Wearable sleep monitoring equipment

By using curved and short airbags in wearable sleep monitoring devices, assisting users to adjust their sleeping positions and awaken users, solving the problem of difficulty in adjusting sleeping positions and distinguishing the causes of sleep apnea in existing devices, improving sleep quality and user safety.

CN119970327AInactive Publication Date: 2025-05-13松研科技(杭州)有限公司
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Patent Information

Application Number
CN202510397730.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing wearable sleep monitoring devices are difficult to assist users in adjusting their sleeping posture, resulting in lumbar discomfort and difficulty in breathing, and it is difficult to distinguish the causes of sleep apnea.

Method used

A wearable sleep monitoring device is designed to cause discomfort when sleeping on the user side through the expansion of the curved airbag, assist in adjusting the sleeping position and adjusting the neck state during sleep apnea. If breathing does not improve, the device awakens the user through the expansion of the short airbag.

Benefits of technology

Effectively assist users in adjusting their sleeping posture, reducing lumbar pressure and dyspnea, distinguishing the causes of sleep apnea, and reducing the health effects of sleep apnea by awakening users.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of sleep monitoring equipment, in particular to wearable sleep monitoring equipment which comprises a processing box, a telescopic belt fixed to the processing box and a bandage fixed to the telescopic belt and further comprises a reinforcing belt fixed to the bandage, connecting cloth fixed to the reinforcing belt and a neck protection plate fixed to the connecting cloth. According to the invention, the sleep condition of the user can be monitored, the sleeping posture of the user can be corrected when the user sleeps on one side, in addition, when the user has sleep apnea, the equipment can roughly judge the situation causing the sleep apnea, and wakes up the user who continuously has the sleep apnea, so that the problem that the sleep apnea of the user cannot be corrected when part of current equipment is used is solved. The invention solves the problems that the existing equipment is easy to move and causes of sleep apnea are difficult to distinguish when the sleep apnea occurs to the user, and solves the problem that the existing equipment can identify the side lying state of the user and is difficult to adjust the side lying state.
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Description

Technical Field

[0001] The present invention relates to the technical field of sleep monitoring equipment, and in particular to a wearable sleep monitoring equipment. Background Art

[0002] Wearable sleep monitoring devices mainly use built-in sensors to collect various physiological data of users during sleep to evaluate the user's sleep quality and potential health problems, so that users can judge their own sleep conditions and quality, thereby reducing situations that affect the user's health in subsequent sleep.

[0003] At present, some wearable sleep monitoring devices can monitor the user's sleeping position when in use. The user's sleeping position when lying on his side can easily cause damage to his lumbar spine. However, some sleep monitoring devices currently cannot assist users in adjusting their sleeping position. In the long run, if the user maintains a bad sleeping position, it is easy for his lumbar discomfort to continue to increase and affect the subsequent sleep quality of the user. In addition, the user's bad sleeping position will also affect his respiratory state and even cause the user to have breathing difficulties. At present, some wearable sleep monitoring devices can only monitor the user's sleep apnea state when in use, but cannot adjust the user's sleeping position. Not only is it inconvenient to analyze whether the user's sleep apnea is caused by improper sleeping position or physiological problems, but the user's life and health will be threatened if he is in a state of sleep apnea for a long time. Therefore, the use effect of some wearable sleep monitoring devices currently is relatively poor. Summary of the invention

[0004] The purpose of the present invention is to provide a wearable sleep monitoring device. The present invention can make the user feel uncomfortable when the user is sleeping on his side, so as to correct the user's sleeping posture. In addition, the present device can also adjust the user's neck state when the user has sleep apnea. If the user's breathing state is still not improved, the user's sleep apnea may be a physiological problem. At this time, the present device can wake up the user, solving the problem that some current devices are prone to movement due to the user's turning over when in use, and it is difficult to distinguish the cause of sleep apnea when the user has sleep apnea. It also solves the problem that some current devices can recognize the user's side-lying state but are difficult to adjust the side-lying state.

