Interventional pump packaging box and interventional pump consumable kit

By designing the bottom box and protective sleeve structure of the interventional pump packaging box, the problem of damage caused by bending during storage and transportation of the interventional pump was solved, protecting the catheter and drive shaft, extending the service life of the interventional pump and saving packaging materials.

CN224241596UActive Publication Date: 2026-05-15MAGASSIST CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
MAGASSIST CO LTD
Filing Date
2025-05-08
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

During storage and transportation, the tubing of existing interventional pumps is prone to material fatigue due to bending, which affects the normal operation and service life of the pump. Furthermore, the drive shaft may generate harmful particulate matter by rubbing against the inner wall of the tubing due to bending.

Method used

An interventional pump packaging box was designed, comprising a base box and a protective sleeve. The base box has a receiving groove for the pump head, conduit, and coupling assembly. The protective sleeve is fitted over the pump head and fixed by a protrusion to prevent bending of the interventional pump. The protective sleeve is subjected to force to prevent damage from external forces. The top cover seals the receiving groove and fixes the assembly.

Benefits of technology

It protects the precision components of the interventional pump, avoids bending damage to the catheter and drive shaft, extends the service life of the interventional pump, and saves on the volume and materials of the packaging box, thus improving economic efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an interventional pump packing box and interventional pump consumable package, the interventional pump comprises a pump head, a conduit and a coupling assembly, the interventional pump packing box comprises a bottom box and a protective sleeve, the upper surface of the bottom box is provided with a pump head accommodating groove, a conduit accommodating groove and a coupling assembly accommodating cavity along the axial direction of the interventional pump, the pump head containing groove comprises a first side wall and a second side wall which are oppositely arranged, at least one first protrusion is arranged on the first side wall, at least one second protrusion is arranged on the second side wall, the pump head is sleeved with the protective sleeve, the protective sleeve penetrates through the pump head containing groove, and the outer wall of the protective sleeve abuts against the first protrusion and the second protrusion. The intervention pump does not need to be bent, the pump head, the guide pipe and the coupling assembly can be sequentially placed into the pump head containing groove, the guide pipe containing groove and the coupling assembly containing cavity, the protection sleeve does not generate radial compression on the pump head, and the protection sleeve is used for protecting precise parts in the pump head.
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Description

Technical Field

[0001] This utility model relates to an interventional pump packaging box and an interventional pump consumable kit. Background Technology

[0002] In the field of medical devices, especially precision medical devices, damage is common during storage and transportation. Therefore, the quality of packaging boxes used to store medical devices is particularly important. Existing interventional pumps include coupling components, a pump body, and tubing connected to the pump body. The tubing is relatively long, requiring bending to fit the interventional pump into the packaging box. Due to material properties, prolonged bending of the interventional pump tubing can easily lead to material fatigue, affecting the normal operation of the interventional pump during surgery. Furthermore, the tubing contains components such as a drive shaft. If the tubing is bent, the drive shaft will also bend. Before the interventional pump is used, a bent drive shaft may affect its normal performance and lifespan. Especially if the medical device has been stored for a certain period of time before leaving the factory, the bent drive shaft is very likely to come into close contact with the inner wall of the tubing. During interventional surgery, the rotating drive shaft rubs against the inner wall of the tubing, generating a large amount of particulate matter that is harmful to the human body. Utility Model Content

[0003] The technical problem to be solved by this utility model is to overcome the defects of the prior art and provide an interventional pump packaging box and an interventional pump consumable kit.

[0004] The present invention solves the above-mentioned technical problems through the following technical solution:

[0005] An interventional pump packaging box for containing an interventional pump, the interventional pump including a pump head, a catheter, and a coupling assembly, the interventional pump packaging box comprising:

[0006] The bottom box has a pump head receiving groove, a catheter receiving groove and a coupling component receiving cavity formed on its upper surface along the axial direction of the interventional pump. The pump head receiving groove includes a first sidewall and a second sidewall disposed opposite to each other. At least one first protrusion is provided on the first sidewall and at least one second protrusion is provided on the second sidewall.

