Multifunctional restraining glove
By designing a multifunctional restraint glove, utilizing holes, grooves, elastic cords, and tightening devices, the problems of low efficiency and inconvenient operation of existing restraint gloves are solved, achieving the effect of efficient restraint and convenient medical operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- THE 969TH HOSPITAL OF THE CHINESE PEOPLES LIBERATION ARMY JOINT LOGISTICS SUPPORT FORCE
- Filing Date
- 2025-02-12
- Publication Date
- 2026-05-05
AI Technical Summary
Existing restraint gloves are inefficient or unable to effectively prevent IV tubing from slipping off when restraining the fingers of critically ill patients, and are inconvenient to operate when finger movement is required.
A multifunctional restraint glove was designed, comprising a glove body, restraint straps, grip balls, tightening devices, and elastic cords. The glove features a hole for the ring finger to be exposed, a groove for the back of the hand to be exposed, elastic cords to restrict finger movement, and a tightening device to quickly tighten the fingers. Combined with Velcro for fixation, it achieves efficient restraint and convenient operation.
It achieves efficient finger restraint, preventing the IV tubing from slipping out, while allowing for moderate finger movement to support IV infusion and other medical procedures, thus improving restraint efficiency and comfort.
Smart Images

Figure CN224193642U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical restraint hand assistive technology, specifically to a multifunctional restraint glove. Background Technology
[0002] For critically ill patients, indwelling needles are inserted into the back of their hands to deliver medication. Due to pain or the pain of the infusion, patients may unconsciously move their fingers or deliberately pull or tug at the IV line, causing the needle to be pulled out. Therefore, it is necessary to restrain the hand and fingers. There are various types of restraint gloves available. One type covers the entire palm and fingers with a round pouch and is restrained at the wrist. When performing operations on the back of the hand or fingers, the zipper is unzipped. Another type has a grip ball in the palm, restraining the palm and fingers simultaneously, with multiple fingers allowed to move or be bound individually. The former type is less effective, as the palm and fingers still have a considerable range of motion in the glove, and the IV line can still be pulled out. The latter type, while completely restraining the palm and fingers and providing some space for finger movement, requires binding each finger individually when treatment requires restraint, which is less efficient. Utility Model Content
[0003] The purpose of this invention is to provide a multifunctional restraint glove.
[0004] This utility model is implemented by the following technical solution:
[0005] A multifunctional restraint glove includes a glove body, restraint straps, grip balls, and tightening devices. Four finger sleeves are integrally connected to the glove body. The finger sleeves for the four fingers are the finger sleeves for the thumb, index finger, middle finger, and little finger. Holes are provided at the corresponding positions of the ring finger on the glove body. Each finger sleeve has an opening at its end. A groove is provided at the corresponding position of the back of the hand on the glove body.
[0006] The glove body is integrally connected to the wrist position of the restraint strap, and the two ends of the restraint strap are connected by Velcro.
[0007] The grip ball is sewn to the corresponding palm position of the glove body, and an elastic cord is sewn between the side of each finger sleeve facing the grip ball and the grip ball.
[0008] Each finger sleeve has a finger ring fixed at its end, and a guide tube is fixed at the bottom of the grip ball. Four traction ropes of different lengths pass through the guide tube. One end of each traction rope is fixed to a finger ring, and the other ends of the four traction ropes are movably fixed to the tightening device, which is fixed to the restraint strap.
[0009] The tightening device includes a circular box base, with a cylindrical knob threaded inside the circular box base. One end of the cylindrical knob is located outside the circular box base and is fitted with a threaded nut. The side wall of the circular box base has two corresponding through holes, and the cylindrical knob has a through hole. The shaft diameter of the through hole on the cylindrical knob is stepped. The other ends of the four traction ropes pass through the two through holes and the through hole. A bolt is axially screwed into the cylindrical knob outside the circular box base. The end of the bolt passes through the through hole and abuts against the four traction ropes.
