Medical binding belt

By using components such as adjustment straps, locking blocks, and pins in medical restraint belts, combined with the design of padding, the problems of poor comfort and fixation caused by Velcro restraint belts are solved, achieving stable and comfortable patient fixation, reducing the risk of dislodgement and skin damage, and improving the efficiency and accuracy of ultrasound examinations.

CN224155685UActive Publication Date: 2026-04-24HEBEI PROVINCIAL MENTAL HEALTH CENT (HEBEI PROVINCIAL SIXTH PEOPLES HOSPITAL)
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEBEI PROVINCIAL MENTAL HEALTH CENT (HEBEI PROVINCIAL SIXTH PEOPLES HOSPITAL)
Filing Date
2025-01-17
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing medical restraints may be too tight or too loose during ultrasound examinations due to varying patient body shapes, leading to poor local blood circulation, reduced comfort and fixation effectiveness, and impacting treatment progress.

Method used

The restraint assembly, consisting of adjustable straps, locking blocks, and pins, is individually adjustable according to the size of the patient's arm or leg and secured by locking blocks and pins. Combined with the tightening straps wrapped around the medical bed, it ensures stability. Filler pads are used inside the restraint soft ring to reduce skin pressure and friction.

Benefits of technology

It provides a stable fixation method, reduces the risk of the restraint strap falling off, improves comfort and stability, reduces the risk of skin damage, and ensures the safety and accuracy of the examination process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of medical binding belts, in particular to a medical binding belt which comprises a binding soft ring and a binding assembly. A binding assembly for fastening and positioning according to binding requirements is mounted at the outer end of the binding soft ring; the binding assembly comprises an adjusting belt, a limiting clamping belt, a clamping block, a bolt, a binding belt, a filling sheet and a transparent connecting belt; the soft rings are bound on the arms or the legs of the patient through the adjusting belts, personalized adjustment is carried out according to the thickness of the arms or the legs of the patient, the arms or the legs of the patient can be adjusted and bound according to different habits and comfort degrees, meanwhile, the clamping blocks are connected with the plug pins to be inserted and fixed, and the arms or the legs are not prone to loosening due to the action of the patient; after the adjusting belt is tightly bound with the limbs of the patient, the binding belt is combined with the connecting pin to be secondarily wound and tightly bound with the medical bed, it is ensured that the patient cannot be separated from the binding belt when moving or unconsciously moving, and an additional safety level is provided.
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Description

Technical Field

[0001] This utility model relates to the field of medical restraint belts, and more particularly to a medical restraint belt. Background Technology

[0002] Ultrasound examination is a non-invasive medical examination technique that uses the properties of ultrasound waves to reflect and propagate within the human body to obtain images of internal structures and organs. During ultrasound examinations, medical restraints are used to fix and stabilize the patient's body or limbs, allowing doctors to perform more accurate and efficient examinations, improving the accuracy and efficiency of ultrasound examinations, while ensuring patient comfort and the hygiene and safety of the examination process.

[0003] Existing medical restraint straps, when used in ultrasound examinations, typically use interlocking Velcro straps to secure the patient. However, due to the varying body shapes of patients, Velcro straps may be too tight or too loose, requiring frequent adjustments. If the straps are too tight, it can impede local blood circulation and reduce patient comfort. If the straps are too loose, they may not provide the necessary fixation and protection, reducing the overall restraint effect and affecting the treatment progress.

[0004] Therefore, existing medical restraint belts typically use Velcro to interlock and fix patients. However, due to the varying body shapes of patients, Velcro restraint may be too tight or too loose, requiring frequent adjustments. If too tight, it can lead to poor local blood circulation and reduce patient comfort; if too loose, it may not provide the necessary fixation and protection, reducing the overall restraint effect and affecting the treatment progress. A new type of medical restraint belt could be designed, using adjustable straps to tighten according to the thickness of the patient's arms or legs, and using locking blocks and connecting pins for secure fastening. This provides a stable fixation method, making it less prone to loosening due to patient movement, reducing the risk of the restraint belt falling off, and improving the stability of the restraint. Utility Model Content

[0005] To overcome the limitations of existing medical restraints, which typically use Velcro to interlock and secure patients, the use of Velcro may result in restraints that are too tight or too loose, requiring frequent adjustments. If the restraints are too tight, they can impede local blood circulation and reduce patient comfort. If the restraints are too loose, they may not provide the necessary fixation and protection, reducing the overall restraint effect and affecting the treatment progress.