[0005] To achieve the above object, the present invention provides the following technical solution: a wearable sleep monitoring device, comprising a processing box, a retractable belt fixed to the processing box, and a binding belt fixed to the retractable belt, and further comprising:

[0006] A reinforcing belt fixed to the binding belt, a connecting cloth fixed to the reinforcing belt, and a neck guard plate fixed to the connecting cloth, wherein the surface of the neck guard plate is provided with a groove and an air injection mechanism is installed, and the inner wall of the groove is fixed with a long air bag, a short air bag, and a partition with a short tube fixed inside, and a shielding mechanism and a hollow ring are installed inside the short tube;

[0007] A hollow frame fixed to the surface of the processing box, with a guide groove on the top and a storage box fixed on the surface, a first sensor fixed to the inner wall of the guide groove, a force plate fixed to the top of the telescopic belt, a cylindrical groove with a ventilation mechanism installed inside and a moving groove with an auxiliary mechanism inside respectively opened on the top and surface of the storage box, an arc-shaped airbag embedded on the surface of the strap, and a bending tube provided on the arc-shaped airbag;

[0008] A processor is embedded in the surface of a processing box, an exhaust groove is opened inside the processing box, a hollow tube is installed inside the exhaust groove, and an air release groove is opened on the surface of the hollow tube, and an adjustment mechanism is installed inside the hollow tube.

[0009] Preferably, the shielding mechanism includes a bracket, a sliding rod, a disc, a tension spring, a baffle and a rubber sheet. The bracket is fixed to the inner wall of the short tube, the sliding rod slides through the bracket, the disc is fixed to one end of the sliding rod, the tension spring is sleeved on the surface of the sliding rod, the baffle is fixed to the other end of the sliding rod, and the rubber sheet is fixedly sleeved on the surface of the baffle.

[0010] Preferably, the gas injection mechanism includes an air storage tube, a micro air pump and an air injection tube, the air storage tube is embedded in the interior of the long air bag, the micro air pump is fixed to the surface of the long air bag, one end of the air storage tube is connected to the micro air pump, and the air injection tube is connected to the micro air pump and the long air bag.

[0011] Preferably, the ventilation mechanism includes a cross bar, a vertical bar, a bottom plate, a lifting plate and a ventilation ring, the cross bar is fixed to the inner wall of the cylindrical groove, the vertical bar is fixed to the bottom of the cross bar, the bottom plate is fixed to the bottom of the vertical bar, the lifting plate is slidably mounted on the surface of the vertical bar, the bottom of the lifting plate is in contact with the bottom of the bottom plate, and the ventilation ring is fixed to the inner wall of the cylindrical groove.

[0012] Preferably, the auxiliary mechanism includes a moving component, a connecting disk and an air delivery component, the moving component includes a hollow box, an extension rod and a compression spring, the hollow box is embedded in the surface of the telescopic belt, the extension rod slides through the hollow box, one end of the hollow box is fixed to the surface of the connecting disk, and the compression spring is sleeved on the surface of the extension rod.

[0013] Preferably, the gas delivery assembly includes an air cylinder, a positioning tube and an air delivery pipe, the positioning tube is fixed to the inner wall of the storage groove, the top and bottom of the positioning tube are provided with air holes, the air holes are connected to the cylindrical groove, the air cylinder is connected to the positioning tube, the air delivery pipe is fixedly passed through the hollow frame and the storage box, the two ends of the air delivery pipe are respectively connected to the positioning tube and the hollow tube, and the connecting plate is fixed to the surface of the air cylinder.

[0014] Preferably, the adjustment mechanism includes a limiting ring, a second pressure sensor, a third pressure sensor and a ball. The limiting ring is fixed inside the hollow tube, the second pressure sensor is embedded in the surface of the limiting ring, the third pressure sensor is fixed to the bottom of the hollow tube, and the ball is arranged inside the hollow tube, and the surface of the ball is in contact with the surfaces of the second pressure sensor and the third pressure sensor.