[0007] A protective sleeve is used to cover the pump head. The protective sleeve passes through the pump head receiving groove, and the outer wall of the protective sleeve abuts against the first protrusion and the second protrusion.

[0008] In this design, the packaging box for the interventional pump has a pump head receiving groove, a conduit receiving groove, and a coupling component receiving cavity formed on the upper surface of the bottom box along the axial direction of the interventional pump. When installing the interventional pump, the pump head, conduit, and coupling component can be sequentially placed into the pump head receiving groove, conduit receiving groove, and coupling component receiving cavity without bending the pump. Furthermore, a protective sleeve is fitted over the pump head. The protective sleeve does not exert radial compression on the pump head, and the pump head is in a fully extended state, which is used to protect the precision components inside the pump head. The pump head is held between the first and second protrusions by the protective sleeve. The protective sleeve is stressed, but the pump head is not stressed, thus preventing external forces from damaging the pump head during transportation or movement.

[0009] Preferably, the interventional pump packaging box further includes a top cover, which is disposed on the upper surface of the bottom box and engages with the bottom box. The interventional pump also includes a repositioning sterile sleeve. The bottom box includes a first region and a second region. The first region is the region where the coupling component receiving cavity and the repositioning sterile sleeve are located, and the second region is the region where the pump head receiving groove is located. The top cover covers the first region.

[0010] In this design, a top cover is placed over the area containing the coupling assembly housing and the repositioning sterile sleeve to protect these components and prevent external parts from directly contacting, squeezing, or scratching this area of ​​the interventional pump. Since the pump head is protected by a protective sleeve, the second area containing the pump head does not require a top cover. Placing the top cover over the first area containing the coupling assembly housing and the repositioning sterile sleeve saves on the volume and material of the interventional pump packaging, improving economic efficiency.

[0011] Preferably, the inner wall of the top cover has a first fixing part, which covers the top of the conduit receiving groove and is used to block the opening of the conduit receiving groove;

[0012] And / or, the inner wall of the top cover has a second fixing part, which covers the coupling assembly receiving cavity above and is used to block the opening of the coupling assembly receiving cavity.

[0013] In this design, since the coupling assembly of the interventional pump and the repositioning sterile sleeve are only housed in the contoured groove of the base box, and are assembled with gaps without any protruding clamping structure, a first fixing part is provided on the inner wall of the top cover. When the top cover is placed on the base box, the first fixing part blocks the opening of the catheter receiving groove, thereby confining the repositioning sterile sleeve within the catheter receiving groove and fixing the repositioning sterile sleeve. Simultaneously, a second fixing part blocks the opening of the coupling assembly receiving cavity, thereby confining the coupling assembly within the coupling assembly receiving cavity and fixing the coupling assembly.

[0014] Preferably, the first protrusion and the second protrusion are offset along the axial direction of the intervention pump.

[0015] Preferably, both the first protrusion and the second protrusion are positioned away from the support of the interventional pump.

[0016] In this design, the pump head includes a support and an impeller housed within the support. The first and second protrusions are positioned to avoid contact with the pump's support, preventing them from exerting force on the support and potentially damaging the impeller, thus improving reliability.

[0017] Preferably, the upper surface of the base box is formed with a receiving cavity for accommodating the flushing hose and the three-way valve, the receiving cavity being in communication with the receiving cavity of the coupling assembly.

[0018] In this design, a flushing hose is connected to the coupling assembly, and a three-way valve is installed on the flushing hose. The flushing hose is flexible, unlike the drive shaft in the catheter which is designed to bend. Therefore, a receiving cavity is provided on the base box to accommodate the flushing hose and the three-way valve, not just the hose itself, thus improving the fixation of the interventional pump. To facilitate the passage of the flushing hose, the receiving cavity is interconnected with the receiving cavity of the coupling assembly.

