Automatic radioactive medicine split charging and injecting equipment

By designing a multi-disc injection structure and related components, the low efficiency and high risk caused by frequent test tube changes in existing equipment are solved. This enables simultaneous injection and dispensing of multiple test tubes and test tube protection, improving operational efficiency and safety.

CN223906509UActive Publication Date: 2026-02-13BEIJING SHANWEIZHENGZI MEDICAL TECH
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Patent Information

Application Number
CN202520045701.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-09
Publication Date
2026-02-13
Estimated Expiration
2035-01-09

AI Technical Summary

Technical Problem

Existing automated radiopharmaceutical dispensing and injection equipment requires staff to frequently enter and exit the isolation room to retrieve and replace test tubes after dispensing and injection, resulting in low operational efficiency and high safety risks.

Method used

The multi-rotor injection structure is adopted. By setting up the main body of the injection equipment, the moving component, the rotating component, the lifting component, the receiving box, the limiting groove, the anti-slip ring, the test tube receiving component, the one-way sealing plug, the mounting block, the lead screw, the second motor and other components, it can realize the simultaneous injection and dispensing of multiple test tubes, and assist in the protection of the test tubes to prevent shaking.

Benefits of technology

This eliminates the need for frequent test tube changes, improves operational efficiency, reduces safety risks, and ensures the safety and efficiency of the dispensing and injection process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of radiopharmaceutical automatic split charging and injection equipment, in particular to radiopharmaceutical automatic split charging and injection equipment. According to the technical scheme, the automatic radioactive medicine split charging and injection equipment comprises an injection equipment body, a moving assembly, a rotating assembly, a lifting assembly, a containing box, a limiting groove, an anti-skid ring, a containing test tube, a one-way sealing plug, a mounting block, a lead screw, a second motor, a protection support, a control assembly, a functional assembly and an injection assembly. A moving assembly is arranged on the bottom surface of the injection equipment main body; compared with traditional radiopharmaceutical automatic split charging and injection equipment, after split charging and injection are completed, workers need to enter and exit from an isolation chamber frequently to take out and replace test tubes, the working efficiency is low, and the safety risk is high; the test tubes do not need to be frequently replaced, and meanwhile, the test tubes can be protected in an auxiliary manner, so that the test tubes are prevented from shaking during subpackaging operation.
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Description

TECHNICAL FIELD

[0001] The utility model relates to radioactive medicine automatic subpackaging injection equipment technical field especially relates to a kind of radioactive medicine automatic subpackaging injection equipment. BACKGROUND

[0002] Radioactive medicine automatic subpackaging injection equipment is a kind of medical equipment integrated with automation control, accurate metering, radiation protection and multiple functions, it can complete the subpackaging, dilution, activity measurement and injection of radioactive medicine according to preset parameter and procedure, to ensure the safety, accuracy and efficiency of radioactive medicine in use process.

[0003] The existing radioactive medicine automatic subpackaging injection equipment generally carries out single injection operation by injection head, and after subpackaging injection is completed, staff needs to frequently enter and exit isolation chamber to take out and replace test tube, so operation efficiency is low and safety risk is high.

[0004] In view of the problem that the existing radioactive medicine automatic subpackaging injection equipment needs staff to frequently enter and exit isolation chamber to take out and replace test tube after subpackaging injection is completed, so operation efficiency is low and safety risk is high, the radioactive medicine automatic subpackaging injection equipment can simultaneously carry out injection subpackaging operation on multiple test tubes by setting multiple-turntable injection structure, so test tube does not need to be frequently replaced, and test tube can be simultaneously protected to prevent test tube from shaking during subpackaging operation. UTILITY MODEL CONTENTS

[0005] In order to overcome the problem that the existing radioactive medicine automatic subpackaging injection equipment generally carries out single injection operation by injection head, and after subpackaging injection is completed, staff needs to frequently enter and exit isolation chamber to take out and replace test tube, so operation efficiency is low and safety risk is high.

