Cervical vertebra repairing pillow

By designing a partitioned pillow core structure, the cervical spine repair pillow solves the problem that existing pillows cannot relieve forward tilting of the cervical spine and compression of blood vessels, achieving a combination of traction repair and comfortable sleep.

CN224166053UActive Publication Date: 2026-04-28NINGBO PLATFORM INC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NINGBO PLATFORM INC
Filing Date
2024-12-30
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing pillows are not effective in relieving forward tilt of the cervical spine after long hours of desk work, and prolonged use of traction pillows can compress cervical blood vessels and affect sleep.

Method used

Design a cervical spine repair pillow, including a pillowcase and a pillow core. The pillow core is divided into a high cervical spine area, a low cervical spine area, and a head support area. Each area has a different cross-sectional shape and height, providing traction and repair functions and a comfortable pillow experience, while avoiding compression of cervical blood vessels.

Benefits of technology

It effectively relieves forward head posture, improves sleep quality, ensures that the blood vessels in the cervical spine are not compressed, and makes it easier for users to fall asleep.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224166053U_ABST
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Abstract

The utility model particularly discloses a cervical vertebra repairing pillow which comprises a pillow case and a pillow inner. The pillow inner comprises a cervical vertebra high pillow area, a cervical vertebra low pillow area and a head supporting area. The head supporting area is located between the cervical vertebra high pillow area and the cervical vertebra low pillow area. The height of the cervical vertebra high pillow area is larger than that of the cervical vertebra low pillow area, the height of the cervical vertebra low pillow area is larger than that of the head bearing area, and the cross section of the cervical vertebra high pillow area is round. According to the cervical vertebra repairing pillow, by changing the structure of the pillow inner, the pillow can have the effect of repairing the radian of the cervical vertebra, and the use state can be switched so that a user can fall asleep easily.
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Description

Technical Field

[0001] This utility model relates to the technical field of pillows, and more specifically, to a cervical spine repair pillow. Background Technology

[0002] Currently, some pillows can help users maintain a natural cervical spine curve while sleeping by optimizing their height, shape, and support structure. In particular, the cervical spine needs to maintain a normal physiological curvature, such as a C-shaped curve, during sleep to avoid cervical muscle tension or increased intervertebral disc pressure caused by prolonged poor posture.

[0003] In existing technologies, by modifying the structure of the pillow, such as CN216875886U, an ergonomic pillow core and a pillow using the pillow core are provided. The pillow core is provided with mutually cooperating curved surface structures to support different parts of the human body. The pillow core is provided with: a first curved surface for supporting the head when sleeping on the back, the first curved surface conforms to the head and is in the shape of a basic elliptical parabola; a second curved surface for supporting the head when sleeping on the side; and a third curved surface for supporting the neck. The second curved surface has two parts, which are respectively located on both sides of the first curved surface, so that the position of the head naturally switches between the first and second curved surfaces when turning over. The third curved surface is connected to the first and second curved surfaces, which can provide different neck support when sleeping on the back and on the side.

[0004] The aforementioned pillow design, by altering the pillow's structure to better conform to ergonomics and mechanics, can conform to the body's curves, addressing the lack of cervical support in traditional pillows. However, it still has certain drawbacks. When people are engaged in desk work for extended periods, the concentration required can easily lead to a forward-leaning posture, causing significant deformation of the cervical spine's natural physiological curve. While the aforementioned pillow design can provide some support for the cervical spine, its traction and repair effects are weak, making it difficult to effectively alleviate the forward-leaning posture. Furthermore, although existing cervical traction pillows can correct the physiological curvature of the cervical spine, users need to maintain a fixed traction posture for extended periods. Using a traction pillow all night can compress blood vessels in the cervical spine, making it difficult for users to fall asleep. Utility Model Content

[0005] The purpose of this utility model is to provide a cervical spine repair pillow. By changing the structure of the pillow core, the pillow can repair the curvature of the cervical spine and can also switch between different usage modes to make it easier for the user to fall asleep.