[0015] Preferably, a T-shaped frame is fixed to the inner wall of the short tube, a sliding cylinder is fixed to one end of the T-shaped frame, and the surface of the sliding rod is slidably connected to the inner wall of the sliding cylinder.

[0016] Preferably, soft pads are embedded on the upper and lower sides of the surface of the neck guard plate, and the surface of the soft pads is designed to be arc-shaped.

[0017] Preferably, a Velcro is provided on the surface of one side of the strap, and the Velcro fits with the surface of the other side of the strap.

[0018] Compared with the prior art, the present invention has the following beneficial effects:

[0019] The present invention can not only monitor the user's sleeping condition, but also make the user feel uncomfortable by inflating the arc-shaped airbag when the user is sleeping on his side, thereby facilitating the correction of the user's sleeping position. In addition, the present invention can also adjust the user's neck state when the user has sleep apnea, so as to assist in adjusting the user's sleeping position and ensure the user's normal breathing, thereby ensuring the subsequent sleep quality of the user. If the user's breathing state is still not improved, the user's sleep apnea may be a physiological problem. At this time, the present invention can wake up the user by inflating the short airbag, which solves the problem that some current devices are prone to movement due to the user's turning over when in use, and it is difficult to distinguish the cause of sleep apnea when the user has sleep apnea. It also solves the problem that some current devices can recognize the user's side-lying state but find it difficult to adjust the side-lying state. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention;

[0021] Figure 2 It is a schematic diagram of the three-dimensional structure of the telescopic belt, the binding belt, the reinforcing belt, the connecting cloth and the hollow frame in the present invention;

[0022] Figure 3 This is a schematic diagram of the three-dimensional structure of the present invention with the cushion removed;

[0023] Figure 4 The schematic diagram of the top view of the neck guard plate of the present invention is as follows;

[0024] Figure 5 This is a schematic diagram of the three-dimensional structure of the present invention in which a partition, a short tube, a long air bag and a short air bag are partially disassembled and cut apart;

[0025] Figure 6 This is a schematic diagram of the three-dimensional structure of the present invention in which the partitions are cut apart and the shielding mechanism is separated;

[0026] Figure 7 This is a schematic diagram of the three-dimensional structure of the present invention with the arc-shaped airbag and the bending tube removed;

[0027] Figure 8 This is a schematic diagram of a three-dimensional structure of the present invention with parts separated;

[0028] Fig. 9 It is a schematic diagram of the three-dimensional structure of the storage box, the moving assembly, the gas transmission assembly, the bending tube and the arc-shaped airbag in the present invention;

[0029] Fig.10 This is a schematic diagram of the three-dimensional structure of the storage box cut open according to the present invention;

[0030] Fig.11 It is a three-dimensional structural schematic diagram of the ventilation mechanism in the present invention;

[0031] Fig.12 This is a schematic diagram of the three-dimensional structure of a hollow box cut open in the present invention;

[0032] Fig.13 This is a schematic diagram of the three-dimensional structure of the present invention in which the processing box, the hollow frame and the storage box are cut apart;

[0033] Fig.14 It is a schematic diagram of the three-dimensional structure of the hollow tube and the gas transmission pipe in the present invention;

[0034] Fig.15 The figure is a schematic diagram of the three-dimensional structure of a hollow tube cut open according to the present invention.

[0035] In the figure: 1, processing box; 2, telescopic belt; 3, binding belt; 4, reinforcement belt; 5, connecting cloth; 6, neck guard; 7, cushion; 8, slot; 9, long air bag; 10, short air bag; 11, partition; 12, short tube; 13, shielding mechanism; 131, bracket; 132, slide bar; 133, disc; 134, tension spring; 135, baffle; 136, rubber sheet; 14, hollow ring; 15, T-shaped frame; 16, slide cylinder; 17, gas injection mechanism; 171, gas storage tube; 172, micro air pump; 173, gas injection tube; 18, hollow frame; 19, guide groove; 20, first sensor; 21, force plate; 22, storage box; 23, Ventilation mechanism; 231, horizontal bar; 232, vertical bar; 233, bottom plate; 234, lifting plate; 235, ventilation ring; 24, auxiliary mechanism; 241, moving assembly; 2411, hollow box; 2412, extension rod; 2413, compression spring; 242, connecting plate; 243, air delivery assembly; 2431, air cylinder; 2432, positioning tube; 2433, air delivery pipe; 25, bending tube; 26, arc-shaped air bag; 27, processor; 28, hollow tube; 29, exhaust groove; 30, air release groove; 31, adjustment mechanism; 311, limit ring; 312, second pressure sensor; 313, third pressure sensor; 314, ball bearing. DETAILED DESCRIPTION

