Positive blood culture bottle processing device
By designing a microbial positive bottle processing device, the automated processing of positive bottles was achieved, solving the problem of wasted human resources in existing technologies and improving processing efficiency and accuracy.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-09-25
- Publication Date
- 2026-04-02
AI Technical Summary
The current handling of positive microbial bottles mainly relies on manual operation, which leads to a waste of manpower and resources. An automated processing device needs to be designed to save on workload.
Design a microbial positive bottle processing device, including an input vertical mechanism, a sterilization mechanism, a barcode scanning mechanism, a translation and flipping mechanism, a plate placement mechanism, a plate supply mechanism, a plate opening mechanism, a glass slide placement mechanism, a transfer robotic arm, a drug sensitivity paper dispenser, a needle supply mechanism, a plate incubation mechanism, and a plate loading device, to realize the automatic processing of positive bottles.
The process of handling positive bottles has been automated, reducing the waste of human resources and improving processing efficiency and accuracy.
Smart Images

Figure CN2025123964_02042026_PF_FP_ABST
Abstract
Description
Microbial positive bottle processing device TECHNICAL FIELD
[0001] The present application relates to the technical field of biological sample processing, and particularly relates to a microbial positive bottle processing device. BACKGROUND
[0002] The existing microbial positive bottle processing is mainly manual, and a large amount of manpower and different equipment are required for the preliminary processing, which wastes manpower and resources.
[0003] To sum up, how to design a microbial positive bottle processing device to save the workload of people is a problem to be solved by the technical personnel in the field at present. SUMMARY
[0004] The main purpose of the embodiment of the present application is to provide a microbial positive bottle processing device, which aims to design a device for automatically processing positive bottles.
[0005] The technical scheme for solving the above technical problem is to provide a microbial positive bottle processing device, which comprises an input vertical mechanism, a sterilization mechanism, a code scanning mechanism, a translation and overturning mechanism, a flat plate placing mechanism, a flat plate supplying mechanism, a flat plate cover opening mechanism, a glass slide placing mechanism, a transfer mechanical arm, a drug sensitivity paper dispenser, a needle supplying mechanism, a flat plate incubation mechanism and a flat plate loading device; the sterilization mechanism is arranged at intervals with the input vertical mechanism, and the sterilization mechanism is arranged towards the upright positioning recess block of the input vertical mechanism; the code scanning mechanism is arranged at intervals with the input vertical mechanism; the translation and overturning mechanism is arranged on the side of the code scanning mechanism away from the input vertical mechanism; the flat plate placing mechanism is arranged on one side of the translation and overturning mechanism along the length direction of the translation and overturning mechanism, and the glass slide placing mechanism is arranged at intervals with the flat plate placing mechanism along the length direction of the translation and overturning mechanism; the transfer mechanical arm is arranged on one side of the input vertical mechanism, and the transfer mechanical arm is used for moving the positive bottle from the input vertical mechanism to the code scanning mechanism, moving the positive bottle from the code scanning mechanism to the translation and overturning mechanism, and is used for puncturing the positive bottle.
[0006] Further, the input vertical mechanism comprises a sliding pipe, a vertical lifting mechanism, a detection photoelectric pair and an upright positioning recess block, the sliding pipe is an arc mechanism, and is used for sliding the positive bottle; the vertical lifting mechanism is arranged at one end of the sliding pipe, and the air cylinder piston of the vertical lifting mechanism is arranged towards the sliding pipe; the detection photoelectric pair is arranged on the vertical lifting mechanism and located on one side of the sliding pipe, and the detection photoelectric pair is electrically connected to the air cylinder of the vertical lifting mechanism; the upright positioning recess block is arranged on the side of the vertical lifting mechanism away from the sliding pipe.
[0007] Further, the microorganism positive bottle processing device further comprises two rotating mechanisms, the two rotating mechanisms are respectively arranged below the upright positioning recesses and are used to drive the rotation of the positive bottles in the upright positioning recesses, and are arranged below the code scanning mechanism and are used to drive the rotation of the positive bottles on the code scanning mechanism; the rotating mechanism comprises a rotating pulley, a stepping motor and a rotation photoelectric pair, the rotating pulley is arranged below the upright positioning recesses and below the code scanning mechanism; the stepping motor is arranged in a spaced manner with the rotating pulley and is connected through a driving belt; the rotation photoelectric pair is arranged on one side of the rotating pulley, and the rotation photoelectric pair is electrically connected to the stepping motor.
