Block-up device for pediatric anesthesia
By designing an adjustable support air cushion device, the problem of insufficient adaptability of existing pediatric anesthesia cushions has been solved. It enables flexible adjustment of the cushion height and shape, ensuring unobstructed airways for pediatric patients and adapting to the needs of patients of different body types and ages.
Patent Information
- Application Number
- CN202422774154.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-14
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-11-14
AI Technical Summary
Existing pediatric anesthesia pads have a fixed shape and cannot adapt to pediatric patients of different sizes and ages, resulting in the airway being unable to fully stretch and the risk of hypoxia.
Design a heightening device comprising a support shell, a support air cushion, adjustable straps, an air pump, a solenoid valve, and a button controller. By inflating the air cushion with the air pump and controlling the expansion state of the support air cushion with the solenoid valve, the height and shape can be adjusted to meet the needs of different patients.
It allows for adjustment of the height and position of the cushion according to the needs of different pediatric patients, ensuring unobstructed airways. It is highly adaptable, easy to operate, and the support cushion can quickly retract after use, facilitating subsequent use.
Smart Images

Figure CN223438801U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to pediatric anesthesia technical field especially a kind of cushioning device for pediatric anesthesia. BACKGROUND
[0002] In the surgical treatment of children, due to the narrow respiratory tract of children, after general anesthesia, respiratory tract muscle relaxes, and problems such as respiratory tract obstruction may occur, which can easily cause hypoxia, thereby causing serious sequelae. In order to avoid this problem, in clinical practice, it is usually necessary to place a cushion under the neck or shoulder of a child after anesthesia to raise these parts, so as to fully stretch the respiratory tract of the child and ensure the smoothness of the child's respiratory tract. However, the cushions used for raising are often fixed in shape, and are not suitable for children of different sizes, ages, etc., so it is easy to cause some children to use after the effect of fully stretching the respiratory tract of the child. SUMMARY
[0003] The technical problem to be solved by the utility model is to provide a cushioning device for pediatric anesthesia, which can adjust the cushioning height and position according to the cushioning needs of different pediatric patients, and realize the universality for different pediatric patients.
[0004] The technical scheme adopted by the utility model is to provide a cushioning device for pediatric anesthesia, which comprises a strip-shaped support shell; the inside of the support shell is a hollow structure; a plurality of support air cushions are fixed in sequence on the upper end of the support shell along the length direction; a plurality of elastic pull wires are uniformly distributed inside the support air cushion; the upper end of the elastic pull wire is connected to the upper side of the inner wall of the support air cushion, and the lower end of the elastic pull wire is connected to the lower side of the inner wall of the support air cushion; the two ends of the support shell in the length direction are connected by an adjustable binding belt; a gas pump is fixed on the adjustable binding belt; the gas outlet of the gas pump is communicated with the inside of the support shell through a transmission pipe; a plurality of electromagnetic valves are provided in communication on the support shell; the electromagnetic valves correspond one-to-one to the support air cushions; the electromagnetic valves are communicated one-to-one with the support air cushions through air guide pipes; a gas release valve for releasing the gas inside the support air cushion is also installed in communication on the support shell.
[0005] Further optimization of the technical scheme, an adjustable binding belt of a cushioning device for pediatric anesthesia is fixed with a key controller; the gas pump and each electromagnetic valve are electrically connected with the key controller; the key controller is provided with a control switch for controlling the start and stop of the gas pump and the opening and closing of each electromagnetic valve.
[0006] Further optimization of the technical scheme, a non-slip rubber pad is fixed correspondingly at the lower end of the support shell of a cushioning device for pediatric anesthesia.
[0007] Further optimization of the technical scheme, an indicating scale for displaying the height of the support air cushion is distributed on the surface of the support air cushion of a cushioning device for pediatric anesthesia.
[0008] The utility model discloses the beneficial effect lies in:
[0009] Through support shell can be placed to operating bed, utilize adjustable bandage can be fixed with support shell in the suitable position of operating bed, convenient for realizing the connecting positioning of this device and operating bed, adapts to various operating bed and various installation position.
[0010] The air outlet of the air pump is communicated with the inside of the support shell through the transmission pipe, and the electromagnetic valves are communicated with the support air cushions one by one through the air guide pipes, the support air cushions can be inflated by the air pump, so that the support air cushions are inflated and raised, the effect of raising the local position of the body of the pediatric patient is achieved, and the height of the raising can be changed by adjusting the inflation height of the support air cushions; by controlling the opening and closing of each electromagnetic valve, the inflation state of each support air cushion can be adjusted individually, so that the device can adjust the support mode and effectively adapt to the support requirements of different pediatric patients. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1 It is the structural schematic diagram of the utility model;
[0012] Figure 2 It is the distribution state schematic diagram of elastic pull wire;
[0013] Figure 3 It is Figure 1 It is the partial structure schematic diagram under another visual angle;
[0014] Figure 4 It is the distribution state schematic diagram of indicating scale.
[0015] In the drawing, 1, support shell, 2, support air cushion, 3, elastic pull wire, 4, adjustable bandage, 5, air pump, 6, transmission pipe, 7, electromagnetic valve, 8, air guide pipe, 9, air release valve, 10, button controller, 11, control switch, 12, antiskid rubber pad, 13, indicating scale. DETAILED DESCRIPTION
[0016] The utility model will be further explained in detail in combination with the drawings and specific embodiment.
