Disclosure of Invention
The invention aims at the problems, and provides a real-time feedback guide system for synchronizing respiration adjustment based on touch sensing, which can obtain the current physiological state and the respiration mode of a user in real time according to the hand physiological information of the user sensed by a device by combining with hand activity information, and realize two functions of respiration adjustment and respiration synchronization through real-time feedback of voice, mist, light, vibration and the like of the device so as to achieve the purpose of preventing pressure from generating or relieving pressure.
In order to achieve the technical purpose, the invention adopts a real-time feedback guiding system for breath regulation synchronization based on touch perception, which comprises a base and an upper cover, wherein the base and the upper cover can be spherical when combined up and down, the top of the upper cover is provided with an ultrasonic oscillation sheet, and the outer wall of the upper cover is provided with a touch sensor, a photoelectric sensor for measuring heart rate and pulse indexes, and a vibration module; the upper cover is internally provided with a PCB control panel, a Bluetooth module, a sound box, a light source and a battery end; the ultrasonic oscillation sheet, the touch sensor, the photoelectric sensor, the vibration module, the Bluetooth module, the sound box and the light source are electrically connected with the PCB control board, and the ultrasonic oscillation sheet, the touch sensor, the photoelectric sensor, the vibration module, the PCB control board, the Bluetooth module, the sound box and the light source are electrically connected with the battery end;
still be equipped with in the upper cover one with ultrasonic wave vibrate piece, touch sensor, photoelectric sensor, vibration module, bluetooth module, stereo set and light source formation control connection's microprocessor, and this microprocessor and PCB control panel, battery end form electric connection.
The outer wall of the upper cover is also provided with a touch switch which is connected with the battery end and can control the power-on or power-off between the battery end and each power utilization module;
a water storage tank is arranged in the base, a waterproof layer is arranged between the upper end of the water storage tank and the bottom of the upper cover, and the bottom of the waterproof layer is connected with a water absorption strip which is vertical in the longitudinal direction and can be inserted into the water storage tank through a spring part; and meanwhile, the bottom of the waterproof layer is also provided with a water level detection module which can longitudinally extend into the water storage tank and can detect the water level depth in the water storage tank.
The upper end of the water-resisting layer is provided with an upper connecting buckle which can be buckled with the bottom of the upper cover, and the bottom of the water-resisting layer is provided with a lower connecting buckle which can be buckled with the upper end of the base, so that the base and the upper cover form a sealed spherical structure.
Preferably, the water level detecting module is a water level sensor.
As a further preferred aspect of the present invention, the water storage capacity of the water storage tank is 300-400 ml.
As a further preferred aspect of the present invention, the light source is a variable light source composed of LED light source modules.
As a further preferable mode of the present invention, the upper cover is made of a light-transmitting material, and the thickness of the upper cover is 0.05 to 0.5 cm.
Furthermore, the inner wall of the upper cover is carved with a concave-convex texture structure through a carving device.
Further, the touch sensor and the photoelectric sensor are located at positions where fingers contact when the upper cover is held by both hands.
Furthermore, still be equipped with a GPS orientation module and a signal reception transmission module based on 3G, 4G or 5G radio signal in the upper cover, GPS orientation module and signal reception transmission module all form electric connection with PCB control panel, battery end.
After adopting the structure and the system, the invention has the following advantages:
1. the real-time feedback and guidance system mainly carries out real-time feedback with the individual physiological condition through contact sensing, particularly, the current physiological state and the breathing mode of a user are obtained in real time according to the hand physiological information of the user sensed by the device and in combination with hand activity information, and two functions of breathing regulation and breathing synchronization are realized through the real-time feedback of voice, mist, light, vibration and the like of the device, so that the effect of preventing pressure from generating or relieving pressure is achieved;
2. the invention has the function of remotely guiding the memorial meditation exercise, and can play the effects of relieving pain and regulating depression and anxiety;
3. the physiological sensing device is non-wearable, does not need to wear any sensing device on the body, can monitor the breath only through handheld contact, and provides great convenience and great comfort for a user.
Detailed Description
The invention is further described with reference to the following figures and detailed description.
