Replanting flushing disc

By designing a replanting and rinsing dish including leaks, iron nails, flanges and sealing capsules, the problem of frequent replacement of replanting and rinsing dish during manual surgery is solved, and the efficiency and safety of the surgery are improved.

CN222983434UActive Publication Date: 2025-06-17THE THIRD PEOPLES HOSPITAL OF JIMO DISTRICT QINGDAO CITY
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Patent Information

Application Number
CN202421472671.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-26
Publication Date
2025-06-17
Estimated Expiration
2034-06-26

AI Technical Summary

Technical Problem

In manual surgery, existing replanting and rinsing trays need to be replaced frequently, increasing the workload of medical staff and the risk of wound contamination.

Method used

A replanting and rinsing dish is designed, including the first stainless steel square plate and the second stainless steel square plate. The automatic discharge of sewage is achieved through the leaking hole design, iron nails and rubber rings fix the hands, flanges and grooves enhance the connection stability, and anti-detaching rods and sealing bags improve connection sealing.

Benefits of technology

Reduces the number of replacements of replanting and rinsing trays, reduces the risk of wound contamination, and improves the efficiency and safety of manual surgery.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a replanting flushing disc which comprises a first stainless steel square disc, and leakage holes are formed in the bottom of the first stainless steel square disc at equal intervals. The first stainless steel square plate is supported on the top of the second stainless steel square plate; iron nails are welded to the front side and the rear side of a second stainless steel square plate at equal intervals, and a connector is formed in the bottom of the right side of the bottom of the second stainless steel square plate. A supporting plate is welded to the middle of the left side of the first stainless steel square plate, and arms can be conveniently placed on the supporting plate. According to the replanting flushing disc, the first stainless steel square disc and the second stainless steel square disc are used in an overlapped mode, the replanting disc and the flushing disc do not need to be frequently replaced, an operation area is cleaned, sewage directly flows into the second stainless steel square disc from the leakage holes during flushing, and the sewage is sucked into an aspirator container through an aspirator; the first stainless steel square plate and the second stainless steel square plate can be repeatedly used after high-temperature sterilization, and meanwhile the risk of wound infection of the patient is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field related to hand surgery, and specifically relates to a replantation irrigation tray. Background Technique

[0002] Hand surgery is very delicate and needs to be operated under a microscope. Therefore, the requirements for surgeons and patients are relatively high. The operation time is long, and it is required that the affected limb cannot move; good stability and the comfort of the surgeon's operation are needed, and the wound needs to be debrided and irrigated repeatedly;

[0003] However, the following problems still exist in the use of the above solutions: In the past, the replantation tray and the irrigation tray needed to be replaced by medical staff many times and operated repeatedly, which increased the workload and inevitably increased the probability of wound contamination.

[0004] Therefore, we propose a replantation irrigation tray to solve the problems raised above. Content of the Utility Model

[0005] The purpose of the utility model is to provide a replantation irrigation tray to solve the problem that in the current market during hand surgery, the replantation tray and the irrigation tray need to be replaced by medical staff many times and operated repeatedly, which increases the workload and inevitably increases the probability of wound contamination as proposed in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical solution: A replantation irrigation tray includes a first stainless steel square tray, and leakage holes are equidistantly arranged at the bottom of the first stainless steel square tray;

[0007] It further includes: The first stainless steel square tray is placed on the top of the second stainless steel square tray, and the second stainless steel square tray is used in an overlapping manner with the first stainless steel square tray;

[0008] Iron nails are welded and installed at equal intervals on the front and rear sides of the second stainless steel square tray, and an interface is arranged at the bottom right of the second stainless steel square tray, and the interface is used to connect a suction device;

[0009] A support plate is welded in the middle of the left side of the first stainless steel square tray, and the support plate is convenient for placing the arm, and a treatment towel is laid on the first stainless steel square tray in advance.

[0010] Preferably, the front cross-section of both the first stainless steel square tray and the second stainless steel square tray is set to a "U" - shaped structure, and the concave depth of the second stainless steel square tray is greater than that of the first stainless steel square tray, and the inner bottom surface of the second stainless steel square tray is set to an inclined structure.

