Personalized customized cervical vertebra orthopedic pillow and manufacturing method thereof
By combining multiple modules in a personalized cervical spine orthopedic pillow, the problem of traditional pillows not being able to fit precisely is solved, achieving a combination of immediate comfort and long-term health and comfort, relieving cervical spine pressure and improving sleep.
Patent Information
- Application Number
- CN202511169193.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-20
- Publication Date
- 2025-11-07
AI Technical Summary
Traditional pillows cannot accurately fit the curvature of an individual's cervical spine, resulting in insufficient support or overcorrection, which cannot effectively relieve cervical strain and improve sleep quality.
The personalized cervical spine orthopedic pillow achieves precise fitting and dynamic intervention through a combination of frame support module, dynamic adjustment module, sensor feedback module, adaptation module and human-computer interaction module, including 3D printed skeleton, adjustable airbag, sensor monitoring and human-computer interaction functions.
It combines immediate comfort with long-term health and comfort, relieves cervical spine pressure, maintains the physiological curvature of the cervical spine, and improves sleep quality, making it suitable for people with sub-healthy cervical spine and those with special rehabilitation needs.
Smart Images

Figure CN120899438A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of orthopedic pillows, in particular to a personalized customized cervical orthopedic pillow and a manufacturing method thereof. BACKGROUND
[0002] The change of modern lifestyle leads to the trend of younger and more common cervical diseases, and the traditional standardized pillow cannot match the individual cervical curvature difference, resulting in insufficient support or overcorrection, further aggravating the cervical strain. Market research shows that 78% of users are not satisfied with the existing pillow, but lack of scientific knowledge, mistakenly attributing the pillow to external factors such as mattress, which creates a huge space for customized products that accurately match. The existing market products generally exist in the contradiction between standardization and individualization. Although the Thailand latex pillow and the European and American down pillow are soft, they lack scientific support structure and can easily lead to deterioration of cervical physiological curvature after long-term use. The buckwheat pillow has plasticity, but it has strong fluidity and needs to be adjusted frequently, making it difficult to maintain stable support. Compared with the above, the customized orthopedic pillow fundamentally solves the adaptability problem of traditional products through dynamic fitting design.
[0003] Therefore, the present application provides a personalized customized cervical orthopedic pillow and a manufacturing method thereof, which upgrades the passive adaptation of traditional pillows to active fitting, and finally realizes the progressive effect of instant comfort, sleep improvement and cervical maintenance. SUMMARY
[0004] In view of the deficiencies of the prior art, the present application provides a personalized customized cervical orthopedic pillow and a manufacturing method thereof, which upgrades the passive adaptation of traditional pillows to active fitting through data collection, flexible production and dynamic optimization. Through precise adaptation of physiological data and breaking through the limitation of single material of traditional pillows, the material scheme is customized according to user needs, so that the pillow material is more diversified, and the pillow changes from traditional instant comfort to long-term health and comfort. It can not only relieve cervical pressure and reduce discomfort, but also maintain cervical physiological curvature for a long time to prevent chronic injury, and also improve sleep quality, realizing the progressive effect of instant comfort-sleep improvement-cervical maintenance. It is especially suitable for cervical sub-health population, sleep sensitive people and special rehabilitation needs users.