[0036] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0037] See also Figure 1-Figure 15A wearable sleep monitoring device comprises a processing box 1, two retractable belts 2 respectively fixed to the surfaces of both sides of the processing box 1 and a strap 3 fixed to the retractable belt 2, a reinforcing belt 4 is fixed to the top of the strap 3, a connecting cloth 5 is fixed to the surface of the reinforcing belt 4, a neck guard plate 6 is fixed to the surface of the connecting cloth 5, a groove 8 is provided on the surface of the neck guard plate 6, a long air bag 9, a short air bag 10 and a partition 11 are fixed to the inner wall of the groove 8, a short tube 12 is fixed inside the partition 11, a shielding mechanism 13 and a hollow ring 14 are installed inside the short tube 12, an air injection mechanism 17 is installed on the surface of the neck guard plate 6, hollow frames 18 are fixed to the surfaces of both sides of the processing box 1, the surface of the retractable belt 2 contacts the inner wall of the hollow frame 18, a guide groove 19 is provided on the top of the hollow frame 18, and a first sensor 20 is fixed to one side of the inner wall of the guide groove 19, A force plate 21 used in conjunction with the force plate 21 is fixed to the top of the telescopic belt 2, a storage box 22 is fixed to the surface of the hollow frame 18, a cylindrical groove and a movable groove are provided on the surface of the storage box 22, an auxiliary mechanism 24 is arranged inside the movable groove, ventilation mechanisms 23 are installed at the upper and lower parts of the cylindrical groove, an arc-shaped air bag 26 is embedded in the surface of the strap 3, a bent tube 25 connected to the arc-shaped air bag 26 and the bottom of the cylindrical groove is fixedly penetrated on the surface of the storage box 22, a processor 27 is embedded on the surface of the processing box 1, an exhaust groove 29 is provided inside the processing box 1, the exhaust groove 29 is connected to the surface of the processing box 1, a hollow tube 28 is installed inside the exhaust groove 29, an air release groove 30 is provided on the surface of the hollow tube 28, an adjustment mechanism 31 is installed inside the hollow tube 28, and a soft pad 7 is embedded at the upper and lower parts of the surface of the neck guard plate 6.

[0038] The surface of the strap 3 on one side is provided with a Velcro, and the Velcro fits with the surface of the strap 3 on the other side. The provision of the Velcro can increase the stability of the straps 3 on both sides when connected.

[0039] The connecting cloth 5 is made of elastic band, and soft pads 7 are embedded on the upper and lower parts of the surface of the neck guard plate 6. The surfaces of the neck guard plate 6 and the soft pad 7 are both arc-shaped, so that the surfaces of the neck guard plate 6 and the soft pad 7 can always fit the user's neck and reduce the discomfort caused to the user by the sharper parts.