[0019] Preferably, the upper surface of the base box also has a platform for supporting the catheter, the platform extending along the axial direction of the interventional pump, and the platform having access slots on both sides along the radial direction of the interventional pump.

[0020] In this design, a platform extending along the axial direction of the interventional pump is installed on the base box. The platform supports the catheter, preventing it from being suspended and ensuring even stress distribution. Retrieval slots are provided on both sides of the platform. These slots provide operational space for inserting and removing the interventional pump, and their bottoms also serve as a base for the base box, increasing the contact area between the base box and the platform for greater stability.

[0021] Preferably, the taking slots are arranged in pairs, and multiple pairs of taking slots are spaced apart along the axial direction of the intervention pump.

[0022] In this design, paired access slots allow operators to easily access the interventional pump using two fingers. Multiple pairs of access slots are spaced apart along the axial direction of the interventional pump, allowing users to select different slots to access different parts of the pump.

[0023] Preferably, the outer side wall of the bottom box slopes outward from top to bottom, and the outer side wall is recessed inward to form a groove, and the groove forms a protrusion on the inner side of the outer side wall.

[0024] In this design, the outer wall of the base box slopes outward from top to bottom, forming an open structure that is smaller at the top and larger at the bottom, facilitating the stacking of multiple base boxes to save space. During stacking, the protrusions on the inner wall of the previous base box embed into the grooves on the outer wall of the next base box, improving the fixing effect and facilitating the transportation of multiple interventional pump packaging boxes after stacking. Simultaneously, the protrusions form reinforcing ribs, increasing the strength of the outer wall of the base box.

[0025] Preferably, the outer side wall is provided with a stepped portion around the circumference of the bottom box, and the groove passes through the stepped portion.

[0026] In this design, a stepped portion is provided around the outer wall of the bottom box in a circumferential direction. When multiple bottom boxes are stacked, the lower edge of the previous bottom box abuts against the stepped portion. This controls the depth to which the protrusion of the previous bottom box engages with the groove of the next bottom box, facilitating separation of the two bottom boxes and preventing them from jamming. The groove passes through the stepped portion, allowing the protrusion of the previous bottom box to pass through the stepped portion and engage with the groove of the next bottom box, so that the lower edge of the previous bottom box fits against the stepped portion.

[0027] An interventional pump consumable kit includes an interventional pump and an interventional pump packaging box as described above. The interventional pump includes a pump head, a conduit, and a coupling assembly. A protective sleeve is fitted onto the pump head and passes through a pump head receiving groove. The coupling assembly is received in a coupling assembly receiving cavity. At least a portion of the conduit is received in the conduit receiving groove.

[0028] In this design, the pump head, catheter, and coupling assembly can be sequentially placed into the pump head receiving slot, catheter receiving slot, and coupling assembly receiving cavity on the base box without bending the interventional pump. This avoids the adverse effects of bending the catheter, protects the drive shaft inside the catheter, and extends the service life of the interventional pump. At least part of the catheter body is accommodated in the catheter receiving slot, which limits and fixes the catheter, preventing it from sliding back and forth on the base box.

[0029] Based on common knowledge in the field, the above-mentioned preferred conditions can be combined arbitrarily to obtain various preferred embodiments of this utility model.

[0030] The positive and progressive effects of this utility model are as follows: the packaging box for the interventional pump has a pump head receiving groove, a conduit receiving groove, and a coupling component receiving cavity formed on the upper surface of the bottom box along the axial direction of the interventional pump. When installing the interventional pump, the pump head, conduit, and coupling component can be placed into the pump head receiving groove, conduit receiving groove, and coupling component receiving cavity respectively without bending the interventional pump. Furthermore, a protective sleeve is also provided on the outside of the pump head. The protective sleeve will not cause radial compression to the pump head, and the pump head is in a fully extended state to protect the precision components inside the pump head. The pump head is held between the first and second protrusions by the protective sleeve. The protective sleeve is stressed, but the pump head is not stressed, thus avoiding damage to the pump head by external forces during transportation or movement. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of the structure of the intervention pump placed in the bottom box according to a preferred embodiment of the present invention.