[0006] According to the purpose of this application, a cervical spine repair pillow is provided, including a pillowcase and a pillow core; the pillow core includes a high cervical spine area, a low cervical spine area, and a head support area; the head support area is located between the high cervical spine area and the low cervical spine area; the height of the high cervical spine area is greater than the height of the low cervical spine area, the height of the low cervical spine area is greater than the height of the head support area, and the cross-section of the high cervical spine area is circular.

[0007] In some embodiments, the cervical spine high pillow area includes a cervical traction section and two shoulder and neck support sections; the cervical traction section and the two shoulder and neck support sections are arranged along the length of the pillow core; the two shoulder and neck support sections are respectively located at both ends of the cervical traction section; the cross-section of the cervical traction section is smaller than the cross-section of the shoulder and neck support section.

[0008] In some embodiments, the cervical traction unit includes a first cervical traction surface and a second cervical traction surface; the first cervical traction surface is located at the top of the cervical traction unit and is recessed toward the bottom of the cervical traction unit; the second cervical traction surface is located on the side of the cervical traction unit away from the head support area and is recessed toward the head support area.

[0009] In some embodiments, the end of the shoulder and neck support portion away from the cervical traction portion is provided with an annular chamfer structure.

[0010] In some embodiments, the cross-section of the low cervical spine area is also circular; the cross-section of the low cervical spine area is smaller than the cross-section of the high cervical spine area.

[0011] In some embodiments, the cervical spine low pillow area includes a cervical spine sleeping part and two shoulder and neck sleeping parts; the cervical spine sleeping part and the two shoulder and neck sleeping parts are arranged along the length direction of the pillow core; the two shoulder and neck sleeping parts are respectively located at both ends of the cervical spine sleeping part; the cross-section of the cervical spine sleeping part is smaller than the cross-section of the shoulder and neck sleeping part.

[0012] In some embodiments, the cervical pillow includes a third cervical vertebra contact surface; the third cervical vertebra contact surface is located on the side of the cervical pillow away from the head support area, and the third cervical vertebra contact surface is recessed toward the head support area.

[0013] In some embodiments, the head support area includes a head fossa and two side sleeping portions; the head fossa and the two side sleeping portions are arranged along the length of the pillow core; the two side sleeping portions are located at opposite ends of the head fossa; wherein the upper surfaces of the head fossa and the side sleeping portions are flush.

[0014] In some embodiments, the head support area is provided with at least four air guide ribs, the air guide ribs protruding from the head support area, and the length direction of the air guide ribs is the same as the length direction of the pillow core; the four air guide ribs are arranged at intervals, and air guide grooves are formed between the air guide ribs.

[0015] In some embodiments, the air guide ribs are wavy, and the air guide grooves are also wavy.

[0016] According to the technical solution of this utility model, the cervical spine repair pillow includes a pillowcase and a pillow core. The pillow core includes a high cervical spine area, a low cervical spine area, and a head support area. The head support area is located between the high and low cervical spine areas. The pillow core comprises three blocks, each corresponding to a different functional area. By matching different blocks to the part of the user's body, the cervical spine repair pillow not only has traction and repair functions but also provides a normal sleeping experience. Furthermore, the height of the high cervical spine area is greater than that of the low cervical spine area, and the cross-section of the high cervical spine area is circular. The high cervical spine area can provide the user with better traction and repair functions, while the low cervical spine area can provide the user with a better sleeping experience. Even further, the height of the low cervical spine area is greater than that of the head support area, which can lower the position of the user's head, giving the pillow a better traction and repair effect and conforming to the contour of the user's head, allowing the pillow to better fit the head and neck curve to improve sleep quality. Attached Figure Description

[0017] The above and other features, properties and advantages of this application will become more apparent from the following description taken in conjunction with the accompanying drawings and embodiments. It should be noted that the drawings are merely illustrative and are not drawn to scale, and should not be construed as limiting the scope of protection of this application, wherein:

[0018] Figure 1 This is a perspective view of the pillow core of this application;

