Multifunctional restraint glove
Patent Information
- Application Number
- CN202520876354.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-07
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-05-07
AI Technical Summary
[0002]日常医疗护理中,采用防护约束手套或腕部固定装置能够有效降低非计划拔管率等不良事件的发生率,但传统约束手套容易导致患者局部皮肤破损、血液循环障碍,甚至臂丛神经麻痹等并发症
[0023]This invention provides a multifunctional restraint glove. Compared with existing technologies, this invention has the following advantages: The invention uses a buffer layer and elastic finger sleeves to form a gradient pressure distribution, reducing the incidence of wrist pressure ulcers and preventing skin damage to the patient's wrist; a transparent sash allows for non-contact observation, improving the glove's visibility and facilitating capillary filling assessment, observation of infusion status and skin condition while maintaining restraint, reducing unplanned extubation and improving the accuracy of blood oxygen saturation; the inlet channel is designed with various shapes to easily match different... The number of inlet lines in the glove's configuration varies. When set to a herringbone shape, it can accommodate two medical lines; when set to a branch shape, it can accommodate three to five medical lines simultaneously, preventing line tangling. A zippered, detachable structure allows for timely observation and adjustment of misaligned detection lines inside the glove, enabling visual observation of the patient's skin and infusion status. The finger area features extendable and retractable elastic cotton finger sleeves, with a diameter suitable for the thickness of the pulse oxygen saturation probe and the fingertip, preventing the probe from shifting, falling off, or sliding, thus offering good practicality and safety.
Smart Images

Figure CN224639943U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical and nursing equipment, and in particular to a multifunctional restraint glove. Background Technology
[0002] In routine medical care, the use of protective restraint gloves or wrist immobilization devices can effectively reduce the incidence of adverse events such as unplanned extubation. However, traditional restraint gloves can easily lead to complications such as local skin damage, impaired blood circulation, and even brachial plexus palsy. Furthermore, existing medical restraint gloves generally suffer from poor comfort and inconvenient observation. Traditional restraint gloves employ a completely closed design, preventing healthcare workers from directly observing the blood circulation in the patient's hand. The fastening straps often use Velcro, which easily loses its restraint force due to repeated fastening, and the lack of access for tubing management leads to tangled monitoring cables. Rigid restraint materials can easily cause wrist pressure sores, and finger restraint structures can easily lead to peripheral circulatory disorders. Especially when patients exhibit aggressive behavior and frequently struggle, existing gloves are prone to displacement, causing restraint failure.
[0003] Therefore, based on the principles of safety, comfort, and effectiveness, this utility model designs a new type of multifunctional restraint glove. Utility Model Content
[0004] (1) Technical solution
[0005] To solve the above-mentioned technical problems, this utility model provides a multifunctional restraint glove, including a restraint glove body, which includes a wrist part, a palm part, and a finger part;
[0006] The wrist portion includes a surface layer, and the inner side of the surface layer is covered with at least one buffer layer, on which a wire inlet channel is provided;
[0007] The back of the hand area of the palm is provided with a transparent curtain;
[0008] When in use, the outer side of the wrist is fitted with an adjustable tension restraint strap.
[0009] Preferably, the surface layer is made of a waterproof material, which can achieve a waterproof effect.
[0010] Preferably, the incoming channel is in the shape of a straight line, a herringbone shape, or a tree branch shape with multiple branches radiating outwards, which facilitates the drawing out of different detection lines that need to be connected to the patient from the incoming channel.
[0011] Preferably, the buffer layer is a sponge pad with a thickness of 2-3 cm, which can prevent skin damage to the patient's wrist.
[0012] Preferably, the finger portion includes several cylindrical elastic cotton finger sleeves, which can extend and retract the finger portion. It should be noted that the diameter of the end of the finger sleeve needs to be larger than the size of the blood oxygen saturation probe, but the diameter should not be too large. Generally, it should be the thickness of the probe and the finger to avoid the blood oxygen saturation probe shifting, falling off, or sliding during use.
[0013] Preferably, the back of the hand area of the palm is provided with a connecting groove that matches the size of the transparent curtain.
[0014] Preferably, a drawstring is sewn onto the surface of the wrist; in use, the restraining strap passes through the drawstring and is adjusted in tension to be secured to the outside of the wrist.
[0015] Preferably, the transparent slats are sewn onto the connecting groove.
[0016] Preferably, the transparent curtain is installed on the palm of the hand in a flip-up manner, which makes it easy to pull the transparent curtain up and directly adjust the misalignment of the detection lines inside the restraint glove, making the operation more convenient. That is, the transparent curtain can be set to partially flip up. It should also be noted that the transparent curtain can be installed on the palm of the hand in a fully detachable manner.
