Sterile treatment tray

By incorporating sliding partitions and cross-separation structures within the treatment tray, the problem of medication misdispensing for multiple patients is resolved, allowing for flexible adjustment of placement space and improving the accuracy and safety of hemodialysis procedures.

CN223586192UActive Publication Date: 2025-11-25THE FIRST PEOPLES HOSPITAL OF LIANGSHAN YI AUTONOMOUS PREFECTURE (LIANGSHAN INFECTIOUS DISEASES HOSPITAL)
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Patent Information

Application Number
CN202422648990.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-11-25
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

During hemodialysis, placing medications for multiple patients in the same treatment tray can easily lead to medication dispensing errors and confusion.

Method used

A sterile treatment tray was designed. By setting parallel grooves inside the tray and equipping it with sliding partitions one and two, the space inside the tray can be divided into multiple independent placement zones. The partitions can be flexibly adjusted by intersecting dividing rods and limiting clamps to ensure that the volume of each zone is adjustable and to prevent drug mixing.

Benefits of technology

This allows for flexible adjustment of the placement space according to patient needs, avoiding medication dispensing errors and improving the accuracy and safety of the procedure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a sterile treatment tray, which belongs to the field of medical instruments and comprises a tray body, two groups of parallel inner walls are arranged on the tray body, and a plurality of parallel sliding grooves are symmetrically arranged on each group of inner walls. The first partition plate comprises a first connecting part and a first isolating part which are connected with each other, and the first connecting part is connected with one set of sliding grooves of the tray body and reciprocates along the sliding grooves; the second partition plate comprises a second connecting part and a second isolating part which are connected with each other, the second connecting part is connected with the other set of sliding grooves of the tray body and reciprocates along the sliding grooves, the first partition plate and the second partition plate divide the space in the tray body into a plurality of placement subareas with different volumes, and the volumes of the placement subareas are changed when the first partition plate and the second partition plate move. Through the arrangement, the placing space of the treatment plate can be divided into a plurality of mutually independent parts, and medical personnel can adjust the space distribution of the treatment plate according to the types and the number of articles required during treatment.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of medical instruments, and particularly relates to a sterile treatment tray. BACKGROUND

[0002] In clinical blood dialysis, the medicine is prepared according to the patient's physical condition and treatment condition, and then the prepared medicine and other related instruments for injection are stored in the treatment tray, and the prepared medicine is distributed to the patient's position after the medical staff completes the dialysis operation of the corresponding patient. In actual operation, the medicine of multiple patients needs to be prepared at the same time, but the amount and type of medicine of each patient are different, and placing multiple medicines of multiple patients in one treatment tray can easily cause medicine distribution error and confusion.

[0003] Therefore, a carrying device capable of classifying and placing multiple treatment supplies through multiple placement areas is designed, and the carrying device is a sterile treatment tray. UTILITY MODEL CONTENTS

[0004] In order to overcome the problems in the background art, the utility model adopts the following technical scheme:

[0005] A sterile treatment tray comprises a tray body, the tray body has two groups of mutually parallel inner walls, each group of the inner walls is symmetrically provided with a plurality of mutually parallel sliding grooves, a first partition plate comprises a connecting part one and a partition part one which are connected with each other, the connecting part one is connected with one group of sliding grooves of the tray body and reciprocates along the sliding grooves, a second partition plate comprises a connecting part two and a partition part two which are connected with each other, the connecting part two is connected with the other group of sliding grooves of the tray body and reciprocates along the sliding grooves, the first partition plate and the second partition plate divide the space in the tray body into a plurality of placement subareas with different volumes, and the volumes of the placement subareas are changed when the first partition plate and the second partition plate move.

[0006] Further, the isolation part one is provided with a plurality of interaction grooves one penetrating along the thickness direction of the partition plate one, and the adjacent interaction grooves one are provided with a separation rod one; the isolation part two is provided with a plurality of interaction grooves two penetrating along the thickness direction of the partition plate two, and the adjacent interaction grooves two are provided with a separation rod two; when the partition plate one and the partition plate two are connected with the disc body respectively, the separation rod one penetrates through the interaction grooves two, the separation rod two penetrates through the interaction grooves one, the separation rod one does not contact the separation rod two or the separation groove two when the partition plate one moves, and the separation rod two does not contact the separation rod one or the separation groove one when the partition plate two moves, so that the partition plate one and the partition plate two do not contact each other, the position of other partition plate one or partition plate two is prevented from being changed when the partition plate one or the partition plate two moves, and the volume of the predetermined placement space is prevented from being changed.