[0019] Figure 2 This is a top view of the pillow core of this application;

[0020] Figure 3 This is a left view of the pillow core of this application;

[0021] In the diagram: 1. Pillow core; 2. High cervical pillow area; 21. Cervical traction area; 211. First cervical vertebra contact surface; 212. Second cervical vertebra contact surface; 22. Shoulder and neck support area; 3. Low cervical pillow area; 31. Cervical pillow sleeping area; 311. Third cervical vertebra contact surface; 32. Shoulder and neck pillow sleeping area; 4. Head support area; 41. Head cavity area; 42. Side sleeping area; 5. Air guiding ribs; 6. Air guiding groove. Detailed Implementation

[0022] The present invention will now be described in further detail with reference to specific embodiments and accompanying drawings.

[0023] The term "embodiment" as used herein means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment herein. This phrase appearing in the specification does not necessarily refer to the same embodiment, nor is it limited to mutually exclusive, independent, or alternative embodiments. Those skilled in the art will understand that the embodiments herein can be combined with other embodiments without causing structural conflicts.

[0024] In this description, unless otherwise expressly specified and limited, the technical terms "installation," "connection," "joining," etc., should be interpreted broadly, and can refer to movable connections, fixed connections, or integration. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of this application according to the specific circumstances.

[0025] In this description, terms such as “up,” “down,” “left,” “right,” “height,” “length,” and “width,” which indicate orientation or positional relationships, are intended to accurately describe the embodiments and simplify the description, rather than to limit the parts or structures involved to have a specific orientation or to be installed or operated in a specific orientation.

[0026] Please see Figure 1The image shown is a perspective view of the pillow core of this application. The cervical spine repair pillow includes a pillowcase and a pillow core 1. The pillow core 1 is located inside the pillowcase, which is made of skin-friendly and breathable fabric, providing a comfortable and snug fit. The pillow core 1 is made of memory foam and is molded as a single piece. The pillow core 1 includes a high cervical spine area 2, a low cervical spine area 3, and a head support area 4. These three areas provide different functions, enabling the cervical spine repair pillow to not only have traction and repair functions but also a normal pillow support and sleep experience. Specifically, the cross-section of the high cervical spine area 2 is circular, the cross-section of the low cervical spine area 3 is circular, and the cross-section of the head support area 4 is "I"-shaped. The high cervical spine area 2 and the low cervical spine area 3 are located at opposite ends of the head support area 4. The head support area 4 is located between the high cervical spine area 2 and the low cervical spine area 3. The height of the high cervical spine area 2 is greater than the height of the low cervical spine area 3, and the cross-section of the high cervical spine area 2 is circular. The pillow's design, through the height difference between the high cervical spine area 2 and the low cervical spine area 3, provides the user with better traction and repair functions in the high cervical spine area 2, while providing a better pillow support and sleep experience in the low cervical spine area 3. This prevents compression of blood vessels in the cervical spine during a full night's sleep. Furthermore, the height of the low cervical spine area 3 is greater than the height of the head support area 4, which lowers the user's head position, enhancing the pillow's traction and repair effects. It also conforms to the user's head contour, better fitting the head and neck curve to improve sleep quality. The advantage of this design is that the pillow provides traction and repair to the cervical spine, effectively relieving forward tilting. Furthermore, by adjusting the pillow's direction, the low cervical spine area 3 can support the user's cervical spine, preventing compression of blood vessels and promoting restful sleep.

