Portable brain health sleep disorder physiotherapy equipment
By using portable sleep disorder physiotherapy equipment, combined with aromatherapy, audio equipment, neck massage, and head-mounted sonic electroacupuncture, the problems of portability and multi-method integration have been solved, achieving a comprehensive improvement in sleep quality.
Patent Information
- Application Number
- CN202511256774.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-04
- Publication Date
- 2025-10-31
AI Technical Summary
Existing sleep disorder treatment devices are not portable, lack multi-method combination treatment plans, cannot accurately assess treatment effects, and are difficult to comprehensively improve sleep quality.
A portable brain health sleep disorder physiotherapy device was designed, which combines an aromatherapy device, a sound system, a neck massage component, and a head-mounted sonic electroacupuncture device to provide multi-dimensional relaxation and portability, and integrates multiple treatment methods to synergistically regulate sleep problems.
Through multi-dimensional relaxation techniques, it significantly improves sleep quality, enhances portability, provides precise sleep conditioning effects, and adapts to the needs of different scenarios.
Smart Images

Figure CN120860423A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of sleep disorder physiotherapy technology, specifically a portable brain health sleep disorder physiotherapy device. Background Technology
[0002] Currently, products on the market designed to improve sleep have many limitations: traditional bedding can only provide basic support and cannot effectively intervene in issues such as physical tension and mental anxiety that affect sleep; some sleep aids have limited functions, either creating an atmosphere solely through aroma or sound while ignoring the impact of muscle tension on sleep, making it difficult to fundamentally alleviate difficulty falling asleep due to physical and mental exhaustion; and some physiotherapy devices, while having some conditioning effects, are not portable and cannot meet people's needs to improve their sleep environment at any time in different scenarios, greatly reducing the continuity and convenience of sleep conditioning.
[0003] More concerning is the dual shortcoming of existing sleep disorder treatment devices: "limited methods" and "difficulty in evaluating effectiveness." These devices generally employ single methods such as sound waves or electroacupuncture, lacking combined treatment plans that integrate multiple approaches, making it difficult to achieve synergistic therapeutic effects targeting the complex causes of sleep disorders. Furthermore, most devices lack real-time monitoring during treatment, making it impossible to scientifically evaluate physiological changes during the process and the final therapeutic effect, further limiting the precision and effectiveness of sleep improvement.
[0004] Therefore, it is necessary to develop a device that integrates physiological support, multi-dimensional relaxation, and portability to accurately address sleep disorders and improve treatment effectiveness and ease of use. Summary of the Invention
[0005] The purpose of this invention is to provide a portable brain health sleep disorder physiotherapy device to solve the problems mentioned in the background art above.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a portable brain health sleep disorder physiotherapy device, comprising a pillow body, wherein the top center area of the pillow body is provided with a groove adapted to the user's head, the spatial shape of the groove is adapted to the physiological curvature of the human head when it is rested, for providing stable support and positioning for the user's head, and realizing the natural placement of the head in the resting state; one end of the pillow body is provided with an integrally sewn raised part, the contour of the raised part is adapted to the physiological curvature of the human neck, for providing close support for the user's neck, so as to adapt to the natural posture of the neck during the resting process;
[0007] The other end of the pillow body is provided with an integrally sewn fabric cover. The inside of the fabric cover is connected to a storage sleeve by a sewing process. The inside of the pillow body is provided with a device frame. The inside of the device frame is provided with a kneading component for pressing the user's neck. The top of the pillow body and the sides of the groove are provided with kneading parts that cooperate with the kneading component.
[0008] Furthermore, the equipment frame is provided with two opposing blocks that move synchronously in opposite directions. One opposing block has a connecting rod symmetrically fixed to its side wall, and the other opposing block has two rotating rods symmetrically connected to its side. The two opposing side walls of the equipment frame are movably connected to a central shaft through bearings, and short-range support rods are fixedly connected to both ends of the two central shafts.
[0009] Furthermore, a cylindrical rotating block is fixedly connected to one end of the short-range support rod, and a pull rod is fixedly connected to one end of the cylindrical rotating block. A mid-range support rod is sleeved on the outer circumferential wall of the cylindrical rotating block, and the mid-range support rod and the outer wall of the cylindrical rotating block form a rotating fit connection structure, so that the mid-range support rod can rotate relative to the axis of the cylindrical rotating block.
