Sample container sorting device

The specimen container sorting device addresses inefficiencies in existing technologies by enabling simultaneous gripping and identification of multiple containers, thereby enhancing processing speed and accuracy.

JP7842008B2Active Publication Date: 2026-04-07HITACHI HIGH TECH CORP
View PDF 5 Cites 0 Cited by

Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-12-27
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing specimen sorting devices require significant time for sorting sample containers due to the sequential handling of individual containers based on barcode readings, leading to inefficiencies in processing.

Method used

A specimen container sorting device equipped with a container gripping lifting unit, transport unit, container identification unit, and control unit that allows simultaneous gripping and identification of multiple containers, enabling rapid sorting into attribute-specific racks.

Benefits of technology

The device significantly reduces sorting time by allowing simultaneous handling and identification of multiple containers, improving processing efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007842008000001
    Figure 0007842008000001
  • Figure 0007842008000002
    Figure 0007842008000002
  • Figure 0007842008000003
    Figure 0007842008000003
Patent Text Reader

Abstract

To provide a specimen container sorting apparatus capable of sorting a specimen container quickly.SOLUTION: A specimen container sorting device includes: a container gripping and elevating section for gripping specimen containers for housing specimens and moving them vertically; a conveyance section for moving the container gripping and elevating section horizontally; a container identification section for identifying attributes of the specimen containers; and a control section for controlling the container gripping and elevating section, the conveyance section, and the container identification section. It sorts the specimen containers from a first rack in which the specimen containers having different attributes coexist to a second rack that differs for each attribute, and the control section allows the container identification section to identify attributes of the multiple specimen containers in a state in which the multiple specimen containers are gripped by the container gripping and elevating section.SELECTED DRAWING: Figure 1
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to a specimen container sorting device.

Background Art

[0002] In clinical examinations at hospitals and testing centers, a large number of collected specimens are sorted according to the type of examination, such as blood tests, biochemical tests, and general tests. After performing necessary pretreatment such as centrifugation and unsealing according to the type, the final desired examination is conducted. In such clinical examinations at hospitals and testing centers, it is important to process and examine the collected specimens quickly and accurately. Conventionally, the color and shape of the lids of specimen containers were distinguished according to the type of examination of the specimens, and based on this distinction, the specimen containers were manually sorted according to the type of examination and the necessary processing was performed. However, for the purpose of efficiency improvement, automation of the specimen sorting work is required.

[0003] As a technique for automatically sorting specimens according to the type of examination, for example, in Patent Document 1, there is disclosed a sorting device provided with sorting means for receiving and conveying a rack on which a plurality of containers are placed and transferring the containers placed on the rack to a predetermined container placement section (Claim 1 of the same document).

Prior Art Documents

Patent Documents

[0004]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0005] However, in the technique described in Patent Document 1, since the rack is once conveyed to a predetermined location and based on the sorting conditions of the barcodes read from the containers at that time, the containers are taken out one by one and inserted into the sorting destination one by one, the sorting work takes time.

[0006] The object of the present invention is to provide a sample container sorting device that can sort sample containers in a short amount of time. [Means for solving the problem]

[0007] To achieve the above objectives, the specimen container sorting device of the present invention comprises a container gripping lifting unit that grips and moves specimen containers containing specimens in a vertical direction, a transport unit that moves the container gripping lifting unit in a horizontal direction, a container identification unit that identifies the attributes of the specimen containers, and a control unit that controls the container gripping lifting unit, the transport unit, and the container identification unit, and sorts the specimen containers from a first rack in which specimen containers of different attributes are mixed into a second rack that is different for each attribute, characterized in that the control unit causes the container identification unit to identify the attributes of the multiple specimen containers while the container gripping lifting unit is gripping multiple specimen containers. [Effects of the Invention]

[0008] According to the present invention, it is possible to provide a sample container sorting device that can sort sample containers in a short amount of time. [Brief explanation of the drawing]