[0032] Figure 2 for Figure 1 Enlarged view of section A.

[0033] Figure 3 This is a schematic diagram of the structure of the top cover covering the bottom box in a preferred embodiment of the present invention.

[0034] Figure 4 for Figure 3 Enlarged view of section B.

[0035] Explanation of reference numerals in the attached figures:

[0036] Bottom box 1

[0037] Pump head receiving groove 11

[0038] First protrusion 111

[0039] Second protrusion 112

[0040] conduit receiving groove 12

[0041] Coupling component receiving cavity 13

[0042] Area 101

[0043] Second Zone 102

[0044] 14 Container

[0045] Platform 15

[0046] Dispensing slot 16

[0047] 17 outer wall

[0048] Groove 171

[0049] Step 172

[0050] Second buckle 18

[0051] 100 in the axial direction

[0052] Radial direction 200

[0053] Catheter 21

[0054] Coupling component 22

[0055] Flushing hose 221

[0056] Protective sleeve 23

[0057] Repositioning sterile sleeve 24

[0058] Top cover 3

[0059] First fixing part 31

[0060] Second fixing part 32 Detailed Implementation

[0061] The present invention will be described more clearly and completely below by way of embodiments and in conjunction with the accompanying drawings, but the present invention is not limited to the scope of the embodiments described herein.

[0062] like Figures 1-4 As shown, this embodiment discloses an interventional pump packaging box for storing an interventional pump. The interventional pump includes a pump head, a conduit 21, and a coupling assembly 22. The two ends of the conduit 21 are connected to the pump head and the coupling assembly 22, respectively. The pump head includes a bracket and a rotatable impeller disposed within the bracket. The interventional pump packaging box includes a base box 1 and a protective sleeve 23. The upper surface of the base box 1 has a pump head receiving groove 11, a conduit receiving groove 12, and a coupling assembly receiving cavity 13 formed along the axial direction 100 of the interventional pump. The pump head receiving groove 11 includes a first sidewall and a second sidewall disposed opposite to each other. At least one first protrusion 111 is provided on the first sidewall, and at least one second protrusion 112 is provided on the second sidewall. The protective sleeve 23 is used to cover the pump head. The protective sleeve 23 passes through the pump head receiving groove 11, and the outer wall of the protective sleeve 23 abuts against the first protrusion 111 and the second protrusion 112.

[0063] like Figures 1-4As shown, the packaging box for the interventional pump has a pump head receiving groove 11, a conduit receiving groove 12, and a coupling component receiving cavity 13 formed on the upper surface of the bottom box 1 along the axial direction 100 of the interventional pump. When installing the interventional pump, the pump head, conduit 21, and coupling component 22 can be placed into the pump head receiving groove 11, the conduit receiving groove 12, and the coupling component receiving cavity 13 in sequence without bending the interventional pump. Furthermore, a protective sleeve 23 is also provided on the outside of the pump head. The protective sleeve 23 will not cause radial compression to the pump head, and the pump head is in a fully extended state to protect the precision components inside the pump head. The pump head is held between the first protrusion 111 and the second protrusion 112 by the protective sleeve 23. The protective sleeve 23 is subjected to force, while the pump head is not subjected to force, thus preventing external force from damaging the pump head during transportation or movement.

[0064] Optionally, the first protrusion 111 and the second protrusion 112 are offset along the axial direction 100 of the interventional pump. The offset arrangement of the first protrusion 111 and the second protrusion 112 along the axial direction 100 of the interventional pump reduces the clamping force of the first protrusion 111 and the second protrusion 112 on the protective sleeve 23 while ensuring the fixing effect. This further reduces the stress on the internal pump head when force is applied to the protective sleeve 23, thereby achieving the purpose of protecting the pump head.