[0006] The utility model discloses a technical scheme for: a radioactive medicine automatic split charging injection equipment, including injection equipment main part, mobile subassembly, rotating subassembly, elevating assembly, containing box, limiting groove, antiskid ring, containing test tube, one-way sealing plug, mounting block, screw rod, second motor, protection support, control assembly, function assembly and injection assembly, the bottom surface of injection equipment main part is provided with mobile subassembly, the surface of injection equipment main part is provided with rotating subassembly, the top surface of rotating subassembly is provided with elevating assembly, the surface of elevating assembly is provided with containing box, the surface of containing box is provided with limiting groove, limiting groove is provided with multiple groups, the inboard of limiting groove is provided with antiskid ring, the inside of antiskid ring is provided with containing test tube, the inside of containing test tube is provided with one-way sealing plug, one side of injection assembly is provided with mounting block, the inside of mounting block is provided with screw rod, the outside of screw rod is provided with protection support, one side of mounting block is provided with second motor, one side of injection equipment main part is provided with control assembly, the other side of injection equipment main part is provided with function assembly, and the top of function assembly is provided with injection assembly.

[0007] Preferably, the injection equipment main body is moved by the mobile subassembly, the elevating assembly is rotated by the rotating subassembly, the containing box is lifted by the elevating assembly, the containing test tube is placed by the containing box, the containing test tube is limited by the limiting groove, the containing test tube is anti-skid treated by the antiskid ring, the radioactive medicine is contained by the containing test tube, the containing test tube is sealed by the one-way sealing plug, the screw rod is installed by the mounting block, the screw rod is rotated by the second motor, the protection support is moved by the screw rod, the injection equipment main body is controlled by the control assembly, the operating equipment is contained by the function assembly, and the radioactive medicine is injected by the injection assembly.

[0008] Preferably, the mobile subassembly includes a support bottom plate and a moving wheel, and the bottom surface of the injection equipment main body is provided with the support bottom plate, and the bottom surface of the support bottom plate is provided with the moving wheel at four corners.

[0009] Preferably, the rotating subassembly includes a mounting bin and a rotating base, the inside of the injection equipment main body is provided with the mounting bin, and the top surface of the injection equipment main body is provided with the rotating base.

[0010] Preferably, the elevating assembly includes a first electric telescopic rod and a first motor, the inside of the mounting bin is provided with the first motor, and the top surface of the rotating base is provided with the first electric telescopic rod.

[0011] Preferably, the control assembly includes a terminal control console and a heat dissipation hole, one side of the injection equipment main body is provided with the terminal control console, and one side of the terminal control console is provided with the heat dissipation hole.

[0012] Preferably, the function assembly includes a storage box and a sealing door, the other side of the injection equipment main body is provided with the storage box, and one side of the storage box is provided with the sealing door.

[0013] Preferably, the injection assembly comprises an injection controller, a second electric telescopic rod and an injection head, the top surface of the storage box is provided with the injection controller, the bottom surface of the injection controller is provided with the second electric telescopic rod, and the bottom end of the second electric telescopic rod is provided with the injection head.

[0014] The utility model discloses the beneficial effects of:

[0015] The containing box is used for placing the containing test tube, the limiting groove is used for limiting the containing test tube, the anti-skid ring is used for anti-skid treatment of the containing test tube, the containing test tube is used for containing radioactive drugs, the one-way sealing plug is used for sealing the containing test tube, the mounting block is used for mounting the lead screw, the second motor drives the lead screw to rotate, and the protection support is moved by the lead screw, so that the test tube does not need to be frequently replaced, and the test tube can be protected at the same time, and shaking of the test tube during the subpackaging operation is prevented. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 A first three-dimensional structure schematic view of the radioactive drug automatic subpackaging injection equipment is shown.

[0017] Figure 2 A second three-dimensional structure schematic view of the radioactive drug automatic subpackaging injection equipment is shown.

[0018] Figure 3 A bottom surface three-dimensional structure schematic view of the radioactive drug automatic subpackaging injection equipment is shown.

[0019] Figure 4 An internal three-dimensional structure schematic view of the radioactive drug automatic subpackaging injection equipment is shown.

