Restraint glove capable of preventing extubation

CN223640927UActive Publication Date: 2025-12-09THE SIXTH AFFILIATED HOSPITAL OF SUN YAT SEN UNIV
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422876442.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-25
Publication Date
2025-12-09
Estimated Expiration
2034-11-25

AI Technical Summary

Technical Problem

Traditional anti-extraction restraints cause pressure on the patient's skin and obstruct blood circulation, which may lead to skin damage, bruising, and other problems, and the patient's comfort is poor.

Method used

The glove uses an anti-pull-out restraint glove, which includes a glove body and a protective sleeve. The glove body is placed inside the protective sleeve and combines anti-slip structures such as elastic bands, elastic sleeves, and Velcro to restrict finger movement and reduce direct fixation of the hand. It uses a combination of flexible and rigid materials to reduce skin pressure.

Benefits of technology

It effectively limits extubation behavior, reduces skin discomfort and damage, improves patient comfort, avoids struggling and anxiety, and keeps patients calm.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223640927U_ABST
    Figure CN223640927U_ABST
Patent Text Reader

Abstract

The utility model discloses an anti-extubation restraint glove which comprises a glove body and a protective cylinder, the glove body is connected with the inner side of the protective cylinder, the palm portion of the glove body extends into the protective cylinder, the glove body is further connected with an anti-falling structure, the anti-falling structure is located outside the protective cylinder, the anti-falling structure comprises a lacing belt and an elastic oversleeve, the elastic oversleeve is connected with the glove body, and the lacing belt is connected with the protective cylinder. And the lacing belt is arranged on the elastic oversleeve. The glove body is arranged in the protective cylinder, when the hand of a patient wears the glove body, the finger parts of the patient are restrained in the protective cylinder, so that the movement range of the hand of the patient is limited, and due to the fact that the fingers are wrapped by the protective cylinder, the patient is difficult to form enough grabbing force or create a contact face capable of directly making contact with and pulling out a catheter. The limitation of unconscious or intentional tube drawing action of a patient is realized, so that the safety and the stability of the medical tube are effectively guaranteed.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of medical device technology, and in particular to an anti-extraction restraint glove. Background Technology

[0002] Anti-extraction restraints are used to restrict the movement of a patient's limbs, especially their hands, to prevent them from unintentionally pulling out medical devices such as endotracheal tubes, urinary catheters, and gastric tubes, thus ensuring treatment safety and effectiveness. Traditional anti-extraction restraints primarily take the form of restraint straps, usually made of soft materials such as nylon or cotton, and equipped with adjustable buckles or Velcro to allow for personalized adjustments based on the patient's body shape and specific needs. When in use, the restraint straps effectively restrict the patient's range of motion by fixing their wrists and other parts of their body to the bed, thereby preventing, to some extent, the patient from unintentionally pulling out medical devices.

[0003] However, while traditional restraints can meet medical needs to some extent, they can also cause discomfort because the patient's wrist is restrained in a fixed position for a long time. This can lead to skin pressure, impaired blood circulation, and even skin damage and bruising. Utility Model Content

[0004] The purpose of this invention is to provide an anti-pulling restraint glove to solve one or more technical problems existing in the background art.

[0005] To achieve this objective, the present invention adopts the following technical solution:

[0006] An anti-pull-out restraint glove includes a glove body and a protective sleeve. The glove body is connected to the inner side of the protective sleeve. The palm of the glove body extends into the protective sleeve. The glove body is also connected to an anti-slip structure located outside the protective sleeve. The anti-slip structure includes a tightening strap and an elastic sleeve. The elastic sleeve is connected to the glove body, and the tightening strap is disposed on the elastic sleeve.

[0007] Preferably, the sleeve is made of a rigid material, and the glove body is made of a flexible material.

[0008] Preferably, the two ends of the protective sleeve are respectively provided with a first opening and a second opening, the opening area of ​​the second opening is larger than the opening area of ​​the first opening, forming a trumpet-shaped structure, and the cuff of the glove body is connected to the first opening of the protective sleeve.

