Medical pillow-shaped brace
By designing a medical pillow-type orthosis with a wave-like structure, detachable height-increasing pad, traction strip, and air-storage bladder, the problem of existing pillows not being able to provide ideal support is solved, improving comfort and stability during moxibustion.
Patent Information
- Application Number
- CN202422954252.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2034-11-29
AI Technical Summary
Existing pillows cannot provide ideal support for moxibustion practitioners, causing them to easily become fatigued during prolonged use and making it difficult to maintain a stable moxibustion sensation.
A medical pillow-shaped brace has been designed, comprising a wave-shaped first arc-shaped protrusion, an arc-shaped concave portion, and a second arc-shaped protrusion. Combined with a detachable height-increasing pad, traction strip, and air-filled bladder, it provides multi-level height adjustment and stable support, reducing arm fatigue.
It improves comfort and stability during moxibustion, reduces fatigue for the practitioner, enhances the adaptability and ease of adjustment of the brace, and accommodates different arm positions and postures.
Smart Images

Figure CN223696349U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to acupuncture technology field especially relates to a medical pillow type support. BACKGROUND
[0002] As a kind of acupuncture, hot sensitive moxibustion emphasizes obtaining hot sensitive moxibustion feeling, and effective gas is the essence of hot sensitive moxibustion, also the key to play curative effect.According to whether there is displacement movement of moxa heat relative to acupoint during moxibustion process, moxibustion technique can be divided into static moxibustion and dynamic moxibustion.Static moxibustion mainly refers to mild moxibustion;Dynamic moxibustion is divided into bird pecking moxibustion, along meridian back-and-forth moxibustion and cyclotron moxibustion according to the different direction of moxa heat movement.Due to the long time movement state in the operation process, dynamic moxibustion can stimulate qi and blood in one stretch and one relaxation, which is beneficial to stimulate moxa obtained qi, and it is one of the most commonly used techniques in clinical hot sensitive moxibustion.
[0003] Whether static moxibustion or dynamic moxibustion technique requires moxibustion operator to keep stable, however, artificial long time operation is easy to be tired, and it is difficult to maintain stable moxibustion feeling.At present, general pillow is generally used to support the upper arm of moxibustion operator, but general pillow can only provide certain comfort, and there is still the problem that height cannot be adjusted, pillow surface arc is not adapted to the moving track of the upper arm of moxibustion operator. UTILITARIAN CONTENT
[0004] In order to overcome at least one defect of the prior art described above, the utility model provides a medical pillow type support, which can solve the problem that general pillow cannot provide ideal support effect for the arm of moxibustion operator.
[0005] The utility model employs the technical scheme that:
[0006] A medical pillow type support, comprising:
[0007] The support body, one side of the support body is provided with first arc convex part, arc concave part and second arc convex part, the first arc convex part, the arc concave part and the second arc convex part are sequentially connected in wave shape, wherein the first arc convex part is higher than the second arc convex part;
[0008] The direction that the first arc convex part, the arc concave part and the second arc convex part are sequentially connected is first direction, the axial direction of the arc concave part is second direction, and the first arc convex part, the arc concave part and the second arc convex part are all inclined to the same side in the second direction.
[0009] By adopting the above scheme, the first arc convex part, the arc concave part and the second arc convex part are sequentially connected in wave shape, and the first arc convex part, the arc concave part and the second arc convex part in wave shape can provide multiple support points with different heights in the first direction.This design can adapt to arms of different lengths and improve the comfort of moxibustion operator during moxibustion process.
[0010] The first arc-shaped convex part is higher than the second arc-shaped convex part, further increasing the height diversity, so that the brace body can better adapt to different arm positions and postures.
[0011] The first arc-shaped convex part, the arc-shaped concave part and the second arc-shaped convex part are inclined towards the same side in the second direction, which not only increases the three-dimensionality of the brace body, but also provides additional height adjustment in the second direction, so that the practitioner can choose a more comfortable height in the second direction according to his own needs.
[0012] In addition, the practitioner can also choose whether the higher side of the brace body faces himself or the patient according to his needs. When the higher end faces the practitioner, the inclined design of the brace body can make the practitioner's arm more naturally placed on the brace body when the arm and wrist are drooping, thereby reducing fatigue. When the practitioner needs to bend the arm upward, the higher end is directed towards the patient, which is more suitable for the practitioner's action of raising the arm, helping to maintain the stability of the arm and reduce muscle tension. The higher end can provide a higher support point, so that the arm has a stable fulcrum when bending upward, reducing the shaking and instability of the arm.