[0007] Further, the partition plate one is composed of two identical partition plate units one, the two partition plate units one are provided with a splicing part one, and the connecting parts one of the two partition plate units one are respectively connected with the sliding grooves on the symmetrical inner wall and move towards each other, so that the splicing parts one of the two partition plate units one are mutually clamped and form the partition plate one.

[0008] Further, the partition plate two is composed of two identical partition plate units two, the two partition plate units two are provided with a splicing part two, and the connecting parts two of the two partition plate units two are respectively connected with the sliding grooves on the symmetrical inner wall and move towards each other, so that the splicing parts two of the two partition plate units two are mutually clamped and form the partition plate two.

[0009] Further, the limiting clamp is provided with four clamping arms parallel to each other, the partition plate one and the partition plate two are mutually crossed when they are connected with the disc body, and the limiting clamp moves towards the disc body along the vertical direction of the bottom surface of the disc body and clamps the mutually crossed partition plate one and partition plate two, so that the limiting clamp limits the relative movement of the partition plate one and the partition plate two with the sliding groove; specifically, when the limiting clamp is inserted into the crossed part of the partition plate one and the partition plate two, each clamping arm respectively extrudes the adjacent outer wall of the partition plate one and the partition plate two.

[0010] Further, the material of the treatment disc is nickel-iron alloy, and the end of the clamping arm towards the disc body is provided with a magnetic attraction piece when in use, so that the magnetic attraction piece is connected with the disc body under the action of magnetic force when the limiting clamp is inserted into the crossed part of the partition plate one and the partition plate two, thereby strengthening the limiting effect on the partition plate.

[0011] Further, the number of the partition plate one is at least a, the number of the partition plate two is the same as that of the partition plate one, the number of the placement partition is (a+1)2, and the number of the limiting clamp is a 2 .

[0012] Further, a sterile layer is laid in the disc body, and the partition plate one and the partition plate two do not contact the sterile layer at all when they move.

[0013] The utility model discloses the beneficial effect of:

[0014] The inner wall of the disc body is provided with a plurality of parallel grooves, the groove is connected with the baffle one and baffle two that can slide along the groove, the baffle one and baffle two are respectively provided with the interaction groove one and interaction groove two at different height from the bottom of the disc body, and the interaction groove one and interaction groove two make the baffle one and baffle two not contact when reciprocating along two groups of grooves and crossing, so that the baffle one and baffle two can flexibly divide the bearing space in the disc body into a plurality of volume-adjustable placing partitions, and medical staff can flexibly adjust the number of baffle one and baffle two connected in the disc body according to actual conditions when using, thereby effectively preventing the medicine distribution error when placing multiple medicines of multiple patients in a treatment tray. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the following will be briefly introduced the drawings needed to be used in the embodiment description, obviously, the drawings in the following description only some embodiments of the utility model, for the ordinary skilled person in the art, under the premise of not paying the creative labor, can also obtain other drawings according to these drawings. Among them:

[0016] Figure 1 It is a whole structure schematic diagram of the utility model;

[0017] Figure 2 It is a whole structure schematic diagram of the utility model;

[0018] Figure 3 It is Figure 1 The local section structure schematic diagram of;

[0019] Figure 4 It is Figure 3 The explosion structure schematic diagram of;

[0020] Figure 5 It is the whole structure schematic diagram of baffle one;

[0021] Figure 6 It is the explosion structure schematic diagram of baffle one;

[0022] Figure 7 It is the whole structure schematic diagram of limit pin;

[0023] In the diagram, 1. Plate body; 11. Inner wall; 12. Slide groove; 13. Sterile layer; 2. Partition 1; 21. Connecting part 1; 22. Isolation part 1; 221. Interaction groove 1; 222. Separator rod 1; 23. Partition unit 1; 231. Splicing part 1; 3. Partition 2; 31. Connecting part 2; 32. Isolation part 2; 321. Interaction groove 2; 322. Separator rod 2; 33. Partition unit 2; 331. Splicing part 2; 4. Limiting clamp; 41. Clamping arm; 42. Magnetic suction component. Detailed Implementation

