Medical restraint glove
By designing a medical restraint glove with a sponge layer, elastic support components, and an adjustment unit, the limitations and breathability issues of existing restraint gloves have been resolved, achieving effective restraint, convenient treatment, and improved comfort.
Patent Information
- Application Number
- CN202422648313.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-10-31
AI Technical Summary
Existing medical restraint gloves have limitations in restricting patients' hand movements, failing to effectively prevent patients from pulling out medical lines or causing injury. They also have poor breathability, affecting the continuity and comfort of treatment.
A medical restraint glove was designed, comprising a sponge layer, an elastic support, and an outer glove layer. It is equipped with a control unit to regulate temperature and humidity, has ventilation holes and an operating window for easy treatment operations, is secured with Velcro, and has a fluorescent bright yellow outer layer to improve visibility.
It effectively restrains the patient's hand movements, prevents injury, improves the convenience and comfort of treatment, enhances breathability and safety, and is easy to clean and maintain.
Smart Images

Figure CN223473971U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of medical devices, and in particular to a medical restraint glove. Background Technology
[0002] In medical and nursing practice, we often encounter special situations, such as patients who are still unconscious after anesthesia, confused, or comatose. Due to their unclear state of consciousness, they may exhibit involuntary agitation or agitation. Such behavior may lead to patients pulling out medical lines, self-harm, or harming others. This not only interferes with the patient's normal examination, nursing, and treatment processes, but may also endanger the patient's life in severe cases. In addition, patients may have to endure the pain of having medical lines reinserted.
[0003] Currently, ordinary restraint gloves are commonly used in clinical practice to restrict hand movement in these patients. However, these gloves have limitations in restricting finger movement, and patients may still pull out tubing or cause injury through finger movements. Furthermore, for patients wearing electrocardiogram monitors, the pulse oximetry monitoring finger cots need to pass through the restraint gloves, which may cause pressure injuries to the patient's skin. Removing the gloves is also necessary when measuring blood glucose levels; this frequent operation not only inconveniences the patient but may also affect the continuity and safety of treatment. Additionally, the restraint gloves in existing patent documents have poor breathability and are prone to causing stuffiness.
[0004] Therefore, a medical restraint glove needs to be designed to solve the above-mentioned technical problems. Summary of the Invention
[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a medical restraint glove in order to solve the technical problems mentioned in the background art.
[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution:
[0007] A medical restraint glove, comprising a glove support, a glove cover, and restraint straps, characterized in that:
[0008] The glove support includes a sponge layer and an elastic support. There are two sponge layers. The elastic support is shaped like a hand and is located between the two sponge layers. The two opposite sides of the elastic support are connected to the two sponge layers respectively to form a glove space.
[0009] The glove covering includes an outer glove layer and a mesh strip. There are two outer glove layers, which are respectively attached to two sponge layers. The two outer glove layers are connected by the mesh strip to form protection for the glove support.
[0010] Each glove has an operation window on its outer layer corresponding to the index and ring fingers, and the sponge layer has a slot corresponding to the operation window. The upper surface of the glove's outer layer is provided with a cover for covering the operation window.
[0011] A control unit is used to regulate the temperature and humidity of the glove space.
[0012] The sponge layer and elastic support in the glove support can fix the patient's hand and prevent them from making dangerous movements. The sponge layer provides comfortable support. With the setting of the operation window and cover, when it is necessary to treat the patient by applying blood oxygen saturation finger cots or measuring blood glucose, the cover can be directly removed to carry out the treatment. It is used to regulate the temperature and humidity of the glove space, which improves the comfort of the device.
[0013] Preferably, the restraint and fixation strap includes a fixing strap, one end of which is connected to the outer layer of one of the gloves, and two Velcro fasteners, one and the other, are respectively provided on both sides of the fixing strap, with the first and second Velcro fasteners engaging with each other. The fixing strap and the first and second Velcro fasteners in the restraint and fixation strap can securely fix the device to the patient's wrist and prevent it from falling off.
[0014] Preferably, the control unit includes:
[0015] A fan, equipped with a heating wire, is connected to the outer wall of one of the gloves.
[0016] A humidity sensor and a temperature sensor are provided, the humidity sensor and the temperature sensor are mounted on the elastic support, and the fan is electrically connected to the temperature sensor and the humidity sensor;
[0017] The sponge layer, the elastic support, and the outer layer of the glove all have ventilation holes. These ventilation holes allow air to circulate, reducing moisture and stuffiness inside the elastic support, improving patient comfort, and the control unit dehumidifies the space inside the glove.