[0010] Preferably, two binding ropes are fixed on the restraint strap.
[0011] Preferably, a handle is fixed to the end of the cylindrical knob on the outside of the round box base.
[0012] Advantages of this utility model:
[0013] 1. The ring finger is exposed through the holes in the glove body, which is convenient for being held by the clamps of medical devices such as pulse oximeters. The back of the hand is exposed through the groove, which is convenient for operations such as infusion and insertion of indwelling needles.
[0014] 2. Elastic ropes can restrict the movement space between the finger sleeves and the grip ball. The elasticity of the elastic ropes is beneficial for finger movement and exercise, while also preventing fingers from moving around and preventing the IV tube from being dislodged.
[0015] 3. Pinching and gripping a ball can strengthen finger muscles and prevent finger stiffness caused by prolonged inactivity.
[0016] 4. The tightening device tightens the four traction ropes, causing the four finger sleeves to tighten and quickly hold the four fingers tightly to the grip ball. This is highly efficient and fast, reducing finger movement and preventing some conscious patients from wearing restraint gloves while their hands and fingers are still struggling. In order to coordinate with other medical procedures applied to the hands, finger movement is temporarily restricted. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art 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.
[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0019] Figure 2 This is a left view of the overall structure of this utility model.
[0020] Figure 3 This is a rear view of the overall structure of this utility model.
[0021] Figure 4 This is a cross-sectional schematic diagram of the tightening device of this utility model.
[0022] In the diagram: 1. Glove body; 2. Finger sleeve; 3. Hole; 4. Opening; 5. Groove; 6. Restraint strap; 7. Grip ball; 8. Elastic rope; 9. Finger ring; 10. Guide tube; 11. Traction rope; 12. Tightening device; 12.1. Round box base; 12.2. Cylindrical knob; 12.3. Nut; 12.4. Through hole; 12.5. Bolt; 12.6. Tie rope; 13. Handle; 14. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0024] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, a multifunctional restraint glove includes a glove body 1, a restraint strap 6, a grip ball 7, and a tightening device 12. Four finger sleeves 2 are integrally connected to the glove body 1. The four finger sleeves 2 are the thumb sleeve 2, the index finger sleeve 2, the middle finger sleeve 2, and the little finger sleeve 2. Holes 3 are provided at the corresponding position of the ring finger on the glove body 1. Each finger sleeve 2 has an opening 4 at its end. Grooves 5 are provided at the corresponding position of the back of the hand on the glove body 1.
[0025] The multifunctional restraint glove of this application can be used on either the left or right hand. The attached figure in this embodiment shows the left hand. When in use, the groove 5 is opened, and the glove body 1 is put on the patient's hand. The thumb, index finger, middle finger, and little finger are respectively put into the corresponding finger sleeves 2, and the fingertips protrude from the opening 4 to accommodate fingers of different lengths. The ring finger protrudes completely from the hole 3. The protrusion of the ring finger makes it easy to be clamped by the clips of medical devices such as pulse oximeters. In addition, the ring finger of most people is pulled by the ligaments connected to the little finger or middle finger. The limited physiological structure characteristics restrict the movement of the ring finger, reducing the possibility of the clip breaking off due to excessive flexibility of the ring finger. Most of the back of the hand is also exposed through the groove 5, which facilitates the infusion, insertion of indwelling needles, and other operations on the back of the hand.
[0026] A restraint strap 6 is integrally connected to the corresponding wrist position of the glove body 1. The two ends of the restraint strap 6 are connected by Velcro. The restraint strap 6 can be worn on the patient's hand along with the glove body 1 and the finger sleeve 2, and then wrapped around the wrist to secure the glove body 1 and the finger sleeve 2 to the hand.
