Spine post-operation supporting and protecting device
By designing a multi-layered support structure for postoperative spinal support and protection, the problem of uneven lumbar support was solved, providing flexible yet robust support and improving the patient's rehabilitation effect and comfort.
Patent Information
- Application Number
- CN202422905990.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2034-11-27
AI Technical Summary
Existing lumbar spine supports typically employ a single-layer fixation structure, which cannot meet the multi-layered and differentiated support needs of the lumbar spine in different areas. This results in uneven support when the patient moves or changes posture, causing discomfort and potentially exacerbating postoperative pain.
A postoperative spinal support and protection device was designed, including a lumbar support board, a flexible support, and a multi-layer support structure. The support board and support strips are connected by elastic nylon woven fabric, combined with titanium alloy connecting strips and Velcro support airbags, to provide flexible and strong support, and enhance comfort through heating plates and breathable fabrics.
It achieves flexible adjustment according to the needs of different areas, provides uniform support, reduces discomfort, enhances rehabilitation effect, and improves comfort and stability through multi-layer fabric structure.
Smart Images

Figure CN223831259U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of spinal external support technology, and more specifically to a post-spinal surgery support and protection device. Background Technology
[0002] In the rehabilitation process following spinal surgeries such as herniated disc surgery, the stability and adaptability of lumbar support devices are crucial factors. However, existing lumbar supports typically employ a single-layer fixation structure, which cannot meet the multi-layered and differentiated support requirements of different areas of the lumbar spine. Especially when patients move or change posture, the single-structure support often leads to uneven support, with pressure concentrated in certain areas, easily causing discomfort and potentially exacerbating postoperative pain, thus affecting the rehabilitation outcome. Utility Model Content
[0003] To overcome the aforementioned shortcomings of the prior art, this utility model provides a postoperative spinal support and protection device to address the problem that existing lumbar spine supports typically employ a single-layer fixation structure, which cannot meet the multi-layered and differentiated support requirements of the lumbar spine in different areas. Especially during patient activity or posture changes, the single-structure support often leads to uneven support.
[0004] This utility model provides the following technical solution: a postoperative spinal support and protection device, comprising a main body of the protection device, the main body of the protection device being composed of a lumbar support board and a flexible support, the lumbar support board comprising two support fabrics, the support fabrics being provided with fastening straps, the flexible support being disposed on the main body of the protection device, the flexible support comprising;
[0005] A first support plate is used to provide support on one side of the waist, and one side of the first support plate is connected to one of the fastening straps;
[0006] The second support plate is used to provide support on the other side of the waist, and one side of the second support plate is connected to another fastening strap while being connected to the first support plate.
[0007] A top support plate connects the tops of the first and second support plates and provides overall support for the upper waist, facilitating patient movement while wearing the garment.
[0008] The elastic connecting fabric is used to connect the first support plate, the second support plate, and the top support plate, so that the three together form a support structure. At the same time, the elastic connecting fabric is made of elastic nylon woven fabric, which is easy to bend.
[0009] The support strip is made of resin material that is easy to bend and has a high elasticity coefficient. The support strip is installed inside the first support plate, the second support plate, and the top support plate. The support strips inside the first support plate, the second support plate, and the top support plate are all cross-woven to provide strong support for the waist.
[0010] By combining the first support plate, the second support plate, the top support plate, the elastic connecting cloth, and the support strip, a lumbar support structure is formed that can bend freely with the patient's movements while providing strong support.
[0011] Furthermore, connecting strips are fixedly installed on both the first and second support plates, and fastening straps are all set on the connecting strips. The connecting strips are made of titanium alloy strips, which have good structural strength and bending ability, and can bend easily with the user's movements while the fastening straps are installed stably.
[0012] Furthermore, two anti-slip straps are fixedly installed at the top of the top support plate. The ends of the anti-slip straps are connected to the fastening straps. With the assistance of the anti-slip straps, the entire device remains stable when walking, sitting or lying down, thus improving the lumbar support effect of the device.
[0013] Furthermore, a Velcro strap is simultaneously attached to the rear of both the first and second support plates, and a support airbag is fixedly installed on the Velcro strap. The Velcro strap is used to quickly attach and install the support airbag. The support airbag is inflated, and after the device is worn, it can further provide support and filling for the user's lumbar spine.
[0014] Furthermore, a heating plate is installed in front of both the first and second support plates. A controller is movably mounted on the heating plate via wires. The controller contains a battery to power the heating plate. The heating plate can be controlled by the controller to generate heat for applying heat to the lumbar spine.