[0005] To achieve the above purpose, the present application realizes the following technical scheme: A personalized customized cervical orthopedic pillow and a manufacturing method thereof, the cervical orthopedic pillow corrects the cervical spine through precise adaptation and dynamic intervention through physical structure support, and the cervical orthopedic pillow comprises five functional modules of frame support module, dynamic adjustment module, sensing feedback module, adaptation module and man-machine interaction module. The frame support module is the skeleton of the cervical orthopedic pillow, responsible for realizing data customized precise structure support, including main body support frame, layered buffer structure and stable component structure. The dynamic adjustment module actively adjusts through mechanical and electronic structures for phased correction and real-time adaptation in individual needs, and includes a driving execution device and an execution adjustment device; The sensing feedback module monitors the use state and triggers intervention to ensure the accuracy of individual adjustment, and includes a sensor module and a feedback intervention module; The adaptation module adapts to different use scenarios through modular splicing or deformable structure, and realizes individualization of biocompatibility and comfort through layered material design, and includes a scene adaptation module and a material adaptation module, the scene adaptation module is used to adapt to different use scenarios, and the material adaptation module realizes individualization of biocompatibility and comfort through layered material design; The human-computer interaction module has a safety protection function and a human-computer interaction function, the safety protection includes a pressure safety valve and a flame-retardant shell, and the human-computer interaction function facilitates user operation and data viewing.
[0006] Further, the constituent components of the main support frame of the frame support module are 3D printed polylactic acid skeletons made of plastic base materials, the individual cervical curve is realized through 3D printing, and the preset curvature is fixed by setting degradable polycaprolactone support strips in the skeleton, the layered buffer structure includes a pillow pressure bearing area, a cervical vertebra support area and a shoulder buffer area, the pillow pressure bearing area is a low-hardness slow-rebound sponge or a silica gel pad, the area matches the size of the individual pillow bone, reduces the skull compression, the cervical vertebra support area adopts modified polyurethane, the convex height matches the lordosis of the cervical vertebra, the shoulder buffer area adopts ultra-soft down cotton filling, the depth is customized according to the individual shoulder width so that the cervical vertebra and the trunk are horizontal when sleeping on the side, the stability components include a bottom anti-skid layer and an edge reinforcing strip, the bottom anti-skid layer is a silica gel particle layer to increase the friction coefficient to prevent the pillow from sliding when turning over at night, and the edge reinforcing strip is arranged at the outer edge of the pillow, the material is high-density sponge edge, which maintains the overall shape and avoids edge collapse; Through the above technical solution, the frame support module determines the basic curvature, height and support strength of the pillow, adapts to the natural arc of the individual cervical vertebra, the partitioned buffer structure realizes gradient pressure dispersion of “pillow - cervical vertebra - shoulder”, avoids local compression, and the base stability component ensures the overall stability of the pillow to avoid displacement during use.
[0007] Further, the driving execution device of the dynamic adjustment module includes a PCB control board, a battery module and a wireless communication device module, and the execution adjustment device includes a gas pump adjustment unit, the gas pump adjustment unit sets a plurality of independent air bags in the cervical vertebra support area, the independent air bags are made of high-strength TPU material, a micro-silence air pump is arranged in the pillow to adjust the height of the independent air bags by inflating and deflating the independent air bags; By the above technical solution, the dynamic adjustment module actively adjusts the support curvature, height or hardness in response to the sensing data or user instructions and received signals and controls the action of the actuator to realize the functions of phased correction and real-time adaptation for individual needs.
[0008] Further, the sensor module of the sensor feedback module includes a pressure sensor, a muscle sensor and a sound sensor. The pressure sensor is embedded with a plurality of flexible piezoresistive sensors in the cervical vertebra support area to monitor the pressure of the contact point in real time. The muscle sensor is provided with a plurality of dry electrode sheets in the neck contact area to collect the trapezius muscle electromyographic signal and judge the muscle tension. The sound sensor captures the breathing sound during sleep. The feedback intervention module includes a vibration feedback device and a hot compress module. The vibration feedback device is provided with a miniature eccentric motor at the edge of the cervical vertebra support area to trigger slight vibration when the sleeping posture is not good. The hot compress module is provided with a flexible graphene heating film in the cervical vertebra area to relieve muscle tension through closed-loop control of the temperature sensor. By the above technical solution, the sensor feedback module is used to monitor the use state and trigger intervention. By collecting data such as cervical vertebra pressure, sleeping posture and muscle state and physically intervening or reminding in abnormal state, the accuracy of individual adjustment is ensured.