[0011] Preferably, a rubber ring for winding and fixing the hand is provided on the iron nail, and the rubber ring is cut from the palm of a latex glove to a width of cm. The hand is fixed on the first stainless steel square plate, and the rubber rings are respectively buckled on the iron nails on both sides.

[0012] Preferably, a flange is fixed at the bottom of the four peripheral edges of the first stainless steel square plate, and the flange is used to connect with a groove. The groove is correspondingly opened at the top of the second stainless steel square plate, and the flange and the groove are used to enhance the connection stability between the first stainless steel square plate and the second stainless steel square plate.

[0013] Preferably, anti-disengagement rods are symmetrically hinged on the outer side of the interface. The anti-disengagement rods are arranged in an "L" shape, and a torsion spring is installed at the hinge between the anti-disengagement rods and the interface.

[0014] Preferably, a pull rope is wound around the hinge of the anti-disengagement rod, and the end of the pull rope is connected to a pressing plate. The pressing plate is slidably connected to the inner wall of the interface, and a spring is installed between the pressing plate and the inner wall of the interface.

[0015] Preferably, the pressing plate is in pressing contact with the air storage bag. The air storage bags are symmetrically installed in the inner wall of the interface. The outlet of the air storage bag is communicated with the sealing bag, and the sealing bag is installed on the inner wall of the interface. The sealing bag is arranged in an annular structure.

[0016] Compared with the prior art, the beneficial effects of the present utility model are:

[0017] 1. For this replantation flushing tray, through the provided leakage holes, it is convenient to drain the sewage on the first stainless steel square plate onto the second stainless steel square plate during flushing, enabling the treatment and cleaning work to be carried out without replacing the replantation tray and the cleaning tray;

[0018] 2. For this replantation flushing tray, through the provided iron nails, when fixing the patient's hand, it is convenient to wind the rubber ring and stagger-connect the rubber rings on the screws on both sides to fix the hand to prevent movement. Moreover, the support plate on the first stainless steel square plate is convenient for placing the arm;

[0019] 3. For this replantation flushing tray, through the provided first stainless steel square plate and the second stainless steel square plate, when used in a stacked manner, the flange and the groove will be snap-connected, thereby increasing the connection stability between the first stainless steel square plate and the second stainless steel square plate;

[0020] 4. For this replantation flushing tray, through the provided anti-disengagement rod, when the tube of the aspirator is connected to the interface, rotate the anti-disengagement rod to reverse the torsion spring, then insert the aspirator tube into the interface. After releasing the anti-disengagement rod, the torsion spring will drive the anti-disengagement rod to reset, thereby preventing disengagement between the tube and the interface and increasing the connection stability;

[0021] 5. For this replant irrigation tray, through the provided pressing plate, air storage bag, and sealing bag, after the spring pushes the pressing plate, the pressing plate will squeeze the air storage bag. After being pressed, the air storage bag will deliver gas to the sealing bag, and the sealing bag will expand, thereby sealing the connection between the tube and the interface, improving the sealing performance at the connection, and avoiding leakage. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 It is a schematic diagram of the overall three-dimensional exploded structure of the present utility model;

[0023] Figure 2 It is a schematic diagram of the front sectional structure in the assembled state of the present utility model;

[0024] Figure 3 It is a schematic diagram of the overall top view structure of the first stainless steel square plate and the second stainless steel square plate of the present utility model;

[0025] Figure 4 For the present utility model Figure 2 The enlarged structure schematic diagram at position A;

[0026] Figure 5 It is a schematic diagram of the front sectional structure in the interface connection state of the present utility model;

[0027] Figure 6 For the present utility model Figure 5 The enlarged structure schematic diagram at position B.