[0027] Please see Figure 2 and Figure 3The figures show a top view and a left view of the pillow core of this application, respectively. The cervical spine high pillow area 2 includes a cervical traction part 21 and two shoulder and neck support parts 22. The user's cervical spine rests on the cervical traction part 21. The cervical traction part 21 and the two shoulder and neck support parts 22 are arranged along the length direction of the pillow core 1. The two shoulder and neck support parts 22 are located at both ends of the cervical traction part 21, and the cross-section of the cervical traction part 21 is smaller than the cross-section of the shoulder and neck support parts 22. Further, the cervical traction part 21 includes a first cervical spine contact surface 211 and a second cervical spine contact surface 212. The first cervical spine contact surface 211 is located at the top of the cervical traction part 21 and faces the cervical spine. The bottom of the traction part 21 is concave. Through the first cervical spine contact surface 211, the cervical traction part 21 can fit well against the back of the user's cervical spine, which can also be called the back of the neck. The second cervical spine contact surface 212 is located on the side of the cervical traction part 21 away from the head support area 4, and the second cervical spine contact surface 212 is concave towards the head support area 4. Through the second cervical spine contact surface 212, the cervical traction part 21 can fit well against the connection between the user's neck and shoulder. The advantage of this solution is that the cervical traction part 21 can provide the user with cervical traction and repair function, and at the same time, it can also provide good pillow support fit for the user's neck and shoulder.

[0028] Preferably, in this embodiment, the end of the shoulder and neck support portion 22 away from the cervical traction portion 21 is provided with an annular chamfer structure. The annular chamfer structure can support the end of the traction portion, making the shoulder and neck support portion 22 more rounded.

[0029] The cross-section of the low cervical pillow area 3 is also circular, and its cross-section is smaller than that of the high cervical pillow area 2. The cross-sectional shape of the low cervical pillow area 3 and the high cervical pillow area 2 are the same. The advantage of this design is that the low cervical pillow area 3 can also conform to the user's cervical spine curve. When the user uses the low cervical pillow area 3 all night, it can maintain the natural physiological curve of the cervical spine and avoid compressing blood vessels and nerves in the cervical spine area. The low cervical pillow area 3 includes a cervical pillow sleeping part 31 and two shoulder and neck sleeping parts 32. The user's cervical spine rests on the cervical pillow sleeping part 31. The cervical pillow sleeping part 31 and the two shoulder and neck sleeping parts 32 are set along the length of the pillow core 1. The two shoulder and neck sleeping parts 32 are located on either side of the cervical pillow sleeping part 31. The cross-section of the cervical pillow sleeping part 31 is smaller than that of the shoulder and neck pillow sleeping part 32. Furthermore, the cervical pillow sleeping part 31 includes a third cervical spine contact surface 311, which is located on the side of the cervical pillow sleeping part 31 away from the head support area 4, and the third cervical spine contact surface 311 is concave towards the head support area 4. Through the third cervical spine contact surface 311, the cervical pillow sleeping part 31 can fit well with the connection between the user's neck and shoulder. The advantage of this solution is that the cervical pillow sleeping part 31 can keep the user's cervical spine in a natural physiological curve during sleep, and at the same time, it can provide good pillow support and fit at the connection between the user's neck and shoulder, making it easier for the user to fall asleep after using the cervical low pillow area 3.

[0030] The head support area 4 includes a head fossa 41 and two side sleeping areas 42. The head fossa 41 and the two side sleeping areas 42 are arranged along the length of the pillow core 1. The two side sleeping areas 42 are located at both ends of the head fossa 41. The upper surfaces of the head fossa 41 and the side sleeping areas 42 are flush. In some embodiments, the head fossa 41 is lower than the side sleeping areas 42 to guide the user's head or avoid ear pressure.

[0031] The head support area 4 has an air guiding structure. Specifically, the head support area 4 is provided with at least four air guiding ribs 5. The air guiding ribs 5 protrude from the head support area 4. The length direction of the air guiding ribs 5 is the same as the length direction of the pillow core 1. The four air guiding ribs 5 are arranged at intervals, and air guiding grooves 6 are formed between the air guiding ribs 5 to dissipate heat from the user's head.

[0032] Preferably, in this embodiment, the air guide ribs 5 are wavy and the air guide grooves 6 are also wavy. Through the wavy air guide channel, the air flow path is longer, the heat dissipation area is larger, and the heat dissipation effect is better.