[0018] Preferably, a zipper is provided on one side of the mesh strip. The zipper allows for easy opening and closing of the outer layer of the glove, and facilitates cleaning and replacement.
[0019] Preferably, the cover includes Velcro 3 and Velcro 4. Velcro 3 is connected to the outer layer of the glove and is U-shaped. Velcro 3 is located around the periphery of the operating window and cooperates with Velcro 4. The size of Velcro 4 is larger than the size of the operating window. The cover can be quickly opened and closed, facilitating medical personnel to perform treatment operations.
[0020] Preferably, the outer layer of the glove is fluorescent bright yellow, the elastic support has five finger grooves, and the elastic support is in a semi-fist position when not under stress, either the left or right hand. The fluorescent bright yellow outer layer of the glove stands out in low-light environments, alerting medical staff to the patient's hand position. Furthermore, because the elastic support is in a semi-fist position when not under stress, the tension of the various muscle groups in the hand remains relatively balanced, preventing fatigue even after prolonged periods and improving comfort.
[0021] In summary, this utility model has at least one of the following beneficial technical effects:
[0022] 1. Through the design of the glove support component, including a sponge layer and an elastic support component, this utility model can effectively restrain the patient's hand and prevent the patient from engaging in fingertip-palm contact or finger-to-finger gripping behavior, thereby avoiding the patient from causing harm to themselves or others when unconscious. The control unit can help maintain a comfortable environment for the patient's hand, which is especially important for patients who wear gloves for a long time, as it can reduce discomfort caused by overheating or excessive moisture.
[0023] 2. Because the elastic support is elastic, patients can perform hand decompression and isometric rehabilitation training by flexing and extending their fingers and palms, avoiding excessive restraint on the patient's hands and preventing cramps that are easily caused by keeping the hands flat for a long time.
[0024] 3. With the design of the operating window and the cover, this utility model allows medical staff to directly remove the cover for treatment such as blood oxygen saturation finger cot or blood glucose measurement, thus improving the convenience of treatment.
[0025] 4. By using Velcro on both sides of the fixing strap, this invention can fix the device to the patient's wrist, preventing slippage and ensuring the stability of the glove.
[0026] 5. By designing ventilation holes, this invention can improve the breathability of the device and enhance the comfort of patients.
[0027] 6. The zipper design allows for easy disassembly of the outer glove layer, facilitating cleaning of the glove support and cover, thus improving maintainability.
[0028] 7. By using a fluorescent bright yellow outer layer for the gloves, this invention can attract the attention of medical staff, remind them of the patient's hand position, and improve safety.
[0029] 8. By setting five finger grooves in the elastic support, this utility model isolates the patient's fingers from each other, further preventing the patient's fingers from pinching, gripping, or holding, thus improving the protective effect.
[0030] 9. The elastic support components are made of medical-grade PE and PP materials, which are elastic medical plastics, improving their durability and comfort.
[0031] 10. When the elastic support is not under stress, it is in a semi-fist position, which keeps the tension of the various muscle groups in the hand in a relatively balanced state. Maintaining this posture for a long time will not cause fatigue and improve comfort.
[0032] In summary, this utility model has the advantages of effectively restraining the patient's hands, facilitating treatment operations, improving breathability and comfort, being easy to maintain and clean, and enhancing safety and protective effects. Attached Figure Description
[0033] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0034] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0035] Figure 2 This is a schematic diagram of the structure of the sponge layer, elastic support, and outer glove layer of this utility model.
[0036] Figure 3 This is a schematic diagram of the structure of the cover and the operation window of this utility model. Attached image description:
[0038] 11. Sponge layer; 12. Elastic support component;
[0039] 21. Outer layer of gloves; 22. Mesh strip; 23. Operating window; 24. Cover;
[0040] 3. Restraint straps; 31. Fixing straps; 33. Velcro straps;
[0041] 34. Velcro strap 2;
[0042] 5. Zipper;
[0043] 6. Velcro straps (3);
[0044] 7. Velcro straps (four);
[0045] 8. Fan. Detailed Implementation
[0046] The present invention will be further described in detail below with reference to the accompanying drawings.
