A dermatological wet pack treatment structure

CN224792716UActive Publication Date: 2026-09-25DONGGUAN PEOPLES HOSPITAL
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Patent Information

Application Number
CN202521034614.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-24
Publication Date
2026-09-25
Estimated Expiration
2035-05-24

AI Technical Summary

Technical Problem

针对现有技术的不足,本实用新型的目的在于提供一种皮肤科用湿包治疗结构,该装置旨在解决现有的对于皮肤无破损的患者使用加压的方式促进皮肤吸收药物,对于皮肤破损的患者则避免加压造成二次损伤,使用干燥绷带缠绕敷料保湿固定时,由于绷带缠绕力度不便进行控制,绷带过紧压力较大压伤患者造成二次损伤,降低湿包治疗的舒适度和安全性的问题

Benefits of technology

本实用新型通过对于皮肤破损的患者湿包疗法进行治疗时,根据患者患处位置选择防水外衣或防水裤穿戴,通过将生理盐水或其他药物浸湿绷带制成的敷料缠绕在患者皮肤上覆盖,患者上身位置使用湿包治疗时穿戴防水外衣,患者拉开密封拉链将防水外衣穿戴,在弹性带的作用下将防水外衣领口、袖口和下摆收紧贴住患者身体,患者下身位置使用湿包治疗时穿戴防水裤,在弹性带的作用下将防水裤裤腰和裤脚收紧贴住患者身体,防止防水外衣和防水裤穿戴时透气导致药物挥发,保证湿包治疗效果,在棉内衬的作用下,穿戴防水外衣和防水裤时棉内衬与患者皮肤接触,保证患者穿戴的舒适性,防水外衣和防水裤的设置即可防止药液挥发,无需使用干燥绷带缠绕保湿固定,使湿包治疗操作更加方便,且防止皮肤破损的患者皮肤受压造成损伤,保证湿包治疗的安全性,对于皮肤无破损的患者进行湿包治疗时,将气囊盖在防水外衣或防水裤外侧患者皮肤进行湿包的区域,接着将弹性绑带环绕防水外衣或防水裤外侧穿过滑孔反向拉动收紧并使用魔术贴粘贴固定,实现气囊固定,然后由医护人员按压压杆推动活塞在气压筒内下降,气压筒下降推动气压筒内部空气经单向排气阀和气管进入气囊,使气囊充气膨胀,弹簧处于拉伸状态,松开压杆在弹簧拉力的作用下带着活塞在气压筒内上升,活塞升经单向进气阀将外界空气吸入,反复按压压杆带着活塞上下移动持续向气囊中充气,气囊充气膨胀挤压敷料处并贴合皮肤,通过观察气压表气压值可直观看到对患者皮肤的压迫力度,防止绷带过紧压力较大压伤患者造成二次损伤,过紧影响血液循环,提高湿包治疗的舒适度和安全性。

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Abstract

The utility model relates to a kind of wet pack treatment structures for dermatology, comprising: elastic belt, waterproof outerwear, cotton lining, sealing zipper, clothes pouch, waterproof trousers, pressurizing assembly and air pressure assembly;Sealing zipper is installed through the outer surface of waterproof outerwear, waterproof trousers are provided in the lower portion of waterproof outerwear, cotton lining is installed in the inside of waterproof outerwear and waterproof trousers, the collar, the cuff and the lower hem of waterproof outerwear are all stitched with the installation of elastic belt, and the waistband and the leg of waterproof trousers are all stitched with the installation of elastic belt, pressurizing assembly is provided outside waterproof outerwear;The setting of waterproof outerwear and waterproof trousers can prevent drug solution volatilization, without using dry bandage winding to keep wet, make wet pack treatment operation more convenient, and prevent the skin of patient with skin breakage from being damaged by pressure, ensure the safety of wet pack treatment, prevent bandage from being too tight to cause secondary injury to patient by greater pressure, too tight affects blood circulation, improve the comfort and safety of wet pack treatment.
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Description