[0009] Further, the material adaptation module of the adaptation module customizes the surface contact material of the pillow according to individual requirements, and sets a detachable pillowcase. An intermediate buffer layer is added in the middle of the pillow between the surface layer and the support layer. The latex granules are filled according to the user's preference for softness, and an antibacterial coating and a heat-conducting coating are added to the contact surface of the pillow. By the above technical solution, the material adaptation module realizes individualization of biocompatibility and comfort through layered material design, and is customized according to physical condition, such as antibacterial peptide coating bamboo fiber for allergic constitution, ice silk and honeycomb mesh cloth for hot and humid constitution, and moisture-absorbing and heating cotton for winter, and additional antibacterial and heat-conducting effects, so that the pillow is not only comfortable but also healthier to use.
[0010] Further, the scene adaptation module of the adaptation module is provided with a storage folding assembly and an expansion interface module. The storage folding assembly is embedded with a bendable PP plastic hinge in the middle of the main support layer, which can be folded when stored. The independent air bag is provided with an inflation valve, which can be compressed for storage after deflation. The expansion interface module is provided with a USB data interface slot for charging the built-in battery or connecting external control devices. By the above technical solution, the modularization splicing or deformable structure is used to adapt to different use scenarios and improve portability.
[0011] Further, the safety protection function of the human-computer interaction module is provided with a pressure safety valve in the independent air bag, which automatically releases the air when the pressure is greater than 15 kPa to prevent excessive inflation from pressing the cervical vertebrae, and the human-computer interaction function includes a physical control button APP interaction interface, the physical control button is provided with a power button, a mode switching button and a backlight indication, the APP interaction interface is connected with the mobile phone APP through Bluetooth, and parameter adjustment and data viewing are supported; Through the above technical solution, the modules form a whole through physical connection and data interaction, the core support module provides a basic form, the dynamic adjustment module corrects the form in real time based on the data of the sensing module, the material adaptation module optimizes the contact experience, the scene adaptation module expands the use range, and the safety and interaction module guarantees closed-loop operation.
[0012] Further, the manufacturing process steps of the cervical vertebra orthopedic pillow are as follows: Step 1: user personal data acquisition and analysis; obtaining personalized data such as user cervical vertebra physiological characteristics and sleeping habits to provide a basis for design; Step 2: personalized structure frame design; designing the partition structure, support curve and material combination scheme of the pillow based on data; Step 3: material preparation and pre-treatment; matching raw materials meeting performance requirements according to the design scheme and performing pre-treatment; Step 4: flexible production and processing; realizing structure forming and assembly most conforming to the user cervical vertebra curve through customized equipment; Step 5: personalized adaptation detection and debugging; verifying the fit of the pillow to the user and ensuring that the function meets the standard; Step 6: packaging and delivery.
[0013] The application provides a personalized customized cervical vertebra orthopedic pillow and a manufacturing method thereof. The application provides a personalized customized cervical vertebra orthopedic pillow and a manufacturing method thereof, which upgrades passive adaptation of a traditional pillow to active fit through data acquisition, flexible production and dynamic optimization, breaks through the limitation of a single material of the traditional pillow, customizes a material scheme according to user requirements, makes the materials of the pillow more diversified, changes the traditional pillow from instant comfort to long-term health and comfort, can relieve cervical vertebra pressure and reduce discomfort symptoms, can maintain cervical vertebra physiological curvature for a long time and prevent chronic damage, can improve sleep quality, realizes progressive effects of instant comfort-sleep improvement-cervical vertebra maintenance, and is especially suitable for cervical vertebra sub-healthy people, sleep sensitive people and special rehabilitation demand users. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 Fig. 1 is a structure frame diagram of the personalized customized cervical vertebra orthopedic pillow of the application; Figure 2The manufacturing process flow chart of the personalized customized cervical orthopedic pillow of the present application. DETAILED DESCRIPTION
