Multifunctional anesthesia support

By designing a multifunctional anesthesia stent and using a telescopic rod and a limiting rod sleeve connection assembly to achieve length adjustment, the problem of existing anesthesia tubing stents being unable to adapt to the management of variable tubing arrangements has been solved, thus improving the stability and adaptability of the stent.

CN223516776UActive Publication Date: 2025-11-07BAODING HOSPITAL BEIJING CHILDRENS HOSPITAL CAPITAL MEDICAL UNIVERSITY
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Patent Information

Application Number
CN202422464134.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-12
Publication Date
2025-11-07
Estimated Expiration
2034-10-12

AI Technical Summary

Technical Problem

The existing anesthesia tubing stents cannot be adjusted in length, making them unable to adapt to the ever-changing requirements of anesthesia surgical tubing arrangement and management.

Method used

The design incorporates a multifunctional anesthesia support, which connects the fixed support assembly and the movable support assembly via a telescopic rod, a limiting rod sleeve, and a connecting component to achieve length adjustment. The stability is enhanced by limiting protrusions and anti-slip sleeves.

Benefits of technology

It achieves the clamping and concealment function of special-sized tubing, reduces the probability of stent wobbling and loosening, and adapts to the ever-changing requirements of anesthesia surgery tubing arrangement and management.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of anesthesia supports, in particular to a multifunctional anesthesia support. According to the technical scheme, the multifunctional anesthesia support comprises a fixed support assembly and further comprises a movable support assembly and a connecting assembly; a connecting assembly is arranged in front of the fixed bracket assembly; a movable support assembly is arranged in front of the connecting assembly. The fixed support assembly and the movable support assembly are connected together through the telescopic rod, the limiting rod sleeve and the connecting assembly, when the second support is held by hand and pulled out, the telescopic rod is pulled out from the interior of the limiting rod sleeve, and due to limiting of the limiting rod sleeve and a limiting protruding point on the telescopic rod, the telescopic rod can be pulled out. The adjusting point position of the second support is more accurate and not prone to shaking, the hidden pipeline clamp is presented after the second support is pulled out, and therefore the clamping and hiding functions of pipelines of special sizes are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of anaesthetic support, and particularly relates to a multifunctional anaesthetic support. BACKGROUND

[0002] The application of the anaesthetic support in the medical field is mainly to support and fix the anaesthetic pipeline during the operation or treatment process, ensure the smooth progress of anaesthesia, and reduce the pain and discomfort of the patient. The original intention of the design of the anaesthetic support is to assist medical staff, improve the operation efficiency, and ensure the safety of the patient.

[0003] The existing pipeline support for anaesthesia can meet the support and fixing requirements of the anaesthetic pipeline to a certain extent, but generally has the problem of being unable to adjust the length. This limitation makes the support not capable of coping with the variable requirements of the arrangement and management of the anaesthetic operation pipeline. The structure design of the existing pipeline support for anaesthesia is relatively simple, and only has the basic support and hanging functions, and lacks a flexible adjustment mechanism. For example, some supports fix the anaesthetic pipeline through fixed clamps or hooks, but the positions of these clamps or hooks are usually fixed and cannot be adjusted according to the actual needs of the pipeline during the operation process.

[0004] Therefore, in view of the problem that the existing pipeline support for anaesthesia cannot adapt to the variable requirements of the arrangement and management of the anaesthetic operation pipeline because it does not have the length adjustment function, a multifunctional anaesthetic support can be designed. CONTENT OF THE UTILITY MODEL

[0005] In order to overcome the problem that the existing pipeline support for anaesthesia cannot adapt to the variable requirements of the arrangement and management of the anaesthetic operation pipeline because it does not have the length adjustment function.

[0006] The technical scheme of the utility model is as follows: a multifunctional anaesthetic support, comprising a fixed support assembly, an active support assembly, and a connecting assembly; the front of the fixed support assembly is provided with the connecting assembly; the front of the connecting assembly is provided with the active support assembly; the fixed support assembly comprises a first support, an angle plate, a first elastic pipe clamp, a storage groove, and a storage hole; the active support assembly comprises a second support, a second elastic pipe clamp, a hidden pipeline clamp, an extension rod, a limiting rod sleeve, and a limiting convex point; and the connecting assembly comprises an anti-skid sleeve, a pipeline clamp through hole, and an extension rod through hole.