[0013] Further, a height increasing pad is detachably arranged on the side of the brace body away from the first arc-shaped convex part.
[0014] By adopting the above scheme, the height increasing pad is detachably arranged on the side of the brace body away from the first arc-shaped convex part, i.e. the height increasing pad is located at the bottom of the brace body, which can be used to adjust the height of the entire brace body.
[0015] Further, the height increasing pad is provided with multiple layers, and all the height increasing pads are sequentially arranged on the side of the brace body away from the first arc-shaped convex part.
[0016] By adopting the above scheme, the design of multiple layers of height increasing pads allows the user to make multi-level adjustments, and each layer of height increasing pad can provide a fixed height increment. By increasing or decreasing the number of layers, the practitioner can accurately adjust the height of the brace body to achieve the most comfortable use experience.
[0017] Further, the brace body is provided with a pull strip on both sides in the first direction.
[0018] By adopting the above scheme, during the moxibustion process, the moxibustion operator usually needs to hold the heat-sensitive moxibustion instrument with his hand, and the arm is placed on the brace body. When it is necessary to move the brace body towards the direction away from the hand of the operator who is performing moxibustion, the traditional method is to use the other hand (free hand) to move the end of the brace body located in the direction close to the hand of the operator who is performing moxibustion, and to push the brace body to move. This process is very inconvenient, and during the movement of the hand applying the pushing force, the operator needs to adjust the position of the moxibustion hand to avoid the hand moving the brace body, which may cause the shift of the moxibustion position. By providing the pulling strip, the operator can directly pull the pulling strip with the free hand to easily adjust the position of the brace body without the need to push the brace body with the hand.
[0019] Further, one end of the pulling strip is fixedly connected with the brace body, and the other end is provided with a first magic tape, and the heightening pad is provided with a second magic tape at both ends in the first direction, and the first magic tape is detachably connected with the second magic tape.
[0020] By adopting the above scheme, the other end of the pulling strip is provided with a first magic tape, the heightening pad is provided with a second magic tape at both ends in the first direction, and the first magic tape is detachably connected with the second magic tape. When the operator pulls the pulling strip, the connection between the first magic tape and the second magic tape enables the pulling strip to drive the heightening pad to move synchronously. This design ensures the synchronous adjustment of the brace body and the heightening pad, avoids the separation or misplacement of the heightening pad from the brace body, and further improves the convenience of adjustment.
[0021] Further, the brace body is provided with a third magic tape on the side facing the heightening pad, the heightening pad is provided with a fourth magic tape corresponding to the third magic tape on the side facing the brace body, and the heightening pad is provided with a fifth magic tape on the side away from the brace body.
[0022] By adopting the above scheme, the brace body and the heightening pad are connected through the third magic tape and the fourth magic tape, which ensures the close combination of the heightening pad and the brace body. This design enables the heightening pad not to easily slide or fall off during use, and improves the stability and reliability of the brace.
[0023] The fifth magic tape on the side of the heightening pad away from the brace body can be used to connect other heightening pads, and increase the functionality and adaptability of the brace body.
[0024] Further, the arc-shaped recess is provided with a gas storage air bag at one end in the second direction, the gas storage air bag is arranged close to the first arc-shaped protrusion, and there is a gap between the gas storage air bag and the first arc-shaped protrusion, the gas storage air bag can be inflated to support the inflation of the arc-shaped recess, and then form an arm supporting groove with the first arc-shaped protrusion.
[0025] By adopting the above scheme, the arc-shaped recess is provided with a gas storage air bag at one end in the second direction, the gas storage air bag is arranged close to the first arc-shaped protrusion, and a gap is formed between the gas storage air bag and the first arc-shaped protrusion. The gas storage air bag can be inflated to support the arc-shaped recess to bulge, and then a hand arm supporting groove is formed between the arc-shaped recess and the first arc-shaped protrusion. In the static moxibustion process, the hand arm far away from the first arc-shaped protrusion lacks support, which is easy to cause arm fatigue. By arranging the gas storage air bag, the gas storage air bag can support the arc-shaped recess to bulge after being inflated, and a hand arm supporting groove is formed between the arc-shaped recess and the first arc-shaped protrusion, which provides additional support for the hand arm far away from the first arc-shaped protrusion. This design significantly reduces the fatigue of the hand arm and improves the comfort in the moxibustion process.