[0008] Further, the translation and overturning mechanism comprises a sliding rail, a motorized rotating table, a rotating motor, an air cylinder and a drop rotating clamp jaw, the sliding rail is arranged on one side of the code scanning mechanism; the motorized rotating table is movably arranged on the sliding rail; the rotating motor is rotatably arranged on the motorized rotating table; the air cylinder is arranged on the rotating motor; and the drop rotating clamp jaw is arranged on the piston of the air cylinder.
[0009] Further, the microorganism positive bottle processing device further comprises a flat plate opening mechanism and a flat plate supply mechanism, the flat plate opening mechanism is arranged on one side of the flat plate placing mechanism; and the flat plate supply mechanism is arranged in a spaced manner with the flat plate placing mechanism.
[0010] Further, the microorganism positive bottle processing device further comprises a workbench and a needle supply mechanism, the input vertical mechanism, the sterilization mechanism, the code scanning mechanism, the translation and overturning mechanism, the flat plate placing mechanism, the flat plate opening mechanism, the flat plate supply mechanism, the slide placing mechanism and the transfer mechanical arm are all arranged on the workbench; and the needle supply mechanism is arranged on the workbench.
[0011] Further, the microorganism positive bottle processing device further comprises a drug sensitive paper sheet dispenser, a flat plate incubation mechanism and a flat plate loading device, the drug sensitive paper sheet dispenser is arranged on the workbench; the flat plate loading device is arranged on the lower side of the workbench and is used to supply the flat plate to the flat plate supply mechanism; the flat plate incubation mechanism is arranged in a spaced manner with the workbench; and the flat plate incubation mechanism comprises a constant temperature incubator and a carbon dioxide incubator, and the temperature of both is 35±2℃.
[0012] The technical scheme of the present application is characterized in that the direct bottle is input into the input vertical mechanism for vertical processing; the positive bottle after vertical processing is sterilized by the sterilization mechanism; the positive bottle after sterilization is moved to the code scanning mechanism by the transfer mechanical arm for code scanning processing; the positive bottle after code scanning processing is moved to the liquid drop rotary clamp of the translation and overturning mechanism by the transfer mechanical arm; the transfer mechanical arm performs puncture processing on the positive bottle on the liquid drop rotary clamp; the positive bottle after puncture processing is moved to the upper side of the flat plate placing mechanism by the translation and overturning mechanism; the translation and overturning mechanism is rotated to make the positive bottle drip on the flat plate of the flat plate placing mechanism; the translation and overturning mechanism is rotated to the vertical position of the positive bottle; the translation and overturning mechanism moves the positive bottle; the transfer mechanical arm draws a line on the flat plate; the drug sensitive paper sheet in the drug sensitive paper sheet dispenser is pressed on the MH flat plate; all the processed flat plates are transferred to the incubation mechanism for culture; the positive bottle is moved to the upper side of the glass slide placing mechanism; the translation and overturning mechanism is rotated to make the positive bottle drip on the glass slide of the glass slide placing mechanism; the translation and overturning mechanism is rotated to the vertical position of the positive bottle; the translation and overturning mechanism moves the positive bottle; the transfer mechanical arm draws a line on the glass slide to complete the processing of the positive bottle, thereby realizing automatic processing of the positive bottle. BRIEF DESCRIPTION OF DRAWINGS
[0013] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the drawings shown.
[0014] Fig. 1 is a perspective view of the microbial positive bottle processing device according to the present application;
[0015] Fig. 2 is a front view of the microbial positive bottle processing device according to the present application;
[0016] Fig. 3 is a schematic view of the transfer mechanical arm according to the present application;
[0017] Fig. 4 is a schematic view of the input vertical mechanism according to the present application;
[0018] Fig. 5 is a schematic view of the rotation mechanism according to the present application;
[0019] Fig. 6 is a schematic view of the translation and overturning mechanism according to the present application;
[0020] Fig. 7 is a schematic view of the flat plate incubation mechanism according to the present application;
[0021] Fig. 8 is a schematic view of the flat plate output mechanism according to the present application;
[0022] Fig. 9 is a schematic view of the flat plate loading device according to the present application.