Technical Field

[0001] This utility model belongs to the field of medical auxiliary products technology, specifically relating to a wet pack treatment structure for dermatology. Background Technology

[0002] Wet dressing therapy has been widely used in the treatment of pruritic skin diseases such as atopic dermatitis and prurigo. The moist environment promotes drug penetration into the deeper layers of the skin, while softening the stratum corneum, enhancing drug penetration and thus relieving symptoms. A wet dressing (usually a bandage soaked in saline or other medications) is wrapped around the skin, and then a dry bandage is wrapped around it to maintain moisture and fix the dressing. During wet dressing treatment, due to varying patient symptoms, pressure is applied to patients with intact skin to promote drug absorption, while pressure is avoided to prevent secondary damage to patients with broken skin. When using a dry bandage to wrap the dressing for moisture and fixation, the tightness of the bandage is difficult to control; an overly tight bandage can cause pressure sores, leading to secondary injury or impaired blood circulation, reducing the comfort and safety of wet dressing treatment. Utility Model Content

[0003] (1) Technical problems to be solved To address the shortcomings of existing technologies, the purpose of this invention is to provide a dermatological wet pack treatment structure. This device aims to solve the problems of using pressure to promote drug absorption in patients with intact skin, while avoiding secondary damage caused by pressure in patients with broken skin. When using dry bandages to wrap dressings for moisturizing and fixation, the bandage wrapping force is difficult to control, and excessively tight bandages can cause pressure injuries and secondary damage to patients, thus reducing the comfort and safety of wet pack treatment.

[0004] (2) Technical solution To address the aforementioned technical problems, this utility model provides a dermatological wet pack treatment structure, comprising: an elastic band, a waterproof outer garment, a cotton lining, a sealing zipper, a pocket, waterproof pants, a pressurizing component, and a pneumatic component; a sealing zipper is installed through the outer surface of the waterproof outer garment, waterproof pants are provided below the waterproof outer garment, both the waterproof outer garment and the waterproof pants are lined with cotton linings, elastic bands are sewn onto the collar, cuffs, and hem of the waterproof outer garment, and elastic bands are sewn onto the waistband and cuffs of the waterproof pants, a pressurizing component is provided on the outside of the waterproof outer garment, and a pneumatic component is installed on the outer surface of the pressurizing component.

[0005] Optionally, the waterproof outer garment may have pockets attached to its outer surface.

[0006] Optionally, the pressurization components include: Velcro, elastic strap, airbag, fixing plate, and limiting ring; the outer surface of the airbag is fixedly connected to the fixing plate, the outer surface of the fixing plate is rotatably mounted with the elastic strap and the limiting ring, and the elastic strap is slidably mounted inside the limiting ring, and the outer surface of the elastic strap is sewn with Velcro.

[0007] Optionally, a plug is fixedly connected to the outer surface of the elastic strap, and the plug is triangular in shape.

[0008] Optionally, the pneumatic assembly includes: an air tube, a pneumatic cylinder, a pressure rod, a slide hole, a pressure gauge, a one-way air inlet valve, a one-way air outlet valve, a control valve, a piston, and a spring; A pressure gauge is installed through the outer surface of the airbag. An air cylinder is installed through the outer surface of the airbag via an air tube. A one-way exhaust valve is installed through the outer surface of the air tube. A control valve is installed through the outer surface of the air tube. A one-way inlet valve is installed through the bottom end of the air cylinder. A sliding hole is opened on the top surface of the air cylinder. A pressure rod is slidably installed inside the sliding hole. A piston is fixedly connected to the bottom end of the pressure rod and is slidably installed inside the air cylinder. A spring is sleeved on the outside of the pressure rod, and the two ends of the spring are fixedly connected to the outer surface of the piston and the inner wall of the air cylinder, respectively.