[0026] Further, the gas storage air bag is connected with an inflation pipeline, one end of the inflation pipeline is located in the brace body and communicates with the gas storage air bag, the other end of the inflation pipeline penetrates out of the brace body and is connected with an inflation air bag, and a check valve is arranged on the gas storage air bag, the inflation pipeline or the inflation air bag.
[0027] By adopting the above scheme, one end of the inflation pipeline communicates with the gas storage air bag, and the other end of the inflation pipeline is connected with the inflation air bag. The user can quickly inflate the inflation air bag by squeezing the inflation air bag, so that the inflation and deflation operations are very convenient. The check valve can ensure that the input gas of the inflation air bag to the gas storage air bag does not flow back. The user can adjust the height of the gas storage air bag at any time according to needs, and the operation is simple and fast.
[0028] Further, the check valve is arranged on the part of the inflation pipeline located outside the brace body, or the check valve is arranged on the inflation air bag.
[0029] By adopting the above scheme, the practitioner can conveniently control the opening and closing of the check function of the check valve.
[0030] Further, the check valve is arranged on the part of the inflation pipeline located outside the brace body, or the check valve is arranged on the inflation air bag.
[0031] By adopting the above scheme, the practitioner can conveniently deflate the gas storage air bag.
[0032] In summary, the medical pillow type brace has the following technical effects:
[0033] 1. The first arc-shaped protrusion, the arc-shaped recess and the second arc-shaped protrusion are sequentially connected in a wave shape, and the wave-shaped first arc-shaped protrusion, the arc-shaped recess and the second arc-shaped protrusion can provide a plurality of support points with different heights in the first direction. This design can adapt to arms of different lengths and improve the comfort of the practitioner during moxibustion.
[0034] 2. The first arc-shaped convex part is higher than the second arc-shaped convex part, further increasing the height diversity, so that the brace body can better adapt to different arm positions and postures;
[0035] 3. The first arc-shaped convex part, the arc-shaped concave part and the second arc-shaped convex part are inclined towards the same side in the second direction, and the inclination design not only increases the three-dimensionality of the brace body, but also provides additional height adjustment in the second direction, so that the practitioner can choose a more comfortable height in the second direction according to his own needs;
[0036] 4. The practitioner can also choose whether the higher side of the brace body faces himself or the patient according to needs, when the higher end faces the practitioner, the inclination design of the brace body can make the practitioner's arm more naturally placed on the brace body when the arm and wrist are drooping, thereby reducing fatigue; when the practitioner needs to bend the arm upward, the higher end faces the patient, which is more suitable for the practitioner's action of raising the arm, helping to maintain the stability of the arm and reduce muscle tension. The higher end can provide a higher support point, so that the arm has a stable fulcrum when bending upward, reducing the shaking and instability of the arm. BRIEF DESCRIPTION OF DRAWINGS
[0037] Figure 1 It is a three-dimensional structure schematic diagram of the utility model;
[0038] Figure 2 It is a first side view of the utility model;
[0039] Figure 3 It is a second side view of the utility model;
[0040] Figure 4 It is a structure schematic diagram of the utility model setting the traction strip state;
[0041] Figure 5 It is a structure schematic diagram of the utility model setting the gas storage air bag state.
[0042] Among them, the meaning of the reference signs is as follows: 1, brace body; 11, first arc-shaped convex part; 12, arc-shaped concave part; 13, second arc-shaped convex part; 14, traction strip; 141, first magic tape; 2, height increasing pad; 21, second magic tape; 31, gas storage air bag; 32, inflation pipeline; 33, inflation air bag; 34, check valve; 35, control pin. DETAILED DESCRIPTION
[0043] For better understanding and implementation, the technical solutions in the embodiments of the present application will be described and discussed clearly and completely in conjunction with the drawings of the present application. Obviously, only some examples of the present application are described here, and not all examples. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the present application.
[0044] For the convenience of understanding the embodiments of the present application, the following will be further explained and described with specific examples as examples in conjunction with the drawings, and each embodiment does not constitute a limitation on the embodiments of the present application.
[0045] In the description of the present application, it should be pointed out that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore it cannot be understood as a limitation on the present application.
