Penetrating and sleeving type hand and foot postoperative protection assembly
Through the innovative design of flexible fitting kits and gel pads, combined with sensor monitoring, the problem of insufficient adaptability of postoperative fixation methods has been solved, achieving stable support, convenient adjustment and physiological monitoring, thereby improving the patient's recovery experience and the quality of care.
Patent Information
- Application Number
- CN202422747727.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2034-11-12
AI Technical Summary
Existing postoperative fixation methods lack flexibility and adaptability, leading to patient discomfort and swelling. Traditional pressure bandages are prone to falling off and uneven pressure, which may cause pressure sores.
It adopts a flexible fitting kit and a removable gel pad design, combined with a blood oxygen sensor and a wireless signal transceiver, to achieve flexible fixation and physiological monitoring, and can be easily removed through the Velcro adhesive side.
It provides stable support, adapts to the patient's recovery progress, reduces discomfort, improves treatment convenience and nursing efficiency, monitors the patient's physiological parameters, and prevents swelling and pressure sores.
Smart Images

Figure CN223831250U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical device technology, and in particular to a slip-on postoperative protective component for hands and feet. Background Technology
[0002] Postoperative immobilization is a crucial step in the treatment of hand, foot, or other limb injuries. Traditional immobilization methods, such as using rigid materials like plaster casts or metal braces, while providing necessary support, often lack flexibility. These materials are not easily adjustable and cannot be tailored to the patient's specific recovery progress, potentially leading to discomfort or restricted blood circulation. Postoperative limbs are prone to swelling, requiring pressure bandages to reduce it. Traditional pressure bandages typically use cotton pads, but these are prone to slippage, inconvenient to apply, and difficult to reposition. Furthermore, uneven pressure can occur when using traditional cotton pads for pressure bandaging due to varying techniques, easily causing pressure sores at bony landmarks. These problems highlight the limitations of current postoperative immobilization techniques in terms of adaptability.
[0003] In recent years, with the development of materials science and smart technology, some innovative postoperative fixation devices have emerged. These devices attempt to use softer materials that better adapt to the patient's body shape and integrate sensors and intelligent control systems to achieve more precise pressure control and monitoring. For example, one orthopedic arm fixation device includes an illumination component and an arm support fixation component. The arm support fixation component is positioned above the illumination component. The adjustable, multi-segment illumination component perfectly matches the surgeon's lighting during operation. Furthermore, the arm support fixation component adapts to the patient's arm position when placed on the device, quickly adjusting to the most suitable arm position based on the patient's arm shape.
[0004] In addition, there is a temporary arm fixation device for surgery and a postoperative shaping device, including a reservoir, a thermoplastic splint cover, and an adjustable cover. During surgery, the height of the adjustable cover can be adjusted via a height-adjusting component to effectively fix the affected limb, allowing for proper positioning of the arm during the procedure, facilitating the surgeon's work, reducing the number of surgical personnel, and shortening surgical time. After surgery, the thermoplastic splint cover can be heated using a heating device to personalize its shape according to the patient's individual needs.
[0005] Therefore, there is an urgent need to develop a fixation device that can provide stable support, adapt to changes in swelling of the hands and feet, and possess good adjustability. This is a problem that urgently needs to be solved in the field of postoperative fixation technology. Furthermore, this device should be able to flexibly adjust according to the patient's recovery progress to adapt to the physiological changes in the patient's hands and feet, while reducing patient discomfort and improving the convenience of treatment. Utility Model Content
[0006] The purpose of this invention is to overcome the shortcomings of the existing technology by providing a slip-on postoperative protective component for hands and feet. It adopts flexible materials and an innovative gel layer adhesive design. Through the design of flexible slip-on kit and detachable gel pad, this invention achieves flexible and tension-type fixation of hands and feet, thus providing medical staff with a brand-new postoperative care solution.