[0010] Furthermore, one end of the mid-range support rod is rotatably connected to the end of the connecting rod, one end of the pull rod is movably connected to the side wall of the rotating rod through a bearing, and a synchronous shaft is fixedly connected between the two rotating rods.
[0011] Furthermore, four sets of guide slide rods are fixedly connected to the inner sidewall of the equipment frame in a symmetrical manner, and the two opposing blocks are slidably connected to the guide slide rods through through slots opened at both ends of the sidewall.
[0012] Furthermore, the device frame is equipped with a drive motor in a fixed manner through a placement groove pre-set on its side wall. The drive motor is used to drive one of the central shafts to achieve rotational movement. The placement groove is a recessed structure integrally formed on the side wall of the device frame, providing an installation positioning reference for the drive motor.
[0013] Furthermore, each of the opposing blocks is fixedly connected to a slider at its top, and the top of the device frame is provided with a groove for reserving sliding space for the slider. Two sliding seats are provided on the outer top of the device frame, and the bottom of the sliding seats is fixedly connected to the top of the slider.
[0014] A rotating plate is rotatably connected to the top of the sliding seat, and an arc-shaped push block that cooperates with the kneading part is fixedly connected to the top of the rotating plate. A torsion spring is installed at the rotatable connection between the arc-shaped push block and the sliding seat.
[0015] Furthermore, the outer wall of the fabric cover and the outer wall of the storage sleeve are respectively connected by a sewing process with zipper one and zipper two. Two lifting straps are also fixed on the outer wall of the storage sleeve. The lifting straps are sewn together with the outer wall of the storage sleeve to form an integrated connection structure, which is used for the user to hold and lift the storage sleeve.
[0016] Furthermore, the pillow body contains two sets of aroma diffusers and one set of speakers. The outer wall of the pillow body is provided with a socket and a switch assembly. The drive motor, aroma diffuser and speaker are all electrically connected to the socket and switch assembly through wires, so as to control the working status of the drive motor, aroma diffuser and speaker through the switch assembly, and obtain working power through the socket.
[0017] Furthermore, the headband is composed of acoustic electroacupuncture assembly one, acoustic electroacupuncture assembly two, acoustic electroacupuncture assembly three, acoustic electroacupuncture assembly four, a speaker, meridian electrodes, a temperature probe, a shell, electroacupuncture electrode plates, insulating glue, wires, and a transducer. The transducer is composed of a transducer cover, an elastic device, a coil, a transducer magnetic column, and a wire harness.
[0018] Compared with the prior art, the beneficial effects of the present invention are:
[0019] 1. When in use, the groove and raised part of the pillow body conform to the physiological curvature of the head and neck respectively, providing stable support; the kneading component realizes the synchronous reverse movement of the arc-shaped push block through a multi-link structure, and with the adaptive adjustment of the sliding seat, torsion spring and arc-shaped push block, it can evenly and gently knead the neck muscles near the back of the user's head, effectively relieving stiffness, improving neck relaxation, and laying a physical foundation for good sleep.
[0020] 2. In terms of creating a sleep-aiding environment, this device integrates aromatherapy and audio functions: the natural plant essential oils released by the aromatherapy diffuser can act on the nervous system to relieve anxiety and regulate mood; the gentle music played by the audio system can block out distractions and stabilize the mind and body. Both can be flexibly controlled via an on / off switch, working in conjunction with the neck massage function to comprehensively improve the sleep environment from physiological relaxation to psychological soothing, helping users fall asleep faster, improving sleep quality, and specifically addressing sleep disorders. Meanwhile, the double-layered storage structure consisting of a fabric cover and a storage sleeve, along with a lifting strap, significantly enhances the device's portability, allowing users to enjoy therapeutic services in different scenarios. Attached Figure Description
[0021] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to the accompanying drawings;
[0022] Figure 1 This is a schematic diagram showing the state of the pillow body after the storage cover has been wrapped around it in this invention;
[0023] Figure 2 This is a cross-sectional view of the pillow body in this invention;
[0024] Figure 3 This is a schematic diagram of the zipper structure in this invention;
[0025] Figure 4 This is a schematic diagram of the arc-shaped push block structure in this invention;
[0026] Figure 5 This is a schematic diagram of the device frame structure in this invention;
[0027] Figure 6 This is a schematic diagram of the sliding seat structure in this invention;
[0028] Figure 7 This is a top view of the internal structure of the device frame in this invention;
[0029] Figure 8 This is a schematic diagram of the two opposing blocks approaching each other in this invention;
[0030] Figure 9 This is a schematic diagram showing the two opposing blocks in the present invention in a state where they are far apart from each other;
[0031] Figure 10 This is a schematic diagram of the head-mounted frame structure in this invention;
[0032] Figure 11 This is a cross-sectional view of the internal structure of the outer shell in this invention;
[0033] Figure 12 A schematic diagram of the control system components of the internal structure of a head-mounted headset.