[0047] Example:
[0048] Reference Figure 1-Figure 3 The present invention discloses a medical restraint glove, including a glove support, a glove cover and restraint straps 3. The glove support includes a sponge layer 11 and an elastic support 12. There are two sponge layers 11. The elastic support 12 is the same shape as the hand. The elastic support 12 is located between the two sponge layers 11, and the two opposite surfaces of the elastic support 12 are respectively connected to the two sponge layers 11 to form a glove space.
[0049] The glove covering includes an outer glove layer 21 and a mesh strip 22. There are two outer glove layers 21, which are respectively attached to two sponge layers 11. The two outer glove layers 21 are connected by the mesh strip 22 to form protection for the glove support.
[0050] Each glove outer layer 21 has an operation window 23 corresponding to the index and ring fingers, and the sponge layer 11 has a slot corresponding to the operation window 23. The upper surface of the glove outer layer 21 is provided with a cover 24, which is used to cover the operation window 23.
[0051] The control unit is used to regulate the temperature and humidity of the glove compartment.
[0052] When in use, the patient's hand is placed inside the glove support and the patient's fingers are placed on the elastic support. Then the cover 24 is fastened to the operating window 23 to restrain the patient's hand.
[0053] The elastic support 12 prevents patients from gripping the tube by pressing their fingertips against their palms. At the same time, because the elastic support 12 is elastic, patients can also perform hand decompression and isometric rehabilitation training by flexing and extending their fingers and palms.
[0054] With the operation window 23 and the cover 24, when it is necessary to treat the patient by removing the blood oxygen saturation finger cot or measuring blood glucose, the treatment can be carried out by simply removing the cover. The control unit is used to adjust the temperature and humidity of the glove space to improve comfort.
[0055] The restraint strap 3 includes a fixing strap 31, one end of which is connected to the outer layer 21 of one of the gloves, and the two sides of the fixing strap 31 are respectively provided with Velcro 33 and Velcro 34, with Velcro 33 and Velcro 34 cooperating.
[0056] When in use, by setting the Velcro 33 and Velcro 34 on both sides of the fixing strap 31, the fixing strap 31 is wrapped around the patient's wrist, and the Velcro 33 and Velcro 7 are stuck together to fix the glove to the patient's wrist, thereby preventing it from slipping off.
[0057] Furthermore, the restraint straps can be replaced with two separate straps, one of which has an insertion hole in the middle. The other strap can be inserted into the insertion hole to bind the two straps together, thus preventing slippage.
[0058] In a further preferred embodiment of the present invention, the control unit includes:
[0059] Fan 8, which has a heating wire (not shown in the figure) installed on it, is connected to the outer wall of the outer layer 21 of one of the gloves.
[0060] A humidity sensor (not shown in the figure) and a temperature sensor (not shown in the figure) are mounted on an elastic support 12. The fan 8 is electrically connected to the temperature sensor and the humidity sensor.
[0061] The sponge layer 11, the elastic support 12, and the outer glove layer 21 are all provided with ventilation holes.
[0062] The control unit also includes a controller, which is electrically connected to the fan, heating element, humidity sensor, and temperature sensor. The controller is existing technology and will not be described in detail here.
[0063] During use, the temperature and humidity sensors can monitor the temperature and humidity inside the glove space in real time. The temperature and humidity data collected by the sensors are transmitted to the controller of the control unit through electrical connection. The controller analyzes the received data to determine whether the temperature and humidity of the glove space are within a suitable range.
[0064] If the temperature or humidity is too high, the controller will activate fan 8, which will generate airflow to help lower the temperature and humidity. The fan is equipped with a heating element that can provide additional heating when needed. In winter, when the temperature is too low, the controller will activate the heating element to keep the inside of the glove warm.
[0065] The sponge layer 11, the elastic support 12, and the outer glove layer 31 are all provided with ventilation holes. These ventilation holes help air circulation, reduce moisture and stuffiness inside the elastic support, and improve patient comfort.
[0066] In a further preferred embodiment of this utility model, such as Figure 1 As shown, a zipper 5 is provided on one side of the mesh strip 22.
[0067] When in use, the zipper 5 allows for easy removal of the outer glove layer 21, facilitating the cleaning of the glove support and glove cover.