[0040] The shielding mechanism 13 includes a bracket 131, a slide bar 132, a disc 133, a tension spring 134, a baffle 135 and a rubber sheet 136. The bracket 131 is fixed to the inner wall of the short tube 12, the slide bar 132 slides through the bracket 131, the disc 133 is fixed to one end of the slide bar 132, the tension spring 134 is sleeved on the surface of the slide bar 132, the baffle 135 is fixed to the other end of the slide bar 132, and the rubber sheet 136 is fixedly sleeved on the surface of the baffle 135. A T-shaped frame 15 is fixed to the inner wall of the short tube 12, and a slide cylinder 16 is fixed to one end of the T-shaped frame 15. The surface of the slide bar 132 is slidably connected to the inner wall of the slide cylinder 16. When the user's breathing state continues to be unable to be adjusted, the air injection mechanism 17 continues to inject external air into the interior of the long air bag 9 When the long airbag 9 is fully inflated, the air can push the baffle 135, and the rubber sheet 136 moves accordingly and passes through the hollow ring 14. At this time, the slide cylinder 16 and the bracket 131 guide the movement of the slide rod 132. At this time, the tension spring 134 is stretched by force, and the air enters the interior of the short airbag 10. The expansion of the short airbag 10 can squeeze the side of the user's neck to increase the user's discomfort, thereby flexibly waking the user, thereby preventing the user from being in a state of sleep apnea for a long time. More preferably, a plug can be connected on the surface of the short airbag 10 and penetrate the long airbag 9. When the rubber sheet 136 moves, the T-frame 15 keeps the rubber sheet 136 in a bent state so that the air can be better injected into the interior of the short airbag 10 through the short tube 12.

[0041] The air injection mechanism 17 includes an air storage tube 171, a micro air pump 172 and an air injection tube 173. The air storage tube 171 is embedded in the interior of the long air bag 9, and the micro air pump 172 is fixed on the surface of the long air bag 9. One end of the air storage tube 171 is connected to the micro air pump 172, and the air injection tube 173 is connected to the micro air pump 172 and the long air bag 9. When the telescopic belt 2 has not been extended or retracted for a long time, and the state between the force plate 21 and the first sensor 20 remains unchanged for a long time, the micro air pump 172 is started to inject external air into the interior of the long air bag 9 through the air storage tube 171 and the air injection tube 173. The long air bag 9 expands to support the user's neck to adjust the curvature of the user's neck, thereby reducing the user's breathing difficulties due to sleeping posture problems.

[0042] The ventilation mechanism 23 includes a cross bar 231, a vertical bar 232, a bottom plate 233, a lifting plate 234 and a ventilation ring 235. The cross bar 231 is fixed to the inner wall of the cylindrical groove, the vertical bar 232 is fixed to the bottom of the cross bar 231, the bottom plate 233 is fixed to the bottom of the vertical bar 232, the lifting plate 234 is slidably sleeved on the surface of the vertical bar 232, the bottom of the lifting plate 234 is in contact with the bottom of the bottom plate 233, the ventilation ring 235 is fixed to the inner wall of the cylindrical groove, the upper lifting plate 234 descends, and the outside air is injected into the cylindrical groove. The air is input into the cylindrical groove through the ventilation ring 235. When the air cylinder 2431 contracts, under the action of air pressure, the upper lifting plate 234 is lifted and blocks the ventilation ring 235. At this time, the air is conveyed in the direction of According to the setting, if the limiting ring 311 inside the hollow tube 28 is not blocked, the air can be discharged through the hollow tube 28 and the air release groove 30. When the ball 314 inside the hollow tube 28 blocks the limiting ring 311, the air cannot move smoothly. At this time, the air can be discharged to the inside of the arc-shaped airbag 26 through the bending tube 25. It should be noted that the dimensions of the bending tube 25 and the air supply pipe 2433 are not limited in this scheme. According to the direction of air flow, the air will first pass into the air supply pipe 2433, and because the air inside the air cylinder 2431 is connected with the outside world through the hollow tube 28, the exhaust groove 29 and the air release groove 30 at this time, the arc-shaped airbag 26 is difficult to expand during this process, so there is no need to specifically limit the direction of air flow.