As shown in fig. 1, a real-time feedback guidance system for synchronization of respiration adjustment based on touch sensing includes a base 20 and an upper cover 19, which are spherical when combined vertically, the upper cover 19 is made of a transparent material and has a thickness of 0.05-0.5 cm, and the inner wall of the upper cover 19 is engraved with a concave-convex texture structure by an engraving device.
The top of the upper cover 19 is provided with an ultrasonic oscillation sheet 1, and the outer wall of the upper cover 19 is provided with a touch sensor 2, a photoelectric sensor 3 for measuring heart rate and pulse indexes, and a vibration module 4; the touch sensor 2 and the photoelectric sensor 3 are located at positions where fingers touch when the upper cover 19 is held by both hands.
Meanwhile, a PCB control panel 16, a Bluetooth module 12, a sound box 7, a light source 6 and a battery end are also arranged in the upper cover 19; in the present invention, the light source 6 is a variable light source composed of at least three LED light source modules.
In application connection, the ultrasonic oscillation sheet 1, the touch sensor 2, the photoelectric sensor 3, the vibration module 4, the Bluetooth module 12, the sound 7 and the light source 6 are electrically connected with the PCB control board 16, and the ultrasonic oscillation sheet 1, the touch sensor 2, the photoelectric sensor 3, the vibration module 4, the PCB control board 16, the Bluetooth module 12, the sound 7 and the light source 6 are electrically connected with the battery end;
simultaneously, still be equipped with one in upper cover 19 and vibrate piece 1, touch sensor 2, photoelectric sensor 3, vibration module 4, bluetooth module 12, stereo set 7 and light source 6 formation control connection's microprocessor 15, and this microprocessor 15 and PCB control panel 16, battery end form electric connection.
A GPS positioning module 13 and a signal receiving and transmitting module 14 based on 3G, 4G or 5G wireless signals are also arranged in the upper cover 19, and the GPS positioning module 13 and the signal receiving and transmitting module 14 are both electrically connected with the PCB control board 16 and the battery terminal, which is preferably a rechargeable battery 17 in the invention.
In addition, the outer wall of the upper cover 19 is also provided with a touch switch 5 which is connected with the battery end and can control the power on or off between the battery end and each power utilization module;
a water storage tank 11 is arranged in the base 20, and the water storage capacity of the water storage tank 11 is 300-; a water-resisting layer 8 is arranged between the upper end of the water storage tank 11 and the bottom of the upper cover, and the bottom of the water-resisting layer 8 is connected with a water absorption strip 10 which is vertical in the longitudinal direction and can be inserted into the water storage tank 11 through a spring part 9; meanwhile, the bottom of the waterproof layer 8 is also provided with a water level detection module 18 which can longitudinally extend into the water storage tank 11 and can detect the depth of the water level in the water storage tank 11; in practical applications, the water level detection module 18 of the present invention is a water level sensor; an upper connecting buckle 21 which can be buckled with the bottom of the upper cover 19 is arranged at the upper end of the waterproof layer 8, and a lower connecting buckle 22 which can be buckled with the upper end of the base 20 is arranged at the bottom of the waterproof layer 8, so that the base 20 and the upper cover 19 form a sealed spherical structure through the waterproof layer 8, the upper connecting buckle 21 and the lower connecting buckle 22.
The main core control component of the device is a microprocessor 15, and when the device is used, the device can be held by hands lightly, a thumb can press the photoelectric sensor 3, and the physiological information of the heart rate, the blood oxygen concentration, the heart rate change rate and the like of a user can be monitored by contacting the photoelectric sensor 3 through the skin at the end of the thumb.
Meanwhile, the hand activity of the user is used as an intermediary for synchronizing the breathing of the user and the device, specifically, when the user exhales and inhales, the fingers respectively adjust the force and duration of the pressing device (specifically pressing the touch sensor 2), and breathing parameters of the user, such as frequency, duration, strength and the like, are obtained through the touch sensor 2 in the device.