[0015] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0016] Embodiment 1 As shown in the drawings, Figure 1 The present application provides a personalized customized cervical orthopedic pillow and a manufacturing method thereof. The cervical orthopedic pillow corrects the cervical vertebrae through precise fitting and dynamic intervention through physical structure support. The cervical orthopedic pillow includes five functional modules: a frame support module, a dynamic adjustment module, a sensing feedback module, an adaptive module, and a human-computer interaction module. The frame support module is the skeleton of the cervical orthopedic pillow, responsible for realizing data customized precise structure support, including a main support frame, a layered buffer structure, and a stabilizing component structure. The dynamic adjustment module is aimed at the phased correction and real-time adaptation function in personalized needs, and realizes active adjustment through mechanical and electronic structures. The dynamic adjustment module includes a driving execution device and an execution adjustment device. The sensing feedback module is used to monitor the use state and trigger intervention, ensuring the accuracy of personalized adjustment. The sensing feedback module includes a sensor module and a feedback intervention module. The adaptive module adapts to different use scenarios through modular splicing or deformable structure and realizes the individualization of biocompatibility and comfort through layered material design. The adaptive module includes a scene adaptation module and a material adaptation module. The scene adaptation module is used to adapt to different use scenarios, and the material adaptation module realizes the individualization of biocompatibility and comfort through layered material design. The human-computer interaction module has a safety protection function and a human-computer interaction function. The safety protection includes a pressure safety valve and a flame-retardant shell. The human-computer interaction function facilitates user operation and data viewing by the user. The constituting component of the main body support frame of the frame support module is a 3D printing polylactic acid skeleton of a plastic base material, the individualized cervical curve curvature is realized by 3D printing, and the preset curvature is fixed in the skeleton by arranging a degradable polycaprolactone support strip, the layered buffer structure includes a pillow pressure bearing area, a cervical vertebra support area and a shoulder buffer area, the pillow pressure bearing area is a low-hardness slow-rebound sponge or a silica gel pad, the area matches the size of the individual pillow bone, the skull compression is reduced, the cervical vertebra support area adopts modified polyurethane, the convex height matches the lordosis of the cervical vertebra, the shoulder buffer area is filled with super-soft down cotton, the depth is customized according to the individual shoulder width, so that the cervical vertebra and the trunk are horizontal when sleeping on the side, the stability component includes a bottom anti-skid layer and an edge reinforcing strip, the bottom anti-skid layer is a silica gel particle layer to increase the friction coefficient to prevent the pillow from sliding when turning over at night, and the edge reinforcing strip is arranged at the outer edge of the pillow and is made of high-density sponge edge covering, which maintains the overall shape and avoids edge collapse, the frame support module determines the basic curvature, height and support strength of the pillow, adapts to the natural arc of the individual cervical vertebra, the partitioned buffer structure realizes gradient pressure dispersion of the "pillow - cervical vertebra - shoulder", avoids local compression, the base stability component ensures the overall stability of the pillow and avoids displacement during use; The driving execution device of the dynamic adjustment module includes a PCB control board, a battery module and a wireless communication device module, the execution adjustment device includes a gas pump adjustment unit, the gas pump adjustment unit is provided with a plurality of independent air bags in the cervical vertebra support area, the independent air bags are all made of high-strength TPU material, a miniature silent air pump is arranged in the pillow to adjust the height of the independent air bags by inflating and deflating the independent air bags, the dynamic adjustment module is used for phased correction and real-time adaptation in the individualized demand, realizes active adjustment, changes the support curvature, height or hardness, responds to the sensing data or user instructions and receives signals and controls the action of the actuator; The sensor module of the sensor feedback module includes a pressure sensor, a muscle sensor and a sound sensor, the pressure sensor is embedded with a plurality of flexible piezoresistive sensors in the cervical vertebra support area to monitor the pressure of the contact point in real time, the muscle sensor is provided with a plurality of dry electrode sheets in the neck contact area to collect the trapezius muscle electromyographic signal to judge the muscle tension, and the sound sensor captures the breathing sound when sleeping, the feedback intervention module includes a vibration feedback device and a hot compress module, the vibration feedback