[0015] Furthermore, each of the supporting fabrics consists of three auxiliary fabrics. A breathable layer is fixedly installed inside each of the supporting fabrics, an antibacterial layer is provided on the breathable layer, and a sweat-absorbing layer is provided on the antibacterial layer. This sandwich structure effectively provides the supporting fabric with three functions: sweat absorption, antibacterial and breathability.
[0016] The technical effects and advantages of this utility model are as follows:
[0017] 1. This utility model provides flexible and sturdy support by providing a flexible support device with independent first and second support plates on both sides and support strips made of high elastic resin material embedded inside; a top support plate is added at the top to further stabilize the overall structure. The three are connected by an elastic connecting cloth made of elastic nylon cloth, which maintains the integrity of the device and can provide flexible adjustment according to the needs of different areas.
[0018] 2. This utility model features a connecting strip made of titanium alloy, which has good structural strength and bending ability, allowing for stable installation of the fastening strap while easily bending to follow the user's movements. Attached Figure Description
[0019] Figure 1 This is a frontal perspective three-dimensional schematic diagram of the structure of this utility model.
[0020] Figure 2 This is a rear view schematic diagram of the structure of this utility model.
[0021] Figure 3 This is a three-dimensional cross-sectional view of the support fabric of this utility model.
[0022] Figure 4 This is a rear view schematic diagram of the fastening strap structure of this utility model.
[0023] The attached figures are labeled as follows: 100, first support plate; 110, second support plate; 111, top support plate; 112, connecting elastic fabric; 113, support strip; 114, fastening strap; 115, connecting strip; 116, anti-slip shoulder strap; 117, Velcro; 118, support airbag; 119, heating plate; 120, controller; 121, breathable layer; 122, antibacterial layer; 123, sweat-absorbing layer. Detailed Implementation
[0024] The technical solution of this utility model will be clearly and completely described below with reference to the accompanying drawings.
[0025] Example 1:
[0026] Reference Figure 1 and Figure 2 This utility model provides a postoperative support and protection device for the spine, including a main body of the protection device, which is composed of a lumbar support board and a flexible support. The lumbar support board includes two support fabrics, and fastening straps 114 are provided on the support fabrics. The flexible support is provided on the main body of the protection device and includes:
[0027] A first support plate 100 is used to provide support on one side of the waist, and one side of the first support plate 100 is connected to one of the fastening straps 114.
[0028] The second support plate 110 is used to provide support on the other side of the waist, and one side of the second support plate 110 is connected to another fastening strap 114 while being connected to the first support plate 100.
[0029] The top support plate 111 connects the top ends of the first support plate 100 and the second support plate 110, and provides overall support for the upper part of the waist, making it convenient for the patient to wear and move.
[0030] The elastic connecting fabric 112 is used to connect the first support plate 100, the second support plate 110, and the top support plate 111 so that the three together form a support structure. At the same time, the elastic connecting fabric 112 is made of elastic nylon woven fabric, which is easy to bend.
[0031] The support strip 113 is made of resin material that is easy to bend and has a high elastic coefficient. The support strip 113 is installed inside the first support plate 100, the second support plate 110, and the top support plate 111. The support strips 113 inside the first support plate 100, the second support plate 110, and the top support plate 111 are all cross-woven to provide strong support for the waist.
[0032] By combining the first support plate 100, the second support plate 110, the top support plate 111, the elastic connecting cloth 112, and the support strip 113, a lumbar support structure that can bend freely with the patient's movements and has strong support is formed.
[0033] Connecting strips 115 are fixedly installed on both the first support plate 100 and the second support plate 110. Fastening straps 114 are set on the connecting strips 115. The connecting strips 115 are made of titanium alloy strips, which have good structural strength and bending ability. They can bend easily with the user's movements while the fastening straps 114 are installed stably.
[0034] Working principle: The first support plate 100 and the second support plate 110 support each other independently but together. The first support plate 100 and the second support plate 110 are embedded with support strips 113 made of high elastic resin material, which provide flexible and strong support. A top support plate 111 is added at the top to further stabilize the overall structure. The three are connected by an elastic connecting cloth 112 made of elastic nylon cloth, which maintains the integrity of the device and can provide flexible adjustment according to the needs of different areas. At the same time, the connecting strip 115 can effectively stabilize the fastening strap 114 while, together with the above-mentioned flexible support, it can bend with the user's movement and provide some auxiliary support effect.
[0035] Example 2:
[0036] Reference Figure 1 The difference between Embodiment 2 and Embodiment 1 is that: two anti-slip straps 116 are fixedly installed at the top of the top support plate 111. The ends of the anti-slip straps 116 are connected to the fastening straps 114. With the assistance of the anti-slip straps 116, the entire device remains stable when walking, sitting or lying down after being worn, thus improving the lumbar support effect of the device.