[0034] Figure 13 This is a schematic diagram of the channel switching circuit in this invention;
[0035] Figure 14 This is the control logic diagram for the meridian temperature detection and acoustic electroacupuncture treatment plan.
[0036] Reference numerals: 101, Pillow body; 201, Raised section; 301, Fabric cover; 401, Storage sleeve; 501, Equipment frame; 601, Opposing block; 602, Connecting rod; 603, Rotating rod; 604, Short-range support rod; 605, Pull rod; 606, Mid-range support rod; 607, Synchronous shaft; 608, Sliding seat; 609, Curved push block; 701, Sliding block; 801, Zipper one; 802, Zipper two; 901, Lifting strap; 110, Aromatherapy diffuser; 111 1. Audio equipment; 121. Socket; 131. Switch assembly; 141. Guide slide bar; 100. Headband frame; 1. Acoustic acupuncture assembly one; 2. Acoustic acupuncture assembly two; 3. Acoustic acupuncture assembly three; 4. Acoustic acupuncture assembly four; 5. Speaker; 6. Meridian electrodes; 7. Temperature probe; 11. Housing; 12. Acupuncture electrode; 13. Insulating adhesive; 14. Wire; 15. Transducer housing; 16. Elastic device; 17. Coil; 18. Transducer magnet; 19. Wire harness. Detailed Implementation
[0037] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0038] Example 1: As Figures 1-9 As shown, a portable brain health sleep disorder physiotherapy device includes a pillow body 101 and a headband 100. The pillow body 101 and the headband 100 are electrically connected. The top center area of the pillow body 101 has a groove adapted to the user's head. The shape of the groove is adapted to the physiological curvature of the human head when it is supported, so as to provide stable support and positioning for the user's head and realize the natural placement of the head in the pillow state.
[0039] One end of the pillow body 101 is provided with an integrally sewn raised part 201. The outline of the raised part 201 is adapted to the physiological curvature of the human neck to provide close support for the user's neck and adapt to the natural posture of the neck during pillow use. The other end of the pillow body 101 is provided with an integrally sewn fabric cover 301.
[0040] The pillow body 101 has a device frame 501 inside, and the device frame 501 has a kneading component for pressing the user's neck. The top of the pillow body 101, located on both sides of the groove, has kneading parts that cooperate with the kneading component. Figure 3As shown, the two sides of the groove on the upper surface of the pillow body 101 are in a raised state (i.e., the kneading part), and the arc-shaped push block 609 is located below the kneading part. Since the outer surface of the pillow body 101 is made of fabric, it has good deformation ability. When the two arc-shaped push blocks 609 move in opposite directions at the same time, they can knead the user's neck that is resting on the upper surface of the pillow body 101, thereby relieving the user's neck.
[0041] The equipment frame 501 has two opposing blocks 601 that move synchronously in opposite directions. One opposing block 601 has a connecting rod 602 symmetrically fixed to its side wall, and the other opposing block 601 has two rotating rods 603 symmetrically connected to its side. The two opposing side walls of the equipment frame 501 are movably connected to a central shaft through bearings.