[0007] The objective of this utility model can be achieved through the following technical solutions:
[0008] This utility model provides a slip-on type postoperative protective component for hands and feet, used for auxiliary fixation after bone surgery, including a flexible hand slip-on kit, a first gel pad, a flexible foot slip-on kit, and a second gel pad, wherein specifically:
[0009] The flexible hand fitting is wrapped around the hand to achieve flexible and tension-based fixation of the hand;
[0010] The first gel pad is detachably attached to the inner wall of the flexible hand-wearing kit. The first gel pad is used for pressure protection of wounds on the legs.
[0011] The flexible foot fitting is wrapped around the foot to achieve flexible and tension-based fixation.
[0012] The second gel pad is detachably attached to the inner wall of the flexible footwear kit and is used for pressure protection of wounds on the legs.
[0013] Furthermore, a first blood oxygen sensor is also connected to the flexible hand fitting;
[0014] The flexible hand-wearing kit is also equipped with a first wireless transceiver, which is connected to an external computer terminal for communication.
[0015] Furthermore, the first wireless transceiver is connected to the first blood oxygen sensor via a first connecting line;
[0016] The first connecting line is connected to the flexible hand fitting via a stitch.
[0017] Furthermore, the flexible hand fitting includes an integrally molded flexible hand fitting body and a finger extension.
[0018] Furthermore, the main body of the flexible hand-wearing kit is fitted onto the wrist and palm.
[0019] The finger extension is fitted at the base of each finger, exposing the middle and tip of the finger.
[0020] Furthermore, a second blood oxygen sensor is also connected to the flexible foot fitting;
[0021] The flexible foot-mounted kit is also equipped with a second wireless transceiver, which is connected to an external computer terminal for communication.
[0022] Furthermore, the second wireless transceiver is connected to the second blood oxygen sensor via a second connecting cable;
[0023] The second connecting line is connected to the flexible foot fitting via a stitch.
[0024] Furthermore, one side of both the first and second gel pads is an adhesive surface, and the other side is a gel layer;
[0025] The adhesive surface uses the hooked, bristle side of Velcro.
[0026] Furthermore, the flexible hand and foot fittings are selected from one of the following: modal fiber fabric, spandex fiber fabric, acrylic fiber fabric, and nylon fiber fabric.
[0027] Furthermore, the thickness of the flexible hand fitting and the flexible foot fitting is 0.5~5mm.
[0028] Compared with the prior art, the present invention has the following technical advantages:
[0029] 1) This invention provides a multifunctional protective component that can both fix the hands and feet postoperatively and perform physiological monitoring. Compared with traditional postoperative fixation methods, this invention achieves flexible and tension-based fixation of the hands and feet through the design of a flexible fitting and a detachable gel pad. Simultaneously, the integrated blood oxygen sensor and wireless transceiver can monitor the patient's physiological parameters in real time, providing medical staff with important health monitoring data, thereby improving the quality and efficiency of postoperative care.
[0030] 2) This invention achieves more precise pressure control and monitoring by using soft, patient-shape-adapting materials and integrating an intelligent control system. Especially for postoperative limb swelling, the detachable gel pad can be adjusted as needed to adapt to the patient's recovery progress, thereby better protecting the wound and reducing swelling. Furthermore, the Velcro adhesive surface design makes the gel pad easier to remove and secure, further improving ease of use. Attached Figure Description
[0031] Figure 1 This is a schematic diagram of the flexible hand fitting in this utility model;
[0032] Figure 2 This is a schematic diagram of the flexible foot fitting of this utility model.
[0033] In the picture:
[0034] Flexible Hand Fitting Kit - 1
[0035] First Gel Pad-2
[0036] Foot Flexible Wearing Kit - 3
[0037] Second gel pad - 4
[0038] First blood oxygen sensor-5
[0039] First Wireless Transceiver-6
[0040] First connecting line - 7
[0041] Second wireless transceiver-8
[0042] Second blood oxygen sensor-9
[0043] Second connecting line -10
[0044] Flexible Hand Fitting Kit Main Body - 11
[0045] Finger extension segment -12 Detailed Implementation
[0046] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments. Component models, material names, connection structures, control methods, algorithms, and other features not explicitly described in this technical solution are considered common technical features disclosed in the prior art.