[0009] Preferably, the anti-slip structure further includes multiple connecting straps, multiple fastening buckles, hook and loop fasteners, and hook and loop fasteners. The connecting straps are sewn to the left and right sides of the front surface of the elastic sleeve. The connecting straps are connected to the fastening buckles. The fastening straps are located on both sides of the back of the elastic sleeve. The hook and loop fasteners are sewn to the ends of the fastening straps. The hook and loop fasteners are sewn to the front surface of the elastic sleeve. The ends of the fastening straps pass through the fastening buckles located on the same side and are fixed to the front surface of the elastic sleeve by the adhesion between the hook and loop fasteners and the hook and loop fasteners.

[0010] Preferably, a tensioning strip is sewn between the two alternating left and right connecting strips.

[0011] Preferably, the anti-slip structure further includes an air cushion and an air inlet, the air cushion being disposed on the inner side of the elastic sleeve, and the air inlet being disposed on the outer side of the elastic sleeve and communicating with the air cushion.

[0012] Preferably, the outer side of the protective sleeve is provided with multiple vents.

[0013] Preferably, the finger and palm portions of the glove body are sewn with breathable mesh.

[0014] The beneficial effects of this invention are as follows: By placing the glove body inside the protective sleeve, when the patient puts on the glove, their fingers are restrained inside the sleeve, thus limiting the range of motion of the patient's hand. Because the fingers are wrapped in the sleeve, the patient finds it difficult to generate sufficient gripping force or create a contact surface to directly contact and pull out the catheter, thereby restricting the patient's unconscious or intentional tube-pulling actions and effectively ensuring the safety and stability of the medical tubing. Compared with traditional restraint straps, this invention reduces the restriction on the patient's hand movement while ensuring that the patient's tube-pulling behavior is restricted. It eliminates the need to fix the patient's hand to the bed, avoiding skin discomfort or damage caused by prolonged pressure, greatly improving the patient's wearing comfort. Furthermore, it avoids the struggle and anxiety caused by the patient's hand being fixed, helping to maintain the patient's calm and comfortable state. Attached Figure Description

[0015] The accompanying drawings further illustrate the present invention, but the content of the drawings does not constitute any limitation on the present invention.

[0016] Figure 1 This is a schematic diagram of the overall structure of one embodiment of the present utility model;

[0017] Figure 2 This is a schematic diagram of the front surface of the elastic sleeve according to one embodiment of the present invention;

[0018] Figure 3This is a schematic diagram of the back of the elastic sleeve according to one embodiment of the present invention;

[0019] Figure 4 This is a schematic diagram of the arrangement of the breathable mesh and the inflatable pad in one embodiment of this utility model.

[0020] The components include: glove body 1, sleeve 2, tightening strap 31, elastic sleeve 32, first opening 21, second opening 22, connecting strap 33, tightening buckle 34, Velcro serrated side 35, Velcro napped side 36, tightening strip 37, air cushion 38, air inlet 39, ventilation vent 23, and ventilation mesh 11. Detailed Implementation

[0021] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.

[0022] This embodiment provides an anti-pulling restraint glove, as shown in the attached document. Figure 1-3 The glove includes a glove body 1 and a protective sleeve 2. The glove body 1 is connected to the inside of the protective sleeve 2. The palm of the glove body 1 extends into the protective sleeve 2. The glove body 1 is also connected to an anti-slip structure, which is located outside the protective sleeve 2. The anti-slip structure includes a tightening strap 31 and an elastic sleeve 32. The elastic sleeve 32 is connected to the glove body 1, and the tightening strap 31 is provided on the elastic sleeve 32.