[0017] Preferably, a zipper toothed mother chain is sewn onto the inward-facing side of the connecting groove;
[0018] The transparent curtain is sewn with a zipper toothed sub-chain on its edge, which meshes with the zipper toothed main chain during use;
[0019] If the transparent slats are partially flipped up, a sewing strip is sewn on one side of the connecting groove, and the two ends of the zipper toothed chain terminate at the two ends of the sewing strip.
[0020] The zipper rack mother chain is provided with a zipper head that slides along its designated direction.
[0021] Preferably, the transparent slats are made of a transparent material, such as medical-grade transparent material, for example, polycarbonate.
[0022] (2) Beneficial effects
[0023] This invention provides a multifunctional restraint glove. Compared with existing technologies, this invention has the following advantages: The invention uses a buffer layer and elastic finger sleeves to form a gradient pressure distribution, reducing the incidence of wrist pressure ulcers and preventing skin damage to the patient's wrist; a transparent sash allows for non-contact observation, improving the glove's visibility and facilitating capillary filling assessment, observation of infusion status and skin condition while maintaining restraint, reducing unplanned extubation and improving the accuracy of blood oxygen saturation; the inlet channel is designed with various shapes to easily match different... The number of inlet lines in the glove's configuration varies. When set to a herringbone shape, it can accommodate two medical lines; when set to a branch shape, it can accommodate three to five medical lines simultaneously, preventing line tangling. A zippered, detachable structure allows for timely observation and adjustment of misaligned detection lines inside the glove, enabling visual observation of the patient's skin and infusion status. The finger area features extendable and retractable elastic cotton finger sleeves, with a diameter suitable for the thickness of the pulse oxygen saturation probe and the fingertip, preventing the probe from shifting, falling off, or sliding, thus offering good practicality and safety. Attached Figure Description
[0024] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0025] Figure 2 for Figure 1 A schematic diagram of the structure after the transparent curtain is flipped up.
[0026] Figure 3 This is a diagram of the inner structure of the wrist.
[0027] Figure 4 This is an enlarged schematic diagram of the buffer layer installed on the wrist.
[0028] In the picture:
[0029] The restraint glove body (100), wrist section (101), surface layer (1011), cushioning layer (1012), thread inlet channel (1013), palm section (102), connecting groove (1021), stitching strip (1022), finger section (103), restraint strap (104), transparent curtain (105), and zipper pull (106). Detailed Implementation
[0030] The present invention will be further described in conjunction with the accompanying drawings and embodiments.
[0031] like Figure 1-4As shown, one embodiment of the multifunctional restraint glove of this utility model includes a restraint glove body 100, which includes a wrist portion 101, a palm portion 102, and finger portions 103. The wrist portion 101 includes a surface layer 1011, and at least one cushioning layer 1012 is wrapped around the inner side of the surface layer 1011. The cushioning layer 1012 is provided with a wire inlet channel 1013. The back of the hand area of the palm portion 102 is provided with a transparent curtain 105. In use, an adjustable-tension restraint strap 104 is bound to the outer side of the wrist portion 101. The surface layer 1011 is protected against... Made of water-based materials; the inlet channel 1013 is in a straight line, a herringbone shape, or a branching shape radiating outwards from one point; the buffer layer 1012 is a 2-3cm thick sponge pad; the finger portion 103 includes several cylindrical elastic cotton finger sleeves; the back of the hand area of the palm portion 102 has a connecting groove 1021 matching the size of the transparent curtain 105; to facilitate better restraint, a drawstring buckle is sewn onto the surface layer 1011 of the wrist portion 101; in use, the restraint strap 104 passes through the drawstring buckle and is adjusted in tension to be bound to the outside of the wrist portion 101; see details. Figure 2 The transparent curtain 105 is a hinged, flip-up type installed on the palm part 102; a zipper toothed main chain is sewn on the inward side of the connecting groove 1021; a zipper toothed sub-chain is sewn on the edge of the transparent curtain 105, and the zipper toothed sub-chain engages with the zipper toothed main chain during use; a sewing strip 1022 is sewn on one side of the connecting groove 1021, and the two ends of the zipper toothed main chain terminate at the two ends of the sewing strip 1022; the zipper toothed main chain is provided with a zipper head 106 that slides along its setting direction;
[0032] The multifunctional restraint glove provided in this solution offers visualization, facilitates observation of infusion and skin conditions, prevents wrist skin injury, reduces unplanned extubation, and improves the accuracy of blood oxygen saturation. The wrist area uses 2-3cm thick sponge material to avoid skin injury to the patient's wrist. In actual use, the inner sponge of the wrist area is often designed with a "V"-shaped internal incision for the placement of infusion tubing and finger pulse oximetry tubing, meeting the needs of clinical infusion therapy and vital sign monitoring, while preventing pressure injury to the skin of patients with edema. The transparent curtain is designed with transparent material to allow for visual observation of the patient's skin and infusion conditions. The fingers are made of cotton cloth finger cots that can be extended and retracted, with a diameter suitable for the thickness of the blood oxygen saturation probe and the fingertip, preventing the blood oxygen probe from shifting, falling off, or sliding. Three cotton cloth finger cots are shown in the figure, but only one is needed in practice. It should be noted that the little finger is generally not used as the testing site during testing.