[0043] The auxiliary mechanism 24 includes a moving component 241, a connecting plate 242 and a gas delivery component 243. The moving component 241 includes a hollow box 2411, an extension rod 2412 and a compression spring 2413. The hollow box 2411 is embedded in the surface of the telescopic belt 2. The extension rod 2412 slides through the hollow box 2411. One end of the hollow box 2411 is fixed to the surface of the connecting plate 242. The compression spring 2413 is sleeved on the surface of the extension rod 2412. When the telescopic belt 2 drives the moving component 241 to move, the extension rod 2412 and the compression spring 2413 are used in conjunction, so that the connecting plate 242 can be moved inside the storage slot to reduce the impact of the hollow frame 18 on the moving component 2 41 Impact caused by use; The gas delivery component 243 includes an air cylinder 2431, a positioning tube 2432 and an air delivery tube 2433. The positioning tube 2432 is fixed to the inner wall of the storage tank. The top and bottom of the positioning tube 2432 are provided with air holes, and the air holes are connected to the cylindrical grooves. The air cylinder 2431 is connected to the positioning tube 2432. The air delivery tube 2433 is fixedly passed through the hollow frame 18 and the storage box 22. The two ends of the air delivery tube 2433 are respectively connected to the positioning tube 2432 and the hollow tube 28. The connecting plate 242 is fixed to the surface of the air cylinder 2431. When the connecting plate 242 moves, it can drive the air cylinder 2431 to expand and contract so as to compress the air. The air is discharged from the air delivery tube 2433 to the inside of the hollow tube 28.

[0044] The adjustment mechanism 31 includes a limit ring 311, a second pressure sensor 312, a third pressure sensor 313 and a ball 314. The limit ring 311 is fixed inside the hollow tube 28, the second pressure sensor 312 is embedded in the surface of the limit ring 311, the second pressure sensor 312 is electrically connected to the processor 27, the third pressure sensor 313 is fixed at the bottom of the hollow tube 28, and the ball 314 is arranged inside the hollow tube 28. When the user turns over and maintains a sideways state, the ball 314 moves with the inner wall of the hollow tube 28 and contacts the second pressure sensor 312, the second pressure sensor 312 can be subjected to force and block the movement of the ball 314. When the second pressure sensor 312 is subjected to force, the data is transmitted to the processor 27 so that the device can count the number of times the user turns over at night. The surface of the ball 314 contacts the surfaces of the second pressure sensor 312 and the third pressure sensor 313.

[0045] It should be noted that the three sections of the hollow tube 28 are all inclined, and limit rings 311 are provided on both sides of the inner wall of the hollow tube 28 so that data can be counted when the user turns over to the left or right.

[0046] The first sensor 20 , the cushion 7 , the micro air pump 172 , the second pressure sensor 312 , and the third pressure sensor 313 are all electrically connected to the processor 27 .

[0047] Working principle: the user ties the strap 3 around the abdomen and passes both arms through the reinforcement strap 4. At this time, the connecting cloth 5 is placed on the user's chest and shoulders, and the neck guard 6 supports the back of the user's neck. When the user is in a standing or sitting state, the ball 314 descends inside the hollow tube 28 under the action of gravity, and the ball 314 cooperates with the third pressure sensor 313. The third pressure sensor 313 transmits the force data to the processor 27. At this time, it is determined that the user is not in a sleeping state, and the device is not started for use. When the user lies down, the ball 314 The device can move under the action of gravity. At this time, the contact between the ball 314 and the third pressure sensor 313 is released, the device is started, and the first sensor 20 can be used in conjunction with the force plate 21. When the user is in a sleeping state, the breathing of the abdomen can drive the telescopic belt 2 to extend and retract. At this time, the force plate 21 and the moving component 241 move with the extension of the telescopic belt 2, and the moving component 241 drives the connecting plate 242 to move. The air cylinder 2431 extends and collects the outside air through the top of the cylindrical groove. At the same time, the ventilation mechanism 23 below can The bottom of the cylindrical groove is closed, and the upper lifting plate 234 is lowered by air pressure so that air can pass through the cylindrical groove and the air hole and be injected into the interior of the positioning tube 2432 and the air cylinder 2431. When the user is in a lying state, the air is injected into the interior of the hollow tube 28 through the air supply pipe 2433 and then discharged through the air release groove 30. When the user lies on his side, the ball 314 contacts the second pressure sensor 312 on one side and seals the limit ring 311. The air is injected into the interior of the bending tube 25 through the bottom of the cylindrical groove and is delivered to the arc through the bending tube 25. The arc-shaped airbag 26 inside the airbag 26 can expand to form a bulge between the lower part of the user's abdomen and the bed, so as to increase the discomfort of the user when sleeping on his side, thereby reducing the situation where the user remains in a side-lying state for a long time, thereby reducing the pressure on the user's lumbar spine when sleeping. When the user exhales, under the action of the elastic force of the retractable belt 2, the force plate 21 and the moving component 241 are reset, and the force plate 21 cooperates with the first sensor 20 to feed back the user's breathing condition to the processor 27, and the reset of the moving component 241 is convenient for subsequent use;