[0009] [Figure 1] A perspective view showing the configuration of a specimen container sorting device according to an embodiment of the present invention. [Figure 2] A top view showing the operation of the transport unit when sorting sample containers. [Figure 3] A perspective view showing the state in which the drawer supporting the tray of the specimen container sorting device according to an embodiment of the present invention is pulled out. [Figure 4] A side view showing how each gripping and lifting mechanism independently grips the sample container. [Figure 5] A side view showing an example where the pitch of the specimen containers is smaller than the minimum spacing of the gripping and lifting mechanism. [Figure 6] This plan view shows an example of sample containers to be grasped in each sorting cycle when sorting multiple sample containers on a pre-sorting rack using the grasping and lifting mechanism shown in Figure 5. [Figure 7]A perspective view showing the positional relationship between the container identification unit and the container gripping and lifting unit at the identification position. [Figure 8] A side view showing how the container identification unit identifies barcodes attached to sample containers all at once. [Figure 9] A side view showing how the liquid volume of samples contained in sample containers is detected all at once. [Figure 10] A perspective view showing the overall configuration of a gripping and lifting mechanism according to an embodiment of the present invention. [Figure 11] A cross-sectional view showing the main part of a gripping and lifting mechanism according to an embodiment of the present invention. [Modes for carrying out the invention]

[0010] Embodiments of the present invention will be described below with reference to the drawings. However, the present invention is not to be interpreted as being limited to the embodiments described below. It will be easily understood by those skilled in the art that the specific configuration can be modified without departing from the spirit or purpose of the present invention. In the configuration of the invention described below, the same reference numerals are used in common across different drawings for the same parts or parts having similar functions, and redundant explanations may be omitted. In addition, the position, size, shape, and range of each component shown in the drawings may not represent the actual position, size, shape, and range in order to facilitate understanding of the invention. For this reason, the present invention is not necessarily limited to the position, size, shape, and range disclosed in the drawings.

[0011] Figure 1 is a perspective view showing the configuration of a specimen container sorting device according to an embodiment of the present invention. As shown in Figure 1, the specimen container sorting device 1 mainly comprises a container gripping and lifting unit 11, a transport unit 12, a container identification unit 13, an operation unit 14, a display unit 15, and a control unit 16. The container gripping and lifting unit 11 grips the specimen container containing the specimen and moves it vertically, and is attached to the transport unit 12. The container gripping and lifting unit 11 has multiple (for example, four) gripping and lifting mechanisms, and can grip and lift multiple specimen containers 20 simultaneously, thereby improving the processing speed. The transport unit 12 moves the container gripping and lifting unit 11 horizontally (in the x and y directions in Figure 1), and is provided on the ceiling surface of the housing of the specimen container sorting device 1. The container identification unit 13 identifies the attributes of the specimen container 20 (the type of test and test items of the specimen contained in the specimen container 20), and is, for example, a camera that photographs the specimen container 20. The operation unit 14 is for the operator to input settings for the sample container sorting device 1 and is located on the front of the housing of the sample container sorting device 1. The display unit 15 is for displaying the operating status of the sample container sorting device 1 and is located on the top of the housing of the sample container sorting device 1. The control unit 16 controls the container gripping and lifting unit 11, the transport unit 12, the container identification unit 13, the operation unit 14, and the display unit 15.

[0012] Furthermore, the specimen container sorting device 1 is equipped with a pre-sorting tray 17 (first tray) on the bottom surface of its housing, on which multiple pre-sorting racks 170 are installed, and a post-sorting tray 18 (second tray) on which multiple post-sorting racks 180 are installed. The control unit 16 controls the container gripping and lifting unit 11 and the transport unit 12, etc., to sort the specimen containers 20 from each pre-sorting rack 170, where specimen containers 20 of different attributes are mixed, into post-sorting racks 180, which are different for each attribute.

[0013] FIG. 2 is a top view showing the operation of the transport unit when sorting the specimen containers. First, the transport unit 12 horizontally moves the container gripping and lifting unit 11 onto the vertical projection of the pre-sorting rack 170 to be extracted, which is installed on the pre-sorting tray 17. Next, after the gripping and lifting mechanism of the container gripping and lifting unit 11 descends to grip the specimen container 20 and then ascends, the transport unit 12 horizontally moves the container gripping and lifting unit 11 to the identification position as indicated by arrow 201 in FIG. 2.

