An integrated medical line management device for extracardiac clinical use

By designing a foldable cable management plate and a flexible clamping structure, the problems of large space occupation of cardiac surgery clinical devices and easy accidental pulling of cables were solved, achieving efficient use of space and improved operational safety.

CN224523508UActive Publication Date: 2026-07-21GENERAL HOSPITAL OF THE NORTHERN WAR ZONE OF THE CHINESE PEOPLES LIBERATION ARMY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GENERAL HOSPITAL OF THE NORTHERN WAR ZONE OF THE CHINESE PEOPLES LIBERATION ARMY
Filing Date
2025-07-14
Publication Date
2026-07-21

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Abstract

The utility model discloses a kind of integrated medical pipeline arrangement devices special for extracardiac clinical, it is related to the technical field of extracardiac surgical medical equipment, to solve the current device occupies larger space, in compact operating room environment, easily cause space crowded, influence the technical problem of medical staff operation, including first wire arrangement board and first wire arrangement board end rotatable connection second wire arrangement board and second wire arrangement board end rotatable connection third wire arrangement board, the first wire arrangement board, second wire arrangement board and third wire arrangement board all include wire arrangement part and rotating part, the wire arrangement part includes wire arrangement surface and plane part, the wire arrangement surface of first wire arrangement board and the plane part of second wire arrangement board are all provided with supporting member. The utility model has foldable wire arrangement board to reduce space occupation, facilitate medical operation, after folding, it has the function of folding stool and placing table, realize space reuse, supporting member guarantees device stability, significantly improve the advantages of extracardiac clinical pipeline management efficiency and security.
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Description

Technical Field

[0001] This utility model relates to the field of cardiac surgical medical device technology, and more specifically, to an integrated medical pipeline management device for clinical use in cardiac surgery. Background Technology

[0002] Cardiac surgery clinical practice, or cardiac surgery clinical diagnosis and treatment, focuses on surgical intervention for heart and major blood vessel diseases. Utilizing cutting-edge technologies such as extracorporeal circulation, minimally invasive endoscopy, and the da Vinci robotic system, it performs complex treatments including congenital heart disease correction, heart valve replacement and repair, coronary artery bypass grafting, and aortic dissection surgery. The integrated medical tubing management device for cardiac surgery clinical practice is specifically designed for the cardiac surgery clinical environment. This device can manage the complex and numerous tubing in cardiac surgery clinical practice, such as extracorporeal circulation tubing and monitoring leads, in an integrated manner, avoiding tubing tangling, reducing the risk of accidental pulling during medical procedures, and improving clinical work efficiency and safety.

[0003] Currently, integrated medical tubing management devices used in cardiac surgery clinics have relatively limited functions, only capable of limiting and fixing tubing. They also occupy a significant amount of space, which can cause congestion in the compact operating room environment and hinder the operation of medical staff. Therefore, we propose an integrated medical tubing management device specifically designed for cardiac surgery clinics. Utility Model Content

[0004] The purpose of this invention is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide an integrated medical pipeline management device for clinical use in cardiac surgery. This addresses the technical problem that current devices occupy a large space, which can easily cause congestion in a compact operating room environment and affect the operation of medical staff.

[0005] To solve the above-mentioned technical problems, this utility model provides the following technical solution: an integrated medical tubing management device for clinical use in cardiac surgery, comprising a first tubing management plate, a second tubing management plate rotatably connected to the end of the first tubing management plate, and a third tubing management plate rotatably connected to the end of the second tubing management plate. The first, second, and third tubing management plates each include a tubing management section and a rotating section. The rotating section is located at the end of the tubing management section and is arc-shaped along its long axis. The tubing management section includes a tubing management surface and a planar surface. The tubing management surface is provided with equidistant tubing grooves. Support members are provided on the tubing management surface of the first tubing management plate and the planar surface of the second tubing management plate. Support legs are arrayed on the tubing management surface of the third tubing management plate.

[0006] Preferably, the inner wall of the cable tray is symmetrically fitted with clamps, the clamps are made of elastic metal, the clamps are bent once along the long axis, the clamps are V-shaped as a whole, and the upper part of adjacent clamps forms a wide angle.