[0023] BRIEF DESCRIPTION OF DRAWINGS DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the specification of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by a person of ordinary skill in the art without creative effort fall within the protection scope of the present application.
[0025] It should be noted that all directional indications, such as up, down, left, right, front, back, etc., in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between components in a certain posture (as shown in the drawings), and if the certain posture changes, the directional indications also change accordingly.
[0026] In addition, the description such as "first", "second" and the like in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "several", "a plurality of" is at least two, for example, two, three, etc., unless otherwise explicitly specified.
[0027] In the present application, unless otherwise explicitly specified and limited, the terms "connection", "fixation" and the like should be understood in a broad sense, for example, "fixation" can be fixed connection, or detachable connection, or integral; can be mechanical connection, or electrical connection; can be direct connection, or indirect connection through an intermediate medium; can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For a person of ordinary skill in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0028] In addition, the technical solutions of each embodiment of the present application can be combined with each other, but it must be based on the fact that a person of ordinary skill in the art can realize it, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, nor is it within the protection scope required by the present application.
[0029] The present application proposes a microorganism positive bottle processing device, aiming to design a device for automatically processing positive bottles.
[0030] The microorganism positive bottle processing device proposed by the present application will be described below in specific embodiments.
[0031] In the technical scheme of the embodiment, as shown in FIG. 1 and FIG. 2, a microorganism positive bottle processing device comprises an input vertical mechanism 10, a sterilization mechanism 20, a code scanning mechanism 30, a slide glass placing mechanism 60, a translation and overturning mechanism 40, a flat plate placing mechanism 50 and a transfer mechanical arm 70. The sterilization mechanism 20 is arranged at a position away from the input vertical mechanism 10 and towards the upright positioning recess 14 of the input vertical mechanism 10. The code scanning mechanism 30 is arranged at a position away from the input vertical mechanism 10. The translation and overturning mechanism 40 is arranged at a position away from the input vertical mechanism 10 on the side of the code scanning mechanism 30. The flat plate placing mechanism 50 is arranged at a position away from the translation and overturning mechanism 40 on the side of the translation and overturning mechanism 40 along the length direction of the translation and overturning mechanism 40. The slide glass placing mechanism 60 is arranged at a position away from the flat plate placing mechanism 50 along the length direction of the translation and overturning mechanism 40. The transfer mechanical arm 70 is arranged at a position away from the input vertical mechanism 10. The transfer mechanical arm 70 is used to move the positive bottle from the input vertical mechanism 10 to the code scanning mechanism 30, move the positive bottle from the code scanning mechanism 30 to the translation and overturning mechanism 40 and puncture the positive bottle.
[0032] Understandably, after the positive bottle is ejected by the bioMerieux microorganism machine, the positive bottle is directly input into the input vertical mechanism 10 and is vertically processed. The vertically processed positive bottle is sterilized by the sterilization mechanism 20. The sterilized positive bottle is moved to the code scanning mechanism 30 by the transfer mechanical arm 70 and is scanned. The scanned positive bottle is moved to the drop rotating gripper 45 of the translation and overturning mechanism 40 by the transfer mechanical arm 70. The positive bottle on the drop rotating gripper 45 is punctured by the transfer mechanical arm 70. The punctured positive bottle is moved to the upper side of the flat plate placing mechanism 50 by the translation and overturning mechanism 40. The translation and overturning mechanism 40 is rotated to make the positive bottle drip on the flat plate of the flat plate placing mechanism 50. The translation and overturning mechanism 40 is rotated to the upright position of the positive bottle. The positive bottle is moved by the translation and overturning mechanism 40. The transfer mechanical arm 70 draws a line on the flat plate. The drug sensitive paper sheet in the drug sensitive paper sheet dispenser 95 is pressed on the MH flat plate. All the processed flat plates are transferred to the flat plate incubation mechanism 96 for culture. The positive bottle is moved to the upper side of the slide glass placing mechanism 60. The translation and overturning mechanism 40 is rotated to make the positive bottle drip on the slide glass of the slide glass placing mechanism 60. The translation and overturning mechanism 40 is rotated to the upright position of the positive bottle. The positive bottle is moved by the translation and overturning mechanism 40. The transfer mechanical arm 70 draws a line on the slide glass to complete the processing of the positive bottle and realize the automatic processing of the positive bottle.