[0027] Grip balls 7 are sewn onto the corresponding palm position of the glove body 1. By pinching and grasping the grip balls 7, finger strength can be exercised, and finger stiffness caused by prolonged inactivity can be avoided. Elastic cords 8 are sewn between the side of each finger sleeve 2 facing the grip ball 7 and the grip ball 7. The elastic cords 8 can restrict the space of movement between the finger sleeve 2 and the grip ball 7, so that when the four fingers are spread, they can only be slightly spread and bend due to the pull of the elastic cords 8. The elasticity of the elastic cords 8 allows the fingers to extend further, but they will still be bound back to the initial position. This is beneficial for finger movement and exercise, while also preventing the fingers from moving around and pulling or flicking the IV tube. The maximum pulling length of the elastic cords 8 needs to be limited according to actual usage needs.
[0028] Each finger sleeve 2 has a finger ring 9 fixed at its end, and a tube 10 is fixed at the bottom of the grip ball 7. Four traction ropes 11 of different lengths pass through the tube 10. One end of each traction rope 11 is fixed to a finger ring 9, and the other ends of the four traction ropes 11 are movably fixed to the tightening device 12, which is fixed to the restraint strap 6.
[0029] Since some patients remain conscious, even with restraint gloves on, their hands and fingers still struggle. To coordinate with other medical procedures applied to the hands and temporarily restrict finger movement, four traction ropes 11 of different lengths can be tightened. The length of the four traction ropes 11 can be set according to the actual distance from the fingertips to the tightening device 12. The tightening device 12 tightens the four traction ropes 11, thereby causing the four finger sleeves 2 to tighten, quickly gripping the four fingers tightly on the grip ball 7, reducing finger movement.
[0030] The tightening device 12 includes a circular box base 12.1. A cylindrical knob 12.2 is threaded into the circular box base 12.1. One end of the cylindrical knob 12.2 is located outside the circular box base 12.1 and is fitted with a threaded nut 12.3. The side wall of the circular box base 12.1 has two corresponding through holes 12.4. The cylindrical knob 12.2 has a through hole 12.5. The shaft diameter of the through hole 12.5 on the cylindrical knob 12.2 is stepped. The other ends of the four traction ropes 11 pass through the two through holes 12.4 and the through hole 12.5. A bolt 12.6 is axially screwed into the cylindrical knob 12.2 outside the circular box base 12.1. The end of the bolt 12.6 passes through the through hole 12.5 and abuts against the four traction ropes 11.
[0031] When tightening the traction rope 11, the end of the bolt 12.6 clamps the four traction ropes 11 that pass through the through hole 12.5, causing the cylindrical knob 12.2 to rotate inside the round box base 12.1. The cylindrical knob 12.2 moves into the round box base 12.1, and the traction rope 11 is driven by the cylindrical knob 12.2 to wind around the stepped shaft of the cylindrical knob 12.2, thereby pulling and tightening the traction rope 11. Tightening or loosening the rotating bolt 12.6 can adjust the length of the traction rope 11 being clamped. The threads of the nut 12.3 and the cylindrical knob 12.2 are opposite to the threads of the cylindrical knob 12.2 and the round box base 12.1. Tightening the nut 12.3 in the opposite direction can lock the cylindrical knob 12.2, preventing it from rotating.
[0032] Two ropes 13 are fixed to the restraint strap 6. The purpose of the ropes 13 is to fix the patient's hands, which are wearing restraint gloves, to the hospital bed and other medical equipment, further restricting their movement.
[0033] A handle 14 is fixed to the end of the cylindrical knob 12.2 on the outside of the round box base 12.1. The handle 14 facilitates the forward and reverse rotation of the cylindrical knob 12.2.
[0034] Working principle: When using this utility model, the groove 5 is opened and the glove body 1 is put on the patient's hand. The thumb, index finger, middle finger and little finger are put into the corresponding finger sleeves 2 respectively, and the fingertips protrude from the opening 4. The ring finger protrudes from the hole 3 and is fully exposed. Most of the back of the hand is also exposed through the groove 5. The restraint strap 6 is tied around the wrist.