[0007] Preferably, the support member includes a first elastic metal plate and a second elastic metal plate, both of which are arc-shaped along their long axis and are C-shaped.

[0008] Preferably, the second elastic metal plate is located below the first elastic metal plate and inside the first elastic metal plate, and a support rod connects the first elastic metal plate and the second elastic metal plate.

[0009] Preferably, positioning holes are arrayed on the cable management surface of the second cable management plate and the planar portion of the third cable management plate, and the size of the positioning holes is adapted to the size of the two ends of the first elastic metal plate and the second elastic metal plate.

[0010] Compared with the prior art, the beneficial effects of this utility model are: 1. This utility model, through the design of a first, second, and third suture management plate structure, with the first, second, and third suture management plates rotatably connected, allows for folding, effectively reducing the space occupied by the device. In the compact operating room environment, this avoids the space congestion caused by the device's excessive size, providing medical staff with a more spacious operating space and greatly improving the convenience of surgical operations. Secondly, after folding, the sutures are located between the suture management plates, effectively preventing them from being stepped on or pulled, reducing the risk of accidental tufting during medical staff operations, and ensuring the safety and stability of the sutures. Finally, after folding, the flat part of the first suture management plate facing upwards can form a bench and placement platform structure, serving as both a temporary seat and a platform for placing items. During surgery, medical staff can use it as a bench for short rests or to place items temporarily needed during surgery, making full use of space, improving clinical work efficiency, and achieving efficient reuse of space. This solves the problem that current devices occupy a large amount of space, easily causing space congestion in compact operating room environments and affecting the operation of medical staff.

[0011] 2. This utility model also incorporates a cable routing groove and a clamping plate structure. The cable routing groove on the cable routing surface, combined with the clamping plate made of elastic metal material, can conveniently and firmly limit and fix the complex and numerous medical cables in cardiac surgery. The wide angle formed by the upper part of the clamping plate facilitates the insertion of the cable and prevents the cable from falling off.

[0012] 3. This utility model also designs a support structure. The support is a C-shaped structure composed of a first elastic metal plate and a second elastic metal plate. It can not only effectively support the cable management plate after the device is folded, but also has a buffering capacity due to its elastic material and special shape, which can buffer and protect the cable management plate. At the same time, the two ends of the support can be inserted into the positioning holes to further limit its position, ensuring the support stability of the device after folding and enhancing the overall reliability of use. Attached Figure Description

[0013] Figure 1 This is a front view structural diagram of the present utility model; Figure 2 This is a schematic diagram of one usage state of the present invention; Figure 3 This is a schematic diagram of the support structure of this utility model; Figure 4 This is a schematic diagram of the first wire management plate structure of this utility model.

[0014] Explanation of the numbers in the diagram: 101, First cable management plate; 102, Second cable management plate; 103, Third cable management plate; 1031, Support leg; 104, Cable management section; 1041, Cable management surface; 1042, Flat section; 105, Rotating section; 106, Cable routing groove; 107, Clamping plate; 108, Support component; 1081, First elastic metal plate; 1082, Second elastic metal plate; 1083, Support rod; 109, Positioning hole. Detailed Implementation

[0015] like Figures 1 to 4 As shown, this utility model relates to an integrated medical tubing management device for clinical use in cardiac surgery, comprising a first tubing management plate 101, a second tubing management plate 102 rotatably connected to the end of the first tubing management plate 101, and a third tubing management plate 103 rotatably connected to the end of the second tubing management plate 102. The first tubing management plate 101, the second tubing management plate 102, and the third tubing management plate 103 each include a tubing management section 104 and a rotating section 105. The rotating section 105 is located at the end of the tubing management section 104 and is arranged in an arc shape along its long axis. The tubing management section 104 includes a tubing management surface 1041 and a flat surface 1042. The tubing management surface 1041 is provided with equidistant tubing grooves 106. The tubing management surface 1041 of the first tubing management plate 101 and the flat surface 1042 of the second tubing management plate 102 are each provided with a support member 108. The tubing management surface 1041 of the third tubing management plate 103 is provided with an array of support legs 1031. This utility model features a foldable cable management board that reduces space occupation and facilitates medical staff operations. When folded, it also functions as a stool and a placement table, achieving space reuse. The support component 108 ensures the stability of the device, significantly improving the efficiency and safety of cardiac surgery clinical pipeline management.