[0033] The purpose of the above embodiments is to provide a detailed description of the present invention in conjunction with the accompanying drawings, so that those skilled in the art can understand the technical concept of the present invention. Within the scope of the claims of the present invention, optimization or equivalent replacement of the involved part structure, as well as combination of implementation methods in different embodiments without causing structural and principle conflicts, all fall within the protection scope of the present invention.

Claims

1. A cervical spine repair pillow, comprising a pillowcase and a pillow core (1); characterized in that, The pillow core (1) includes a high cervical spine area (2), a low cervical spine area (3), and a head support area (4). The head support area (4) is located between the high cervical spine area (2) and the low cervical spine area (3); The height of the high cervical pillow area (2) is greater than the height of the low cervical pillow area (3), the height of the low cervical pillow area (3) is greater than the height of the head support area (4), and the cross-section of the high cervical pillow area (2) is circular. The head support area (4) is provided with at least four air guide ribs (5), the air guide ribs (5) protrude from the head support area (4), and the length direction of the air guide ribs (5) is the same as the length direction of the pillow core (1). The four air guide ribs (5) are spaced apart from each other, and air guide grooves (6) are formed between the air guide ribs (5).

2. The cervical spine repair pillow according to claim 1, characterized in that, The cervical spine high pillow area (2) includes a cervical traction part (21) and two shoulder and neck support parts (22). The cervical traction part (21) and the two shoulder and neck support parts (22) are arranged along the length direction of the pillow core (1); the two shoulder and neck support parts (22) are located at both ends of the cervical traction part (21); The cross-section of the cervical traction part (21) is smaller than that of the shoulder and neck support part (22).

3. The cervical spine repair pillow according to claim 2, characterized in that, The cervical traction unit (21) includes a first cervical vertebrae contact surface (211) and a second cervical vertebrae contact surface (212). The first cervical vertebra contact surface (211) is located at the top of the cervical traction part (21), and the first cervical vertebra contact surface (211) is recessed towards the bottom of the cervical traction part (21); The second cervical vertebrae contact surface (212) is located on the side of the cervical traction part (21) away from the head support area (4), and the second cervical vertebrae contact surface (212) is concave towards the head support area (4).

4. The cervical spine repair pillow according to claim 2, characterized in that, The end of the shoulder and neck support part (22) away from the cervical traction part (21) is provided with an annular chamfer structure.

5. The cervical spine repair pillow according to claim 1, characterized in that, The cross-section of the cervical spine low pillow area (3) is also circular; The cross-section of the low-pillow area (3) of the cervical spine is smaller than that of the high-pillow area (2) of the cervical spine.

6. The cervical spine repair pillow according to claim 5, characterized in that, The cervical spine low pillow area (3) includes the cervical spine pillow sleeping part (31) and two shoulder and neck pillow sleeping parts (32); The cervical pillow sleeping part (31) and the two shoulder and neck pillow sleeping parts (32) are arranged along the length direction of the pillow core (1); the two shoulder and neck pillow sleeping parts (32) are respectively located at both ends of the cervical pillow sleeping part (31); The cross-section of the cervical spine pillow part (31) is smaller than the cross-section of the shoulder and neck pillow part (32).

7. The cervical spine repair pillow according to claim 6, characterized in that, The cervical pillow sleeping part (31) includes the third cervical vertebra contact surface (311); The third cervical vertebra contact surface (311) is located on the side of the cervical vertebra pillow part (31) away from the head support area (4), and the third cervical vertebra contact surface (311) is concave towards the head support area (4).

8. The cervical spine repair pillow according to claim 1, characterized in that, The head support area (4) includes the head socket (41) and two side sleeping areas (42). The head cavity (41) and the two side sleeping sections (42) are arranged along the length of the pillow core (1); The two lateral sleeping portions (42) are located at opposite ends of the cephalic portion (41); The upper surfaces of the head cavity (41) and the side sleeping part (42) are flush.

9. The cervical spine repair pillow according to claim 1, characterized in that, The air guide ribs (5) are wavy, and the air guide grooves (6) are also wavy.