[0006] The technical solution of this utility model is as follows: a medical restraint belt, including a restraint soft ring and a restraint assembly; the outer end of the restraint soft ring is equipped with a restraint assembly for tightening and fixing according to the restraint requirements, the restraint assembly includes an adjusting band, a limiting band, a locking block, a pin, a binding band, a filler piece, and a transparent connecting band. There are two sets of restraint soft rings, and two sets of adjusting bands are arranged around the outer side of the two sets of restraint soft rings. Multiple sets of adjusting holes are opened inside the two sets of adjusting bands. The outer end of the two sets of adjusting bands is fitted with a locking block. The locking block has a sliding groove for accommodating the adjusting band inside, and a pin is provided inside the locking block. The locking block is inserted and fixed to the two sets of adjusting bands through the pin.

[0007] Preferably, the binding loop is secured to the patient's arm or leg using an adjustable strap, allowing for personalized adjustments based on the patient's arm or leg size. This enables the binding to be adjusted to suit different habits and comfort levels. A locking pin is used for secure fastening, providing a stable fixation method that is less prone to loosening due to patient movement, reducing the risk of the binding loop falling off. After the adjustable strap is secured to the patient's limb, a tightening strap combined with the connecting pin is used to further secure the binding to the medical bed, ensuring that the binding will not come off during patient movement or involuntary actions, providing an additional layer of safety and making the binding more stable. Furthermore, double-sided adhesive backing is used to attach padding of different sizes and shapes inside the binding loop according to the binding requirements, adjusting to the contours of the patient's arm or leg. This reduces the pressure and friction of the binding loop directly on the skin, lowering the risk of skin damage and improving patient comfort. The padding also helps increase the contact area between the binding loop and the patient's body, reducing the possibility of slippage or displacement and improving the stability of the binding.

[0008] Preferably, one end of each of the two sets of adjusting belts is provided with a tightening belt, which is sewn to the adjusting belt, and a connecting pin is fixed to the end of the tightening belt away from the adjusting belt.

[0009] Preferably, the outer side of the card block is provided with a connecting plate, and the inside of the connecting plate is provided with a hole for accommodating the pin. The connecting plate is fixedly connected to the card block by the pin.

[0010] Preferably, the outer ends of both sets of restraining soft rings are fixed with limit straps, and the inside of the limit straps is provided with connecting grooves to accommodate adjustment straps, with the adjustment straps extending to the outer ends through the connecting grooves.

[0011] Preferably, the restraint ring has multiple sets of ventilation holes inside, and the ventilation holes are connected to the restraint ring.

[0012] Preferably, the inner walls of the two sets of restraint rings are lined with filler sheets, and a double-sided adhesive liner is provided between the filler sheets and the restraint rings. The filler sheets are attached to the restraint rings by the double-sided adhesive liner.

[0013] Preferably, the outer ends of both sets of binding soft rings are provided with transparent connecting strips, the inside of which are provided with multiple sets of buckles, and the openings of the two sets of transparent connecting strips are provided with slots to accommodate the buckles. The two sets of transparent connecting strips are fixed by multiple sets of buckles.

[0014] The beneficial effects of this utility model are:

[0015] 1. Compared to traditional medical restraints, this method utilizes adjustable straps to tighten the restraint loops around the patient's arms or legs. Personalized adjustments are made based on the patient's arm or leg size, allowing for different comfort levels and adjustments to suit various habits. Secure fasteners, including locking pins, provide a stable fixation method, reducing the risk of loosening due to patient movement. After tightening the adjustable straps, a second tightening strap, combined with connecting pins, is used to secure the restraints to the medical bed, ensuring they remain in place even during patient movement or involuntary actions. This provides an additional layer of safety and makes the restraints more secure. Furthermore, double-sided adhesive backing is used to attach padding of different sizes and shapes inside the restraint loops, adjusting to the contours of the patient's arms or legs. This reduces direct pressure and friction on the skin, lowering the risk of skin damage and improving patient comfort. The padding also increases the contact area between the restraints and the patient's body, reducing the possibility of slippage or displacement and enhancing the stability of the restraints. Attached Figure Description

[0016] Figure 1 The diagram shown is a schematic representation of the overall structure of a medical restraint belt according to this utility model.