[0014] At this time, the control unit 16 causes the container gripping and lifting unit 11 to grip a plurality of specimen containers 20, and then causes the container identification unit 13 (camera) to identify the attributes of the plurality of specimen containers 20 as the sorting destinations at once, so that the processing time can be shortened. When identifying the attributes of the specimen container 20, for example, the color or shape of the lid of the specimen container 20 included in the image captured by the camera is extracted, and the attributes of the specimen container 20 are specified by comparing the extraction result with a predetermined attribute table. The image analysis process may be executed in the camera or in the control unit 16.

[0015] When the attributes of the specimen container 20 are identified, the post-sorting rack 180 corresponding to the attributes is specified. Therefore, the transport unit 12 horizontally moves the container gripping and lifting unit 11 onto the vertical projection of the post-sorting rack 180 to be inserted, which is installed on the post-sorting tray 18, as indicated by arrow 202 in FIG. 2. When different attributes are mixed in the plurality of specimen containers 20 gripped by the container gripping and lifting unit 11, the order in which the specimen containers 20 are moved to the post-sorting rack 180 is appropriately determined, for example, in the order of the post-sorting racks 180 closer to the identification position.

[0016] Next, the gripping lifting mechanism for gripping the specimen container 20 of the attribute descends independently, inserts the specimen container 20 into the sorted rack 180 after sorting, releases the gripping, and then ascends. Here, when the container gripping lifting unit 11 is still gripping specimen containers 20 of different attributes, the container gripping lifting unit 11 horizontally moves onto the vertical projection of the sorted rack 180 corresponding to the attribute, and then inserts the specimen container 20. When all the plurality of specimen containers 20 gripped by the container gripping lifting unit 11 are inserted into the sorted rack 180, the conveying unit 12 horizontally moves the container gripping lifting unit 11 onto the vertical projection of the next specimen container 20 to be extracted, as indicated by the arrow 203 in FIG. 2.

[0017] The above-described operations are repeated until all the specimen containers 20 in all the pre-sorting racks 170 installed on the pre-sorting tray 17 are gone, or until any one of the sorted racks 180 installed on the post-sorting tray 18 is full. In the former case, that is, when all the pre-sorting racks 170 are emptied, the operator replaces the pre-sorting rack 170 with a new pre-sorting rack 170 on which the specimen containers 20 are placed, and then operates the operation unit 14 to resume the sorting operation. In the latter case, that is, when any one of the sorted racks 180 is full, the operator replaces the sorted rack 180 with a new empty sorted rack 180, and then operates the operation unit 14 to resume the sorting operation.

[0018] FIG. 3 is a perspective view showing a state in which the drawer supporting the tray of the specimen container sorting device according to the embodiment of the present invention is pulled out. The pre-sorting tray 17 is supported by a pre-sorting drawer 171, and the post-sorting tray 18 is supported by a post-sorting drawer 181. Hereinafter, the configuration of the post-sorting tray 18 will be described as an example, but the same applies to the pre-sorting tray 17.

[0019] The sorting tray 181 can be pulled out from the bottom to the front of the sample container sorting device 1, as shown by arrow 301 in Figure 3. The sorting tray 18 can be removed from the sorting tray 181, as shown by arrow 302 in Figure 3. Furthermore, the sorting rack 180 can be removed from the sorting tray 18, as shown by arrow 303 in Figure 3. Note that the sorting rack 180 can be removed from the sorting tray 18 even while the sorting tray 18 is still supported by the sorting tray 181.

