Pressurizing vest

By designing a pressure vest and using elastic bandages and Velcro to secure the gauze bag, the problem of the salt bag slipping off was solved, achieving a stable compression and antibacterial effect, reducing patient discomfort and infection risk, and improving patient satisfaction.

CN224206852UActive Publication Date: 2026-05-08THE THIRD PEOPLES HOSPITAL OF CHENGDU
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
THE THIRD PEOPLES HOSPITAL OF CHENGDU
Filing Date
2025-02-07
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

After existing pacemaker implantation, the salt bag is prone to slipping off, leading to complications such as incision bleeding, bag hematoma, and skin pressure necrosis. In addition, traditional bandage fixation methods cause patient discomfort and skin tearing.

Method used

A pressure vest was designed, which uses elastic bandages and Velcro to fix a gauze bag. The antibacterial layer of Apocynum venetum fiber is used to fix the gauze bag to the cross pressure bands in front of the chest by Velcro, ensuring a close fit to the chest wall, reducing the risk of falling off, and improving the antibacterial effect and comfort.

Benefits of technology

It effectively reduces the risk of saline bag dislodgement, improves the stability and continuity of the compression effect, reduces the risk of wound infection, and enhances patient comfort and treatment safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a pressurization vest, which relates to the technical field of vests, and comprises a first shoulder fixing belt, a second shoulder fixing belt, a back cross fixing belt and a waist and abdomen fixing belt, the outer side of the first shoulder fixing belt is provided with the second shoulder fixing belt, and the waist and abdomen fixing belt is provided with the waist and abdomen fixing belt. And back cross fixing belts are sewn at the end parts of the first shoulder fixing belt and the second shoulder fixing belt. According to the pressurizing vest, the antibacterial layer on the surface of the fixed gauze bag is made of the apocynum venetum fiber, the apocynum venetum fiber is a textile fiber material with the natural antibacterial and bacteriostatic characteristics, the antibacterial layer can improve the antibacterial effect of the fixed gauze bag and reduce the wound infection risk of a patient, and due to the fact that the elastic bandage has good elasticity and adaptability, the elastic bandage is not prone to falling off. And with the assistance of the fixed gauze bag, the risk of falling of a compressed object can be effectively reduced, the treatment safety is improved, the elastic bandage is softer and more breathable, the discomfort of a patient caused by long-time compression can be relieved, and the satisfaction degree and the matching degree of the patient are improved.
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Description

Technical Field

[0001] This utility model relates to the field of vest technology, specifically to pressure vests. Background Technology

[0002] Currently, pacemakers are a type of implantable electronic therapeutic device that delivers electrical pulses according to a prescribed program. These pulses stimulate the heart through leads and electrodes, causing the heart to beat and contract, thereby treating cardiac dysfunction caused by certain arrhythmias. The most common complications after permanent pacemaker implantation are wound bleeding and pocket hematoma. Currently, the clinical method for pocket hemostasis is to apply pressure to the local skin using bandages and / or adhesive tape combined with saline bags. This method involves applying multiple layers of circumferential bandages to the patient's armpits and shoulders, applying pressure over a wide area, and then placing a saline bag at the surgical incision site for compression. This process typically lasts 6-8 hours, during which the patient needs to remain in bed for 24 hours.

[0003] However, due to the unique anatomical location of the pacemaker incision (a parallel transverse incision 1-2 cm below the clavicle), the saline bag has poor adhesion to the chest wall and is prone to slippage and displacement, leading to complications such as incision bleeding, pocket hematoma infection, and even pressure necrosis of the skin at the incision site. Furthermore, the passive posture adopted by patients out of fear of saline bag slippage can cause lower back pain, sleep disturbances, and urinary retention. After pacemaker implantation, forcefully pulling the skin taut with bandages and / or adhesive tape to fix the wound can cause skin tearing and ulceration at the taut site, increasing patient suffering. In summary, common pressure bandaging methods are insufficient for current needs. Therefore, this proposal suggests a pressure vest for compressing the pocket wound after pacemaker implantation. Utility Model Content

[0004] The purpose of this invention is to provide a pressure vest to solve the problem mentioned in the background art that the saline bag at the anatomical location of the pacemaker incision is prone to slipping off.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a compression vest, comprising: a first shoulder fixing strap, a second shoulder fixing strap, a back cross fixing strap, and a waist and abdomen fixing strap. A second shoulder fixing strap is provided on one side of the first shoulder fixing strap. A back cross fixing strap is sewn to the ends of both the first and second shoulder fixing straps. A waist and abdomen fixing strap is sewn together to the ends of the first shoulder fixing strap, the second shoulder fixing strap, and the back cross fixing strap. A first chest cross compression strap is sewn together between the waist and abdomen fixing strap and the first shoulder fixing strap. A second chest cross compression strap is sewn together between the waist and abdomen fixing strap and the second shoulder fixing strap.