[0023] By placing the glove body 1 inside the protective sleeve 2, when the patient puts on the glove body 1, their fingers are restrained inside the protective sleeve 2, thus limiting the range of motion of the patient's hand. Because the fingers are wrapped in the protective sleeve 2, it is difficult for the patient to form sufficient grasping force or create a contact surface to directly contact and pull out the catheter, thereby restricting the patient's unconscious or intentional tube-pulling actions and effectively ensuring the safety and stability of the medical tubing. Compared with traditional restraint straps, this method reduces the restriction on the patient's hand movement while ensuring that the patient's tube-pulling behavior is restricted. It eliminates the need to fix the patient's hand to the bed, avoiding skin discomfort or damage caused by prolonged pressure, greatly improving the patient's wearing comfort. It also avoids the struggle and anxiety caused by the patient's hand being fixed, helping to maintain the patient's calm and comfort. By incorporating an anti-slip structure, it prevents the patient from breaking free of the glove body 1, ensuring the restraint of the patient's hand. By tightening the straps 31, the glove body 1 and the elastic sleeve 32 are made to fit tightly against the patient's palm and arm, preventing the patient from breaking free. By setting the elastic sleeve 32, the contact area with the patient's arm is increased, avoiding discomfort or damage caused by prolonged pressure on the local skin, and greatly improving the patient's wearing comfort.

[0024] Preferably, the sleeve 2 is made of a rigid material, while the glove body 1 is made of a flexible material. By using a rigid sleeve 2, deformation is minimized, effectively limiting the patient's finger range of motion and reducing the risk of extubation. Furthermore, the rigid sleeve 2 resists external pressure, preventing deformation or damage caused by patient struggle or external force, thus extending its lifespan. The flexible glove body 1, on the other hand, conforms closely to the patient's hand shape, and its soft, breathable properties reduce pressure and discomfort from prolonged wear.

[0025] Preferably, the sleeve 2 has a first opening 21 and a second opening 22 at both ends, with the opening area of ​​the second opening 22 being larger than that of the first opening 21, forming a trumpet-shaped structure. The cuff of the glove body 1 is connected to the first opening 21 of the sleeve 2. By setting the sleeve 2 with a trumpet-shaped structure, when the patient wears restraint gloves, the two sleeves 2 are difficult to fit stably when close together. Moreover, the trumpet-shaped sleeve 2 can also form a gradually transitioning support surface around the patient's hands, reducing the direct pressure of hard materials on the skin.

[0026] Preferably, the anti-slip structure further includes multiple connecting straps 33, multiple fastening buckles 34, hook and loop fasteners 35, and hook and loop fasteners 36. The connecting straps 33 are sewn onto the left and right sides of the front surface of the elastic sleeve 32, and are connected to the fastening buckles 34. Fastening straps 31 are located on both sides of the back of the elastic sleeve 32. The hook and loop fasteners 35 are sewn onto the ends of the fastening straps 31, and the hook and loop fasteners 36 are sewn onto the front surface of the elastic sleeve 32. The ends of the fastening straps 31 pass through the fastening buckles 34 located on the same side and are then fixed to the front surface of the elastic sleeve 32 by the adhesion of the hook and loop fasteners 35 and the hook and loop fasteners 36. The connection between the fastening buckles 34 and the elastic sleeve 32 is achieved by sewing the connecting straps 33 onto the elastic sleeve 32. When wearing the sleeve, the tightening strap 31 is passed through the tightening buckle 34 to tighten the patient's arm. After tightening to an appropriate degree, the tightening strap 31 is wrapped back around the front surface of the elastic sleeve 32, and the Velcro serrated surface 35 and Velcro loop surface 36 are bonded together to fix the end of the tightening strap 31 to the front surface of the elastic sleeve 32. Thus, by setting up components such as the connecting strap 33, tightening buckle 34, tightening strap 31, Velcro serrated surface 35, and Velcro loop surface 36, the anti-slip structure can be ensured to tighten the patient's arm and prevent the patient from breaking free. The tightening buckle 34 allows the tightness of the tightening strap 31 to be adjusted, improving wearing comfort.

[0027] Preferably, a tightening strip 37 is sewn between the two alternating left and right connecting straps 33. By sewing the tightening strip 37 between the two left and right connecting straps 33, the elasticity of the tightening strip 37 is greater than that of the elastic sleeve 32, making it easier to deform when pulled by the tightening strap 31, thus improving the tightening effect.