[0020] Here, a rack mounting section corresponding to the shape and size of the sorted rack 180 is formed on the bottom upper surface of the sorted tray 18 by grooves, partitions, etc., and the sorted rack 180 is positioned relative to the sorted tray 18. If a user, including an operator, wants to use a sorted rack 180 that does not correspond to the shape or size of the rack mounting section of the existing sorted tray 18, they prepare a different sorted tray 18 with a different rack mounting section and replace the existing one. However, when the sorted tray 18 is replaced, that is, when it is changed to the desired sorted rack 180, the operator inputs the position information of the sorted rack 180, such as the number of racks, pitch, and reference coordinates, using the operation unit 14. When the operator inputs the position information, the control unit 16 automatically changes the position information of the sorting destination of the sample containers 20. In this way, the sample container sorting device 1 of this embodiment is highly versatile because it can use the desired rack according to the testing facility, such as a hospital, simply by replacing the tray and registering the position information of the rack.

[0021] Furthermore, the container gripping and lifting unit 11 of this embodiment has multiple gripping and lifting mechanisms 110a to 110d, each of which can be operated independently. Therefore, the processing speed is improved by simultaneously gripping and transporting the sample containers 20, and even if some of the gripping and lifting mechanisms fail, the other gripping and lifting mechanisms can continue to grip and transport the sample containers 20, which has the advantage of allowing maintenance to be performed at any time without stopping the sorting operation. The method of gripping multiple sample containers 20 will be specifically described below with reference to Figures 4 to 6.

[0022] Figure 4 is a side view showing how each gripping and lifting mechanism independently grips a sample container. Each gripping and lifting mechanism 110a to 110d of the container gripping and lifting unit 11 is equipped with an independent Z-axis movement mechanism, and determines the amount of movement according to the height of the sample containers 20a to 20d installed on the pre-sorting rack 170, and grips each sample container. Each gripping and lifting mechanism 110a to 110d is equipped with distance measuring means 111a to 111d, and can measure the distance to each sample container when it is in the gripping standby position on the vertical projection of the sample containers 20a to 20d. In addition, if the sample container 20 does not have a lid, the distance measuring means can also determine whether or not there is a sample inside the sample container 20, and sample containers 20 that do not contain a sample may not be sorted. It is also possible to confirm whether the gripping and lifting mechanism has been able to grip the sample container 20 using the distance measuring means 111a to 111d. If grasping fails, the retry operation may be performed until the target sample container 20 is successfully grasped. However, since grasping failure may be due to the placement of the sample container 20, the retry operation may be performed to grasp a different sample container 20 first.

[0023] Furthermore, as shown in Figure 4, if the pitch of the sample containers 20 in the pre-sorting rack 170 matches the spacing of each gripping lifting mechanism, the gripping lifting mechanisms 110a to 110d can simultaneously grip the sample containers 20a to 20d, enabling a high processing speed. For this reason, it is desirable to pre-adjust the installation spacing of the gripping lifting mechanisms 110a to 110d to match the pre-sorting rack 170 used in the testing facility. The adjustment of the installation spacing of the gripping lifting mechanisms may be done manually by the operator, or the control unit 16 may perform the adjustment automatically by inputting the pitch of the sample containers 20 etc. via the operation unit 14. Alternatively, a separate camera may be provided within the sample container sorting device 1 to monitor the pitch of the sample containers 20 in the pre-sorting rack 170, allowing the control unit 16 to automatically adjust based on the captured image.

[0024] Figure 5 is a side view showing an example where the pitch of the sample containers is smaller than the minimum spacing of the gripping and lifting mechanism. When the pitch of the sample containers is smaller than the minimum spacing of the gripping and lifting mechanism, it is desirable that the spacing of the gripping and lifting mechanism be set to an integer multiple of the pitch of the sample containers. Figure 5 shows that by setting the spacing of the gripping and lifting mechanisms 110a to 110d to three times the pitch of the sample containers 20a to 20d, each gripping and lifting mechanism can simultaneously grip two sample containers at a time. This makes it possible to grip multiple sample containers simultaneously and transport them efficiently, even for pre-sorting racks with a small pitch of sample containers, thereby improving processing speed.

[0025] Figure 6 is a plan view showing examples of sample containers to be grasped in each sorting cycle when sorting multiple sample containers in a pre-sorting rack using the grasping and lifting mechanism shown in Figure 5. A sorting cycle refers to one complete cycle that repeats the order of extraction, identification, and insertion, as shown in Figure 2. The numbers in Figure 6 indicate which sorting cycle it is.