[0007] Preferably, the fixed support assembly and the movable support assembly are connected together through the telescopic rod, the limiting rod sleeve and the connecting assembly, when the second support is pulled out, the telescopic rod is pulled out from the inside of the limiting rod sleeve, because the limiting rod sleeve and the limiting convex point on the telescopic rod limit, the adjustment position of the second support is more accurate and not easy to shake, after the second support is pulled out, the hidden pipeline clamp is presented, thereby realizing the clamping and hiding function of the special size pipeline, solving the problem that the existing pipeline support for anesthesia does not have length adjustment function, which cannot adapt to the requirements of variable anesthesia operation pipeline arrangement management.

[0008] Preferably, the inside of the first support is provided with a first elastic pipe clamp; the front of the lower end of the first support is provided with a corner plate, and the corner plate is integrally formed with the first support.

[0009] Preferably, the front end face of the corner plate is provided with a receiving groove; both sides of the receiving groove are provided with receiving holes, and the receiving holes and the receiving groove are integrally formed with the corner plate.

[0010] Preferably, the front of the corner plate is provided with an anti-skid sleeve, and the anti-skid sleeve is fixedly connected with the corner plate; the inside of the anti-skid sleeve is provided with a pipeline clamp through hole; both sides of the pipeline clamp through hole are provided with telescopic rod through holes, and the pipeline clamp through hole and the telescopic rod through hole are integrally formed with the anti-skid sleeve, the anti-skid sleeve of the connecting assembly effectively improves the friction damping between the telescopic rod through hole and the telescopic rod, thereby reducing the probability of the second support loosening and shaking.

[0011] Preferably, the front of the anti-skid sleeve is provided with a second support; the inside of the second support is provided with a second elastic pipe clamp; the rear end of the second support is provided with a hidden pipeline clamp, and the hidden pipeline clamp is fixedly connected with the second support, and the hidden pipeline clamp is inserted into the inside of the receiving groove through the pipeline clamp through hole.

[0012] Preferably, both sides of the hidden pipeline clamp are provided with telescopic rods, and the telescopic rods are fixedly connected with the second support; the rear end of the telescopic rod is provided with a limiting rod sleeve, the telescopic rod is slidingly arranged along the inside of the limiting rod sleeve, and the limiting rod sleeve and the rear end of the telescopic rod are limitingly clamped, and the limiting rod sleeve is fixedly connected inside the receiving hole, the fixed support assembly and the movable support assembly are connected together through the telescopic rod, the limiting rod sleeve and the connecting assembly, when the second support is pulled out, the telescopic rod is pulled out from the inside of the limiting rod sleeve.

[0013] Preferably, the upper and lower surfaces of the telescopic rod are provided with limiting convex points, and the limiting convex points are integrally formed with the telescopic rod, and the limiting convex points are elastically limitingly and slidingly connected with the inner wall of the limiting rod sleeve, because the limiting rod sleeve and the limiting convex point on the telescopic rod limit, the adjustment position of the second support is more accurate and not easy to shake, after the second support is pulled out, the hidden pipeline clamp is presented, thereby realizing the clamping and hiding function of the special size pipeline.

[0014] The utility model discloses the beneficial effect:

[0015] 1, the existing pipeline support structure for anesthesia, because it does not have length adjustment function, cause it cannot adapt to the problem of variable anesthesia operation pipeline arrangement management requirement, through telescopic link, limit rod cover and connecting assembly connect fixed support assembly and movable support assembly together, when hand -held second support pulls out, telescopic link is extracted from the inside of limit rod cover, because the limit of limit rod cover and telescopic link on the limit convex point makes the adjustment node of second support more accurate and not easy to sway, and second support presents hidden pipeline clamp after pulling out, thereby realize the clamping hidden function of special size pipeline, solve the existing pipeline support structure for anesthesia, because it does not have length adjustment function, cause it cannot adapt to the problem of variable anesthesia operation pipeline arrangement management requirement,

[0016] 2, through the setting of connecting assembly, the frictional damping between the anti -skid cover of connecting assembly and telescopic link is effectively improved, and then the probability of second support loose and sway is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 The whole three-dimensional structure schematic diagram of the multifunctional anesthesia support is shown.

