11, configured to obtain a stress test result;
[0050] The adjustment unit U12 is used to provide corresponding adjustment scheme execution from multiple preset adjustment schemes for different stress test results;
[0051] Physiological signal acquisition unit U13, used for collecting physiological signals representing heart rate, physiological signals representing blood oxygen saturation and physiological signals representing pulse strength in real time during the execution of the adjustment scheme, as feedback signals for adjustment; The signal is transformed into a feedback parameter value;
[0052] A data processing unit U14, configured to generate an adjustment result according to the feedback parameter value;
[0053] In this embodiment, the stress testing unit U11...
Embodiment 2
[0084] The embodiment of the present invention also provides a physiological signal acquisition device, which is used to complete the functions realized by the above physiological signal acquisition unit U13.
[0085] refer to figure 2 , is a structural diagram of a physiological signal acquisition device described in Embodiment 2. The device is generally implemented by hardware, and the present invention includes but not limited to hardware implementation. Described device mainly comprises:
[0086] A transmitter and a receiver U21, the transmitter is used to emit red light or infrared light, and the receiver is used to receive the attenuated red light or infrared light passed through the human body and generate electrical signals;
[0087] a preamplifier U22 for amplifying the electrical signal;
[0088] The post-stage conditioning circuit U23 is used to decompose the pulses in each group of the amplified electrical signal.
[0089] AD sampling circuit U24, for converti...
Embodiment 3
[0104] The embodiment of the present invention also provides a more specific application system.
[0105] refer to image 3 , is a structural diagram of the stress and emotion regulation system described in Embodiment 3.
[0106] The system is developed using distributed modules, and the loose coupling between modules is completely realized. The main program module adopts a three-layer structure, which reasonably connects and calls each module, and uses multi-threading technology to optimize the execution efficiency between modules to achieve enhanced The effect of user experience. The system includes a software module and a physiological acquisition instrument, which is not shown in the figure.
[0107] Presentation layer design:
[0108] Using the combination and development of applications and Flash, some very elegant animation effects have been realized to increase the affinity between users and the system.
[0109] 1) The data display module U31 of the physiological a...
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