[0028] Preferred options are listed in the appendix. Figure 4 The anti-slip structure also includes an inflatable cushion 38 and an inflation port 39. The inflatable cushion 38 is located on the inner side of the elastic sleeve 32, and the inflation port 39 is located on the outer side of the elastic sleeve 32 and communicates with the inflatable cushion 38. The tightness of the elastic sleeve 32 can also be adjusted by adjusting the inflation pressure of the inflatable cushion 38. By setting the inflatable cushion 38, it can be adapted to patients of various body types, further preventing slippage caused by patient struggle or external force. Moreover, the inflatable cushion 38 forms a soft contact layer after inflation, reducing direct pressure on the skin from the elastic sleeve 32 and the tightening strap 31, improving wearing comfort. The inflation port 39 is located on the outer side of the elastic sleeve 32, making it convenient for medical staff to adjust the air pressure of the inflatable cushion 38 at any time.

[0029] Preferably, the outer side of the sleeve 2 has multiple ventilation holes 23. By opening multiple ventilation holes on the outer side of the sleeve 2, the stuffiness and sweat accumulation caused by prolonged wear can be effectively reduced, thus reducing skin dampness and discomfort.

[0030] Preferably, breathable mesh 11 is sewn onto the finger and palm portions of the glove body 1. By sewing breathable mesh 11 onto the finger and palm portions of the glove body 1, the breathability of the glove body 1 is improved. After the patient wears the glove body 1, sweat and moisture generated on the fingers can be quickly discharged through the breathable mesh 11 and the ventilation openings 23, keeping the fingers dry and comfortable.

[0031] The technical principles of this utility model have been described above with reference to specific embodiments. These descriptions are merely for explaining the principles of this utility model and should not be construed as limiting the scope of protection of this utility model in any way. Based on this explanation, those skilled in the art can readily conceive of other specific embodiments of this utility model without any inventive effort, and these embodiments will all fall within the scope of protection of this utility model.

Claims

1. A type of anti-pulling restraint glove, characterized in that, The glove includes a glove body and a protective sleeve. The glove body is connected to the inner side of the protective sleeve. The palm of the glove body extends into the protective sleeve. The glove body is also connected to an anti-slip structure located outside the protective sleeve. The anti-slip structure includes a tightening strap and an elastic sleeve. The elastic sleeve is connected to the glove body, and the tightening strap is located on the elastic sleeve.

2. The anti-pulling restraint glove according to claim 1, characterized in that, The sleeve is made of a rigid material, while the glove body is made of a flexible material.

3. The anti-pulling restraint glove according to claim 1, characterized in that, The protective sleeve has a first opening and a second opening at both ends, and the opening area of ​​the second opening is larger than that of the first opening, forming a trumpet-shaped structure. The cuff of the glove body is connected to the first opening of the protective sleeve.

4. The anti-pulling restraint glove according to claim 1, characterized in that, The anti-slip structure also includes multiple connecting straps, multiple fastening buckles, hook and loop fasteners, and hook and loop fasteners. The connecting straps are sewn to the left and right sides of the front surface of the elastic sleeve. The connecting straps are connected to the fastening buckles. The fastening straps are located on both sides of the back of the elastic sleeve. The hook and loop fasteners are sewn to the ends of the fastening straps. The hook and loop fasteners are sewn to the front surface of the elastic sleeve. The ends of the fastening straps pass through the fastening buckles located on the same side and are fixed to the front surface of the elastic sleeve by the adhesion between the hook and loop fasteners and the hook and loop fasteners.

5. The anti-pulling restraint glove according to claim 4, characterized in that, A tensioning strip is sewn between the two alternating left and right connecting strips.

6. The anti-pulling restraint glove according to claim 1, characterized in that, The anti-slip structure also includes an air cushion and an air inlet. The air cushion is located on the inside of the elastic sleeve, and the air inlet is located on the outside of the elastic sleeve and communicates with the air cushion.

7. The anti-pulling restraint glove according to claim 1, characterized in that, The outer side of the casing has multiple ventilation holes.

8. The anti-pulling restraint glove according to claim 1, characterized in that, The fingers and palm of the glove body are sewn with breathable mesh.