[0020] The reference signs are as follows: 1, injection equipment main body; 201, supporting bottom plate; 202, moving wheel; 301, mounting bin; 302, rotating base; 401, first electric telescopic rod; 402, first motor; 501, containing box; 502, limiting groove; 503, anti-skid ring; 504, containing test tube; 505, one-way sealing plug; 506, mounting block; 507, lead screw; 508, second motor; 509, protection support; 601, terminal control console; 602, heat dissipation hole; 701, storage box; 702, sealing door; 801, injection controller; 802, second electric telescopic rod; 803, injection head. DETAILED DESCRIPTION

[0021] The utility model will be further explained in connection with the drawings and examples.

[0022] Please refer to Figures 1-4The utility model provides a kind of embodiment: a radioactive medicine automatic subpackaging injection equipment, including injection equipment main body 1, moving assembly, rotating assembly, lifting assembly, containing box 501, limiting groove 502, antiskid ring 503, containing test tube 504, one-way sealing plug 505, mounting block 506, screw rod 507, second motor 508, protection support 509, control assembly, functional assembly and injection assembly, the bottom surface of injection equipment main body 1 is provided with moving assembly, the surface of injection equipment main body 1 is provided with rotating assembly, the top surface of rotating assembly is provided with lifting assembly, the surface of lifting assembly is provided with containing box 501, containing box 501 is provided with limiting groove 502 on the surface, limiting groove 502 is provided with multiple groups, the inside of limiting groove 502 is provided with antiskid ring 503, the inside of antiskid ring 503 is provided with containing test tube 504, the inside of containing test tube 504 is provided with one-way sealing plug 505, one side of injection assembly is provided with mounting block 506, the inside of mounting block 506 is provided with screw rod 507, the outside of screw rod 507 is provided with protection support 509, one side of mounting block 506 is provided with second motor 508, one side of injection equipment main body 1 is provided with control assembly, the other side of injection equipment main body 1 is provided with functional assembly, the top of functional assembly is provided with injection assembly.

[0023] Please refer to Figures 1-4 In the embodiment, moving assembly includes support base plate 201 and moving wheel 202, the bottom surface of injection equipment main body 1 is provided with support base plate 201, the bottom surface of support base plate 201 is provided with moving wheel 202 in four corners, in use, injection equipment main body 1 is supported by support base plate 201, and injection equipment main body 1 is moved by moving wheel 202.

[0024] Preferably, rotating assembly includes mounting bin 301 and rotating base 302, mounting bin 301 is set in the inside of injection equipment main body 1, rotating base 302 is set on the top surface of injection equipment main body 1, in use, lifting assembly is contained by mounting bin 301, and lifting assembly is installed by rotating base 302.

[0025] Preferably, lifting assembly includes first electric telescopic rod 401 and first motor 402, first motor 402 is set in the inside of mounting bin 301, first electric telescopic rod 401 is set on the top surface of rotating base 302, in use, containing box 501 is lifted by first electric telescopic rod 401, and rotating base 302 is rotated by first motor 402.

[0026] As preferred, the control assembly comprises a terminal console 601 and a heat dissipation hole 602, and the terminal console 601 is arranged on one side of the injection device body 1, and the heat dissipation hole 602 is arranged on one side of the terminal console 601, so that the terminal console 601 is controlled to control the injection device body 1, and the heat dissipation hole 602 is used for heat dissipation of the terminal console 601.

[0027] As preferred, the function assembly comprises a storage box 701 and a sealing door 702, and the storage box 701 is arranged on the other side of the injection device body 1, and the sealing door 702 is arranged on one side of the storage box 701, so that the storage box 701 is used for storage of the operating instrument, and the sealing door 702 is used for sealing of the storage box 701.

[0028] As preferred, the injection assembly comprises an injection controller 801, a second electric telescopic rod 802 and an injection head 803, the injection controller 801 is arranged on the top surface of the storage box 701, the second electric telescopic rod 802 is arranged on the bottom surface of the injection controller 801, and the injection head 803 is arranged at the bottom end of the second electric telescopic rod 802, so that the injection controller 801 is used for control of the injection operation, the second electric telescopic rod 802 drives the injection head 803 to ascend and descend, and the injection head 803 is used for sub-packaging injection operation.

[0029] When working, the lifting assembly is accommodated by the mounting bin 301, the lifting assembly is installed by rotating the base 302, the containing box 501 is lifted by the first electric telescopic rod 401, and the rotating base 302 is rotated by the first motor 402.