[0065] like Figures 1-4 As shown, both the first protrusion 111 and the second protrusion 112 are positioned away from the support of the interventional pump. In order to prevent or minimize the force exerted by the first protrusion 111 and the second protrusion 112 on the support, thereby damaging the impeller inside the support, the first protrusion 111 and the second protrusion 112 are positioned away from the support of the interventional pump to improve reliability.

[0066] In other alternative embodiments, the number of the first protrusion and the second protrusion can be set according to user needs.

[0067] like Figure 1 As shown, the upper surface of the base box 1 has a receiving cavity 14 for accommodating the flushing hose 221 and the three-way valve. The receiving cavity 14 is interconnected with the coupling assembly receiving cavity 13. The flushing hose 221 is equipped with a three-way valve and is flexible; therefore, the receiving cavity 14 on the base box 1 is provided to accommodate the flushing hose 221 and the three-way valve, not just the hose, thus improving the fixation effect of the interventional pump. To facilitate maintaining the connection of the flushing hose 221 between the two cavities, the receiving cavity 14 is interconnected with the coupling assembly receiving cavity 13 to allow the flushing hose 221 to pass through.

[0068] like Figures 1-4As shown, the upper surface of the base box 1 also has a platform 15 for supporting the catheter 21. The platform 15 extends along the axial direction 100 of the interventional pump, and access slots 16 are respectively provided on both sides of the platform 15 along the radial direction 200 of the interventional pump. Aligning the extension direction of the platform 15 with the axial direction 100 of the interventional pump facilitates support of the catheter 21 along its length, preventing any part of the catheter 21 from being suspended and ensuring even force distribution on the catheter 21. The access slots 16 provide operating space for placing or removing the interventional pump, and their bottoms can also serve as a base for the base box 1, increasing the contact area between the base box 1 and the platform 15 for greater stability.

[0069] like Figures 1-4 As shown, the dispensing slots 16 are arranged in pairs, with multiple pairs of dispensing slots 16 spaced 100° along the axial direction of the interventional pump. The pairing of the dispensing slots 16 allows the operator to easily dispense the interventional pump using two fingers. The multiple pairs of dispensing slots 16 spaced 100° along the axial direction of the interventional pump also allow the user to select different positions of the dispensing slots 16 to retrieve the interventional pump.

[0070] like Figure 3 and Figure 4 As shown, the outer wall 17 of the base box 1 slopes outward from top to bottom, and the outer wall 17 is recessed inward to form a groove 171. A protrusion forms on the inner side of the groove 171. The outward slope of the outer wall 17 of the base box 1 creates an open structure that is smaller at the top and larger at the bottom, facilitating the stacking of multiple base boxes 1 and saving space. The recessed groove 171 on the outer wall 17 and the protrusion on the inner side of the groove 171 further enhances stability during stacking, improving the stability of the multiple injection pump packaging boxes after stacking. Simultaneously, the protrusion forms a reinforcing rib, increasing the strength of the outer wall 17 of the base box 1.

[0071] In this embodiment, a plurality of grooves 171 are spaced apart along the circumferential direction of the bottom box 1 to improve the fixing and positioning effect.

[0072] like Figure 3 and Figure 4As shown, the outer wall 17 has a stepped portion 172 circumferentially around the bottom box 1, and the groove 171 passes through the stepped portion 172. When multiple bottom boxes 1 are stacked, the lower edge of the previous bottom box 1 abuts against the stepped portion 172, controlling the depth to which the protrusion of the previous bottom box 1 engages with the groove 171 of the next bottom box 1, facilitating separation of the two bottom boxes 1 and preventing them from jamming. To prevent over-positioning, the groove 171 is positioned to pass through the stepped portion 172, allowing the protrusion of the previous bottom box 1 to engage with the groove 171 of the next bottom box 1, ensuring that the lower edge of the previous bottom box 1 completely abuts against the stepped portion 172 of the next bottom box 1, forming a completely fitted, integrated structure.