[0033] Specifically, the mechanism of the transfer mechanical arm 70 is shown in FIG. 3. The transfer mechanical arm 70 can move in the X-axis, Y-axis and Z-axis directions respectively to complete the work processing of moving, puncturing and drawing a line.
[0034] Further, as shown in FIG. 4, the input vertical mechanism 10 comprises a slide pipe 11, a vertical lifting mechanism 12, a monitoring photoelectric pair 13 and a vertical positioning recess block 14. The slide pipe 11 is an arc-shaped mechanism for sliding the positive bottle. The vertical lifting mechanism 12 is arranged at one end of the slide pipe 11, and the cylinder 44 piston of the vertical lifting mechanism 12 is arranged towards the slide pipe 11. The monitoring photoelectric pair 13 is arranged on the vertical lifting mechanism 12 and located at one side of the slide pipe 11. The monitoring photoelectric pair 13 is electrically connected to the cylinder 44 of the vertical lifting mechanism 12. The vertical positioning recess block 14 is arranged at the side of the vertical lifting mechanism 12 away from the slide pipe 11.
[0035] Understandably, the positive bottle is discharged from the merieux microorganism machine, enters the slide pipe 11, flows through the arc-shaped slide pipe 11 to the vertical lifting mechanism 12, and the monitoring photoelectric pair 13 detects the flow of the positive bottle to the vertical lifting mechanism 12, initiates a signal to the vertical lifting mechanism 12, and the vertical lifting mechanism 12 is lifted upwards, thereby lifting one end of the positive bottle, and the other end of the positive bottle moves into the vertical positioning recess block 14, thereby vertically positioning the positive bottle in the vertical positioning recess block 14.
[0036] Further, the microorganism positive bottle processing device further comprises two rotating mechanisms 80, which are respectively arranged below the vertical positioning recess block 14 and below the code scanning mechanism 30, for driving the rotation of the positive bottle in the vertical positioning recess block 14 and the code scanning mechanism 30. As shown in FIG. 5, the rotating mechanism 80 comprises a rotating pulley 81, a stepping motor 82 and a rotating photoelectric pair 84. The rotating pulley 81 is arranged below the vertical positioning recess block 14 and below the code scanning mechanism 30. The stepping motor 82 is arranged in a spaced manner with the rotating pulley 81 and is connected through a driving belt 83. The rotating photoelectric pair 84 is arranged at one side of the rotating pulley 81. The rotating photoelectric pair 84 is electrically connected to the stepping motor 82.
[0037] Understandably, by arranging the rotating mechanism 80, when the positive bottle in the vertical positioning recess block 14 is sterilized, the rotating mechanism 80 (rotating pulley 81) below the vertical positioning recess block 14 rotates, thereby driving the rotation of the positive bottle, so as to comprehensively sterilize and disinfect the positive bottle. When the positive bottle needs to be scanned, the transfer robot arm 70 moves the positive bottle to the code scanning mechanism 30, at this time the rotating mechanism below the code scanning mechanism 30 rotates, thereby realizing the scanning.
[0038] Specifically, the rotating photoelectric pair 84 is used to sense whether the positive bottle is added into the vertical positioning recess block 14 and the code scanning mechanism 30. If the positive bottle is added, a signal is transmitted to the stepping motor 82. The stepping motor 82 rotates, drives the rotating pulley 81 to rotate through the driving belt 83, and thereby drives the rotation of the positive bottle on the rotating pulley 81 (in the vertical positioning recess block 14 and the code scanning mechanism 30).
[0039] Further, as shown in FIG. 6, the translation and overturning mechanism 40 includes a sliding rail 41, an electric rotating table 42, a rotating motor 43, an air cylinder 44, and a droplet rotating clamp 45. The sliding rail 41 is arranged on one side of the code scanning mechanism 30. The electric rotating table 42 is movably arranged on the sliding rail 41. The rotating motor 43 is rotatably arranged on the electric rotating table 42. The air cylinder 44 is arranged on the rotating motor 43. The droplet rotating clamp 45 is arranged on the piston of the air cylinder 44.