[0017] For example, Figures 1-3As shown, a raising device for pediatric anesthesia includes a strip-shaped support shell 1; the interior of the support shell 1 is a cavity structure; a plurality of support air cushions 2 are fixed in sequence along the length of the upper end of the support shell 1; a plurality of elastic pull wires 3 are evenly distributed inside the support air cushion 2; the upper end of the elastic pull wire 3 is connected to the upper side of the inner wall of the support air cushion 2, and the lower end of the elastic pull wire 3 is connected to the lower side of the inner wall of the support air cushion 2; the two ends of the support shell 1 in the length direction are connected by an adjustable strap 4; an air pump 5 is fixed on the adjustable strap 4; the air outlet of the air pump 5 is connected to the interior of the support shell 1 through a transmission pipe 6; a plurality of conduction solenoid valves 7 are connected and arranged on the support shell 1; the conduction solenoid valves 7 correspond one-to-one to the support air cushion 2; the conduction solenoid valves 7 are connected one-to-one to the support air cushion 2 through an air guide pipe 8; an air release valve 9 for releasing the gas inside the support air cushion 2 is also connected and installed on the support shell 1.
[0018] First, the device is fixed to a suitable position on the operating bed by means of an adjustable strap 4. After the pediatric patient lies on the operating bed, the air pump 5 is started, and the air pump 5 injects gas into the interior of the support shell 1 through the transmission tube 6. The air pump 5 opens and closes different conduction solenoid valves 7 as required, so that the gas can be injected into each support air cushion 2 through the corresponding air guide tube 8, thereby inflating each support air cushion 2 separately.
[0019] By controlling the opening and closing of different conduction solenoid valves 7 separately, the inflation state of different support air cushions 2 can be controlled, so that the expansion state of each support air cushion 2 can be adjusted separately. The support air cushion 2 on the support shell 1 can flexibly change the combined support state, thereby adapting to the needs of different pediatric patients for the raised height, raised position, and raised shape, ensuring the patency of the pediatric patient's airway during anesthesia.
[0020] After use, by setting all the conduction solenoid valves 7 to the open state and then opening the air release valve 9, the elastic pull line 3 can be used to exert a tensile force on the inside of the support air cushion 2, so that each support air cushion 2 can be quickly deflated and retracted, which is convenient for subsequent use.
[0021] like Figure 3 As shown, a button controller 10 is fixed on the adjustable strap 4; the air pump 5 and each conduction solenoid valve 7 are electrically connected to the button controller 10; the button controller 10 is provided with a control switch 11 for controlling the start and stop of the air pump 5 and the opening and closing of each conduction solenoid valve 7.
[0022] Medical staff can conveniently operate the control switch 11 on the key controller 10 to control the inflation state of each support air cushion 2.
[0023] like Figure 3 As shown, a non-slip rubber pad 12 is fixed to the lower end of the support shell 1. The non-slip rubber pad 12 prevents the support shell 1 from slipping on the operating table.
[0024] like Figure 4As shown, the support air cushion 2 surface is distributed with an indicating scale 13 for displaying the height of the support air cushion 2.
[0025] It can be understood that the utility model is described through some embodiments, and the person skilled in the art knows that various changes or equivalent replacements can be made to these features and embodiments without departing from the spirit and scope of the utility model. In addition, under the guidance of the utility model, these features and embodiments can be modified to adapt to specific conditions and materials without departing from the spirit and scope of the utility model. Therefore, the utility model is not limited by the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of the present application belong to the scope protected by the utility model.
Claims
1. A pediatric anesthesia raising device, characterized by: The invention comprises a strip-shaped support shell (1); the interior of the support shell (1) is a cavity structure; a plurality of support air cushions (2) are fixed in sequence along the length of the upper end of the support shell (1); a plurality of elastic pull lines (3) are evenly distributed inside the support air cushion (2); the upper end of the elastic pull line (3) is connected to the upper side of the inner wall of the support air cushion (2), and the lower end of the elastic pull line (3) is connected to the lower side of the inner wall of the support air cushion (2); the two ends of the support shell (1) in the length direction are connected by an adjustable strap (4); the adjustable strap An air pump (5) is fixed on the belt (4); an air outlet of the air pump (5) is connected to the interior of the support shell (1) through a transmission pipe (6); a plurality of conduction electromagnetic valves (7) are connected and arranged on the support shell (1); the conduction electromagnetic valves (7) correspond to the support air cushions (2) in a one-to-one manner; the conduction electromagnetic valves (7) are connected to the support air cushions (2) in a one-to-one manner through air guide pipes (8); and an air release valve (9) for releasing the internal gas of the support air cushions (2) is also connected and installed on the support shell (1).
2. The pediatric anesthesia raising device according to claim 1, characterized in that: A button controller (10) is fixed on the adjustable strap (4); the air pump (5) and each conduction solenoid valve (7) are electrically connected to the button controller (10); and a control switch (11) for controlling the start and stop of the air pump (5) and the opening and closing of each conduction solenoid valve (7) is provided on the button controller (10).
3. The pediatric anesthesia elevation device according to claim 1, characterized in that: A non-slip rubber pad (12) is correspondingly fixed to the lower end of the support shell (1).
4. The pediatric anesthesia elevation device according to claim 1, characterized in that: The surface of the supporting air cushion (2) is provided with indicating scales (13) for displaying the height of the supporting air cushion (2).