[0047] Example 1
[0048] This embodiment provides a slip-on postoperative protective assembly for hands and feet, used for auxiliary fixation after bone surgery. It includes a flexible hand slip-on kit 1, a first gel pad 2, a flexible foot slip-on kit 3, and a second gel pad 4, as detailed below. Figure 1 and Figure 2 .
[0049] A flexible hand fitting 1 is fitted over the hand to provide flexible and tension-based fixation. A first blood oxygen sensor 5 is also connected to the flexible hand fitting 1. A first wireless transceiver 6 is also connected to the flexible hand fitting 1, and the first wireless transceiver 6 communicates with an external computer terminal. The first wireless transceiver 6 is connected to the first blood oxygen sensor 5 via a first connecting cable 7; the first connecting cable 7 is connected to the flexible hand fitting 1 via stitches.
[0050] The flexible hand fitting 1 includes a one-piece molded flexible hand fitting body 11 and finger extensions 12. The flexible hand fitting body 11 is fitted onto the wrist and palm. The finger extensions 12 are fitted onto the base of each finger, exposing the middle and tip of the finger.
[0051] The first gel pad 2 is detachably attached to the inner wall of the flexible hand fitting 1, and is used for pressure protection of wounds on the legs. The second gel pad 4 is detachably attached to the inner wall of the flexible foot fitting 3, and is also used for pressure protection of wounds on the legs. One side of both the first gel pad 2 and the second gel pad 4 is an adhesive surface, and the other side is a gel layer; the adhesive surface uses the hooked, bristled side of Velcro.
[0052] A flexible foot fitting 3 is worn over the foot to provide flexible and tension-based fixation. A second blood oxygen sensor 9 is also connected to the flexible foot fitting 3. A second wireless transceiver 8 is also connected to the flexible foot fitting 3, and the second wireless transceiver 8 communicates with an external computer terminal. The second wireless transceiver 8 is connected to the second blood oxygen sensor 9 via a second connecting cable 10; the second connecting cable 10 is connected to the flexible foot fitting 3 via stitches.
[0053] In specific implementation, the flexible hand fitting 1 and the flexible foot fitting 3 are both selected from one of the following: modal fiber fabric, spandex fiber fabric, acrylic fiber fabric, and nylon fiber fabric. The thickness of both the flexible hand fitting 1 and the flexible foot fitting 3 is 0.5~5mm.
[0054] The technical principle of this utility model is as follows:
[0055] Flexible Fixation and Protection: The flexible hand fitting 1 and flexible foot fitting 3 of this utility model are made of flexible materials and achieve flexible, tension-based fixation of the hands and feet through a wrap-around design. This design not only provides stable support but also reduces postoperative discomfort and promotes wound healing. The first gel pad 2 and the second gel pad 4 are detachably adhered to the inner wall of the fitting, providing pressure-type protection for the wounds on the hands and feet, further enhancing the safety of postoperative recovery.
[0056] Sensors and Monitoring: The flexible hand-mounted kit 1 and the flexible foot-mounted kit 3 integrate a first pulse oxygen sensor 5 and a second pulse oxygen sensor 9, respectively. These sensors can monitor the patient's blood oxygen saturation in real time. Data from these sensors can be wirelessly transmitted to an external computer terminal via a first wireless transceiver 6 and a second wireless transceiver 8, enabling remote monitoring. This monitoring mechanism not only improves the efficiency of postoperative care but also provides timely health feedback to medical staff, ensuring the patient's safety during recovery.
[0057] Data transmission: The first wireless transceiver 6 and the second wireless transceiver 8 are connected to the corresponding blood oxygen sensors via the first connecting cable 7 and the second connecting cable 10, enabling wireless data transmission. In this way, medical staff can obtain the patient's physiological data in real time, allowing for more precise postoperative care and health management.