When the device starts the autonomic mode of regulation, in order to obtain this user's current respiratory frequency at the device through user's hand activity information, the guide mode of device is in order to provide the respiratory frequency lower than the user, through jet-propelled (, the water strip 10 that absorbs water in the water storage tank 11 guides the water in the water storage tank 11 to ultrasonic wave oscillation piece 1, by the vibration through ultrasonic wave oscillation piece 1 realize jet-propelled), light (the variable light source of constituteing by at least three LED light source module), vibration (realize through vibration module 4) and sound (realize through stereo set 7) isoparametric guide user adjusts self breathing as real-time feedback.
The invention has controllable spraying speed, size and duration, and can perform real-time analysis (through the microprocessor 15) according to the sensed physiological signals of the user, provide a breathing regulation scheme suitable for the current condition of the user, and guide the user to simulate breathing along with the spraying speed, size and duration of the device. Specifically, when the device sprays air, a user exhales, the time length is synchronous with the air spraying time length of the device, when the device stops spraying air, the user inhales, the time length is synchronous with the air spraying time length of the device, and the air spraying size guides the breath amount of the user.
When the device is in a dark environment or the air injection effect is not obvious, the user is guided by using light instead of spray. Specifically, when the brightness of the light of the device is gradually increased, a user inhales, and the inspiration time is synchronous with the lighting time of the device; when the brightness is weakened, the user exhales, and the expiration duration is synchronous with the dimming duration of the device light.
When the device initiates the vibration mode, the user may be guided by vibration (vibration module 4) feedback. Specifically, the mode one: when the device vibrates, the user inhales for a period of time that is synchronized with the device vibration period. When the vibration stops, the user exhales, and the expiration duration is synchronous with the vibration stopping duration of the device. And a second mode: when the device vibrates a particular area a, the user inhales for a period of time that is synchronized with the period of time that the device vibrates that area. When the specific region B is vibrated, the user exhales, and the expiration time length is synchronous with the time length of the vibration of the region by the device. When the vibration stops, the user holds the breath, and the breath holding time length is synchronous with the vibration stopping time length of the device.
The device can guide the user to do the related training of pressure relaxation and breath adjustment through voice and background music. The sound can be played directly through the built-in sound box 7 of the device or through a mobile phone.
The surface texture display mode of the outer cover 19 is specifically as follows: the texture is engraved on the inner side of the wall of the housing 19, the thickness of the housing wall is controlled by the concave-convex texture, and the texture is displayed on the outer side of the housing wall under the irradiation of the internal light source.
The device of the invention can also be used in cooperation with a pre-programmed mobile phone APP and communicates with the device data through the Bluetooth module 12 or WiFi. The user can obtain the location of the device, whether the device is currently in use, and the scheduled time, through the App scheduling system. The user may schedule a use time during which the device is not in use and a predetermined period of time. After the user has successfully scheduled the period of time for using the device, other users can see in the APP the remaining period of time for which the device has not been scheduled, preventing the same time from being scheduled at the same time. The user may also cancel the reservation after a certain period of time of the reservation means. The function supports a plurality of users to use the same equipment at different time intervals through the App reservation system, and the utilization rate of the device is improved.
In practical application, the battery module (connected with the rechargeable battery 17) of the device detects the current battery capacity, and when the battery capacity is less than 20%, the device indicator lamp or the networked mobile phone App automatically prompts that the electric quantity is insufficient and the charging is needed in time; the water level detection module 18 of the device can detect the current water level in real time, and when the water level is lower than a standard line, the device indicator lamp or the networked mobile phone App automatically prompts that the water quantity is insufficient and water needs to be added.
Table 1 shows data relating to exercise time and usage of a user for three to four months using the apparatus of the present invention.
TABLE 1
The real-time feedback and guidance system mainly carries out real-time feedback with the individual physiological condition through contact sensing, particularly, the current physiological state and the breathing mode of a user are obtained in real time according to the hand physiological information of the user sensed by the device and in combination with hand activity information, and two functions of breathing regulation and breathing synchronization are realized through the real-time feedback of voice, mist, light, vibration and the like of the device, so that the aim of preventing pressure from generating or relieving pressure is fulfilled;
the above description is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, several modifications and variations can be made without departing from the technical principle of the present invention, and these modifications and variations should also be regarded as the protection scope of the present invention.