[0028] In the figure: 1. The first stainless steel square plate; 2. Leakage holes; 3. The second stainless steel square plate; 4. Iron nails; 5. Support plate; 6. Sealing bag; 7. Interface; 8. Flange; 9. Groove; 10. Anti - detachment rod; 11. Torsion spring; 12. Pulling rope; 13. Pressing plate; 14. Spring; 15. Air storage bag. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0029] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model. Embodiment

[0030] Please refer to Figures 1-6The utility model provides a technical solution: a replantation flushing tray, comprising a first stainless steel square tray 1, and the bottom of the first stainless steel square tray 1 is provided with leakage holes 2 at equal intervals; the first stainless steel square tray 1 is carried on the top of the second stainless steel square tray 3, and the second stainless steel square tray 3 is used in superposition with the first stainless steel square tray 1, and the front and rear sides of the second stainless steel square tray 3 are welded and installed with iron nails 4 at equal intervals, and the bottom right side of the second stainless steel square tray 3 is provided with an interface 7, and the interface 7 is used to connect the suction device, and a support plate 5 is welded on the middle of the left side of the first stainless steel square tray 1, The support plate 5 is convenient for placing the arm, and the first stainless steel square plate 1 is laid with a treatment towel in advance. The front cross-sections of the first stainless steel square plate 1 and the second stainless steel square plate 3 are both set to a "U"-shaped structure, and the concave depth of the second stainless steel square plate 3 is greater than the concave depth of the first stainless steel square plate 1, and the inner bottom surface of the second stainless steel square plate 3 is set to an inclined structure. The iron nail 4 is used to wrap a rubber ring for fixing the hand, and the palm of the latex glove is cut into a 1 cm wide rubber ring to fix the hand on the first stainless steel square plate 1, and the rubber rings are buckled on the iron nails 4 on both sides. Figures 1-4 As shown, when in use, the first stainless steel square plate 1 is superimposed on the second stainless steel square plate 3, a treatment towel is laid on the first stainless steel square plate 1, and then the hand is placed on the treatment towel, and the rubber ring is staggered around the iron nails 4 on the front and rear sides of the second stainless steel square plate 3, so as to limit and fix the hand. The support plate 5 on the first stainless steel square plate 1 is convenient for placing the hand. When the wound needs to be flushed later, the treatment towel is removed, and the sewage during flushing will flow from the leakage hole 2 on the first stainless steel square plate 1 into the second stainless steel square plate 3, and then the interface 7 is connected to the suction device to extract the sewage in time. There is no need to frequently replace the treatment plate during use, which reduces the risk of wound infection.

[0031] Embodiment 2: In this embodiment, different from Embodiment 1, when the first stainless steel square plate 1 is superimposed on the second stainless steel square plate 3, the stability of the installation is increased, as follows:

[0032] The bottom of the first stainless steel square plate 1 is fixed with a flange 8, and the flange 8 is used to connect with the groove 9, and the groove 9 is correspondingly opened on the top of the second stainless steel square plate 3, and the flange 8 and the groove 9 are used to strengthen the stability of the connection between the first stainless steel square plate 1 and the second stainless steel square plate 3. Figures 1-4 As shown, when the first stainless steel square plate 1 and the second stainless steel square plate 3 are connected, the flange 8 will be engaged with the groove 9, thereby increasing the connection stability of the first stainless steel square plate 1 and the second stainless steel square plate 3, and avoiding relative movement between the first stainless steel square plate 1 and the second stainless steel square plate 3 during use;

[0033] Embodiment 3: Different from Embodiment 2, in this embodiment, the stability of the connection between the interface 7 and the attractor needs to be increased, and the contents are as follows:

[0034] On the outer side of the interface 7, an anti-disengagement rod 10 is symmetrically hinged. The anti-disengagement rod 10 is arranged in an "L" shape structure. A torsion spring 11 is installed at the hinge of the anti-disengagement rod 10 and the interface 7. A pull rope 12 is wound around the hinge of the anti-disengagement rod 10. The end of the pull rope 12 is connected to a pressing plate 13. The pressing plate 13 is slidably connected to the inner wall of the interface 7. A spring 14 is installed between the pressing plate 13 and the inner wall of the interface 7. The pressing plate 13 is in pressing contact with the air storage bag 15. The air storage bags 15 are symmetrically installed in the inner wall of the interface 7. The outlet of the air storage bag 15 is communicated with the sealing bag 6. The sealing bag 6 is installed on the inner wall of the interface 7. At the same time, the sealing bag 6 is arranged in an annular structure. As Figures 1-2 and Figures 5-6 shown, when connecting the interface 7 with the suction tube, rotate the anti-disengagement rod 10 to reverse the torsion spring 11. After the anti-disengagement rod 10 rotates, it will create an insertion space. Then insert the suction tube into the interface 7. After releasing the anti-disengagement rod 10, the torsion spring 11 will drive the anti-disengagement rod 10 to rotate back to its original position, thereby facilitating and firmly docking between the interface 7 and the tube. When the anti-disengagement rod 10 rotates, it will pull the pull rope 12, and the pull rope 12 will drive the pressing plate 13 to slide, thereby compressing the spring 14. When the anti-disengagement rod 10 returns to its original position, the pull rope 12 is relaxed, and the spring 14 will push the pressing plate 13 back to its original position, thereby squeezing the air storage bag 15. The gas in the air storage bag 15 will be transported to the sealing bag 6, thereby sealing the connection between the tube and the interface 7.

[0035] The content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.

[0036] Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A replantation flushing tray, comprising a first stainless steel square tray (1), wherein leakage holes (2) are provided at equal intervals on the bottom of the first stainless steel square tray (1); Features: Also includes: The first stainless steel square plate (1) is supported on top of the second stainless steel square plate (3), and the second stainless steel square plate (3) and the first stainless steel square plate (1) are stacked for use; Iron nails (4) are welded and installed at equal intervals on the front and rear sides of the second stainless steel square plate (3), and an interface (7) is provided on the right bottom of the bottom of the second stainless steel square plate (3), and the interface (7) is used to connect the suction device; A support plate (5) is welded to the middle of the left side of the first stainless steel square plate (1), and the support plate (5) is convenient for placing the arm, and a treatment towel is laid on the first stainless steel square plate (1) in the early stage.

2. A replantation flushing tray according to claim 1, characterized in that: The front cross-sections of the first stainless steel square plate (1) and the second stainless steel square plate (3) are both arranged to be "U"-shaped structures, the inner concave depth of the second stainless steel square plate (3) is greater than the inner concave depth of the first stainless steel square plate (1), and the inner bottom surface of the second stainless steel square plate (3) is arranged to be an inclined structure.

3. A replantation flushing tray according to claim 1, characterized in that: The iron nail (4) is used to wrap a rubber ring for fixing the hand, and the palm of a latex glove is cut into a rubber ring with a width of 1 cm, and the hand is fixed on the first stainless steel square plate (1), and the rubber ring is buckled on the iron nails (4) on both sides.

4. A replantation flushing tray according to claim 1, characterized in that: Flanges (8) are fixed to the bottom of the four edges of the first stainless steel square plate (1), and the flanges (8) are used to connect with the grooves (9), and the grooves (9) are correspondingly opened on the top of the second stainless steel square plate (3), and the flanges (8) and the grooves (9) are used to enhance the stability of the connection between the first stainless steel square plate (1) and the second stainless steel square plate (3).

5. A replantation flushing tray according to claim 1, characterized in that: An anti-drop rod (10) is symmetrically hinged on the outer side of the interface (7), and the anti-drop rod (10) is arranged in an "L"-shaped structure, and a torsion spring (11) is installed at the hinge between the anti-drop rod (10) and the interface (7).

6. A replantation flushing tray according to claim 5, characterized in that: A pull rope (12) is wound around the hinge of the anti-drop rod (10), and the end of the pull rope (12) is connected to a pressure plate (13), and the pressure plate (13) is slidably connected to the inner wall of the interface (7), and a spring (14) is installed between the pressure plate (13) and the inner wall of the interface (7).

7. A replantation flushing tray according to claim 6, characterized in that: The pressure plate (13) is in compression contact with the air storage bag (15), and the air storage bag (15) is symmetrically mounted in the inner wall of the interface (7), and the outlet of the air storage bag (15) is connected to the sealing bag (6), and the sealing bag (6) is mounted on the inner wall of the interface (7), and the sealing bag (6) is arranged in a circular ring structure.