[0024] The technical solutions of this utility model are clearly and completely described below through specific embodiments. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model can also be implemented or applied through other different specific embodiments. In the absence of conflict, the following embodiments and features in the embodiments can be combined with each other. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0025] A sterile treatment tray, such as Figures 1-7 As shown, the device includes: a tray 1, which has two sets of parallel inner walls 11, each set of inner walls 11 having several parallel sliding grooves 12 symmetrically arranged on each other; a partition 2, which includes a connecting part 21 and an isolation part 22 connected to each other, the connecting part 21 being connected to one set of sliding grooves 12 of the tray 1 and reciprocating along the sliding grooves 12; and a partition 3, which includes a connecting part 31 and an isolation part 32 connected to each other, the connecting part 31 being connected to the other set of sliding grooves 12 of the tray 1 and reciprocating along the sliding grooves 12. The partitions 2 and 3 divide the space inside the tray 1 into several placement partitions with different volumes. When the partitions 2 and 3 move, they change the volume of the placement partitions. Through the above arrangement, the placement space of the treatment tray is divided into multiple independent parts, and medical personnel can adjust the space allocation of the treatment tray according to the type and quantity of supplies required during treatment. Each partition 1 2 includes two connecting parts 1 21, and each partition 2 3 includes two connecting parts 2 31.

[0026] In some embodiments of this application, such as Figures 1-7As shown, the isolation part one 22 is provided with a plurality of interaction grooves one 221 along the thickness direction of the partition one 2, and the adjacent interaction grooves one 221 have a separation rod one 222; the isolation part two 32 is provided with a plurality of interaction grooves two 321 along the thickness direction of the partition two 3, and the adjacent interaction grooves two 321 have a separation rod two 322; when the partition one 2 and the partition two 3 are connected with the disc body 1 respectively, the separation rod one 222 passes through the interaction grooves two 321, the separation rod two 322 passes through the interaction grooves one 221, the separation rod one 222 does not contact the separation rod two 322 or the separation groove two when the partition one 2 moves, and the separation rod two 322 does not contact the separation rod one 222 or the separation groove one when the partition two 3 moves, so that the partition one 2 and the partition two 3 do not contact each other, preventing the partition one 2 or the partition two 3 from changing the positions of other partitions one 2 or partitions two 3 when moving, and further preventing the volume of the predetermined placement space from being changed. The partition one 2 and the partition two 3 have an included angle, which is the same as or complementary to the included angle of the two adjacent inner walls 11 of the disc body 1, which enables the mutually intersecting partitions to separate the placement subareas with different volumes.

[0027] In some embodiments of the present application, as shown in Figures 1-7 The partition one 2 is composed of two identical partition units one 23, and the two partition units one 23 have a splicing part one 231. When the connecting parts one 21 of the two partition units one 23 are respectively connected with the sliding grooves 12 on the symmetrical inner walls 11 and move towards each other, the splicing part one 231 of the two partition units one 23 is clamped with each other and forms the partition one 2. The partition two 3 is composed of two identical partition units two 33, and the two partition units two 33 have a splicing part two 331. When the connecting parts two 31 of the two partition units two 33 are respectively connected with the sliding grooves 12 on the symmetrical inner walls 11 and move towards each other, the splicing part two 331 of the two partition units two 33 is clamped with each other and forms the partition two 3. The partition one 2 and the partition two 3 do not contact each other when moving. When a user adjusts the volume of different placement areas, adjusting any partition one 2 alone will not interfere with the positions of other partitions two 3, thereby maintaining the accuracy of space allocation, which is also conducive to reducing the difficulty of using the treatment disc.

[0028] In some embodiments of the present application, as shown in Figures 1-7 The limiting clip 4 is inserted into the intersection of the partition one 2 and the partition two 3, and each clamping arm 41 respectively extrudes the adjacent outer walls of the partition one 2 and the partition two 3.