[0018] Figure 2 The three-dimensional structure schematic diagram of the fixed support assembly of the multifunctional anesthesia support is shown.

[0019] Figure 3 The three-dimensional structure schematic diagram of the movable support assembly of the multifunctional anesthesia support is shown.

[0020] Figure 4 The three-dimensional structure schematic diagram of the connecting assembly of the multifunctional anesthesia support is shown.

[0021] The marks in the drawings are: 1, fixed support assembly, 2, movable support assembly, 3, connecting assembly, 101, first support, 102, corner plate, 103, first elastic pipe clamp, 104, storage groove, 105, storage hole, 201, second support, 202, second elastic pipe clamp, 203, hidden pipeline clamp, 204, telescopic link, 205, limit rod cover, 206, limit convex point, 301, anti -skid cover, 302, pipeline clamp through -hole, 303, telescopic link through -hole. DETAILED DESCRIPTION

[0022] The utility model will be further explained in connection with the drawings and examples.

[0023] Please refer to Figures 1-4The utility model provides an embodiment: Multifunctional anesthesia support, including fixed support component 1 still including movable support component 2, connecting component 3, the front of fixed support component 1 is provided with connecting component 3, the front of connecting component 3 is provided with movable support component 2, fixed support component 1 includes first support 101, corner plate 102, first elastic pipe clamp 103, storage groove 104, storage hole 105, movable support component 2 includes second support 201, second elastic pipe clamp 202, hidden pipe clamp 203, telescopic link 204, limit rod cover 205, limit convex point 206, connecting component 3 includes antiskid cover 301, pipe clamp through -hole 302, telescopic link through -hole 303.

[0024] Please refer to Figures 1-4 In this embodiment, the inside of first support 101 is provided with first elastic pipe clamp 103, the lower end of first support 101 is provided with corner plate 102, and corner plate 102 is integrally formed with first support 101, and the front end surface of corner plate 102 is provided with storage groove 104, both sides of storage groove 104 are provided with storage hole 105, and storage hole 105, storage groove 104 and corner plate 102 are integrally formed.

[0025] Please refer to Figures 1-4 In this embodiment, the front of corner plate 102 is provided with antiskid cover 301, and antiskid cover 301 is fixedly connected with corner plate 102, the inside of antiskid cover 301 is provided with pipe clamp through -hole 302, both sides of pipe clamp through -hole 302 are provided with telescopic link through -hole 303, and pipe clamp through -hole 302, telescopic link through -hole 303 and antiskid cover 301 are integrally formed, the front of antiskid cover 301 is provided with second support 201, the inside of second support 201 is provided with second elastic pipe clamp 202, the rear end of second support 201 is provided with hidden pipe clamp 203, and hidden pipe clamp 203 is fixedly connected with second support 201, and hidden pipe clamp 203 is inserted into the inside of storage groove 104 through pipe clamp through -hole 302, both sides of hidden pipe clamp 203 are provided with telescopic link 204, and telescopic link 204 is fixedly connected with second support 201, the rear end of telescopic link 204 is provided with limit rod cover 205, telescopic link 204 is slidably arranged along the inside of limit rod cover 205, limit rod cover 205 is fixedly connected with the rear end of telescopic link 204, and limit rod cover 205 is arranged in the inside of storage hole 105, the upper and lower surfaces of telescopic link 204 are provided with limit convex point 206, limit convex point 206 is integrally formed with telescopic link 204, and limit convex point 206 is elastically and limitingly connected with the inner wall of limit rod cover 205.

[0026] In the working process, the fixed support assembly 1 and the movable support assembly 2 are connected together through the telescopic rod 204, the limiting rod sleeve 205 and the connecting assembly 3, when the second support 201 is pulled out, the telescopic rod 204 is pulled out from the inside of the limiting rod sleeve 205, and the limiting of the limiting convex point 206 on the telescopic rod 204 and the limiting rod sleeve 205 makes the adjustment position of the second support 201 more accurate and not easy to shake, and after the second support 201 is pulled out, the hidden pipeline clamp 203 is presented, so that the clamping and hiding function of the pipeline with special size is realized, and the problem that the existing pipeline support structure for anesthesia cannot adapt to the requirements of the pipeline arrangement management of anesthesia operation because it does not have the length adjusting function is solved.