[0026] From the perspective of improving processing speed, it is desirable that all gripping and lifting mechanisms grip the sample container 20 as much as possible when the container gripping and lifting unit 11 is in the identification position. In the example in Figure 6, in any of the sorting cycles (1) to (5), all four gripping and lifting mechanisms grip the sample container 20 after at least two lifting and lowering movements.

[0027] In the example shown in Figure 6, a pre-sorting rack 170 is used that can accommodate 10 sample containers 20 in 5 rows. On the other hand, as mentioned above, the container gripping and lifting section has four gripping and lifting mechanisms spaced at three times the pitch of the sample containers 20 installed in the pre-sorting rack 170. Therefore, in this embodiment, the first two rows of the pre-sorting rack 170 are sorted first, with "20" being one set, which is the least common multiple of "10" (the number of sample containers in each row) and "4" (the number of gripping and lifting mechanisms).

[0028] First, in cycle (1), with one lifting motion, four of the ten sample containers in the first row are grasped simultaneously. Next, in cycle (2), with the first lifting motion, the remaining three sample containers in the first row are grasped simultaneously, and with the second lifting motion, one of the ten sample containers in the second row is grasped. Furthermore, in cycle (3), with the first lifting motion, the remaining three sample containers in the first row are grasped simultaneously, and with the second lifting motion, one of the remaining sample containers in the second row is grasped. Then, in cycle (4), with one lifting motion, the remaining four sample containers in the second row are grasped simultaneously. Finally, in cycle (5), with the first lifting motion, the remaining two sample containers in the second row are grasped simultaneously, and with the second lifting motion, the remaining two sample containers in the second row are grasped simultaneously.

[0029] As described above, the sequence allows for the efficient sorting of 20 sample containers from the first two rows of the pre-sorting rack 170 in a total of eight lifting and lowering operations. Note that the sequence described above is merely an example; the appropriate sequence will be determined based on the type of pre-sorting rack 170, the number of gripping and lifting mechanisms, and other factors.

[0030] Figure 7 is a perspective view showing the positional relationship between the container identification unit and the container gripping lifting unit at the identification position. As mentioned above, when the container gripping lifting unit 11 is located at the identification position, basically all the gripping lifting mechanisms are gripping the sample container 20. Therefore, in order to identify the attributes of multiple sample containers 20 at once, it is necessary that all of the multiple sample containers 20 are included in the image captured by the camera (container identification unit 13). To this end, the control unit 16 of this embodiment controls the transport unit 12 so that, at the identification position, the multiple gripping lifting mechanisms are lined up in a row perpendicular to the camera's shooting direction. In order to maintain good accuracy in camera shooting, it is desirable to stop the transport unit 12 at the identification position. Furthermore, the row of multiple gripping lifting mechanisms does not have to be strictly perpendicular to the camera's shooting direction, and may have a deviation of a certain angle from the right angle (for example, ±3°). The position adjustment of the container gripping lifting unit 11 relative to the container identification unit 13 is basically performed by the control unit 16 controlling the transport unit 12, but as shown in Figure 7, the control unit 16 may also perform this by controlling the identification unit position adjustment mechanism 19 to which the container identification unit 13 is fixed.

[0031] Figure 8 is a side view showing how the container identification unit identifies barcodes attached to sample containers all at once. The gripping and lifting mechanisms 110a to 110d of the container gripping and lifting unit 11 are each equipped with independent rotation mechanisms, and can rotate the gripped sample container 20 as shown by the arrows 801a to 801d in Figure 8. When the container gripping and lifting unit 11 is in the identification position, the control unit 16 may rotate the sample container 20 using each gripping and lifting mechanism and identify the attributes of each sample container based on the barcode information of each sample container captured by the camera at that time. Here, prior to the identification of barcode information, the attributes of the sample container are identified by the color of the lid or the shape of the sample container. Therefore, if the identification result based on the barcode does not match the identification result based on the color of the lid of the sample container, the control unit 16 may output an error to the display unit 15 or the like. Double-checking by identifying sample containers by lid color and using barcodes allows for detection of incorrect sample collection in the wrong container and incorrect barcode application, thereby improving sorting accuracy.