[0009] Optionally, a storage bag is sewn onto the outer surface of the fixing piece, and a positioning strap is sewn onto the outer surface of the fixing piece.

[0010] Optionally, a handle is fixedly connected to the top of the lever, and the handle is U-shaped.

[0011] (3) Beneficial effects Compared with the prior art, the beneficial effects of this utility model are as follows: This invention relates to a wet pack therapy for patients with skin lesions. Depending on the location of the affected area, the patient wears either a waterproof outer garment or waterproof pants. A dressing made by soaking bandages in saline solution or other medications is applied to the patient's skin. For the upper body, the patient wears the waterproof outer garment, which is then unzipped and secured with elastic bands at the collar, cuffs, and hem. For the lower body, the patient wears waterproof pants, which are also secured with elastic bands at the waist and cuffs to prevent the waterproof outer garment and pants from evaporating and ensure the effectiveness of the wet pack therapy. The cotton lining ensures comfort as it remains in contact with the patient's skin. The waterproof outer garment and pants prevent medication evaporation, eliminating the need for dry bandages for moisturizing and securing the medication. This makes the wet pack therapy more convenient and prevents pressure on the skin of patients with skin lesions. To ensure the safety of wet swab treatment, for patients with intact skin, the airbag is placed over the area of ​​the patient's skin to be swabred on the outside of a waterproof outer garment or pants. An elastic bandage is then wrapped around the outside of the waterproof outer garment or pants, passed through a sliding hole, pulled back to tighten, and secured with Velcro. The airbag is then fixed in place. Medical staff press the lever, pushing the piston down inside the air cylinder. The descending cylinder pushes air into the airbag through a one-way exhaust valve and air tube, inflating the airbag. The spring is stretched. Releasing the lever causes the piston to rise inside the air cylinder under the spring's tension. The rising piston draws in outside air through the one-way intake valve. Repeatedly pressing the lever moves the piston up and down, continuously inflating the airbag. The inflated airbag presses against the dressing and adheres to the skin. The pressure gauge readings visually indicate the pressure applied to the patient's skin, preventing excessive pressure from the bandage causing secondary injury or affecting blood circulation, thus improving the comfort and safety of wet swab treatment. Attached Figure Description

[0012] Figure 1 This is a front view of the main structure of this utility model; Figure 2 This is the utility model Figure 1 Enlarged structural diagram at point A in the middle; Figure 3 This is a schematic diagram of the airbag structure of this utility model from a bottom view; Figure 4 This is the utility model Figure 3 Enlarged structural view at point B; Figure 5 This is a diagram of the internal structure of the pneumatic cylinder of this utility model.

[0013] The markings in the attached diagram are as follows: 1. Velcro; 2. Elastic strap; 3. Airbag; 4. Fixing plate; 5. Positioning strap; 6. Air tube; 7. Air cylinder; 8. Handle; 9. Pressure rod; 10. Sliding hole; 11. Limiting ring; 12. Elastic band; 13. Pressure gauge; 14. Storage bag; 15. Waterproof outer garment; 16. One-way air inlet valve; 17. Plug; 18. One-way exhaust valve; 19. Control valve; 20. Piston; 21. Spring; 22. Cotton lining; 23. Sealing zipper; 24. Pocket; 25. Waterproof pants. Detailed Implementation

[0014] This specific embodiment is a wet pack treatment structure for dermatology, and its structural diagram is shown below. Figures 1-5 As shown. Example

[0015] This specific embodiment is a wet pack treatment structure for dermatology, and its structural diagram is shown below. Figures 1-5 As shown, it includes: elastic band 12, waterproof outer garment 15, cotton lining 22, sealing zipper 23, pocket 24, waterproof pants 25, pressurization component and air pressure component; the sealing zipper 23 is installed through the outer surface of the waterproof outer garment 15, and the waterproof pants 25 are provided below the waterproof outer garment 15. The inner lining of both the waterproof outer garment 15 and the waterproof pants 25 is installed with cotton lining 22. The collar, cuffs and hem of the waterproof outer garment 15 are sewn with elastic band 12, and the waistband and cuffs of the waterproof pants 25 are sewn with elastic band 12. The outer surface of the waterproof outer garment 15 is provided with a pressurization component, and the outer surface of the pressurization component is equipped with an air pressure component. The outer surface of the waterproof outer garment 15 is equipped with a pocket 24.