[0073] like Figure 3 As shown, the interventional pump packaging box also includes a top cover 3, which is placed on the upper surface of the bottom box 1 and engaged with it. The interventional pump also includes a repositioning sterile sleeve 24. The bottom box 1 includes a first region 101 and a second region 102. The first region 101 is the area where the coupling component receiving cavity 13 and the repositioning sterile sleeve 24 are located, and the second region 102 is the area where the pump head receiving groove 11 is located. The top cover 3 covers the first region 101. Specifically, the inner wall of the top cover 3 is provided with a first buckle, and the upper surface of the bottom box 1 is provided with a second buckle 18. The first buckle and the second buckle 18 are engaged to fix the top cover 3 to the bottom box 1. The repositioning sterile sleeve 24 is placed over the outside of the catheter 21, and the catheter is stored in the catheter receiving groove 12. The top cover 3 is placed over the area (first area 101) where the coupling component receiving cavity 13 and the repositioning sterile sleeve 24 are located. This protects the coupling component 22 and the repositioning sterile sleeve 24, preventing external components from directly contacting, squeezing, or scratching this part of the interventional pump. Since the pump head is protected by the protective sleeve 23, the second area 102 where the pump head is located does not require the protection of the top cover 3. Placing the top cover 3 over the first area 101 where the coupling component receiving cavity 13 and the repositioning sterile sleeve 24 are located, such that the width of the top cover 3 is slightly smaller than the width of the bottom box 1, and its length is close to half the length of the bottom box 1, can save the volume and material of the interventional pump packaging box, improving economy.

[0074] In other alternative embodiments, the top cover completely covers the first and second regions of the base box to provide complete protection for the interventional pump.

[0075] In this embodiment, the inner wall of the top cover 3 has a first fixing part 31 and a second fixing part 32. The first fixing part 31 covers the catheter receiving groove 12 and is used to block the opening of the catheter receiving groove 12. The second fixing part 32 covers the coupling component receiving cavity 13 and is used to block the opening of the coupling component receiving cavity 13. Since the coupling component 22 of the interventional pump and the repositioning sterile sleeve 24 are only housed in the contoured groove of the bottom box 1, and are assembled with gaps without a protruding clamping structure design, when the top cover 3 is placed on the bottom box 1, the first fixing part 31 blocks the opening of the catheter receiving groove 12 and is used to restrict the repositioning sterile sleeve 24 within the catheter receiving groove 12, thereby fixing the repositioning sterile sleeve 24. At the same time, the second fixing part 32 blocks the opening of the coupling component receiving cavity 13 and is used to restrict the coupling component 22 within the coupling component receiving cavity 13, thereby fixing the coupling component 22.

[0076] In other alternative embodiments, the first fixing part and the second fixing part inside the top cover can be selected according to the user's needs. The number and position of the first fixing part and the second fixing part inside the top cover can be set according to the user's needs.

[0077] This embodiment also discloses an interventional pump consumable kit, which includes an interventional pump and the interventional pump packaging box described above. The interventional pump includes a pump head, a conduit 21, and a coupling assembly 22. A protective sleeve 23 is fitted onto the pump head and passes through the pump head receiving groove 11. The coupling assembly 22 is received in the coupling assembly receiving cavity 13, and at least a portion of the conduit 21 is received in the conduit receiving groove 12. When packaging the interventional pump, the pump head, conduit 21, and coupling assembly 22 can be sequentially placed into the pump head receiving groove 11, the conduit receiving groove 12, and the coupling assembly receiving cavity 13 on the bottom box 1 without bending the pump. This avoids the adverse effects of bending the conduit 21, protects the drive shaft inside the conduit 21, and extends the service life of the interventional pump. At least a portion of the conduit 21 is received in the conduit receiving groove 12, which limits and fixes the conduit 21, preventing the conduit 21 from sliding back and forth on the bottom box 1.