[0032] Figure 9 is a side view showing how the liquid volume of a sample contained in a sample container is detected all at once. The control unit 16 rotates the sample container 20 and, based on the image captured by the camera, identifies the barcode information. From the moment of identification, it further rotates the sample container 20 by a predetermined angle using the gripping and lifting mechanisms 110a to 110d, as shown by arrows 901a to 901d in Figure 9. This positions the side of the sample container 20 other than the barcode attachment surface in front of the camera. At this time, the control unit 16 detects the liquid volume of the sample based on the image of the sample container 20 captured by the camera. One possible method for detecting the liquid volume is to extract the height of the edges in the gaps of the barcode from the captured image, and then calculate the amount of liquid considering the length information of the sample container, which is determined by the attributes of the sample container. The predetermined angle mentioned above is set appropriately depending on the barcode attachment area, for example, by half a rotation. If the detected liquid volume is not within the appropriate range, the control unit 16 can output an error to the display unit 15 or the like.

[0033] In addition, the control unit 16 may detect the gripping state of the sample container 20 by the gripping and lifting mechanism (for example, the tilt of the sample container) based on the image captured by the camera, and may output an error if the sample container 20 is not gripped correctly. Furthermore, if the sample container 20 is not gripped correctly, it may not be possible to properly insert the sample container 20 into the sorting rack 180, so the sorting destination may be a box-shaped container without restrictions, rather than a rack with restricted insertion locations such as holes.

[0034] Next, the structure of the gripping and lifting mechanism 110 according to this embodiment will be described with reference to Figures 10 and 11.

[0035] Figure 10 is a perspective view showing the overall configuration of a gripping and lifting mechanism according to an embodiment of the present invention. As shown in Figure 10, the gripping and lifting mechanism 110 has a Z-axis movement mechanism 113, which is driven in the Z-axis direction (vertical direction) by a first drive source 112. The first drive source 112 is equipped with a brake and is designed not to operate when the power is OFF. This makes it possible to hold the sample container at a predetermined height without dropping it, even in the event of a power outage or emergency stop. The gripping and lifting mechanism 110 also has a distance measuring means 111 that can measure the height of the sample container.

[0036] Figure 11 is a cross-sectional view showing the main part of a gripping and lifting mechanism according to an embodiment of the present invention. As shown in Figure 11, in the gripping and lifting mechanism 110 of this embodiment, power from the second drive source 114 is transmitted via the drive shaft 115 to the opening and closing operation of the claw tip 118. The claw tip 118 opens and closes by a cam structure and closes by spring force. In addition, the gripping and lifting mechanism 110 has a double structure in which the first one-way clutch 116 and the second one-way clutch 117 are arranged with respect to the drive shaft 115. That is, the first one-way clutch 116 is attached to the drive shaft 115 to lock the counter-clockwise (CCW) direction, and the second one-way clutch 117 is attached to the drive shaft 115 to lock the clockwise (CW) direction. As a result, when the drive shaft 115 rotates in the CW direction 1101, the rotation of the drive shaft 115 is transmitted to the first one-way clutch 116, and by rotating between the second one-way clutch 117, the specimen container can be rotated while maintaining the gripping state without rotating the cam. On the other hand, when the drive shaft 115 rotates in the CCW direction 1102, only the drive shaft 115 rotates, so the claw tip 118 opens and closes due to the cam structure. At this time, the rotational force transmitted from the drive shaft 115 to the first one-way clutch 116 can be stopped by locking the second one-way clutch 117.

