Pectus Excavatum (shoemaker's chest?) Vacuum Bell Valve System
Patent Information
- Application Number
- TR202420643U
- Authority / Receiving Office
- TR · TR
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2026-06-22
- Estimated Expiration
- 2034-12-25
Abstract
Description
TARIFF 5 Pectus Excavatum (shoemaker's chest) Vacuum Bell Valve System THE TITLE OF THE INVENTION In the treatment of pectus excavatum (collapse of the chest wall) The pump of the vacuum bell device used during the treatment period of the patient is 10 a special one that doesn't require it to stay on and prevents air leakage valve system. TECHNICAL FIELD OF THE INVENTION This invention is the vacuum bell 15 used in the treatment of pectus excavatum. It relates to a valve system for the devices. The valve system is about vacuum. ensuring continuity so that the pump remains in the device throughout the treatment period. It eliminates the need for such measures and prevents air loss. TECHNICAL PROBLEMS AND THE PURPOSE OF THE INVENTION 20 Vacuum bell devices create negative pressure on the chest wall. It helps to correct the problem. In current devices, a vacuum pump. The device remains in place throughout the treatment and causes no discomfort to the user. It also causes air leakage when the pump is disconnected. This can occur and reduce the effectiveness of the treatment. 25 The aim of this invention is a valve to be integrated into a vacuum bell device. by designing the system, the pump is placed on the patient throughout the treatment. to eliminate the need for it to stay and inside the device The goal is to maintain the vacuum. 30 6 DEFINITION OF INVENTION 5 The key feature of the invention is that when the pump of the vacuum bell device is detached... a valve that prevents air leakage and ensures the continuity of the vacuum The system is presented as follows: The valve system consists of the following components: It consists of: 1. Vacuum Valve: A one-way valve for maintaining vacuum. mechanism. This valve separates the vacuum pump from the device. In this case, it prevents air from re-entering. 2. Connection Adapter: A compatible connection between the pump and the device. a 15 that provides and activates the valve after the pump is removed adapter structure. 3. Airtight Surfaces: All connection points of the system are airtight. It is designed to prevent leakage. SHAPE DEFINITIONS 20 The part numbers and their equivalents used in Figures 1, 2 and 3 are as follows: It is as follows; 1. Pump (1): Hand pump used to create a vacuum. 2. Connection Hose (2): Connection adapter with pump balloon Flexible hose connecting the parts. 25 3. Connection Adapter (3): Connection between the pump and the valve system. adapter part that provides. 4. Vacuum Valve (4): Maintains negative pressure and prevents air from returning. a one-way valve mechanism that prevents entry. 5. Connection Point (5): The transition point between the hose and the adapter. 30 6. Device Head (6): The part of the vacuum bell device that sits on the chest. 7. Valve Mounting Point (7): The area where the valve is integrated into the device head. 7 METHOD OF PRODUCTION AND APPLICATION OF THE INVENTION 5 For the implementation of the invention, the vacuum bell device is integrated into the head section. A valve system is designed. The main application of this system is... The steps are as follows: 1. Valve System Installation: Install valve 10 in a suitable location on the vacuum bell device. The system is assembled. The valve functions in one direction, creating a vacuum. It ensures its protection. 2. Pump Connection: Before treatment, the pump must be connected to the device. The required vacuum level is created by attaching it to the adapter. 3. Pump Disconnection: After the necessary vacuum is achieved, the pump disconnects at 15 The device is disconnected and the valve system is automatically activated. It ensures the vacuum is maintained. 4. Treatment Process: The device continuously produces a vacuum effect without a pump. It preserves. ADVANTAGES OF THE INVENTION 20 1. The vacuum pump must remain attached to the device throughout the treatment. By eliminating these issues, it provides greater comfort to the patient. 2. The valve system prevents air leakage, thus increasing treatment effectiveness. 3. Its easy-to-attach and detach design offers practical use. 4. It extends the life of the device by ensuring the continuity of the vacuum. 25 CONCLUSION This invention is a vacuum bell used in the treatment of pectus excavatum. By integrating them into devices, they both increase the effectiveness of treatment and It improves user comfort. Thanks to the valve system, the pump Even if disconnected from the device, the vacuum is maintained, allowing treatment to continue uninterrupted. 30 This innovation enables the treatment of pectus excavatum. This represents a significant development.
Claims
2 REQUESTS 1. A vacuum bell device; A pump used to create negative pressure (1), 10 that ensures the air coming out of the pump is trapped inside the device. vacuum valve (3), A connection that provides a link between the pump (1) and the vacuum valve (3) flexible hose (2), Creating a connection between the vacuum valve (3) and the chest cup (6) a connection adapter (4), 15 Airtight surfaces (7) located on the chest headgear (6) It includes a structure that provides a leak-proof seal.
2. In a vacuum bell device, the component used to create negative pressure. When the pump (1) leaves the device after creating negative pressure, 20 negative vacuum created inside the device via the vacuum valve (3) It has the ability to maintain pressure.
3. The vacuum valve (3) allows airflow in only one direction inside the device. It is equipped with a guiding mechanism that provides; thus Air leakage from the device is prevented. 25 4. The flexible hose (2) of the device that transfers negative pressure, the user made of materials resistant to movement and mechanical stress It is manufactured and designed for long-term use.
5. Airtight surfaces (7) located on the chest headgear (6), ensures the device fits properly on different breast structures. It has an ergonomic design. 3 6. Vacuum valve (3) ensures the device is easy to clean and hygienic. high strength and antibacterial properties that enable it It is made from materials that have been used.
7. Connection between vacuum valve (3) and connection adapter (4) 10 The system has an airtight structure, ensuring efficient operation of the device. It enables it to function in this way.
8. The chest head (6) has special seals (7) that ensure leak-proofness. It is equipped with a system that prevents negative pressure from leaking out, thus providing treatment. It increases its effectiveness. 15 9. Device pump (1), hose (2), connection adapter (4), vacuum Each component, such as the valve (3) and the chest cup (6), can be removed and reattached. It is designed in such a way that it offers easy assembly and disassembly.
10. The pressure-resistant design of the vacuum valve (3) protects the 20 inside the device. It enables the long-term maintenance of negative pressure.
11. The flexible hose (2) between the pump (1) and the breast shield (6) is different It has length options and provides user comfort during treatment. It is optimized to increase 25.
12. The leak-proof seals (7) located on the chest hood (6) protect the device will make it possible to adapt to the breast structure of different users It is made of flexible material.
13. The device's pump connection adapter (4) is mechanically connected to the vacuum valve (3). resistant to vibrations and ensures a leak-free connection. It includes a special locking mechanism. 4 14. The connection adapter (4) used in the vacuum bell device, both 5 a standard connection compatible with both pump (1) and breast shield (6) It has a system.
15. Each component of the device (1, 2, 3, 4, 6 and 7) meets hygiene standards. It is designed to be properly sterilized and easily cleaned. It is designed. 10 16. The device has an ergonomic design, allowing for comfortable treatment during use. It has a lightweight and portable design that enhances user comfort.
17. Pump (1), negative pressure manually by the user. It has a flexible structure that can be compressed to form a durable 15 It has an outer surface.
18. The breast shield (6) is designed to fit comfortably on the user's chest. It has a curved geometry to enhance the vacuum effect. It has been optimized.
19. The vacuum valve (3) sends the pressure level inside the device to the user 20 a design into which a pressure gauge that can show pressure can be integrated has.
20. Connection adapter (4) provides quick connection and disconnection capability. It reduces the device's usage time and offers ease of use.