[0016] When using the dermatological wet pack treatment structure of this technical solution, for patients with broken skin, the patient wears either a waterproof outer garment 15 or waterproof pants 25 depending on the location of the affected area. A dressing made of bandages soaked in saline or other medications is wrapped around the patient's skin. When using wet pack treatment on the upper body, the patient wears the waterproof outer garment 15 by unzipping the sealing zipper 23. The elastic band 12 tightens the collar, cuffs, and hem of the waterproof outer garment 15 to fit snugly against the patient's body. When using wet pack treatment on the lower body, the patient wears the waterproof pants 25. The elastic band 12 tightens the waistband and cuffs of the waterproof pants 25 to fit snugly against the patient's body, preventing the waterproof outer garment 15 and waterproof pants 25 from evaporating due to breathability, thus ensuring the effectiveness of wet pack therapy. The cotton lining 22 ensures that the waterproof outer garment 15 and waterproof pants 25 are in contact with the patient's skin, guaranteeing the patient's comfort. The waterproof outer garment 15 and waterproof pants 25 prevent the evaporation of the medication, eliminating the need for dry bandages to wrap and moisturize, making wet pack therapy more convenient and preventing pressure damage to the skin of patients with broken skin, thus ensuring the safety of wet pack therapy. Example

[0017] The difference from Embodiment 1 is that the pressurization assembly includes: Velcro 1, elastic strap 2, airbag 3, fixing plate 4 and limiting ring 11; the fixing plate 4 is fixedly connected to the outer surface of the airbag 3, the elastic strap 2 and the limiting ring 11 are rotatably mounted on the outer surface of the fixing plate 4, and the elastic strap 2 is slidably mounted inside the limiting ring 11. Velcro 1 is sewn onto the outer surface of the elastic strap 2. The air pressure assembly includes: air tube 6, air cylinder 7, pressure rod 9, sliding hole 10, air pressure gauge 13, one-way air inlet valve 16, one-way air outlet valve 18, control valve 19, piston 20 and spring 21. A pressure gauge 13 is installed through the outer surface of the airbag 3. An air cylinder 7 is installed through the air pipe 6 through the outer surface of the airbag 3. A one-way exhaust valve 18 is installed through the outer surface of the air pipe 6. A control valve 19 is installed through the outer surface of the air pipe 6. A one-way air inlet valve 16 is installed through the bottom end of the air cylinder 7. A sliding hole 10 is opened on the top surface of the air cylinder 7. A pressure rod 9 is slidably installed inside the sliding hole 10. A piston 20 is fixedly connected to the bottom end of the pressure rod 9. The piston 20 is slidably installed inside the air cylinder 7. A spring 21 is sleeved on the outside of the pressure rod 9. The two ends of the spring 21 are fixedly connected to the outer surface of the piston 20 and the inner wall of the air cylinder 7, respectively.

[0018] The elastic band 2 has a plug 17 fixedly connected to its outer surface. The plug 17 is triangular in shape, which makes it easy for the elastic band 2 to be inserted into the limiting ring 11 for installation. The outer surface of the fixing piece 4 is sewn with a storage bag 14 and a positioning strap 5. The storage bag 14 makes it easy to place and fix the pressure gauge 13. The positioning strap 5 makes it easy to fix the pressure cylinder 7, preventing the pressure gauge 13 from sliding with the pressure cylinder 7 and affecting the use effect. The top of the pressure rod 9 is fixedly connected with a handle 8, which is U-shaped, making it easy for medical staff to press the pressure rod 9 and preventing the problem of the medical staff's hand slipping when pressing the pressure rod 9.