[0017] Figure 2 The diagram shown is a schematic representation of the transparent connecting strap structure of a medical restraint belt according to this utility model.

[0018] Figure 3 The diagram shown is a structural schematic of a medical restraint belt adjustment strap according to this utility model;

[0019] Figure 4 The diagram shown is a schematic diagram of the structure of a medical restraint strap block according to this utility model.

[0020] Explanation of reference numerals in the attached drawings: 1. Restraining soft ring; 201. Adjusting belt; 202. Limiting belt; 203. Locking block; 204. Pin; 205. Connecting plate; 206. Binding belt; 207. Connecting pin; 208. Filler piece; 209. Transparent connecting belt; 210. Buckle. Detailed Implementation

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] Medical restraints are devices used in medical care, primarily to restrain a patient's limbs to prevent them from harming themselves or others due to certain behaviors. They are also used during treatment and care to ensure patient safety and effectiveness, control dangerous behaviors such as self-harm, extreme excitement and impulsivity, and obvious aggressive behavior, preventing patients from harming themselves or others. Furthermore, they can prevent falls, collisions, and scratches in children, patients with high fever, delirium, coma, agitation, and critically ill patients due to weakness, impaired consciousness, or other reasons. Medical restraints are typically made of soft, breathable, and durable materials, firmly securing the patient's upper limbs both horizontally and vertically, making it difficult for the patient to escape. They also protect the patient's hands and wrists, reducing patient pain and the burden on family members. When using medical restraints, it is necessary to assess the patient's condition, consciousness, vital signs, and limb movement, and to determine if there is any skin friction damage or circulatory impairment at the restraint site. During use, it is necessary to explain to the patient the purpose of restraint, the duration of use, the method of use, and precautions. The cooperation of the patient or family members is required during the use of restraint belts. Medical restraint belts are an important medical assistive device, and their design and use must follow strict medical standards and patient safety considerations.

[0023] Ultrasound examination is a medical imaging diagnostic technique based on ultrasound waves that visualizes muscles and internal organs—including their size, structure, and pathological lesions. The basic principle of ultrasound examination is to acquire images by utilizing the reflection and propagation characteristics of ultrasound waves in human tissues. Ultrasound waves are high-frequency sound waves with frequencies exceeding the range of human hearing (typically 20 kHz). When ultrasound waves pass through human tissue, they encounter resistance and reflections from different tissues, forming echo signals. Receivers can capture these echo signals and convert them into images. Ultrasound examination is widely used in medicine. Its advantages include: 1. Non-invasive: No puncture or injection is required, causing no trauma to the patient. 2. No radiation: No X-rays are used, posing no radiation risk to either the patient or the operator. 3. Real-time dynamic: Organ activity and blood flow can be observed in real time. Ultrasound examination is a highly valuable diagnostic tool, widely used in clinical diagnosis, treatment monitoring, and health screening.

[0024] Although there are many medical restraint belts on the market, they still face some problems and challenges in practical application. When used in ultrasound examinations, existing medical restraint belts usually use Velcro to interlock and fix the patient. Since the body shapes of patients vary, Velcro restraint may be too tight or too loose, requiring frequent adjustments. If it is too tight, it will lead to poor local blood circulation and reduce patient comfort. If the restraint belt is too loose, it may not provide the necessary fixation and protection, reducing the overall restraint effect and affecting the treatment progress.

[0025] Please see Figures 1-4 This utility model provides an embodiment: a medical restraint belt, including a restraint soft ring 1 and a restraint assembly; the outer end of the restraint soft ring 1 is equipped with a restraint assembly for tightening and fixing according to restraint requirements. The restraint assembly includes an adjusting band 201, a limiting band 202, a locking block 203, a pin 204, a binding band 206, a filling piece 208, and a transparent connecting band 209. The restraint soft ring 1 is provided in two sets, and two sets of adjusting bands 201 are arranged around the outer side of the two sets of restraint soft rings 1. Multiple sets of adjusting holes are opened inside the two sets of adjusting bands 201. The outer end of the two sets of adjusting bands 201 is fitted with a locking block 203. The locking block 203 has a sliding groove for accommodating the adjusting band 201 inside, and a pin 204 is provided inside the locking block 203. The locking block 203 is inserted and fixed to the two sets of adjusting bands 201 through the pin 204.