[0048] When the state between the first sensor 20 and the force plate 21 is inconvenient for a long time, the user may be in a sleep apnea state. At this time, the processor 27 starts the micro air pump 172. The micro air pump 172 injects external air into the long air bag 9 through the air storage tube 171 and the air injection tube 173. The long air bag 9 expands to support the back of the user's neck, thereby assisting the user's respiratory tract to be unobstructed, thereby facilitating the normal breathing of users with improper sleeping postures. If the sleep apnea state is still not alleviated and improved after the user's neck state is adjusted, it can be judged that the user's sleep apnea state is not caused by improper sleeping posture. At this time, the air pushes the baffle 135 and the rubber sheet 136 to move, and the air is injected into the short air bag 10 through the short tube 12. The expansion of the short air bag 10 can press the side of the user's neck to cause discomfort to the user, so as to assist in waking up the user. Based on this, the user can adjust his breathing independently to reduce the harm caused by sleep apnea to the user.

[0049] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, the elements defined by the sentence "comprise a ..." do not exclude the existence of other identical elements in the process, method, article or device including the elements.

[0050] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A wearable sleep monitoring device, comprising a processing box (1), a neck guard (6), a retractable belt (2) fixed to the processing box (1), and a strap (3) fixed to the retractable belt (2), characterized in that: Also includes: A slot (8) formed on the surface of the neck guard plate (6) and an air injection mechanism (17) installed on the surface of the neck guard plate (6), wherein the inner wall of the slot (8) is fixed with a long air bag (9), a short air bag (10) and a partition (11) with a short tube (12) fixed inside; A hollow frame (18) is fixed to the surface of the processing box (1), has a guide groove (19) on the top and has a storage box (22) fixed on the surface, a first sensor (20) is fixed to the inner wall of the guide groove (19), a force plate (21) is fixed to the top of the telescopic belt (2), the surface of the storage box (22) has movable grooves, and auxiliary mechanisms (24) are arranged inside the movable grooves, and an arc-shaped air bag (26) is embedded on the surface of the binding belt (3); A processor (27) is embedded in the surface of a processing box (1), an exhaust groove (29) is provided inside the processing box (1), and a hollow tube (28) is installed inside the exhaust groove (29), wherein an adjustment mechanism (31) is installed inside the hollow tube (28).

2. A wearable sleep monitoring device according to claim 1, characterized in that: A shielding mechanism (13) and a hollow ring (14) are installed inside the short tube (12). The shielding mechanism (13) comprises a bracket (131), a slide bar (132), a tension spring (134) and a baffle (135). The bracket (131) is fixed to the inner wall of the short tube (12). The slide bar (132) slides through the bracket (131). A disc (133) is fixed to one end of the slide bar (132). The tension spring (134) is sleeved on the surface of the slide bar (132). The baffle (135) is fixed to the other end of the slide bar (132). A rubber sheet (136) is fixedly sleeved on the surface of the baffle (135).