[0019] When using the dermatological wet swab treatment structure of this technical solution, for patients with intact skin, the airbag 3 is placed over the area of ​​the patient's skin to be wet-swabred outside the waterproof outer garment 15 or waterproof pants 25. Then, the elastic bandage 2 is wrapped around the outside of the waterproof outer garment 15 or waterproof pants 25, passed through the sliding hole 10, pulled in the opposite direction to tighten, and secured with Velcro 1 to fix the airbag 3. Next, medical personnel press the lever 9 to push the piston 20 down inside the air cylinder 7. The descent of the air cylinder 7 pushes air inside the air cylinder 7 into the airbag 3 through the one-way exhaust valve 18 and the air tube 6. Inflate the airbag 3, and the spring 21 is in a stretched state. Release the pressure rod 9, and under the action of the spring 21, the piston 20 rises in the air cylinder 7. The piston 20 rises and draws in outside air through the one-way air inlet valve 16. Press the pressure rod 9 repeatedly, and the piston 20 moves up and down to continuously inflate the airbag 3. The airbag 3 inflates and expands, squeezing the dressing and adhering it to the skin. By observing the air pressure value on the pressure gauge 13, the pressure on the patient's skin can be seen directly. This prevents the bandage from being too tight and causing secondary injury to the patient due to excessive pressure. Excessive tightness will affect blood circulation, thus improving the comfort and safety of wet bandage treatment.

[0020] This utility model discloses a dermatological wet pack treatment structure. When treating patients with broken skin using wet pack therapy, a waterproof outer garment 15 or waterproof pants 25 is worn depending on the location of the affected area. A dressing made of bandages soaked in saline or other medications is wrapped around the patient's skin. When applying wet pack therapy to the upper body, the patient wears the waterproof outer garment 15 by unzipping the sealing zipper 23. The elastic band 12 tightens the collar, cuffs, and hem of the waterproof outer garment 15 to fit snugly against the patient's body. When applying wet pack therapy to the lower body, the patient wears... The waterproof pants 25, secured by the elastic band 12, hug the patient's body at the waist and cuffs, preventing the waterproof outer garment 15 and waterproof pants 25 from evaporating due to breathability and ensuring the effectiveness of wet pack therapy. The cotton lining 22 ensures contact between the waterproof outer garment 15 and waterproof pants 25 and the patient's skin, guaranteeing comfort. The waterproof outer garment 15 and waterproof pants 25 prevent medication evaporation, eliminating the need for dry bandages for moisturizing and securing, making wet pack therapy more convenient and preventing pressure on broken skin. To prevent damage and ensure the safety of wet pack treatment, when performing wet pack treatment on patients with intact skin, the airbag 3 is placed over the area of ​​the patient's skin to be wet-packed, outside the waterproof outer garment 15 or waterproof pants 25. Then, the elastic bandage 2 is wrapped around the outside of the waterproof outer garment 15 or waterproof pants 25, passed through the sliding hole 10, pulled in the opposite direction to tighten, and secured with Velcro 1 to fix the airbag 3. Next, medical personnel press the lever 9 to push the piston 20 down inside the air cylinder 7. The descent of the air cylinder 7 pushes the air inside the air cylinder 7 through the one-way exhaust valve 18 and the air tube 6 into the airbag 3, causing the airbag to... 3. When the air is inflated, the spring 21 is in a stretched state. When the pressure rod 9 is released, the piston 20 rises in the air cylinder 7 under the action of the spring 21. The piston 20 rises and draws in outside air through the one-way air inlet valve 16. Pressing the pressure rod 9 repeatedly moves the piston 20 up and down, continuously inflating the air bag 3. The air bag 3 inflates and expands, squeezing the dressing and adhering to the skin. By observing the air pressure value on the pressure gauge 13, the pressure on the patient's skin can be seen directly, preventing the bandage from being too tight and causing secondary injury to the patient. Too tight a bandage will affect blood circulation, thus improving the comfort and safety of wet bandage treatment.