[0040] It can be understood that the translation and overturning mechanism 40 is used for translating and overturning the positive bottle. Through the driving of the motor in the electric rotating table 42, the electric rotating table 42 is driven to move on the track of the sliding rail 41. Through the rotation of the rotating motor 43, the rotating motor 43 and the air cylinder 44 are driven to rotate relative to the electric rotating table 42. The air cylinder 44 is used to drive the clamping or opening of the droplet rotating clamp 45.
[0041] Further, the microorganism positive bottle processing device further comprises a plate opening mechanism 93 and a plate supply mechanism 94. The plate opening mechanism 93 is arranged on one side of the plate placing mechanism 50. The plate supply mechanism 94 is arranged in a spaced manner with the plate placing mechanism 50.
[0042] It can be understood that the plate supply mechanism 94 is used for supplying the plate. The plate opening mechanism 93 is used for opening the cover of the plate. The plate supply mechanism 94 is used for providing the plate and its operation.
[0043] Further, the microorganism positive bottle processing device further comprises a workbench 91 and a needle supply mechanism 92. The input and vertical mechanism 10, the sterilization mechanism 20, the code scanning mechanism 30, the translation and overturning mechanism 40, the plate placing mechanism 50, the plate opening mechanism 93, the plate supply mechanism 94, the slide placing mechanism 60, and the transfer mechanical arm 70 are all arranged on the workbench 91. The needle supply mechanism 92 is arranged on the workbench 91.
[0044] It can be understood that the workbench 91 is used for fixing various parts. The transfer mechanical arm 70 is arranged on the upper part of the workbench 91 and is located on the upper side of the input and vertical mechanism 10, the sterilization mechanism 20, the code scanning mechanism 30, and the translation and overturning mechanism 40. The needle supply mechanism 92 is used for providing the system with a puncture needle, an inoculation ring, and an inoculation needle.
[0045] Further, the microorganism positive bottle processing device further comprises a drug sensitive paper sheet distributor 95, a plate incubation mechanism 96, and a plate loading device 98. The plate loading device 98 is arranged on the lower side of the workbench and is used for supplying the plate to the plate supply mechanism 94. The drug sensitive paper sheet distributor 95 is arranged on the workbench. The plate incubation mechanism 96 is arranged in a spaced manner with the workbench 91. The plate incubation mechanism comprises a constant temperature incubator and a carbon dioxide incubator. The temperature of the constant temperature incubator and the carbon dioxide incubator is 35±2℃.
[0046] It can be understood that the drug sensitive paper sheet dispenser 95 is used for the antimicrobial drug sensitivity test of microorganisms. The drug sensitivity of pathogenic bacteria is determined, and the drug to be selected is determined according to the size of the inhibition zone of the antimicrobial drug on the pathogenic bacteria; the drug sensitive paper sheet is placed on the surface of the MH culture dish agar, and the rapid drug sensitive test is completed.
[0047] As shown in FIG. 7, the plate incubation mechanism 96 includes a conventional 35±2℃ constant temperature incubator and a 5% CO2 incubator, and automatically takes pictures of the plate at a set time, realizes automatic judgment of the number of drug sensitive paper sheets in the MH plate, and transmits the picture to the guest end, so as to facilitate the laboratory personnel to observe the plate colony growth and the drug sensitive paper sheet inhibition zone. The CO2 incubator has a sensor for detecting the CO2 content, which is compensated at any time and automatically controlled.
[0048] As shown in FIG. 9, the plate loading device 98 includes a plate storage assembly 981, a plate translation assembly 982, a plate extraction assembly 983, and an ascending assembly 984. The plate storage assembly 981 can store multiple different types of plates, which need to be placed manually. The plate in the plate storage assembly 981 is extracted horizontally by the plate extraction assembly 983, and then pushed longitudinally to the fixed position of the ascending assembly 984 by the plate translation assembly 982. The ascending assembly 984 ascends to the plate supply mechanism 94 to load the required plate.
[0049] The plate supply mechanism 94 can output the drawn plate to the plate incubation mechanism for incubation.
[0050] The microorganism positive bottle processing device further includes a plate output mechanism 97 for outputting the plate to the incubator. As shown in FIG. 8, the plate output mechanism 97 includes a rotating output mechanism, a plate sliding mechanism, and a plate delivery mechanism.