[0026] Please see Figures 1-2 In this embodiment, one end of each of the two sets of adjustment straps 201 is provided with a binding strap 206. The binding strap 206 is sewn to the adjustment strap 201. A connecting pin 207 is fixed to the end of the binding strap 206 away from the patient's limb. After the adjustment strap 201 is bound to the patient's limb, the binding strap 206 is used in conjunction with the connecting pin 207 to wrap and bind the patient to the medical bed. This ensures that the patient will not come off the restraint strap when moving or moving involuntarily, providing an additional layer of safety, making the restraint strap more stable, and reducing the possibility of the restraint strap coming loose accidentally. A connecting plate 205 is provided on the outside of the locking block 203. The connecting plate 205 has a hole for accommodating the pin 204. The connecting plate 205 is fixedly connected to the locking block 203 through the pin 204. By using the connecting plate 205 to lock after the pin 204 is inserted, the restraint strap is fixed and adjusted, reducing operation time and improving the efficiency of nursing work.

[0027] Please see Figures 1-3 In this embodiment, the outer ends of both sets of binding soft rings 1 are fixed with limiting straps 202. The limiting straps 202 have connecting grooves inside to accommodate the adjusting straps 201. The adjusting straps 201 extend through the connecting grooves to the outer ends. By using the limiting straps 202 to assist in positioning the adjusting straps 201, it is prevented from shifting, ensuring that the adjusting straps 201 are more stable when in the fixed position, thus improving the stability of the binding strap. The binding soft rings 1 have multiple sets of ventilation holes inside, which are connected to the binding soft rings 1. By providing ventilation holes inside the binding soft rings 1, the skin can breathe freely, reducing skin moisture and sweat accumulation in the binding area, and reducing the risk of skin allergies and infections.

[0028] Please see Figures 2-4In this embodiment, the inner walls of the two sets of restraint soft rings 1 are lined with filling sheets 208. A double-sided adhesive backing is provided between the filling sheets 208 and the restraint soft rings 1. The filling sheets 208 are attached to the restraint soft rings 1 via the double-sided adhesive backing. By using the double-sided adhesive backing to attach filling sheets 208 of different sizes and shapes inside the restraint soft rings 1 according to the restraint requirements, and adjusting according to the contours of the patient's arms or legs, the pressure and friction of the restraint strap directly on the skin are reduced, lowering the risk of skin damage and improving patient comfort. Simultaneously, the filling sheets 208 can help increase the contact area between the restraint strap and the patient's body, reducing the possibility of the restraint strap sliding or shifting. To enhance the stability of the restraint, both sets of restraint soft rings 1 have transparent connecting straps 209 at their outer ends. The transparent connecting straps 209 have multiple sets of buckles 210 inside. The two sets of transparent connecting straps 209 have slots for accommodating the buckles 210. The two sets of transparent connecting straps are fixed by the multiple sets of buckles 210. By adjusting the distance between the legs or arms according to the required restraint distance of the patient's upper or lower limbs, the buckles 210 are used to fix the transparent connecting straps 209. This assists in ultrasound examination, reduces examination errors caused by patient movement during ultrasound examination, protects the patient from injury due to improper posture, and improves the clarity and resolution of ultrasound images.

[0029] During the procedure, firstly, according to the binding requirements, filler pieces 208 of different sizes are glued to the inside of the binding soft ring 1 using double-sided adhesive backing. This allows for adjustment to adapt to the contours of the patient's arm or leg, reducing direct pressure and friction from the binding strap to the skin and lowering the risk of skin damage. After the filler pieces 208 are glued on, the two sets of adjustment straps 201 are first passed through the connecting groove inside the limiting strap 202. Next, one end of the patient's arm or leg is passed through the binding soft ring 1. After the binding soft ring 1 is moved to the designated binding position, the two sets of adjustment straps 201 are manually pulled to bind and press the binding soft ring 1 tightly against the skin. The tightness is adjusted according to the thickness of the patient's arm or leg, allowing the patient to adjust the binding to different habits and comfort levels. After the adjustment straps 201 are tightened, the locking block 20 is used. 3. The connecting pin 204 is inserted into the internal adjustment hole for fixing, providing a stable fixation method that is not easily loosened by the patient's movements, reducing the risk of the restraint strap falling off. According to the restraint requirements of the ultrasound examination, the buckle 210 is used to connect and fix two sets of transparent connecting straps 209 to adjust the distance between the legs or hands, assisting the ultrasound examination and reducing the examination error caused by the patient's movement during the ultrasound examination. At the same time, it protects the patient from injury due to improper body position. After the adjustment strap 201 and transparent connecting strap 209 are positioned, the binding strap 206 is used in conjunction with the connecting pin 207 to wrap and bind it tightly to the medical bed, ensuring that the patient will not fall off the restraint strap when moving or moving involuntarily. This provides an additional layer of safety, making the restraint strap more stable and ensuring stable restraint of the patient during the ultrasound examination.