[0046] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which the present application belongs. The terms used in the specification of the present application are only for the purpose of describing the specific embodiments, and are not intended to limit the present application.
[0047] Referring to Figures 1-5 The present application discloses a medical pillow-shaped brace: including a brace body 1, one side of the brace body 1 is provided with a first arc convex part 11, an arc concave part 12 and a second arc convex part 13, the first arc convex part 11, the arc concave part 12 and the second arc convex part 13 are sequentially connected in a wave shape, wherein the first arc convex part 11 is higher than the second arc convex part 13. The direction of the first arc convex part 11, the arc concave part 12 and the second arc convex part 13 sequentially connected is the first direction, the axial direction of the arc concave part 12 is the second direction, and the first arc convex part 11, the arc concave part 12 and the second arc convex part 13 are all inclined to the same side in the second direction.
[0048] Specifically, the first arc-shaped convex part 11, the arc-shaped concave part 12 and the second arc-shaped convex part 13 are sequentially connected in a wavy shape, and the first arc-shaped convex part 11, the arc-shaped concave part 12 and the second arc-shaped convex part 13 in the wavy shape can provide multiple support points with different heights in the first direction. This design can adapt to arms of different lengths and improve the comfort of the practitioner during the moxibustion process. The first arc-shaped convex part 11 is higher than the second arc-shaped convex part 13, further increasing the diversity of heights, so that the brace body 1 can better adapt to different arm positions and postures. The first arc-shaped convex part 11, the arc-shaped concave part 12 and the second arc-shaped convex part 13 are inclined towards the same side in the second direction. This inclined design not only increases the three-dimensionality of the brace body 1, but also provides additional height adjustment in the second direction. The practitioner can choose a more comfortable height in the second direction according to his own needs. In addition, the practitioner can also choose whether the higher side of the brace body 1 faces himself or the patient. When the higher end faces the practitioner, the inclined design of the brace body 1 allows the practitioner's arm to be placed more naturally on the brace body 1 when the arm and wrist are drooping, thereby reducing fatigue. When the practitioner needs to bend the arm upward, the higher end faces the patient, which is more suitable for the moxibustion action that requires the arm to be raised, helping to maintain the stability of the arm and reduce muscle tension. The higher end can provide a higher support point, allowing the arm to have a stable fulcrum when bending upward, reducing arm shaking and instability.
[0049] Referring to Figure 1 As shown in the drawings, in some embodiments, the medical pillow-shaped brace further comprises a height-increasing pad 2 which is detachably arranged on the side of the brace body 1 away from the first arc-shaped convex part 11.
[0050] Specifically, the height-increasing pad 2 is detachably arranged on the side of the brace body 1 away from the first arc-shaped convex part 11, i.e. the height-increasing pad 2 is located at the bottom of the brace body 1 and can be used to adjust the height of the entire brace body 1.
[0051] Referring to Figure 1 As shown in the drawings, further, the height-increasing pad 2 can be arranged to have the same width and length as the brace body 1, thereby ensuring stable support for the brace body 1. In addition, the height of the height-increasing pad 2 can be freely selected according to needs.
[0052] In some embodiments, the height-increasing pad 2 is provided with multiple layers, and all the height-increasing pads 2 are sequentially arranged on the side of the brace body 1 away from the first arc-shaped convex part 11.
[0053] Specifically, the design of the multiple layers of height-increasing pads 2 allows multi-level adjustment by the user, and each layer of height-increasing pad 2 can provide a fixed height increment. By increasing or decreasing the number of layers, the practitioner can accurately adjust the height of the brace body 1 to achieve the most comfortable use experience.
[0054] Referring toFigure 4 As shown, in some embodiments, the brace body 1 is provided with a pull strip 14 on both sides in the first direction.
[0055] Specifically, during moxibustion, the moxibustion practitioner usually needs to hold the moxibustion tool of the heat-sensitive moxibustion with one hand, and the arm is placed on the brace body 1. When it is necessary to move the brace body 1 away from the hand of the moxibustion practitioner, the traditional method is to move the end of the brace body 1 close to the hand of the moxibustion practitioner with the other hand (free hand) to push the brace body 1 to move. This process is very inconvenient, and during the movement of the hand applying the pushing force, the moxibustion practitioner needs to adjust the position of the moxibustion hand to avoid the hand pushing the brace body 1 to move, which may cause the shift of the moxa position. By providing the pull strip 14, the moxibustion practitioner can directly pull the pull strip 14 with the free hand to easily adjust the position of the brace body 1 without the need to push the brace body 1 with the hand.