[0006] Preferably, the backs of both the first and second front cross-pressure straps are sewn with Velcro loops, and a gauze bag is provided on the outer side of the Velcro loops.

[0007] Preferably, the side of the gauze bag closest to the hook and loop fastener is sewn with a hook and loop hook, and the surface of the gauze bag away from the hook and loop fastener is an antibacterial layer.

[0008] Preferably, the first shoulder fixing strap, the second shoulder fixing strap, the back cross fixing strap, the waist and abdomen fixing strap, the first chest cross pressure strap, and the second chest cross pressure strap are all made of elastic bandage material.

[0009] Preferably, the antibacterial layer is made of Apocynum venetum fiber.

[0010] Compared with existing technologies, the beneficial effects of this utility model are as follows: The antibacterial layer on the surface of the gauze bag of this pressure vest is made of Apocynum venetum fiber. Apocynum venetum fiber is a textile fiber material with natural antibacterial and bacteriostatic properties. It has resistance and inhibitory effects on Escherichia coli, Staphylococcus aureus, Candida albicans, etc. The fixing position of the gauze bag can be adjusted according to the incision site on the Velcro surface. Compared with traditional bandages, elastic bandages have better elasticity and softness, which can reduce the discomfort caused by prolonged pressure on the patient. The first and second front cross pressure straps can improve... The high compression strength of the high-pressure fixation gauze bag allows it to fit tightly against the patient's chest wall. This allows the gauze bag to directly compress the incision and surrounding areas, replacing the saline bag and ensuring stable and continuous compression. Simultaneously, the antibacterial layer enhances the antibacterial effect of the gauze bag, reducing the risk of wound infection. The elastic bandage's good elasticity and adaptability, combined with the gauze bag, effectively reduce the risk of compression material dislodgement, improving treatment safety. The elastic bandage is also softer and more breathable, alleviating discomfort caused by prolonged compression and increasing patient satisfaction and cooperation. Attached Figure Description

[0011] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0012] Figure 2 This is a rear view schematic diagram of the first chest cross compression belt of this utility model;

[0013] Figure 3 This is a top view sectional diagram of the gauze bag fixing structure of this utility model.

[0014] In the diagram: 1. First shoulder securing strap; 2. Second shoulder securing strap; 3. Back cross securing strap; 4. Waist and abdomen securing strap; 5. First chest cross compression strap; 6. Second chest cross compression strap; 7. Velcro loop side; 8. Secure gauze bag; 9. Velcro hook side; 10. Antibacterial layer. Detailed Implementation

[0015] 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.

[0016] Please see Figures 1-3 As can be seen, this utility model provides a compression vest, including: a first shoulder fixing strap 1, a second shoulder fixing strap 2, a back cross fixing strap 3, and a waist and abdomen fixing strap 4. The second shoulder fixing strap 2 is provided on one side of the first shoulder fixing strap 1. A back cross fixing strap 3 is sewn to the ends of both the first shoulder fixing strap 1 and the second shoulder fixing strap 2. A waist and abdomen fixing strap 4 is sewn to the ends of the first shoulder fixing strap 1, the second shoulder fixing strap 2, and the back cross fixing strap 3. A first chest cross compression strap 5 is sewn between the waist and abdomen fixing strap 4 and the second shoulder fixing strap 2. A second chest cross compression strap 5 is sewn between the waist and abdomen fixing strap 4 and the second shoulder fixing strap 2. The back of the cross-pressure strap 6, the first front cross-pressure strap 5, and the second front cross-pressure strap 6 are all sewn with Velcro loops 7. A gauze bag 8 is provided on the outside of the Velcro loop 7. A Velcro hook 9 is sewn on the side of the gauze bag 8 near the Velcro loop 7. The surface of the gauze bag 8 away from the Velcro hook 9 is an antibacterial layer 10. The first shoulder fixing strap 1, the second shoulder fixing strap 2, the back cross-fixing strap 3, the waist and abdomen fixing strap 4, the first front cross-pressure strap 5, and the second front cross-pressure strap 6 are all made of elastic bandage material. The antibacterial layer 10 is made of Apocynum venetum fiber. The Velcro hook 9 and the Velcro loop 7 form an adhesive structure.