[0042] Both ends of the two central shafts are fixedly connected to short-stroke support rods 604. One end of the short-stroke support rod 604 is fixedly connected to a cylindrical rotating block. One end of the cylindrical rotating block is fixedly connected to a pull rod 605. A mid-stroke support rod 606 is sleeved on the outer circumferential wall of the cylindrical rotating block. The mid-stroke support rod 606 and the outer wall of the cylindrical rotating block form a rotating fit connection structure, so that the mid-stroke support rod 606 can rotate relative to the axis of the cylindrical rotating block.
[0043] One end of the mid-range support rod 606 is rotatably connected to the end of the connecting rod 602, one end of the pull rod 605 is movably connected to the side wall of the rotating rod 603 through a bearing, a synchronous shaft 607 is fixedly connected between the two rotating rods 603, and four sets of guide slide rods 141 are fixedly connected in a symmetrical manner on the inner side wall of the equipment frame 501, and two opposing blocks 601 are slidably connected to the guide slide rods 141 through through slots opened at both ends of the side wall.
[0044] The device frame 501 is equipped with a drive motor in a fixed manner through a pre-set placement slot on its side wall. The drive motor is used to drive one of the central shafts to achieve rotational movement. The placement slot is a recessed structure integrally formed on the side wall of the device frame 501, which provides an installation positioning reference for the drive motor.
[0045] The top of each opposing block 601 is fixedly connected to a slider 701. The top of the equipment frame 501 is provided with a groove for reserving sliding space for the slider 701. Two sliding seats 608 are provided on the top of the outer side of the equipment frame 501. The bottom of the sliding seat 608 is fixedly connected to the top of the slider 701. A rotating plate is rotatably connected to the top of the sliding seat 608. An arc-shaped push block 609 that cooperates with the kneading part is fixedly connected to the top of the rotating plate. A torsion spring is installed at the rotatable connection between the arc-shaped push block 609 and the sliding seat 608.
[0046] Based on the above, the specific operation process of the kneading component is as follows: the drive motor drives the corresponding connected central shaft to rotate, which in turn drives the short support rod 604 to rotate. The short support rod 604 drives the pull rod 605 to rotate synchronously through the cylindrical rotating block. During the process of the cylindrical rotating block rotating around the center of the drive motor, the mid-range support rod 606 reciprocates relative to the connecting rod 602. The two rotating rods 603, in cooperation with the synchronous shaft 607, reciprocate relative to one of the opposing blocks 601. Through the above multi-link movement, the two opposing blocks 601 move synchronously in opposite directions along the guide slide rod 141. The two opposing blocks 601 drive the slider 701 and the sliding seat 608 to move synchronously in opposite directions. Under the action of the sliding seat 608, the arc-shaped push block 609 continuously kneads the neck near the back of the user's head.
[0047] The curved design of the curved push block 609 is highly compatible with the contour of the human neck, increasing the contact area with the neck during the kneading process. This allows the kneading force to be applied more evenly to the neck muscles, effectively relieving muscle stiffness and enhancing neck relaxation. The curved push block 609, together with the torsion spring and the sliding seat 608, forms a flexible adaptive adjustment mechanism.
[0048] The sliding base 608 moves synchronously with the slider 701, providing a stable displacement basis for the curved push block 609 and ensuring precise and controllable kneading range; while the torsion spring gives the curved push block 609 a certain deflection margin, allowing it to automatically adjust the contact angle according to the subtle movements of the neck and the neck shape of different users, ensuring the effectiveness of the kneading force and avoiding the pressure caused by hard contact, significantly improving the comfort and adaptability of the device during use;
[0049] The 609 curved push block is made of skin-friendly and elastic medical-grade silicone or memory foam. These materials are soft and reduce friction and irritation when in contact with the neck skin, preventing skin sensitivity or discomfort, making them especially suitable for long-term use during sleep. At the same time, it has moderate resilience, maintaining sufficient support to transmit effective pressure during kneading, while also slightly deforming to adapt to changes in neck pressure, further enhancing its fit to the neck contour and making the kneading motion gentler and more natural.