device is provided with a miniature eccentric motor at the edge of the cervical vertebra support area to trigger slight vibration when the sleeping posture is bad, and the hot compress module is internally provided with a flexible graphene heating film which is controlled by a temperature sensor in a closed loop to relieve muscle tension, the sensor feedback module is used for monitoring the use state and triggering intervention, collecting the cervical vertebra pressure, sleeping posture, muscle state and other data and physically intervening or reminding in the abnormal state to ensure the accuracy of individualized adjustment; The material adaptation module of the adaptation module customizes the surface contact material of the pillow according to personalized requirements, and sets a detachable pillowcase, adds an intermediate buffer layer in the middle of the pillow, which is between the surface layer and the support layer, and the latex granules, according to the user's preference for softness, adjust the filling amount, and add an antibacterial coating and a heat-conducting coating on the contact surface of the pillow. The material adaptation module realizes the personalization of biocompatibility and comfort through layered material design, and is customized according to the physical condition, such as an allergic constitution using an antibacterial peptide coating bamboo fiber, a hot and humid constitution using ice silk and honeycomb mesh cloth, and a winter constitution using moisture-absorbing and heating cotton, and the pillow is not only comfortable but also more healthy to use; The scene adaptation module of the adaptation module sets a storage folding assembly and an expansion interface module. The storage folding assembly is embedded in the middle of the main body support layer with a bendable PP plastic hinge, which can be folded when stored. The independent air bag is provided with an inflation valve, which can be compressed for storage after deflation. The expansion interface module is provided with a USB data interface slot for charging the built-in battery or connecting an external control device. Through modular splicing or a deformable structure, different use scenarios are adapted to improve portability. The safety protection function of the human-computer interaction module is provided with a pressure safety valve in the independent air bag, which automatically deflates when the pressure is greater than 15kPa to prevent excessive inflation from pressing the cervical spine. The human-computer interaction function includes physical control buttons and an APP interaction interface. The physical control buttons are provided with a power button, a mode switching button and a backlight indication. The APP interaction interface is connected with the mobile phone APP through Bluetooth, supporting parameter adjustment and data viewing. The modules form a whole through physical connection and data interaction. The core support module provides a basic form, the dynamic adjustment module corrects the form in real time based on the data of the sensing module, the material adaptation module optimizes the contact experience, the scene adaptation module expands the use range, and the safety and interaction module ensures closed-loop operation.
[0017] Embodiment 2: As shown in Figure 2 The present application provides a kind of personalized custom cervical orthopedic pillow and its production method, and the production process steps of cervical orthopedic pillow are: Step 1: user personal data acquisition analysis;Through 3D scanner, scan user cervical curve, shoulder width, head circumference, neck height difference when lying on back and side, through intelligent mattress or sleep APP, collect user sleep posture, turning frequency, neck pressure distribution characteristics, import human engineering software with scanning data, generate user neck head 3D model, calculate cervical natural curvature support threshold, determine the partition support proportion of pillow according to data; Step 2: personalized structure frame design;First, core support layer design, according to cervical curve data, design dynamic fitting curve of support layer, lying area curve and user cervical natural curvature error ≤1mm, determine partition structure, set cervical support core area, headrest buffer area, shoulder hollow area, then according to user softness preference, select support layer material and buffer layer material and pillow outer surface material; Step 3: Material preparation screening pretreatment; according to the design scheme, the raw materials meeting the performance requirements are matched and pretreated. When the support layer material is screened, the pressure deformation curve of the candidate material is tested to ensure that the deformation rate is stable under the pressure of 5-15N, and the fabric standard reaches the detection antibacterial rate ≥99%, air permeability ≥500g / (m 2 ・24h) moisture permeability, wear resistance ≥5000 times rubbing without pilling. During the pretreatment process, the support material is cut and edge rounding is performed; Step 4: Flexible production and processing; through customized equipment, one-person-one-structure forming and assembly are realized, customized molds are used for molding to ensure that the support curve completely matches the