[0033] During use, before the patient places their hand into the restraint glove, the detection line should be clipped or aligned. Then, the hand with the detection line is passed through the elastic cotton finger cot, and the restraint strap is passed through the drawstring buckle to adjust the tension. The cushioning layer sponge pad undergoes elastic deformation when the wrist is compressed, forming dynamic pressure buffering. Medical staff can observe whether the detection line is misaligned through the transparent curtain. In this embodiment, if misalignment occurs, the zipper head is opened, and the transparent curtain is lifted to adjust the detection line. After adjustment, the zipper toothed sub-chain and zipper toothed main chain are aligned and pulled. The engagement of the sub-chain and main chain causes the zipper head to move, and finally the transparent curtain is closed. It should be noted that the zipper structure is more conducive to the adjustment of the detection line. Since the transparent curtain is made of transparent material, the skin condition can be directly viewed through the transparent curtain, and the detection line can be adjusted in real time.
[0034] The embodiments described above are merely preferred embodiments of the present invention, and are described in a relatively specific and detailed manner. However, the present invention is not limited to these embodiments. It should be noted that for those skilled in the art, any improvements made without departing from the spirit of the present invention fall within the protection scope of the present invention. Therefore, the protection scope of this patent should be determined by the appended claims.
Claims
1. A multifunctional restraint glove, characterized in that, The restraint glove body (100) includes a wrist portion (101), a palm portion (102), and a finger portion (103). The wrist portion (101) includes a surface layer (1011), and the inner side of the surface layer (1011) is covered with at least one buffer layer (1012), and the buffer layer (1012) is provided with a wire inlet channel (1013); The back of the hand area of the palm (102) is provided with a transparent slat (105); In use, the outer side of the wrist (101) is bound with a tension-adjustable restraint strap (104).
2. The multifunctional restraint glove according to claim 1, characterized in that, The surface layer (1011) is made of a waterproof material.
3. A multifunctional restraint glove according to claim 1, characterized in that, The incoming channel (1013) is in the shape of a straight line, a herringbone shape, or a tree branch shape with multiple branches radiating outward from one.
4. A multifunctional restraint glove according to any one of claims 1-3, characterized in that, The buffer layer (1012) is a sponge pad with a thickness of 2-3 cm.
5. A multifunctional restraint glove according to claim 4, characterized in that, The finger section (103) includes several cylindrical elastic cotton finger sleeves.
6. A multifunctional restraint glove according to claim 5, characterized in that, The back of the hand area of the palm (102) is provided with a connecting groove (1021) that matches the size of the transparent slat (105), which is made of transparent material.
7. A multifunctional restraint glove according to claim 6, characterized in that, A drawstring buckle is sewn onto the surface layer (1011) of the wrist part (101); when in use, the restraint strap (104) passes through the drawstring buckle and is tied to the outside of the wrist part (101) with adjustable tension.
8. A multifunctional restraint glove according to claim 7, characterized in that, The transparent slats (105) are sewn onto the connecting grooves (1021).
9. A multifunctional restraint glove according to claim 7, characterized in that, The transparent slats (105) are hinged and flipped up on the palm part (102).
10. A multifunctional restraint glove according to claim 9, characterized in that, A zipper toothed mother chain is sewn on the inward side of the connecting groove (1021); The edge of the transparent curtain (105) is sewn with a zipper toothed sub-chain, which meshes with the zipper toothed main chain during use; A sewing strip (1022) is sewn on one side of the connecting groove (1021), and the two ends of the zipper toothed chain terminate sewing at the two ends of the sewing strip (1022); The zipper rack mother chain is provided with a zipper head (106) that slides along its setting direction.