[0056] Referring to Figure 4 As shown, in some embodiments, one end of the pull strip 14 is fixedly connected with the brace body 1, and the other end is provided with a first magic tape 141. The heightening pad 2 is provided with a second magic tape 21 at both ends in the first direction, and the first magic tape 141 is detachably connected with the second magic tape 21.
[0057] Specifically, the other end of the pull strip 14 is provided with the first magic tape 141, and the heightening pad 2 is provided with the second magic tape 21 at both ends in the first direction, and the first magic tape 141 is detachably connected with the second magic tape 21. When the moxibustion practitioner pulls the pull strip 14, the connection of the first magic tape 141 and the second magic tape 21 enables the pull strip 14 to drive the heightening pad 2 to move synchronously. This design ensures the synchronous adjustment of the brace body 1 and the heightening pad 2, avoids the separation or misplacement of the heightening pad 2 from the brace body 1, and further improves the convenience of adjustment.
[0058] When the heightening pad 2 is provided with multiple layers, it is only necessary to connect the first magic tape 141 with the magic tape on the lowest heightening pad 2 to achieve the effect of pulling the pull strip 14 to drive the brace body 1 and all the heightening pads 2 to move.
[0059] In some embodiments, the brace body 1 is provided with a third magic tape on the side facing the heightening pad 2, the heightening pad 2 is provided with a fourth magic tape corresponding to the third magic tape on the side facing the brace body 1, and the heightening pad 2 is provided with a fifth magic tape on the side away from the brace body 1.
[0060] Specifically, the brace body 1 and the heightening pad 2 are connected through the third and fourth magic tapes, ensuring the close combination of the heightening pad 2 and the brace body 1. This design makes the heightening pad 2 not easily slide or fall off during use, improving the stability and reliability of the brace. The side of the heightening pad 2 away from the brace body 1 is provided with a fifth magic tape, which can be used to connect other heightening pads 2, increasing the functionality and adaptability of the brace body 1.
[0061] Referring to Figure 5 As shown in the drawings, in some embodiments, the arc-shaped recess 12 is provided with an air storage bag 31 at one end in the second direction, the air storage bag 31 is arranged close to the first arc-shaped protrusion 11, and there is a gap between the air storage bag 31 and the first arc-shaped protrusion 11. The air storage bag 31 can be inflated to support the arc-shaped recess 12 to bulge, thereby forming an arm support groove with the first arc-shaped protrusion 11.
[0062] Specifically, the arc-shaped recess 12 is provided with an air storage bag 31 at one end in the second direction, the air storage bag 31 is arranged close to the first arc-shaped protrusion 11, and there is a gap between the air storage bag 31 and the first arc-shaped protrusion 11. The air storage bag 31 can be inflated to support the arc-shaped recess 12 to bulge, thereby forming an arm support groove with the first arc-shaped protrusion 11. During static moxibustion, the hand away from the side of the first arc-shaped protrusion 11 lacks support, which can easily cause arm fatigue. By arranging the air storage bag 31, after inflation, it can support the arc-shaped recess 12 to bulge, thereby forming an arm support groove with the first arc-shaped protrusion 11, which provides additional support for the side of the hand away from the first arc-shaped protrusion 11. This design significantly reduces the feeling of arm fatigue and improves the comfort during moxibustion.
[0063] In addition, it should be noted that since the air storage bag 31 only provides simple support to the arm, it is relatively small, so inflation is very convenient.
[0064] In some embodiments, the air storage bag 31 is connected with an inflation pipeline 32, one end of the inflation pipeline 32 is located in the brace body 1 and communicates with the air storage bag 31, the other end penetrates out of the brace body 1 and is connected with an inflation air bag 33, and a check valve 34 is arranged on the air storage bag 31, the inflation pipeline 32 or the inflation air bag 33.
[0065] Specifically, one end of the inflation pipeline 32 communicates with the air storage bag 31, and the other end is connected with the inflation air bag 33. The user can quickly inflate by squeezing the inflation air bag 33, thereby making the inflation and deflation operations very convenient. The check valve 34 can ensure that the input gas from the inflation air bag 33 to the air storage bag 31 does not backflow, and the user can adjust the height of the air storage bag 31 at any time according to needs, which is simple and convenient to operate.