[0050] Example 2: Figures 10-14 As shown, the headband 100 is composed of acoustic electroacupuncture assembly 1, acoustic electroacupuncture assembly 2, acoustic electroacupuncture assembly 3, acoustic electroacupuncture assembly 4, speaker 5, meridian electrode 6, temperature probe 7, shell 11, electroacupuncture electrode 12, insulating glue 13, wire 14 and transducer. The transducer is composed of transducer cover 15, elastic device 16, coil 17, transducer magnetic column 18 and wire harness 19.
[0051] Sonic electroacupuncture component 1, sonic electroacupuncture component 2, sonic electroacupuncture component 3, and sonic electroacupuncture component 4 are all sonic electroacupuncture components, distributed in different positions on the outer shell 11. The electroacupuncture needles are paired, and can be combined to form pairs such as sonic electroacupuncture component 1 and sonic electroacupuncture component 2, sonic electroacupuncture component 3 and sonic electroacupuncture component 4; or sonic electroacupuncture component 2 and sonic electroacupuncture component 3, sonic electroacupuncture component 1 and sonic electroacupuncture component 4; or sonic electroacupuncture component 1 and sonic electroacupuncture component 3, sonic electroacupuncture component 2 and sonic electroacupuncture component 4; they can be controlled via an APP and can automatically switch according to the treatment mode; each channel is independently controlled and can be controlled via an APP, automatically switching according to the treatment mode.
[0052] The speakers 5 are located on both sides of the outer casing 11 and can play prompts and music; the meridian electrodes 6 are made of metal plates and are used to collect meridian data; the temperature probe 7 is used to detect temperature changes.
[0053] The outer shell 11 is the outer shell 11 of the head-mounted head frame 100. It is made of insulating material and is used to fix the transducer and the electroacupuncture electrode 12. It is used to fix the brain health (sleep disorder) physiotherapy device to the outer shell 11.
[0054] The electroacupuncture electrode 12 serves as the transmission electrode for electroacupuncture signals. It is connected to the electroacupuncture switching circuit via the wire 14. This structure uses a metal electrode or conductive silicone material and is connected to the transducer magnetic column 18 via insulating glue 13. During operation, the reciprocating motion of the transducer magnetic column 18 drives the electroacupuncture electrode 12 to move, generating related motion with the outer shell 11. The reciprocating motion of the electroacupuncture electrode 12 allows the patient to feel the effect of sound waves. At the same time, the reciprocating motion of the electroacupuncture electrode 12 generates different pressures between itself and the patient's skin, bringing different treatment sensations to the patient while applying electroacupuncture signals.
[0055] The transducer is fixed to the housing 11, and the coil 17 is fixed to the transducer. It is connected to the power amplifier through the wire harness 19. Different signals are input to generate an alternating electric field, which generates an attractive or repulsive force with the transducer magnetic column 18, thereby causing the transducer magnetic column 18 to reciprocate.
[0056] The elastic device 16 connects the transducer and the transducer magnetic column 18, generating an elastic force that repels the magnetic force generated between the coil 17 and the transducer magnetic column 18, thereby causing the transducer magnetic column 18 to reciprocate.
[0057] There is a reciprocating motion between the electrode 12 and the housing 11. To prevent malfunctions caused by improper operation, a limiting structure is designed between the electrode 12 and the housing 11 to prevent excessive stretching and compression, which could damage the transducer.
[0058] The head-mounted frame 100 in this case is controlled by a mobile phone / computer application (APP). This device can be controlled through the software, which has the following functions: it can control the selection of audio input, control the Bluetooth music output from the Bluetooth module to be on and off, control the music output from the local music player to be on and off; it can adjust the vibration intensity of the output to the transducer; it can adjust the volume of the output to the speaker 5; and it can control the on and off of the transducer output and the speaker 5 output.
[0059] It can control the signal source input to the transducer. It can control the input link as follows: Bluetooth module - chip select circuit - filter amplification - power amplifier - transducer; it can control the input link as follows: local music player - chip select circuit - filter amplification - power amplifier - transducer; it can control the input link as follows: ((Bluetooth module - chip select circuit) + (local music player - chip select circuit)) - filter amplification - power amplifier - transducer.
[0060] It can control the signal source of the input transducer, and can control the input link as Bluetooth module-chip select circuit-power amplifier-speaker, MCU-chip select circuit-power amplifier-speaker, and ((Bluetooth module-chip select circuit)+(local music player-chip select circuit))--power amplifier-speaker;
[0061] The treatment mode and intensity of electroacupuncture can be adjusted.