[0029] In some embodiments of the present application, as shown in Figures 1-7As shown, the treatment disc is made of nickel-iron alloy, and the clamping arm 41 is provided with a magnetic attraction member 42 at one end thereof facing the disc body 1 in use. When the limiting clamp 4 is inserted into the intersection of the partition one 2 and the partition two 3, the magnetic attraction member 42 is connected with the disc body 1 under the magnetic force, thereby enhancing the limiting effect on the partition.

[0030] In some embodiments of the present application, as shown in Figures 1-7 The number of the partition one 2 is at least a, the number of the partition two 3 is the same as that of the partition one 2, the number of the placement partition is (a+1)2, and the number of the limiting clamp 4 is a 2 The disc body 1 is paved with a sterile layer 13, and the partition one 2 and the partition two 3 are always not in contact with the sterile layer 13 when moving, thereby being able to reduce the risk of contamination of the medical articles in use.

Claims

1. A sterile treatment tray characterized in that, The utility model relates to a therapeutic tray, comprising: a disc body having two sets of mutually parallel inner walls, each set of the inner walls being symmetrically provided with a plurality of mutually parallel sliding grooves; a first partition plate comprising a first connecting portion and a first isolation portion connected to each other, the first connecting portion being connected to one set of the sliding grooves of the disc body and reciprocating along the sliding grooves; a second partition plate comprising a second connecting portion and a second isolation portion connected to each other, the second connecting portion being connected to the other set of the sliding grooves of the disc body and reciprocating along the sliding grooves, the first partition plate and the second partition plate dividing the space in the disc body into a plurality of placement zones with different volumes, and the volumes of the placement zones being changed when the first partition plate and the second partition plate move.

2. A sterile treatment tray according to claim 1, wherein, The first isolation portion is provided with a plurality of first interaction grooves penetrating in the thickness direction of the first partition plate, and a first partition rod is arranged between adjacent first interaction grooves; the second isolation portion is provided with a plurality of second interaction grooves penetrating in the thickness direction of the second partition plate, and a second partition rod is arranged between adjacent second interaction grooves; when the first partition plate and the second partition plate are connected to the disc body respectively, the first partition rod penetrates through the second interaction grooves, and the second partition rod penetrates through the first interaction grooves.

3. A sterile treatment tray according to claim 1, wherein, The first partition plate is composed of two identical first partition plate units, the two first partition plate units have a first joint portion, and when the first connecting portions of the two first partition plate units are slidably connected to the sliding grooves on the symmetric inner walls and move towards each other, the first joint portions of the two first partition plate units are clamped to each other to form the first partition plate.

4. A sterile treatment tray according to claim 1, wherein, The second partition plate is composed of two identical second partition plate units, the two second partition plate units have a second joint portion, and when the second connecting portions of the two second partition plate units are slidably connected to the sliding grooves on the symmetric inner walls and move towards each other, the second joint portions of the two second partition plate units are clamped to each other to form the second partition plate.

5. A sterile treatment tray according to claim 2, wherein, The utility model further comprises a limiting clamp having four parallel clamp arms, the first partition plate and the second partition plate cross each other when they are connected to the disc body, and the limiting clamp moves towards the disc body in the vertical direction of the bottom surface of the disc body and clamps the first partition plate and the second partition plate when they cross each other, so that the limiting clamp limits the relative movement of the first partition plate and the second partition plate with the sliding grooves.

6. A sterile treatment tray according to claim 5, wherein, The therapeutic tray is made of nickel-iron alloy, and a magnetic member is arranged at the end of each clamp arm facing the disc body, so that the magnetic member and the disc body are connected under the action of magnetic force when the limiting clamp is inserted into the cross section of the first partition plate and the second partition plate.

7. A sterile treatment tray according to claim 5, wherein, The number of the first partition plates is at least a, the number of the second partition plates is the same as the number of the first partition plates, and the number of the partitioning areas is (a+1) 2 The number of the limiting clamps is a 2 .

8. A sterile treatment tray according to claim 1, wherein, Each first partition plate comprises two first connecting portions.

9. A sterile treatment tray according to claim 1, wherein, Each second partition plate comprises two second connecting portions.

10. A sterile treatment tray according to claim 1, wherein, A sterile layer is laid in the disc body, and the first partition plate and the second partition plate do not contact the sterile layer at all when they move.