[0035] The exposed ring finger is convenient for being held by clips from medical devices such as pulse oximeters, and the exposed back of the hand is convenient for procedures such as intravenous infusion and insertion of indwelling needles.
[0036] The elastic rope 8 can restrict the space of movement between the finger sleeve 2 and the grip ball 7, so that when the four fingers are spread out, they can only be slightly spread out and bend out when pulled by the elastic rope 8. The elasticity of the elastic rope 8 is beneficial to the movement and exercise of the fingers, while also preventing the fingers from moving randomly.
[0037] To further constrain the fingers, the cylindrical knob 12.2 rotates within the circular base 12.1, causing the traction rope 11 to wrap around itself and tighten. Tightening the traction rope 11 causes the four finger sleeves 2 to converge, quickly gripping the four fingers tightly onto the grip ball 7, reducing finger movement. Rotating the cylindrical knob 12.2 in the opposite direction releases the traction rope 11 and unlocks the device.
[0038] Advantages: 1. The ring finger is exposed through the hole 3 on the glove body 1, which is convenient for being held by the clips of medical devices such as pulse oximeters. The back of the hand is exposed through the groove 5, which is convenient for operations such as infusion and insertion of indwelling needles.
[0039] 2. The elastic rope 8 can restrict the movement space between the finger sleeve 2 and the grip ball 7. The elasticity of the elastic rope 8 is beneficial to the movement and exercise of the fingers, while also preventing the fingers from moving around and preventing the infusion tube from being broken off.
[0040] 3. By pinching and gripping the grip ball 7, you can exercise your finger strength and avoid finger stiffness caused by prolonged inactivity.
[0041] 4. The tightening device 12 tightens the four traction ropes 11, which in turn causes the four finger sleeves 2 to tighten, quickly holding the four fingers tightly on the grip ball 7. This is highly efficient and fast, reducing finger movement and preventing some conscious patients from wearing restraint gloves while their hands and fingers are still struggling. In order to cooperate with the application of other medical methods on the hand, the movement of the fingers is temporarily restricted.
[0042] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A multifunctional restraint glove, characterized in that, The glove body includes a glove body, a restraint strap, a grip ball, and a tightening device. Four finger sleeves are integrally connected to the glove body. The finger sleeves for the four fingers are the finger sleeves for the thumb, index finger, middle finger, and little finger. A hole is provided at the position corresponding to the ring finger on the glove body. Each finger sleeve has an opening at its end. A groove is provided at the position corresponding to the back of the hand on the glove body. The glove body is integrally connected to the wrist position of the restraint strap, and the two ends of the restraint strap are connected by Velcro. The grip ball is sewn to the corresponding palm position of the glove body, and an elastic cord is sewn between the side of each finger sleeve facing the grip ball and the grip ball. Each finger sleeve has a finger ring fixed at its end, and a guide tube is fixed at the bottom of the grip ball. Four traction ropes of different lengths pass through the guide tube. One end of each traction rope is fixed to a finger ring, and the other ends of the four traction ropes are movably fixed to the tightening device, which is fixed to the restraint strap. The tightening device includes a circular box base with a cylindrical knob threaded inside. One end of the cylindrical knob is located outside the circular box base and is fitted with a threaded nut. The side wall of the circular box base has two corresponding through holes, and the cylindrical knob has a through hole. The shaft diameter of the through hole on the cylindrical knob is stepped. The other ends of the four traction ropes pass through the two through holes and the through hole. A bolt is axially screwed into the cylindrical knob outside the circular box base, and the end of the bolt passes through the through hole and abuts against the four traction ropes.
2. The multifunctional restraint glove according to claim 1, characterized in that: Two ropes are fixed to the restraint strap.
3. A multifunctional restraint glove according to claim 1, characterized in that: A handle is fixed to the end of the cylindrical knob on the outside of the round box base.