[0021] All technical features in this embodiment can be freely combined according to actual needs.

[0022] The above embodiments are preferred implementations of this utility model. In addition, this utility model can also be implemented in other ways. Any obvious substitutions without departing from the concept of this technical solution are within the protection scope of this utility model.

Claims

1. A wet pack treatment structure for dermatology, characterized in that, include: Elastic band (12), waterproof outer garment (15), cotton lining (22), sealing zipper (23), pocket (24), waterproof pants (25), pressurizing component and air pressure component; the outer surface of the waterproof outer garment (15) is fitted with a sealing zipper (23), the bottom of the waterproof outer garment (15) is fitted with waterproof pants (25), the inside of the waterproof outer garment (15) and the waterproof pants (25) are fitted with cotton lining (22), the collar, cuffs and hem of the waterproof outer garment (15) are sewn with elastic band (12), and the waistband and cuffs of the waterproof pants (25) are sewn with elastic band (12), the outside of the waterproof outer garment (15) is fitted with a pressurizing component, and the outer surface of the pressurizing component is fitted with an air pressure component.

2. The dermatological wet pack treatment structure according to claim 1, characterized in that, The outer surface of the waterproof outer garment (15) is fitted with pockets (24).

3. The dermatological wet pack treatment structure according to claim 2, characterized in that, The pressurization assembly includes: Velcro (1), elastic strap (2), airbag (3), fixing plate (4), and limiting ring (11); the outer surface of the airbag (3) is fixedly connected to the fixing plate (4), the outer surface of the fixing plate (4) is rotatably mounted with the elastic strap (2) and the limiting ring (11), and the elastic strap (2) is slidably mounted inside the limiting ring (11), and the outer surface of the elastic strap (2) is sewn with Velcro (1).

4. The dermatological wet pack treatment structure according to claim 3, characterized in that, The outer surface of the elastic strap (2) is fixedly connected to a plug (17), and the plug (17) is triangular.

5. The dermatological wet pack treatment structure according to claim 4, characterized in that, The pneumatic assembly includes: an air pipe (6), a pneumatic cylinder (7), a pressure rod (9), a sliding hole (10), a pressure gauge (13), a one-way air inlet valve (16), a one-way air outlet valve (18), a control valve (19), a piston (20), and a spring (21). A pressure gauge (13) is installed through the outer surface of the airbag (3). A pressure cylinder (7) is installed through the air pipe (6) on the outer surface of the airbag (3). A one-way exhaust valve (18) is installed through the outer surface of the air pipe (6). A control valve (19) is installed through the outer surface of the air pipe (6). A one-way air inlet valve (16) is installed through the bottom end of the pressure cylinder (7). A sliding hole (10) is opened on the top surface of the pressure cylinder (7). A pressure rod (9) is slidably installed inside the sliding hole (10). A piston (20) is fixedly connected to the bottom end of the pressure rod (9). The piston (20) is slidably installed inside the pressure cylinder (7). A spring (21) is sleeved on the outside of the pressure rod (9). The two ends of the spring (21) are fixedly connected to the outer surface of the piston (20) and the inner wall of the pressure cylinder (7), respectively.

6. The dermatological wet pack treatment structure according to claim 5, characterized in that, A storage bag (14) is sewn onto the outer surface of the fixing piece (4), and a positioning strap (5) is sewn onto the outer surface of the fixing piece (4).

7. The dermatological wet pack treatment structure according to claim 6, characterized in that, The top of the pressure rod (9) is fixedly connected to a handle (8), and the handle (8) is U-shaped.