3. A wearable sleep monitoring device according to claim 1, characterized in that: The gas injection mechanism (17) comprises a gas storage tube (171), a micro air pump (172) and a gas injection tube (173); the gas storage tube (171) is embedded in the interior of the long air bag (9); the micro air pump (172) is fixed to the surface of the long air bag (9); one end of the gas storage tube (171) is connected to the micro air pump (172); and the gas injection tube (173) is connected to the micro air pump (172) and the long air bag (9).

4. A wearable sleep monitoring device according to claim 1, characterized in that: A cylindrical groove is provided on the top of the storage box (22), and a ventilation mechanism (23) is installed inside the cylindrical groove. The ventilation mechanism (23) comprises a cross bar (231), a vertical bar (232), a bottom plate (233) and a lifting plate (234). The cross bar (231) is fixed to the inner wall of the cylindrical groove, the vertical bar (232) is fixed to the bottom of the cross bar (231), the bottom plate (233) is fixed to the bottom of the vertical bar (232), the lifting plate (234) is slidably sleeved on the surface of the vertical bar (232), and the bottom of the lifting plate (234) is in contact with the bottom of the bottom plate (233). A ventilation ring (235) is fixed to the inner wall of the cylindrical groove, and the surface of the arc-shaped airbag (26) is connected to a bending tube (25), and the bending tube (25) passes through the storage box (22) and is connected to the cylindrical groove.

5. A wearable sleep monitoring device according to claim 1, characterized in that: The auxiliary mechanism (24) comprises a moving component (241), a connecting disk (242) and a gas transmission component (243); the moving component (241) comprises a hollow box (2411), an extension rod (2412) and a compression spring (2413); the hollow box (2411) is embedded in the surface of the telescopic belt (2); the extension rod (2412) slides through the hollow box (2411); one end of the hollow box (2411) is fixed to the surface of the connecting disk (242); and the compression spring (2413) is sleeved on the surface of the extension rod (2412).

6. A wearable sleep monitoring device according to claim 5, characterized in that: The gas delivery assembly (243) comprises a gas cylinder (2431), a positioning tube (2432) and a gas delivery tube (2433); the positioning tube (2432) is fixed to the inner wall of the storage tank; the top and bottom of the positioning tube (2432) are provided with air holes; the gas cylinder (2431) is connected to the positioning tube (2432); the gas delivery tube (2433) is fixedly passed through the hollow frame (18) and the storage box (22); the two ends of the gas delivery tube (2433) are respectively connected to the positioning tube (2432) and the hollow tube (28); the connecting plate (242) is fixed to the surface of the gas cylinder (2431).

7. A wearable sleep monitoring device according to claim 1, characterized in that: The regulating mechanism (31) comprises a limiting ring (311), a second pressure sensor (312), a third pressure sensor (313) and a ball (314); the limiting ring (311) is fixed inside the hollow tube (28); the second pressure sensor (312) is embedded in the surface of the limiting ring (311); the third pressure sensor (313) is fixed at the bottom of the hollow tube (28); the ball (314) is arranged inside the hollow tube (28); the surface of the ball (314) is in contact with the surfaces of the second pressure sensor (312) and the third pressure sensor (313); and a venting groove (30) is provided on the surface of the hollow tube (28).

8. A wearable sleep monitoring device according to claim 2, characterized in that: A T-shaped frame (15) is fixed to the inner wall of the short tube (12), a slide cylinder (16) is fixed to one end of the T-shaped frame (15), and the surface of the slide rod (132) is slidably connected to the inner wall of the slide cylinder (16).

9. A wearable sleep monitoring device according to claim 1, characterized in that: Soft pads (7) are embedded on the upper and lower sides of the surface of the neck guard plate (6), and the surface of the soft pad (7) is designed to be arc-shaped.

10. A wearable sleep monitoring device according to claim 1, characterized in that: A reinforcing belt (4) is fixed to the top of the binding belt (3), a connecting cloth (5) is fixed to the surface of the reinforcing belt (4), the connecting cloth (5) is fixed to the neck guard plate (6), and a Velcro is provided on the surface of the binding belt (3) on one side, and the Velcro fits the surface of the binding belt (3) on the other side.

Citation Information

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