[0062] The pairing mode of the electroacupuncture can be adjusted, and the four electrodes (sonic electroacupuncture component 1, sonic electroacupuncture component 2, sonic electroacupuncture component 3, and sonic electroacupuncture component 4) can be automatically combined to form two pairs of therapeutic electroacupuncture.
[0063] It can analyze data collected from meridians and temperature samples, and output an evaluation of treatment effectiveness based on the data;
[0064] The Bluetooth module can receive commands from mobile phone / computer applications, forward them to the MCU, and execute related actions. The Bluetooth module can also receive music from mobile phone / computer applications and output it to the chip select circuit for splitting. It can also forward meridian and temperature data collected by the MCU to mobile phone / computer applications.
[0065] A local music player can play music stored locally.
[0066] The MCU can process data commands from mobile / computer applications forwarded by the Bluetooth module and execute the software functions listed below;
[0067] The chip select circuit can control the MCU to turn each channel on or off, thereby enabling the selection of each signal.
[0068] Filtering and amplification can extract the 16-200Hz components from a full-frequency audio signal (0-20kHz) and amplify this audio signal;
[0069] The power amplifier amplifies the filtered signal again and outputs it to the transducer, converting the signal into sound waves that act on the human body.
[0070] The power amplifier amplifies the signal after the chip select circuit and outputs it to speaker 5, converting the signal into sound that acts on the human body.
[0071] The electroacupuncture driving circuit converts the control signal output by the MCU into an electroacupuncture signal, outputs it to the channel switching circuit for channel adaptation, and then outputs it to the electroacupuncture electrode 12 to act on the human body.
[0072] The meridian acquisition circuit outputs a constant voltage DC signal to the detection electrode. After contacting the human body, it detects the internal resistance of the meridians. The signal is collected by the MCU and forwarded to the mobile phone / computer application via Bluetooth module.
[0073] The temperature acquisition circuit outputs a signal to the temperature probe 7, which collects the temperature of the contact surface after contacting the human body. The data is then collected by the MCU and forwarded to the mobile phone / computer application via the Bluetooth module.
[0074] like Figure 13 and Figure 14 As shown, the channel switching circuit is demonstrated below:
[0075] Connect electrode 1 to electrodes 1 and 2, and electrode 2 to electrodes 3 and 4. K1, K2, K5, and K8 need to be closed, and K3, K4, K6, and K7 need to be disconnected.
[0076] 2) Connect electrode 1 and electrode 3 with electrode #1, and connect electrode 2 and electrode 4 with electrode #2. K1, K3, K6, and K8 need to be closed, and K2, K4, K5, and K7 need to be disconnected.
[0077] 3) Connect electrode 1 and electrode 4 with electrode 1#, and electrode 2 and electrode 3 with electrode 2#. K1, K4, K6 and K7 need to be closed, and K2, K3, K5 and K8 need to be disconnected.
[0078] The head-mounted frame 100 in this case integrates both sound wave and electroacupuncture solutions. The integration of sound waves and electroacupuncture enhances the therapeutic experience. The sound wave component features miniaturized transducers and simplified filtering and amplification circuits, resulting in a smaller overall device for localized treatment, suitable for portable applications. A single transducer's signal input can achieve low-frequency sound waves (output via a local player), audio filtering, and a combination of low-frequency sound waves and audio filtering, diversifying treatment options. Meridian and temperature detection are added and matched with the treatment plan, allowing for real-time adjustments. Furthermore, the miniaturization of the sound wave device and the combination of sound waves and electroacupuncture create a brain health therapy device. The implementation of meridian and temperature detection methods enables automatic adjustment of the treatment plan. Multiple sound wave inputs are controllable, with each sound wave channel independently controllable. Multiple electroacupuncture channels can be freely switched, enriching the real-time therapy options.