[0017] In practice, due to the special location of the surgical incision, the saline bag cannot fit well against the chest wall, resulting in the saline bag falling off and thus an unsatisfactory compression effect. Using bandages and adhesive tape for pressure bandaging provides high pressure, and the rough, inelastic material can cause skin breakdown. Therefore, the two sets of fixing gauze bags 8 are first moved to the back of the first frontal cross-pressure band 5 and the second frontal cross-pressure band 6, respectively. The hook-and-loop fasteners 9 on the fixing gauze bags 8 can be adhered and fixed to the hook-and-loop fasteners 7 on the back of the first frontal cross-pressure band 5 and the second frontal cross-pressure band 6, thus fixing the two sets of fixing gauze bags 8 to the back of the first frontal cross-pressure band 5 and the second frontal cross-pressure band 6, respectively. The antibacterial layer 10 on the surface of the fixing gauze bags 8 is made of Apocynum venetum fiber, a textile fiber material with natural antibacterial and bacteriostatic properties. It has resistance and inhibitory effects against Enterobacteriaceae, Staphylococcus aureus, and Candida albicans. The fixation position of the gauze bag 8 can be adjusted on the Velcro surface 7 according to the incision site on the patient's body. Since the first shoulder fixation strap 1, the second shoulder fixation strap 2, the back cross fixation strap 3, the waist and abdomen fixation strap 4, the first chest cross pressure strap 5, and the second chest cross pressure strap 6 are all made of elastic bandage material, the first shoulder fixation strap 1, the second shoulder fixation strap 2, the back cross fixation strap 3, the waist and abdomen fixation strap 4, the first chest cross pressure strap 5, and the second chest cross pressure strap 6 have a high degree of fit with the patient, ensuring a tight fit with the chest wall to adapt to different body position changes, thereby effectively reducing the risk of saline bag dislodgement and improving patient comfort. Compared with traditional bandages, elastic bandages have better elasticity and softness, which can reduce the discomfort caused by prolonged pressure on the patient.

[0018] See Figures 1-3 It is known that the first and second anterior chest cross-compression bands 5 and 6 can increase the compression intensity of the fixation gauze bag 8, allowing the fixation gauze bag 8 to fit tightly against the patient's chest wall. The fixation gauze bag 8 can further replace the salt bag to directly compress the patient's incision and surrounding areas, ensuring the stability and continuity of the compression effect. At the same time, the antibacterial layer 10 can improve the antibacterial effect of the fixation gauze bag 8 and reduce the risk of wound infection. Due to the good elasticity and adaptability of the elastic bandage, coupled with the assistance of the fixation gauze bag 8, the risk of the compression material falling off can be effectively reduced, improving the safety of treatment. The elastic bandage is softer and more breathable, which can reduce the discomfort caused by prolonged compression and improve patient satisfaction and cooperation.

[0019] In summary, when using this pressure vest, the two sets of fixing gauze bags 8 are first moved to the back of the first front cross-pressure band 5 and the second front cross-pressure band 6, respectively. The Velcro hooks 9 on the fixing gauze bags 8 can be bonded and fixed to the Velcro loops 7 on the back of the first front cross-pressure band 5 and the second front cross-pressure band 6. The fixing gauze bags 8 can further replace the salt bag to directly compress the patient's incision and surrounding areas, ensuring the stability and continuity of the compression effect. At the same time, the antibacterial layer 10 can improve the antibacterial effect of the fixing gauze bags 8 and reduce the risk of wound infection for the patient. Due to the good elasticity and adaptability of the elastic bandage, coupled with the assistance of the fixing gauze bags 8, the risk of the compression material falling off can be effectively reduced, improving the safety of treatment. The elastic bandage is softer and more breathable, which can reduce the discomfort caused by prolonged compression and improve patient satisfaction and cooperation. The contents not described in detail in this instruction are existing technologies known to those skilled in the art.

[0020] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. Compression vest, including: The first shoulder fixing strap (1), the second shoulder fixing strap (2), the back cross fixing strap (3) and the waist and abdomen fixing strap (4) are characterized in that: a second shoulder fixing strap (2) is provided on one side of the first shoulder fixing strap (1), a back cross fixing strap (3) is sewn to the ends of the first shoulder fixing strap (1) and the second shoulder fixing strap (2), and a waist and abdomen fixing strap (4) is sewn to the ends of the first shoulder fixing strap (1), the second shoulder fixing strap (2) and the back cross fixing strap (3); A first chest cross-pressure strap (5) is sewn together between the waist and abdomen fixing strap (4) and the first shoulder fixing strap (1), and a second chest cross-pressure strap (6) is sewn together between the waist and abdomen fixing strap (4) and the second shoulder fixing strap (2).

2. The pressure vest according to claim 1, characterized in that: The back of the first front cross pressure band (5) and the second front cross pressure band (6) are both sewn with Velcro loops (7), and a gauze bag (8) is provided on the outside of the Velcro loops (7).

3. The pressure vest according to claim 2, characterized in that: The fixed gauze bag (8) has a hook side (9) sewn on the side near the hook and loop side (7), and the surface of the fixed gauze bag (8) away from the hook and loop side (9) is an antibacterial layer (10).

4. The pressure vest according to claim 2, characterized in that: The first shoulder fixation strap (1), the second shoulder fixation strap (2), the back cross fixation strap (3), the waist and abdomen fixation strap (4), the first chest cross pressure strap (5), and the second chest cross pressure strap (6) are all made of elastic bandage material.

5. The pressure vest according to claim 3, characterized in that: The antibacterial layer (10) is made of Apocynum venetum fiber.