[0027] Then, the anti-skid sleeve 301 of the connecting assembly 3 effectively improves the frictional damping between the telescopic rod through hole 303 and the telescopic rod 204, and further reduces the probability of the loosening and shaking of the second support 201.

[0028] Through the above steps, the fixed support assembly 1 and the movable support assembly 2 are connected together through the telescopic rod 204, the limiting rod sleeve 205 and the connecting assembly 3, when the second support 201 is pulled out, the telescopic rod 204 is pulled out from the inside of the limiting rod sleeve 205, and the limiting of the limiting convex point 206 on the telescopic rod 204 and the limiting rod sleeve 205 makes the adjustment position of the second support 201 more accurate and not easy to shake, and after the second support 201 is pulled out, the hidden pipeline clamp 203 is presented, so that the clamping and hiding function of the pipeline with special size is realized, and the problem that the existing pipeline support structure for anesthesia cannot adapt to the requirements of the pipeline arrangement management of anesthesia operation because it does not have the length adjusting function is solved.

[0029] The embodiments of the utility model are described in detail above combined with the drawings, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge range of the person skilled in the art without departing from the purpose of the utility model.

Claims

1. Multifunctional anaesthesia support comprising a fixed support assembly (1), characterised in that: The utility model also includes movable support component (2), connecting component (3), the front of fixed support component (1) is provided with connecting component (3), the front of connecting component (3) is provided with movable support component (2), fixed support component (1) includes first support (101), corner plate (102), first elastic pipe clamp (103), storage groove (104), storage hole (105), movable support component (2) includes second support (201), second elastic pipe clamp (202), hidden pipe clamp (203), telescopic link (204), limit rod sleeve (205), limit convex point (206), connecting component (3) includes antiskid sleeve (301), pipe clamp through -hole (302), telescopic link through -hole (303).

2. The multi-functional anesthesia support stand of claim 1, wherein: The inside of the first support (101) is provided with the first elastic pipe clamp (103); the lower end of the first support (101) is provided with the corner plate (102) in front, and the corner plate (102) is integrally formed with the first support (101).

3. The multi-functional anesthetic support of claim 2, wherein: The front end surface center of the corner plate (102) is provided with the storage groove (104); both sides of the storage groove (104) are provided with the storage hole (105), and the storage hole (105) and the storage groove (104) are integrally formed with the corner plate (102).

4. The multi-functional anesthetic support of claim 2, wherein: The front of the corner plate (102) is provided with the antiskid sleeve (301), and the antiskid sleeve (301) is fixedly connected with the corner plate (102); the inside of the antiskid sleeve (301) is provided with the pipe clamp through -hole (302); both sides of the pipe clamp through -hole (302) are provided with the telescopic link through -hole (303), and the pipe clamp through -hole (302) and the telescopic link through -hole (303) are integrally formed with the antiskid sleeve (301).

5. The multi-functional anesthetic support of claim 4, wherein: The front of the antiskid sleeve (301) is provided with the second support (201); the inside of the second support (201) is provided with the second elastic pipe clamp (202); the rear end of the second support (201) is provided with the hidden pipe clamp (203), and the hidden pipe clamp (203) is fixedly connected with the second support (201), and the hidden pipe clamp (203) is inserted into the inside of the storage groove (104) through the pipe clamp through -hole (302).

6. The multi-functional anesthesia support stand of claim 5, wherein: Both sides of the hidden pipe clamp (203) are provided with the telescopic link (204), and the telescopic link (204) is fixedly connected with the second support (201); the rear end of the telescopic link (204) is provided with the limit rod sleeve (205), the telescopic link (204) is slidably arranged along the inside of the limit rod sleeve (205), and the limit rod sleeve (205) is limitingly clamped with the rear end of the telescopic link (204), and the limit rod sleeve (205) is fixedly connected in the inside of the storage hole (105).

7. The multi-functional anesthetic support of claim 6, wherein: The upper and lower surfaces of the telescopic link (204) are provided with the limit convex point (206), and the limit convex point (206) is integrally formed with the telescopic link (204), and the limit convex point (206) is elastically and limitingly slidably connected with the inner wall of the limit rod sleeve (205).