design model, numerical control cutting machines are used to cut each support module and reserve inflation valve / zipper link port, then the fabric is laser cut according to the outer contour of the pillow, the line is used for edge processing, the zipper is reserved, and the user's exclusive identification is printed. Finally, the support core layer and the buffer layer are bonded by environmentally friendly hot melt adhesive to ensure no bubbles, and each module (such as air bag, filling bin) is embedded in the pre-set slot according to the partition, and the connection adjustment assembly (such as inflation pump interface, elastic band) is connected. Step 5: Individualized fitting detection and debugging; used to verify the fit of the pillow with the user, ensure that the function meets the standard, simulate the neck pressure of the user when lying on the back and side through the pressure sensor, ensure that the pressure distribution of the support core area is uniform, and detect whether the formaldehyde, heavy metals and antibacterial agent residues meet the national standards. Invite users to try and record real-time fitting data through the pressure sensor built-in the intelligent neck pillow, and make fine adjustments combined with user feedback. Step 6: Packaging and delivery, providing free trial service, if the user still feels uncomfortable, the factory can be returned for secondary adjustment, and lifelong fabric replacement and adjustment component maintenance services are provided.
[0018] In this paper, the following points need attention: 1. The drawings of the embodiments of the present disclosure only involve the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.
[0019] 2. In the case of no conflict, the embodiments of the present disclosure and the features in the embodiments can be combined to obtain new embodiments.
[0020] Although the embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
Claims
1. A personalized custom cervical orthopedic pillow, characterized by: The cervical vertebra orthopedic pillow corrects the cervical vertebra through precise fitting and dynamic intervention through physical structure support, and comprises five functional modules of a frame support module, a dynamic adjustment module, a sensing feedback module, a fitting module and a man-machine interaction module; The frame support module is the skeleton of the cervical vertebra orthopedic pillow, is responsible for realizing data customization precise structure support, and comprises a main support frame, a layered buffer structure and a stabilizing component structure; The dynamic adjustment module is aimed at the phased correction and real-time fitting function in individualized demand, and realizes active adjustment through mechanical and electronic structures, and comprises a driving execution device and an execution adjustment device; The sensing feedback module is used for monitoring the use state and triggering intervention, and ensures the accuracy of individualized adjustment, and comprises a sensor module and a feedback intervention module; The fitting module is adapted to different use scenarios through modular splicing or deformable structure, and realizes individualization of biocompatibility and comfort through layered material design, and comprises a scene fitting module and a material fitting module, the scene fitting module is used for fitting different use scenarios, and the material fitting module realizes individualization of biocompatibility and comfort through layered material design; The man-machine interaction module has a safety protection function and a man-machine interaction function, the safety protection includes a pressure safety valve and a flame-retardant shell, and the man-machine interaction function facilitates user operation and data viewing.
2. A personalized customized cervical orthopedic pillow as claimed in claim 1, wherein: The constituting component of the main support frame of the frame support module is a plastic base material 3D printing polylactic acid skeleton, the individualized cervical vertebra curve curvature is realized through 3D printing, and a degradable polycaprolactone support strip is arranged in the skeleton to fix the preset curvature, the layered buffer structure comprises an occipital bone pressure bearing area, a cervical vertebra support area and a shoulder buffer area, the occipital bone pressure bearing area is a low-hardness slow-rebound sponge or a silica gel pad, the area matches the size of the individual occipital bone, the skull compression is reduced, the cervical vertebra support area adopts modified polyurethane, the convex height matches the lordosis of the cervical vertebra, the shoulder buffer area adopts super-soft down cotton filling, the depth is customized according to the individual shoulder width, so that the cervical vertebra and the trunk are horizontal when sleeping on the side, the stabilizing component comprises a bottom anti-skid layer and an edge reinforcing strip, the bottom anti-skid layer is a silica gel particle layer to increase the friction coefficient to prevent the pillow from sliding when turning over at night, and the edge reinforcing strip is arranged at the outer edge of the pillow, the material is high-density sponge edge, the overall shape is maintained, and edge collapse is avoided.