[0016] Specifically, clamps 107 are symmetrically installed on the inner wall of the cable tray 106. The clamps 107 are made of elastic metal and are bent along their long axis, forming a V-shape. The upper portions of adjacent clamps 107 form a wide angle. During cable management, multiple cables are sequentially pressed into the cable tray 106. The wide angle formed by the upper portions of the clamps 107 facilitates cable entry between them. The clamps 107 limit the cable movement. The cables pass sequentially through the cable trays 106 of the first cable management plate 101, the second cable management plate 102, and the third cable management plate 103. Then, the first cable management plate 101, the second cable management plate 102, and the third cable management plate 103 are folded by rotation (e.g., ...). Figure 2 This design effectively reduces the space occupied by the device and shortens the length of the pipeline, reducing the space occupied by the pipeline. Secondly, the pipeline is located below the first cable management plate 101 and above the third cable management plate 103, which can protect the pipeline in the cable management position from being stepped on or pulled. After the first cable management plate 101, the second cable management plate 102 and the third cable management plate 103 are folded, the flat part 1042 of the first cable management plate 101 can be used as a bench and a platform structure with the flat part 1042 facing upward. Medical staff can use it as a bench. In addition, items can be placed on the flat part 1042 of the first cable management plate 101, which can be used as a platform for placing items, making full use of the space.

[0017] Furthermore, the support member 108 includes a first elastic metal plate 1081 and a second elastic metal plate 1082. Both the first elastic metal plate 1081 and the second elastic metal plate 1082 are arc-shaped along their long axis, and both are C-shaped. When the first cable management plate 101, the second cable management plate 102, and the third cable management plate 103 are folded, the support member 108 can support the first cable management plate 101 and the second cable management plate 102.

[0018] It is worth noting that the second elastic metal plate 1082 is located below the first elastic metal plate 1081, and is located inside the first elastic metal plate 1081. A support rod 1083 connects the first elastic metal plate 1081 and the second elastic metal plate 1082. The first elastic metal plate 1081 and the second elastic metal plate 1082 are made of elastic metal material, and their shape is C-shaped, which gives them cushioning capabilities and can buffer and protect the first cable management plate 101 and the second cable management plate 102.

[0019] It is worth mentioning that positioning holes 109 are arrayed on the cable management surface 1041 of the second cable management plate 102 and the flat portion 1042 of the third cable management plate 103. The size of the positioning holes 109 is adapted to the size of the two ends of the first elastic metal plate 1081 and the second elastic metal plate 1082. After the first cable management plate 101, the second cable management plate 102 and the third cable management plate 103 are folded, the support member 108 can be inserted into the positioning holes 109 accordingly, which can limit the position of the support member 108 and ensure its stability after folding.