[0078] In the description herein, it should be understood that the terms "upper," "lower," "front," "back," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0079] While specific embodiments of this utility model have been described above, those skilled in the art should understand that these are merely illustrative examples, and the scope of protection of this utility model is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of this utility model, but all such changes and modifications fall within the scope of protection of this utility model.

Claims

1. A packaging box for an interventional pump, characterized in that, It is used to house an interventional pump, which includes a pump head, a catheter, and a coupling assembly. The interventional pump packaging box includes: The bottom box has a pump head receiving groove, a catheter receiving groove and a coupling component receiving cavity formed on its upper surface along the axial direction of the interventional pump. The pump head receiving groove includes a first sidewall and a second sidewall disposed opposite to each other. At least one first protrusion is provided on the first sidewall and at least one second protrusion is provided on the second sidewall. A protective sleeve is used to cover the pump head. The protective sleeve passes through the pump head receiving groove, and the outer wall of the protective sleeve abuts against the first protrusion and the second protrusion.

2. The interventional pump packaging box as described in claim 1, characterized in that, The interventional pump packaging box also includes a top cover, which is disposed on the upper surface of the bottom box and engaged with the bottom box. The interventional pump also includes a repositioning sterile sleeve. The bottom box includes a first region and a second region. The first region is the region where the coupling component receiving cavity and the repositioning sterile sleeve are located, and the second region is the region where the pump head receiving groove is located. The top cover covers the first region.

3. The interventional pump packaging box as described in claim 2, characterized in that, The inner wall of the top cover has a first fixing part, which covers the top of the conduit receiving groove and is used to block the opening of the conduit receiving groove. And / or, the inner wall of the top cover has a second fixing part, which covers the coupling assembly receiving cavity above and is used to block the opening of the coupling assembly receiving cavity.

4. The interventional pump packaging box as described in claim 1, characterized in that, The first protrusion and the second protrusion are offset along the axial direction of the intervention pump.

5. The interventional pump packaging box as described in claim 1 or 4, characterized in that, Both the first protrusion and the second protrusion are positioned to avoid the support of the interventional pump.

6. The interventional pump packaging box as described in claim 1, characterized in that, The upper surface of the base box has a receiving cavity for accommodating the flushing hose and the three-way valve, and the receiving cavity is in communication with the receiving cavity of the coupling assembly.

7. The interventional pump packaging box as described in claim 1, characterized in that, The upper surface of the base box also has a platform for supporting the catheter, the platform extending along the axial direction of the interventional pump, and the platform having access slots on both sides along the radial direction of the interventional pump.

8. The interventional pump packaging box as described in claim 7, characterized in that, The taking slots are arranged in pairs, and multiple pairs of taking slots are spaced apart along the axial direction of the intervention pump.

9. The interventional pump packaging box as described in claim 1, characterized in that, The outer wall of the bottom box slopes outward from top to bottom, and the outer wall is recessed inward to form a groove, and the groove forms a protrusion on the inner side of the outer wall.

10. The interventional pump packaging box as described in claim 9, characterized in that, The outer side wall is provided with a stepped portion around the circumference of the bottom box, and the groove passes through the stepped portion.

11. A consumable kit for an interventional pump, characterized in that, The interventional pump consumable kit includes an interventional pump and an interventional pump packaging box as described in any one of claims 1-10. The interventional pump includes a pump head, a conduit, and a coupling assembly. A protective sleeve is fitted over the pump head and passes through the pump head receiving groove. The coupling assembly is received in the coupling assembly receiving cavity. At least a portion of the conduit is received in the conduit receiving groove.