[0030] Through the above steps, the adjusting strap 201 is used to tighten the binding soft ring 1 around the patient's arm or leg. Personalized adjustments are made according to the patient's arm or leg thickness, allowing for different adjustments and comfort levels. Simultaneously, the locking block 203 connects to the pin 204 for secure fastening, providing a stable fixation method that is less prone to loosening due to patient movement, reducing the risk of the binding strap falling off. After the adjusting strap 201 is tightened to the patient's limb, the tightening strap 206, combined with the connecting pin 207, is used to further tighten the binding to the medical bed, ensuring that the binding strap will not come off during patient movement or involuntary movements, providing an additional layer of safety and making the binding strap more secure. Furthermore, double-sided adhesive backing is used to attach filler pieces 208 of different sizes and shapes inside the binding soft ring 1 according to the binding requirements. Adjustments are made according to the contours of the patient's arm or leg, reducing direct pressure and friction between the binding strap and the skin, lowering the risk of skin damage, and improving patient comfort. At the same time, the filler pieces 208 help increase the contact area between the binding strap and the patient's body, reducing the possibility of slippage or displacement of the binding strap and improving the stability of the binding.

Claims

1. A medical restraint belt, comprising a restraint soft ring (1); characterized in that: It also includes a restraint assembly; the outer end of the restraint soft ring (1) is equipped with a restraint assembly for tightening and fixing according to the restraint requirements. The restraint assembly includes an adjusting band (201), a limiting band (202), a locking block (203), a pin (204), a binding band (206), a filler piece (208), and a transparent connecting band (209). The restraint soft ring (1) is provided in two sets. The outer sides of the two sets of restraint soft rings (1) are surrounded by two sets of adjusting bands (201). Multiple adjusting holes are opened inside the two sets of adjusting bands (201). The outer ends of the two sets of adjusting bands (201) are fitted with locking blocks (203). The inside of the locking blocks (203) is provided with sliding grooves to accommodate the adjusting bands (201). The inside of the locking blocks (203) is provided with pins (204). The locking blocks (203) are inserted and fixed to the two sets of adjusting bands (201) through the pins (204).

2. The medical restraint belt according to claim 1, characterized in that: Two sets of adjusting belts (201) are provided with a binding belt (206) at one end. The binding belt (206) is sewn to the adjusting belt (201). A connecting pin (207) is fixed at the end of the binding belt (206) away from the belt.

3. A medical restraint belt according to claim 2, characterized in that: The outer side of the card block (203) is provided with a connecting plate (205), and the inside of the connecting plate (205) is provided with a hole for accommodating the pin (204). The connecting plate (205) is fixedly connected to the card block (203) through the pin (204).

4. A medical restraint belt according to claim 3, characterized in that: Both sets of restraining soft rings (1) have a limit strap (202) fixed at their outer ends. The limit strap (202) has a connecting groove inside to accommodate the adjustment strap (201). The adjustment strap (201) extends to the outer end through the connecting groove.

5. A medical restraint belt according to claim 4, characterized in that: The restraint ring (1) has multiple sets of ventilation holes inside, and the ventilation holes are connected to the restraint ring (1).

6. A medical restraint belt according to claim 1, characterized in that: The inner walls of the two sets of restraint soft rings (1) are covered with filler sheets (208), and a double-sided adhesive liner is provided between the filler sheets (208) and the restraint soft rings (1). The filler sheets (208) are attached to the restraint soft rings (1) through the double-sided adhesive liner.

7. A medical restraint belt according to claim 6, characterized in that: The outer ends of the two sets of binding soft rings (1) are provided with transparent connecting strips (209). The transparent connecting strips (209) are provided with multiple sets of buckles (210). The two sets of transparent connecting strips (209) are provided with slots to accommodate the buckles (210). The two sets of transparent connecting strips (209) are fixed by multiple sets of buckles (210).