[0058] Material Selection and Structural Design: The flexible hand-wearing kit 1 and the flexible foot-wearing kit 3 of this utility model are made of modal fiber, spandex fiber, acrylic fiber, nylon fiber, and other materials, which have good breathability, durability, and elasticity. The thickness is controlled between 0.5 and 5 mm to ensure the lightweight and adaptability of the kit. The adhesive side of the gel pad uses a hook-and-loop fastener with a bristle-like surface for easy and quick installation and removal, while ensuring a tight fit with the kit. This material and structural design not only improves the patient's user experience but also enhances the product's practicality and hygiene.
[0059] The above description of the embodiments is provided to enable those skilled in the art to understand and use the utility model. It will be apparent to those skilled in the art that various modifications can be easily made to these embodiments, and the general principles described herein can be applied to other embodiments without inventive effort. Therefore, the present utility model is not limited to the above embodiments, and any improvements and modifications made by those skilled in the art based on the disclosure of the present utility model without departing from its scope should be within the protection scope of the present utility model.
Claims
1. A slip-on postoperative protective assembly for hands and feet, characterized in that, include: The flexible hand fitting (1) is wrapped around the hand to achieve flexible and tension-type fixation of the hand; The first gel pad (2) is detachably attached to the inner wall of the flexible hand fitting (1). The first gel pad (2) is used for pressure protection of wounds on the legs. The flexible foot fitting (3) is wrapped around the foot to achieve flexible and tension-type fixation of the foot. The second gel pad (4) is detachably attached to the inner wall of the foot flexible fitting (3) and is used for pressure protection of wounds on the legs.
2. The slip-on postoperative protective assembly for hands and feet according to claim 1, characterized in that, The flexible hand fitting (1) is also equipped with a first blood oxygen sensor (5). The flexible hand-wearing kit (1) is also equipped with a first wireless transceiver (6), which is connected to an external computer terminal for communication.
3. A slip-on postoperative protective assembly for hands and feet according to claim 2, characterized in that, The first wireless transceiver (6) is connected to the first blood oxygen sensor (5) via the first connecting line (7); The first connecting line (7) is connected to the flexible hand fitting (1) by a stitch.
4. A slip-on postoperative protective assembly for hands and feet according to claim 1, characterized in that, The flexible hand fitting (1) includes an integrally formed flexible hand fitting body (11) and a finger extension (12).
5. A slip-on postoperative protective assembly for hands and feet according to claim 4, characterized in that, The flexible hand fitting body (11) is fitted onto the wrist and palm. The finger extension (12) is fitted at the base of each finger, so that the middle and tip of the finger are exposed.
6. A slip-on postoperative protective assembly for hands and feet according to claim 1, characterized in that, The flexible foot fitting (3) is also connected to a second blood oxygen sensor (9). The flexible foot-mounted kit (3) is also equipped with a second wireless transceiver (8), which is connected to an external computer terminal for communication.
7. A slip-on postoperative protective assembly for hands and feet according to claim 6, characterized in that, The second wireless transceiver (8) is connected to the second blood oxygen sensor (9) via the second connecting line (10); The second connecting line (10) is connected to the foot flexible fitting (3) by a stitch.
8. A slip-on postoperative protective assembly for hands and feet according to claim 1, characterized in that, One side of the first gel pad (2) and the second gel pad (4) is an adhesive surface, and the other side is a gel layer; The adhesive surface uses the hooked, bristle side of Velcro.
9. A slip-on postoperative protective assembly for hands and feet according to claim 1, characterized in that, The flexible hand fitting kit (1) and the flexible foot fitting kit (3) are both selected from one of the following: modal fiber fabric, spandex fiber fabric, acrylic fiber fabric, and nylon fiber fabric.
10. A slip-on postoperative protective assembly for hands and feet according to claim 1, characterized in that, The thickness of the flexible hand fitting (1) and the flexible foot fitting (3) is 0.5~5mm.