[0068] In a further preferred embodiment of this utility model, such as Figure 3 As shown, the cover 24 includes Velcro 3 6 and Velcro 4 7. Velcro 3 6 is connected to the outer layer 21 of the glove. Velcro 3 6 is set in a U-shape. Velcro 3 6 is located around the operation window 23. Velcro 3 6 and Velcro 4 7 cooperate with each other. The size of Velcro 4 7 is larger than the size of the operation window 23.
[0069] When in use, the operation window 23 can be easily opened and closed using Velcro 36 and Velcro 47.
[0070] In a further preferred embodiment of this utility model, such as Figure 1-3 As shown, the outer layer 21 of the glove is fluorescent bright yellow, the elastic support 12 has five finger grooves (not shown in the figure), and the elastic support 12 is in a semi-fist posture when not under force (not shown in the figure), the semi-fist posture is either the left hand semi-fist or the right hand semi-fist.
[0071] In this embodiment, the fluorescent bright yellow outer layer 21 of the glove effectively attracts the attention of medical staff, thereby reminding them of the patient's hand position. The five finger grooves of the elastic support 12 isolate the patient's fingers from each other, thus preventing the patient from pinching, gripping, or squeezing. It also prevents the patient from pressing their fingertips against their palms or gripping their fingers together. The elastic support 12 is made of medical-grade PE or PP, which are elastic medical plastic materials. Since the elastic support is in a semi-fist position when not under stress, the tension of the various muscle groups in the hand is relatively balanced. Maintaining this posture for a long time will not cause fatigue, thus improving comfort. The semi-fist position is more adaptable to both the left and right hands.
[0072] The embodiments described herein are preferred embodiments of this utility model and are not intended to limit the scope of protection of this utility model. Therefore, all equivalent changes made to the structure, shape, and principle of this utility model should be included within the scope of protection of this utility model.
Claims
1. A medical restraint glove, comprising a glove support, a glove cover, and restraint straps (3), characterized in that: The glove support includes a sponge layer (11) and an elastic support (12). There are two sponge layers (11). The elastic support (12) is the same shape as the hand. The elastic support (12) is located between the two sponge layers (11), and the two opposite sides of the elastic support (12) are respectively connected to the two sponge layers (11) to form a glove space. The glove covering includes an outer glove layer (21) and a mesh strip (22). There are two outer glove layers (21), which are respectively attached to the two sponge layers (11). The two outer glove layers (21) are connected by the mesh strip (22) to form protection for the glove support. Each of the outer layers (21) of the gloves is provided with an operation window (23) corresponding to the index finger and ring finger, and the sponge layer (11) is provided with a slot corresponding to the operation window (23). The upper surface of the outer layer (21) of the gloves is provided with a cover (24) for covering the operation window (23). A control unit is used to regulate the temperature and humidity of the glove space.
2. The medical restraint glove according to claim 1, characterized in that: The restraint strap (3) includes a fixing strap (31), one end of which is connected to one of the outer layers (21) of the glove, and the two sides of the fixing strap (31) are respectively provided with Velcro 1 (33) and Velcro 2 (34), and the Velcro 1 (33) and the Velcro 2 (34) cooperate with each other.
3. The medical restraint glove according to claim 1, characterized in that: The control unit includes: A fan (8) is provided with a heating wire, and the fan (8) is connected to the outer wall of one of the outer layers (21) of the glove. A humidity sensor and a temperature sensor are provided, the humidity sensor and the temperature sensor are provided on the elastic support (12), and the fan (8) is electrically connected to the temperature sensor and the humidity sensor; The sponge layer (11), the elastic support (12), and the outer glove layer (21) are all provided with ventilation holes.
4. A medical restraint glove according to claim 2, characterized in that: A zipper (5) is provided on one side of the mesh strip (22).
5. A medical restraint glove according to claim 3, characterized in that: The cover (24) includes Velcro 3 (6) and Velcro 4 (7). Velcro 3 (6) is connected to the outer layer (21) of the glove. Velcro 3 (6) is shaped like a U.S. and is located around the operation window (23). Velcro 3 (6) and Velcro 4 (7) cooperate with each other. The size of Velcro 4 (7) is larger than the size of the operation window (23).
6. A medical restraint glove according to claim 3, characterized in that: The outer layer (21) of the glove is fluorescent bright yellow. The elastic support (12) has five finger grooves and is in a semi-fist position when not under force. The semi-fist position is either a left-hand semi-fist or a right-hand semi-fist.