[0051] The processing flow of the microorganism positive bottle processing device is as follows: positive bottle input, positive bottle code scanning, positive bottle puncture, positive bottle droplet, plate streaking, drug sensitive paper sheet pressing into plate, slide streaking, plate incubation, plate photographing to observe plate colony growth, drug sensitive paper sheet number and inhibition zone.
[0052] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any change or replacement within the technical range disclosed by the present application can be easily thought by those skilled in the art, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A microorganism positive bottle processing apparatus characterized by comprising: The device comprises: an input vertical mechanism; a sterilization mechanism, which is arranged in a spaced manner with the input vertical mechanism, and is arranged towards the upright positioning recess of the input vertical mechanism; a code scanning mechanism, which is arranged in a spaced manner with the input vertical mechanism; a translation and overturning mechanism, which is arranged on one side of the code scanning mechanism away from the input vertical mechanism; a flat plate placing mechanism, which is arranged on one side of the translation and overturning mechanism along the length direction of the translation and overturning mechanism, a slide glass placing mechanism, which is arranged in a spaced manner with the flat plate placing mechanism along the length direction of the translation and overturning mechanism; and a transfer mechanical arm, which is arranged on one side of the input vertical mechanism, and is used for moving the positive bottle from the input vertical mechanism to the code scanning mechanism, moving the positive bottle from the code scanning mechanism to the translation and overturning mechanism, and is used for puncturing the positive bottle.
2. The micro-positive vial handling device of claim 1, wherein, The input vertical mechanism comprises: a sliding pipe, which is an arc mechanism, and is used for sliding the positive bottle; a vertical jacking mechanism, which is arranged at one end of the sliding pipe, and the cylinder piston of the vertical jacking mechanism is arranged towards the sliding pipe; a detection photoelectric pair, which is arranged on the vertical jacking mechanism and is located on one side of the sliding pipe, and the detection photoelectric pair is electrically connected to the cylinder of the vertical jacking mechanism; and an upright positioning recess, which is arranged on one side of the vertical jacking mechanism away from the sliding pipe.
3. The microbiological positive bottle treatment apparatus of claim 2, wherein, The microorganism positive bottle processing device further comprises two rotating mechanisms, which are respectively arranged below the upright positioning recess and below the code scanning mechanism, and are used for driving the rotation of the positive bottle in the upright positioning recess and the positive bottle on the code scanning mechanism; the rotating mechanism comprises: a rotating pulley, which is arranged below the upright positioning recess and below the code scanning mechanism; a stepping motor, which is arranged in a spaced manner with the rotating pulley and is connected through a driving belt; and a rotation photoelectric pair, which is arranged on one side of the rotating pulley, and the rotation photoelectric pair is electrically connected to the stepping motor. The translation and overturning mechanism comprises:
4. The micro-positive vial handling device of claim 1, wherein, a sliding rail, which is arranged on one side of the code scanning mechanism; an electric rotating table, which is movably arranged on the sliding rail; a rotating motor, which is rotatably arranged on the electric rotating table; a cylinder, which is arranged on the rotating motor; and a droplet rotating clamp jaw, which is arranged on the piston of the cylinder. The microorganism positive bottle processing device further comprises:
5. The micro-positive vial handling device of claim 1, wherein, a flat plate opening mechanism, which is arranged on one side of the flat plate placing mechanism; and a flat plate supply mechanism, which is arranged in a spaced manner with the flat plate placing mechanism. The microorganism positive bottle processing device further comprises:
6. The micro-positive vial handling device of claim 1, wherein, a workbench, on which the input vertical mechanism, the sterilization mechanism, the code scanning mechanism, the translation and overturning mechanism, the flat plate placing mechanism, the flat plate opening mechanism, the flat plate supply mechanism, the slide glass placing mechanism, and the transfer mechanical arm are arranged. A needle supply mechanism is arranged on the workbench.
7. The micro-positive vial handling device of claim 6, wherein, The microorganism positive bottle processing device further comprises: A drug sensitive paper disc dispenser is arranged on the workbench. A plate incubation mechanism is arranged at intervals from the workbench. A plate loading device is arranged on the lower side of the workbench for supplying the plate supply mechanism with plates. The plate incubation mechanism comprises a constant temperature incubator and a carbon dioxide incubator, and the temperature is 35±2℃.
Citation Information
Patent Citations
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