[0037] Thus, the gripping and lifting mechanism 110 of this embodiment can be miniaturized because it can perform the gripping and releasing operations of the sample container, that is, the opening and closing operation of the claw tip 118 and the rotation operation of the gripped sample container, using the same second drive source 114. [Explanation of symbols]

[0038] 1...Sample container sorting device, 11...Container gripping and lifting unit, 12...Transporting unit, 13...Container identification unit, 14...Operation unit, 15...Display unit, 16...Control unit, 17...Pre-sorting tray, 18...Post-sorting tray, 19...Identification unit position adjustment mechanism, 20, 20a~20d...Sample containers, 110, 110a~110d...Gripping and lifting mechanism, 111, 111a~111d...Distance measuring means, 112...First drive source, 113...Z-axis movement mechanism, 114...Second drive source, 115...Drive shaft, 116...First one-way clutch, 117...Second one-way clutch, 118...Claw, 170...Pre-sorting rack, 171...Drawer for pre-sorting, 180...Post-sorting rack, 181...Drawer for post-sorting

Claims

1. A container gripping and lifting unit that grips the specimen container containing the specimen and moves it vertically, A conveying unit that moves the container gripping and lifting unit in the horizontal direction, A container identification unit that identifies the attributes of the sample container, A control unit that controls the container gripping and lifting unit, the transporting unit, and the container identification unit, Equipped with, A sample container sorting device that sorts the sample containers from a first rack containing a mixture of sample containers of different attributes into a second rack, each rack being different according to its attribute, The specimen container sorting device is characterized in that the control unit has the container gripping lifting unit grip a plurality of specimen containers, and the container identification unit identifies the attributes of the plurality of specimen containers.

2. In the specimen container sorting device according to claim 1, The container gripping and lifting section has a plurality of independent gripping and lifting mechanisms, The control unit, After controlling the transport unit to move the container gripping and lifting unit horizontally onto the vertical projection of the second rack corresponding to the attribute identified by the container identification unit, A sample container sorting device characterized by controlling the gripping and lifting mechanism to independently lower the sample container identified by the container identification unit and insert it into the second rack.

3. In the specimen container sorting device according to claim 1, A tray having a rack mounting section formed therein that corresponds to the shape and size of the first rack or the second rack, A drawer that supports the aforementioned tray, Furthermore, The specimen container sorting device is characterized in that the tray can be replaced with one of a different type in the rack mounting section.

4. In the specimen container sorting device according to claim 3, A specimen container sorting device characterized in that, when the tray is replaced, the control unit changes the position information of the first rack or the second rack.

5. In the specimen container sorting device according to claim 2, The container identification unit is a camera that photographs the sample container, The specimen container sorting device is characterized in that the control unit has multiple gripping and lifting mechanisms positioned in a line perpendicular to the shooting direction of the camera, and the container identification unit identifies the attributes of multiple specimen containers.

6. In the specimen container sorting device according to claim 2, The container identification unit is a camera that photographs the sample container, A sample container sorting device characterized in that the attributes of the sample container are identified based on the color of the lid of the sample container or the shape of the sample container included in the image captured by the camera.

7. In the specimen container sorting device according to claim 6, The gripping and lifting mechanism includes a rotation mechanism for rotating the gripped sample container. The control unit identifies the attributes of the sample container based on the barcode of the sample container captured by the camera when the sample container is rotated. A sample container sorting device characterized in that an error is output if the identification result based on the color or shape of the sample container does not match the identification result based on the barcode.

8. In the specimen container sorting device according to claim 2, The container identification unit is a camera that photographs the sample container, The gripping and lifting mechanism includes a rotation mechanism for rotating the gripped sample container. The control unit is characterized in that, after the camera photographs the barcode of the sample container, the sample container is rotated by the rotation mechanism by a predetermined angle, and then the liquid volume of the sample is detected based on the image of the sample container taken by the camera.

9. In the specimen container sorting device according to claim 2, The aforementioned gripping and lifting mechanism is characterized by a double structure of one-way clutches, which enables the gripping and releasing of the sample container and the rotation of the gripped sample container to be performed by a common drive source, thereby enabling the sample container sorting device.

Citation Information

Patent Citations

  • Test tube screening device and method, sample analysis system and storage medium

    CN112147355A

  • Specimen conveying system

    JP2000081439A

  • Vessel transferring device

    JP2005154109A

  • Sorting device

    JP2013140141A

  • Specimen replacement device and specimen processing system

    JP2015068727A