[0066] In some embodiments, the check valve 34 is arranged on the part of the inflation pipe 32 outside the brace body 1, or the check valve 34 is arranged on the inflation air bag 33. Since the check valve 34 is arranged outside the brace body 1, it is convenient for the practitioner to control the opening and closing of the check function of the check valve 34.
[0067] In some embodiments, the check valve 34 is provided with a control pin 35, which controls the opening and closing of the check function of the check valve 34, and is convenient for the practitioner to control the opening and closing of the check function of the check valve 34 along with the deflation of the storage air bag 31.
[0068] Specifically, the check valve 34 can be an electromagnetic check valve 34 or a spring check valve 34, and the control pin 35 is used to switch the opening and closing of the check function of the check valve 34. The specific structure of the check valve 34 is not limited here, and the check function of the check valve 34 can be released by the control pin 35.
[0069] The technical means disclosed in the utility model scheme is not only limited to the technical means disclosed in the above-mentioned embodiments, but also includes the technical scheme composed of any combination of the above technical features. It should be noted that for ordinary skilled persons in the art, without departing from the principle of the utility model, some improvements and refinements can be made, and these improvements and refinements are also considered to be within the protection scope of the utility model.
Claims
1. A medical pillow-type brace characterized by, The utility model relates to a kind of arm support, including: Support body (1), one side of the support body (1) is equipped with first arc convex part (11), arc concave part (12) and second arc convex part (13), the first arc convex part (11), the arc concave part (12) and the second arc convex part (13) are sequentially linked in wave shape, wherein the first arc convex part (11) is higher than the second arc convex part (13); The direction of the first arc convex part (11), the arc concave part (12) and the second arc convex part (13) sequentially link is first direction, the axial direction of the arc concave part (12) is second direction, the first arc convex part (11), the arc concave part (12) and the second arc convex part (13) are all inclined to the same side in second direction.
2. A medical pillow brace according to claim 1, wherein It further includes heightening pad (2), the heightening pad (2) is detachably equipped on the side of the support body (1) away from the first arc convex part (11).
3. A medical pillow brace according to claim 2, wherein The heightening pad (2) is equipped with multiple layers, and all the heightening pad (2) is sequentially equipped on the side of the support body (1) away from the first arc convex part (11).
4. A medical pillow brace according to any one of claims 2-3, characterized in that, The support body (1) is equipped with pull strip (14) on both sides in first direction.
5. A medical pillow brace according to claim 4, wherein One end of the pull strip (14) is fixedly connected with the support body (1), the other end is equipped with first magic tape (141), the heightening pad (2) is equipped with second magic tape (21) at both ends in first direction, the first magic tape (141) is detachably connected with the second magic tape (21).
6. A medical pillow brace according to claim 5, wherein The side of the support body (1) towards the heightening pad (2) is equipped with third magic tape, the side of the heightening pad (2) towards the support body (1) is equipped with fourth magic tape corresponding to the third magic tape, and the side of the heightening pad (2) away from the support body (1) is equipped with fifth magic tape.
7. The medical pillow brace of claim 1, wherein The arc concave part (12) is equipped with gas storage air bag (31) at one end in second direction, the gas storage air bag (31) is arranged close to the first arc convex part (11), and there is gap between the gas storage air bag (31) and the first arc convex part (11), the gas storage air bag (31) can support the arc concave part (12) to inflate, and then form arm support groove with the first arc convex part (11).
8. A medical pillow brace according to claim 7, characterized in that The gas storage air bag (31) is connected with inflation pipeline (32), one end of the inflation pipeline (32) is located in the support body (1), and communicates with the gas storage air bag (31), the other end penetrates out of the support body (1), and is connected with inflation air bag (33), the gas storage air bag (31), the inflation pipeline (32) or the inflation air bag (33) is equipped with check valve (34).
9. A medical pillow brace according to claim 8, wherein The check valve (34) is arranged on the part of the inflation pipeline (32) outside the support body (1), or the check valve (34) is arranged on the inflation air bag (33).
10. A medical pillow brace according to claim 9, wherein The check valve (34) is equipped with control pin (35), and the control pin (35) controls the opening and closing of the check function of the check valve (34).