[0030] Meanwhile, the containing test tube 504 is placed by the containing box 501, the containing test tube 504 is limited by the limiting groove 502, the containing test tube 504 is anti-skid treated by the anti-skid ring 503, the radioactive drug is accommodated by the containing test tube 504, the containing test tube 504 is sealed by the one-way sealing plug 505, the lead screw 507 is installed by the mounting block 506, the lead screw 507 is rotated by the second motor 508, and the protection support 509 is moved by the lead screw 507.

[0031] Through the above steps, the injection device body 1 is moved by the moving assembly, the lifting assembly is rotated by the rotating assembly, the containing box 501 is lifted by the lifting assembly, the injection device body 1 is controlled by the control assembly, the operating instrument is accommodated by the function assembly, and the radioactive drug is injected by the injection assembly.

[0032] The embodiment of the utility model is explained in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiment, and various changes can be made within the knowledge range possessed by the person skilled in the art without departing from the purpose of the utility model.

Claims

1. A radiopharmaceutical automatic dispensing and injecting apparatus comprising an injecting apparatus main body (1), characterized in that: The mobile assembly, rotating assembly, lifting assembly, containing box (501), limiting groove (502), anti-skid ring (503), containing test tube (504), one-way sealing plug (505), mounting block (506), lead screw (507), second motor (508), protection support (509), control assembly, function assembly and injection assembly are further included. The bottom surface of the injection device body (1) is provided with the mobile assembly. The surface of the injection device body (1) is provided with the rotating assembly. The top surface of the rotating assembly is provided with the lifting assembly. The surface of the lifting assembly is provided with the containing box (501). The surface of the containing box (501) is provided with the limiting groove (502). The limiting groove (502) is provided with a plurality of groups. The inner side of the limiting groove (502) is provided with the anti-skid ring (503). The inside of the anti-skid ring (503) is provided with the containing test tube (504). The inside of the containing test tube (504) is provided with the one-way sealing plug (505). One side of the injection assembly is provided with the mounting block (506). The inside of the mounting block (506) is provided with the lead screw (507). The outer side of the lead screw (507) is provided with the protection support (509). One side of the mounting block (506) is provided with the second motor (508). One side of the injection device body (1) is provided with the control assembly. The other side of the injection device body (1) is provided with the function assembly. The top end of the function assembly is provided with the injection assembly.

2. The automatic dispensing and injecting device for radiopharmaceuticals according to claim 1, characterized in that: The mobile assembly includes a support bottom plate (201) and a mobile wheel (202). The bottom surface of the injection device body (1) is provided with the support bottom plate (201). The bottom surface of the support bottom plate (201) is provided with the mobile wheel (202) at four corners.

3. The automatic dispensing and injecting device for radiopharmaceuticals according to claim 1, characterized in that: The rotating assembly includes a mounting bin (301) and a rotating base (302). The inside of the injection device body (1) is provided with the mounting bin (301). The top surface of the injection device body (1) is provided with the rotating base (302).

4. The automatic dispensing and injecting device for radiopharmaceuticals according to claim 3, characterized in that: The lifting assembly includes a first electric telescopic rod (401) and a first motor (402). The inside of the mounting bin (301) is provided with the first motor (402). The top surface of the rotating base (302) is provided with the first electric telescopic rod (401).

5. The automatic dispensing and injecting device for radiopharmaceuticals according to claim 1, characterized in that: The control assembly includes a terminal control console (601) and a heat dissipation hole (602). One side of the injection device body (1) is provided with the terminal control console (601). One side of the terminal control console (601) is provided with the heat dissipation hole (602).

6. The automatic dispensing and injecting device for radiopharmaceuticals according to claim 1, characterized in that: The function assembly includes a storage box (701) and a sealing door (702). The other side of the injection device body (1) is provided with the storage box (701). One side of the storage box (701) is provided with the sealing door (702).

7. The automatic dispensing and injecting device for radiopharmaceuticals according to claim 6, characterized in that: The injection assembly includes an injection controller (801), a second electric telescopic rod (802) and an injection head (803). The top surface of the storage box (701) is provided with the injection controller (801). The bottom surface of the injection controller (801) is provided with the second electric telescopic rod (802). The bottom end of the second electric telescopic rod (802) is provided with the injection head (803).