[0020] Working Principle: This embodiment provides an integrated medical tubing management device specifically for cardiac surgery. In use, tubing management is first performed by placing the numerous and complex medical tubing used in cardiac surgery, such as extracorporeal circulation tubing and monitoring leads, into the cable trays 106 of the first cable management plate 101, the second cable management plate 102, and the third cable management plate 103 in sequence using a pressing method. Because the clamps 107 symmetrically installed on the inner wall of the cable trays 106 are made of elastic metal and are bent along their long axis, forming a V-shape, with a wide angle between adjacent clamps 107, the tubing can easily enter between the clamps 107. After entry, the clamps 107 use their elasticity to limit the tubing, achieving initial management and fixation of the tubing. Once the tubing is fully organized... After suture arrangement, if the operating room space is compact and it is necessary to reduce the space occupied by the device, the first suture plate 101, the second suture plate 102, and the third suture plate 103 can be folded by rotation. During the folding process, the rotating parts 105 at the ends of the first suture plate 101, the second suture plate 102, and the third suture plate 103 are arranged in an arc shape along the long axis, providing flexible rotation space for folding. After folding, not only is the space occupied by the device itself effectively reduced, but the length of the sutures is also shortened, reducing the space occupied by the sutures in the operating room. At the same time, since the sutures are located below the first suture plate 101 and above the third suture plate 103, this layout can protect the sutures at the suture arrangement location from being stepped on or pulled, reducing the workload of medical staff. To mitigate the risk of accidental cable pulling, the device takes on a new functional form after the first cable management plate 101, second cable management plate 102, and third cable management plate 103 are folded. In this form, the flat portion 1042 of the first cable management plate 101 faces upwards, creating a structure similar to a bench and platform. Medical staff can use it as a bench for short breaks during surgery. Simultaneously, the flat portion 1042 of the first cable management plate 101 can be used to place items temporarily needed during surgery, effectively utilizing space and improving clinical work efficiency. Furthermore, the support member 108 plays a crucial role during the folding process. The support member 108 consists of a first elastic metal plate 1081 and a second elastic metal plate 1082, both extending along their lengths... All the axial directions are arc-shaped, and all are C-shaped. The second elastic metal plate 1082 is located below and inside the first elastic metal plate 1081, and is connected by a support rod 1083. When the first cable management plate 101, the second cable management plate 102, and the third cable management plate 103 are folded, the support member 108 can support the first cable management plate 101 and the second cable management plate 102. Since the first elastic metal plate 1081 and the second elastic metal plate 1082 are made of elastic metal, their C-shaped structure gives them a buffering capacity, which can buffer and protect the first cable management plate 101 and the second cable management plate 102. At the same time, positioning holes 109 are arrayed on the cable management surface 1041 of the second cable management plate 102 and the flat part 1042 of the third cable management plate 103.Its size is adapted to the sizes of both ends of the first elastic metal plate 1081 and the second elastic metal plate 1082. After folding, the support member 108 can be inserted into the positioning hole 109 to limit the position of the support member 108 and ensure the stability of the device after folding.

[0021] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.

Claims

1. An integrated medical tubing management device specifically for clinical cardiac surgery, characterized in that, The system includes a first cable management plate (101), a second cable management plate (102) rotatably connected to the end of the first cable management plate (101), and a third cable management plate (103) rotatably connected to the end of the second cable management plate (102). Each of the first cable management plate (101), the second cable management plate (102), and the third cable management plate (103) includes a cable management section (104) and a rotating section (105). The rotating section (105) is located at the end of the cable management section (104), and the rotating section (105) extends along its length... The cable management section (104) is arranged in an arc shape along the axial direction. It includes a cable management surface (1041) and a flat surface (1042). Cable management grooves (106) are equally spaced on the cable management surface (1041). Support members (108) are provided on the cable management surface (1041) of the first cable management plate (101) and the flat surface (1042) of the second cable management plate (102). Support legs (1031) are arrayed on the cable management surface (1041) of the third cable management plate (103).

2. The integrated medical tubing management device for clinical cardiac surgery according to claim 1, characterized in that, The inner wall of the cable tray (106) is symmetrically equipped with clamps (107). The clamps (107) are made of elastic metal. The clamps (107) are bent once along the long axis. The clamps (107) are V-shaped in general. The upper part of the adjacent clamps (107) forms a wide angle.

3. The integrated medical tubing management device for clinical cardiac surgery according to claim 2, characterized in that, The support member (108) includes a first elastic metal plate (1081) and a second elastic metal plate (1082). The first elastic metal plate (1081) and the second elastic metal plate (1082) are both arc-shaped along the long axis direction, and the shape of the first elastic metal plate (1081) and the second elastic metal plate (1082) is C-shaped.

4. The integrated medical tubing management device for clinical cardiac surgery according to claim 3, characterized in that, The second elastic metal plate (1082) is located below the first elastic metal plate (1081), and the second elastic metal plate (1082) is located inside the first elastic metal plate (1081). A support rod (1083) is connected between the first elastic metal plate (1081) and the second elastic metal plate (1082).

5. An integrated medical tubing management device for clinical cardiac surgery according to claim 4, characterized in that, Positioning holes (109) are arrayed on the cable management surface (1041) of the second cable management plate (102) and the flat part (1042) of the third cable management plate (103). The size of the positioning holes (109) is adapted to the size of the two ends of the first elastic metal plate (1081) and the second elastic metal plate (1082).