[0037] A Velcro strap 117 is simultaneously attached to the rear of the first support plate 100 and the second support plate 110. A support airbag 118 is fixedly installed on the Velcro strap 117. The Velcro strap 117 is used to quickly attach and install the support airbag 118. The support airbag 118 is inflated and can further provide support and filling for the user's lumbar spine after the device is worn.
[0038] A heating plate 119 is installed in front of both the first support plate 100 and the second support plate 110. A controller 120 is movably installed on the heating plate 119 via wires. The controller 120 has a battery inside to power the heating plate 119. The heating plate 119 can be controlled by the controller 120 to generate heat for applying heat to the lumbar spine.
[0039] The support fabric is composed of three layers of auxiliary fabric. A breathable layer 121 is fixedly installed inside the support fabric. An antibacterial layer 122 is provided on the breathable layer 121. A sweat-absorbing layer 123 is provided on the antibacterial layer 122. This sandwich structure effectively provides the support fabric with three functions: sweat absorption, antibacterial and breathability.
[0040] Working principle: Breathable layer 121 is made of polyester fiber, which has good breathability. Breathable layer 122 is made of silver ion antibacterial fiber, which has good antibacterial and deodorizing capabilities. Antibacterial layer 122 is made of bamboo charcoal fiber, which has excellent moisture absorption and perspiration wicking properties. This combination of three layers not only meets the needs of breathability, antibacterial and perspiration absorption, but also improves the comfort and service life of the waist support, making it very suitable for long-term wear by postoperative patients.
Claims
1. A postoperative spinal support and protection device, comprising a main body of the protection device, characterized in that, The main body of the protective device consists of a waist support plate and a flexible support. The waist support plate includes two support fabrics, and fastening straps (114) are provided on the support fabrics. The flexible support is provided on the main body of the protective device and includes: A first support plate (100) is used to provide support on one side of the waist, and one side of the first support plate (100) is connected to one of the fastening straps (114). The second support plate (110) is used to provide support on the other side of the waist, and one side of the second support plate (110) is connected to another fastening band (114) while being connected to the first support plate (100). A top support plate (111) is used to connect the top ends of the first support plate (100) and the second support plate (110) and to provide overall support for the upper part of the waist, making it convenient for the patient to wear and move. The elastic connecting fabric (112) is used to connect the first support plate (100), the second support plate (110), and the top support plate (111) so that the three together form a support structure. The elastic connecting fabric (112) is made of elastic nylon woven fabric, which is easy to bend. The support strip (113) is made of resin material that is easy to bend and has a high elastic coefficient. The support strip (113) is installed inside the first support plate (100), the second support plate (110), and the top support plate (111). The support strip (113) inside the first support plate (100), the second support plate (110), and the top support plate (111) are all cross-woven to provide strong support for the waist. By combining the first support plate (100), the second support plate (110), the top support plate (111), the elastic connecting cloth (112), and the support strip (113), a lumbar support structure that can bend freely with the patient's movements and has strong support is formed.
2. The postoperative spinal support and protection device according to claim 1, characterized in that: A connecting strip (115) is fixedly installed on both the first support plate (100) and the second support plate (110). The fastening band (114) is set on the connecting strip (115). The connecting strip (115) is made of titanium alloy and has good structural strength and bending ability. It can bend easily with the user's movements while the fastening band (114) is stably installed.
3. The postoperative spinal support and protection device according to claim 1, characterized in that: Two anti-slip straps (116) are fixedly installed at the top of the top support plate (111). The ends of the anti-slip straps (116) are connected to the fastening straps (114). With the assistance of the anti-slip straps (116), the entire device remains stable when walking, sitting or lying down, thus improving the lumbar support effect of the device.
4. The postoperative spinal support and protection device according to claim 1, characterized in that: A Velcro strap (117) is attached to the rear of the first support plate (100) and the second support plate (110). A support airbag (118) is fixedly installed on the Velcro strap (117). The Velcro strap (117) is used to quickly attach and install the support airbag (118). The support airbag (118) is inflated and can further provide support and filling for the user's lumbar spine after the device is worn.
5. The postoperative spinal support and protection device according to claim 1, characterized in that: A heating plate (119) is installed in front of the first support plate (100) and the second support plate (110). A controller (120) is movably installed on the heating plate (119) via wires. The controller (120) is equipped with a battery to power the heating plate (119). The heating plate (119) can be controlled by the controller (120) to generate heat for applying heat to the lumbar spine.
6. The postoperative spinal support and protection device according to claim 1, characterized in that: The support fabric is composed of three auxiliary fabrics. A breathable layer (121) is fixedly installed inside the support fabric. An antibacterial layer (122) is provided on the breathable layer (121). A sweat-absorbing layer (123) is provided on the antibacterial layer (122).