[0079] Example 3: The inside of the fabric cover 301 is connected to the storage sleeve 401 by a sewing process. The outer wall of the fabric cover 301 and the outer wall of the storage sleeve 401 are respectively connected by a zipper 1 801 and a zipper 2 802 by a sewing process. Two lifting straps 901 are also fixed on the outer wall of the storage sleeve 401. The lifting straps 901 are connected to the outer wall of the storage sleeve 401 by a sewing process to form an integrated connection structure, which is used for the user to hold and lift the storage sleeve 401.
[0080] The fabric cover 301 primarily serves as a basic storage and protection unit. The internal storage sleeve 401, connected via stitching, is the core component for portable storage of the device. The lifting strap 901 provides a convenient grip, facilitating lifting and moving of the storage sleeve 401, enhancing flexibility when storing and carrying the device. Zipper 801 is used to seal the fabric cover 301, effectively preventing the storage sleeve 401 from accidentally slipping out and providing a relatively enclosed protective space. Zipper 802 is specifically used to seal the pillow body 101 within the storage sleeve 401, preventing damage to the pillow body 101 due to movement during storage.
[0081] During use, when it is necessary to store the pillow body 101, first remove the storage sleeve 401 from the fabric cover 301 (at this time, zipper 801 is in the open state), unfold it in the reverse direction, and then put the pillow body 101 into the storage sleeve 401. Pull and close zipper 802 to complete the storage and sealing of the pillow body 101, making it a compact whole. Afterwards, put the folded and rolled storage sleeve 401 (along with the pillow body 101 inside) into the fabric cover 301, and then pull and close zipper 802 to seal the storage sleeve 401. With the help of the lifting strap 901, users can easily carry it, fully demonstrating the portable characteristics of this portable brain health sleep disorder physiotherapy device.
[0082] The pillow body 101 houses two sets of aroma diffusers 110 and a set of speakers 111. The outer wall of the pillow body 101 is provided with a socket 121 and a switch group 131. The drive motor, aroma diffuser 110 and speaker 111 are all electrically connected to the socket 121 and switch group 131 through wires. The switch group 131 controls the working status of the drive motor, aroma diffuser 110 and speaker 111, and obtains working power through the socket 121.
[0083] The device has two built-in aroma diffusers 110, each containing natural plant essential oils or traditional Chinese medicine ingredients, such as lavender and sandalwood. Taking lavender as an example, its linalool and linalyl acetate, when inhaled through the nasal cavity, can stimulate the olfactory nerves, acting on the limbic system of the brain, effectively lowering heart rate and blood pressure, relieving anxiety, helping users relax their bodies, and falling asleep faster. Turning on the aroma diffuser 110 via the switch 131 slowly releases a subtle fragrance, creating a soothing and sleep-inducing atmosphere and improving the user's sleep environment.
[0084] The speaker 111 is a small Bluetooth speaker device, powered by a connector 121. Once activated, users can connect to devices such as smartphones via Bluetooth to play gentle, soothing music. This calming and soothing music reduces tension and anxiety, blocks out external distractions, regulates breathing and heart rate, shifts the user's attention, inhibits activity in the brain's arousal areas, and promotes activity in sleep-related areas. Listening to this music before bed helps the brain establish a conditioned reflex to sleep, making it easier for users to fall asleep and aiding in the improvement of sleep disorders.
[0085] The above description is merely an example and illustration of the structure of the present invention. Those skilled in the art can make various modifications or additions to the specific embodiments described, or use similar methods to replace them, as long as they do not deviate from the structure of the invention or exceed the scope defined in the claims, all of which should fall within the protection scope of the present invention.
[0086] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the invention. In this specification, illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0087] The preferred embodiments of the present invention disclosed above are merely illustrative of the invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the invention to any specific implementation. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of the invention, thereby enabling those skilled in the art to better understand and utilize the invention. The invention is limited only by the claims and their full scope and equivalents.
Claims
1. A portable brain health sleep disorder physiotherapy device, comprising a pillow body (101) and a headband frame (100), characterized in that, The pillow body (101) has a groove in the top center area that fits the user's head. One end of the pillow body (101) has a raised part (201) that provides close support for the user's neck. The other end of the pillow body (101) is provided with an integrally sewn fabric cover (301). The inside of the fabric cover (301) is connected to a storage sleeve (401) by a sewing process. The pillow body (101) is provided with a device frame (501) inside, and the device frame (501) is provided with a kneading component for pressing the user's neck. The pillow body (101) is provided with a kneading part that cooperates with the kneading component on the top and on both sides of the groove.