3. A personalized customized cervical orthopedic pillow as claimed in claim 1, wherein: The driving execution device of the dynamic adjustment module comprises a PCB control board, a battery module and a wireless communication device module, the execution adjustment device comprises a gas pump adjustment unit, the gas pump adjustment unit is provided with a plurality of independent air bags in the cervical vertebra support area, the independent air bags are all made of high-strength TPU material, a micro-silence air pump is arranged in the pillow to inflate and deflate the independent air bags to adjust the height of the independent air bags.
4. The individually customized cervical orthopedic pillow of claim 1, wherein: The sensor module of the sensor feedback module includes a pressure sensor, a muscle sensor, and a sound sensor. The pressure sensor is embedded with multiple flexible piezoresistive sensors in the cervical vertebra support area to monitor the pressure of the contact point in real time. The muscle sensor is provided with multiple dry electrode pieces in the neck contact area to collect the trapezius muscle electromyographic signal and determine the muscle tension. The sound sensor captures the breathing sound during sleep. The feedback intervention module includes a vibration feedback device and a hot compress module. The vibration feedback device is provided with a miniature eccentric motor at the edge of the cervical vertebra support area to trigger slight vibration when the sleeping posture is not good. The hot compress module is provided with a flexible graphene heating film in the cervical vertebra area, which is controlled by a temperature sensor in a closed loop to relieve muscle tension.
5. The individually customized cervical orthopedic pillow of claim 1, wherein: The material adaptation module of the adaptation module customizes the surface contact material of the pillow according to individual requirements, and sets a detachable pillowcase. An intermediate buffer layer is added in the middle of the pillow, which is between the surface layer and the support layer. The latex granules are filled according to the user's preference for softness, and an antibacterial coating and a heat-conducting coating are added to the contact surface of the pillow.
6. A personalized custom cervical orthopedic pillow as claimed in claim 1, wherein: The scene adaptation module of the adaptation module is provided with a storage folding assembly and an expansion interface module. The storage folding assembly is embedded with a bendable PP plastic hinge in the middle of the main body support layer, which can be folded when stored. The independent air bag is provided with an inflation valve, which can be compressed for storage after deflation. The expansion interface module is provided with a USB data interface slot for charging the built-in battery or connecting external control devices.
7. A personalized custom cervical orthopedic pillow as claimed in claim 1, wherein: The safety protection function of the human-computer interaction module is provided with a pressure safety valve in the independent air bag, which automatically deflates when the pressure is greater than 15kPa to prevent excessive inflation from pressing the cervical vertebra. The human-computer interaction function includes physical control buttons and APP interaction interface. The physical control buttons are provided with power key and mode switching key with backlight indication. The APP interaction interface is connected with the mobile phone APP through Bluetooth, supporting parameter adjustment and data viewing.
8. The individually customized cervical orthopedic pillow of claim 1, wherein: The manufacturing process steps of the cervical vertebra orthopedic pillow are as follows: Step 1: User personal data collection and analysis; obtain individual data such as user's cervical vertebra physiological characteristics and sleeping habits to provide basis for design; Step 2: Individualized structure frame design; design the partition structure, support curve and material combination scheme of the pillow based on the data; Step 3: Material preparation and pretreatment; According to the design scheme, match the raw materials that meet the performance requirements and perform pretreatment; Step 4: Flexible production and processing; Through customized equipment, realize the structure forming and assembly that best fit the user's cervical vertebra curve; Step 5: Individualized adaptation detection and debugging; verify the fit of the pillow with the user to ensure that the function meets the standard; Step 6: Packaging and delivery.