2. The portable brain health sleep disorder physiotherapy device according to claim 1, characterized in that, The device frame (501) is equipped with two opposing blocks (601) that move synchronously in opposite directions. One of the opposing blocks (601) has a connecting rod (602) symmetrically fixed to its side wall. The other opposing block (601) has two rotating rods (603) symmetrically rotatably connected to its side. The two opposing side walls of the device frame (501) are movably connected to a central shaft through bearings. Both ends of the two central shafts are fixedly connected to short-range support rods (604).
3. The portable brain health sleep disorder physiotherapy device according to claim 2, characterized in that, One end of the short-range support rod (604) is fixedly connected to a cylindrical rotating block, and one end of the cylindrical rotating block is fixedly connected to a pull rod (605). A mid-range support rod (606) is sleeved on the outer circumferential wall of the cylindrical rotating block, and the mid-range support rod (606) and the outer wall of the cylindrical rotating block form a rotating fit connection structure, so that the mid-range support rod (606) can rotate relative to the axis of the cylindrical rotating block.
4. The portable brain health sleep disorder physiotherapy device according to claim 3, characterized in that, One end of the mid-range support rod (606) is rotatably connected to the end of the connecting rod (602), one end of the pull rod (605) is movably connected to the side wall of the rotating rod (603) through a bearing, and a synchronous shaft (607) is fixedly connected between the two rotating rods (603).
5. A portable brain health sleep disorder physiotherapy device according to claim 2, characterized in that, The inner sidewall of the equipment frame (501) is symmetrically fixedly connected with four sets of guide slide rods (141), and the two opposing blocks (601) are slidably connected to the guide slide rods (141) through through slots opened at both ends of the sidewall.
6. The portable brain health sleep disorder physiotherapy device according to claim 1, characterized in that, The device frame (501) is equipped with a drive motor in a fixed manner through a placement groove pre-set on its side wall. The drive motor is used to drive one of the central shafts to achieve rotational movement. The placement groove is a recessed structure integrally formed on the side wall of the device frame (501) to provide an installation positioning reference for the drive motor.
7. A portable brain health sleep disorder physiotherapy device according to claim 2, characterized in that, The top of each opposing block (601) is fixedly connected to a slider (701). The top of the device frame (501) is provided with a groove for reserving sliding space for the slider (701). The top of the outer side of the device frame (501) is provided with two sliding seats (608), and the bottom of the sliding seats (608) is fixedly connected to the top of the slider (701). A rotating plate is rotatably connected to the top of the sliding seat (608), and an arc-shaped push block (609) that cooperates with the kneading part is fixedly connected to the top of the rotating plate. A torsion spring is installed at the rotatable connection between the arc-shaped push block (609) and the sliding seat (608).
8. A portable brain health sleep disorder physiotherapy device according to claim 1, characterized in that, The outer wall of the fabric cover (301) and the outer wall of the storage sleeve (401) are respectively connected by a zipper one (801) and a zipper two (802) through a sewing process. Two lifting straps (901) are also fixed on the outer wall of the storage sleeve (401). The lifting straps (901) are connected to the outer wall of the storage sleeve (401) by sewing to form an integrated connection structure.
9. A portable brain health sleep disorder physiotherapy device according to claim 1, characterized in that, The pillow body (101) contains two sets of aroma diffusers (110) and a set of speakers (111). The outer side wall of the pillow body (101) is provided with a socket (121) and a switch assembly (131).
10. A portable brain health sleep disorder physiotherapy device according to claim 1, characterized in that, The headband (100) is composed of an acoustic electroacupuncture assembly one (1), an acoustic electroacupuncture assembly two (2), an acoustic electroacupuncture assembly three (3), an acoustic electroacupuncture assembly four (4), a speaker (5), a meridian electrode (6), a temperature probe (7), a shell (11), an electroacupuncture electrode (12), insulating glue (13), a wire (14), and a transducer. The transducer is composed of a transducer cover (15), an elastic device (16), a coil (17), a transducer magnetic column (18), and a wire harness (19).