METHOD OF OPERATING A PIPETTING SYSTEM, A PIPETTING SYSTEM, A TOOL, AND A COMPUTER-IMPLEMENTED METHOD
20230408540 · 2023-12-21
Inventors
Cpc classification
B01L3/0237
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A method is described of operating a pipetting system (10) that has a worktable (12), at least one manipulator arm (18), and first and second Z-rods (20,20) arranged on the at least one manipulator arm (18). The method involves receiving by the second Z-rod (20) a tool (24) via an adapter attached to the second Z-rod (20), wherein the tool (24) has a central axis and a working area, the working area being defined by a circle which center is located on the central axis of the tool (24) and which radius being a distance between the central axis and a largest extension of an outline of the tool (24) in a projection.
Claims
1. A method of operating a pipetting system (10) comprising a worktable (12), at least one manipulator arm (18) and a plurality of Z-rods (20,20) arranged on the at least one manipulator arm (18), said plurality of Z-rods (20,20) comprise a first Z-rod (20) and second Z-rod (20), said first Z-rod (20) comprises a fixed tip (22;46) or a disposable tip (36) attached to said first Z-rod (20) via a connecting feature (40), wherein the first Z-rod (20) comprises a Z-axis (ZA) defined along a central axis of the fixed tip (22;46) or disposable tip (36), said method comprising the step of: receiving by said second Z-rod (20) a tool (24) via an adapter (34) attached to said second Z-rod (20), wherein said tool (24) comprises a central axis (CA) and a working area (WA), said working area (WA) being defined by a circle which center is located on the central axis (CA) of said tool (24) and which radius (R) being a distance between said central axis (CA) and a largest extension of an outline of the tool (24) in a projection, and the method further comprises the steps of: traversing the Z-rods (20,20) such that the working area (WA) of the respective tool (24) is penetrated orthogonally by the Z-axis (ZA) of the first Z-rod (20), as viewed in longitudinal direction of said first Z-rod (20), operating on the fixed tip (22;46) or disposable tip (36) of the first Z-rod (20) by means of the tool (24) of the second Z-rod (20), putting aside the tool (24) received by the second Z-rod (20) on a docking station (28) subsequent to said operating, or traversing the Z-rods (20,20) such that the Z-axis (ZA) of the first Z-rod (20) and the working area (WA) of the respective tool (24), as viewed in longitudinal direction of said first Z-rod (20), at least partially overlap a target area (TA) comprised by a target (16) operable by means of the tool (24) of the second Z-rod (20), operating on the target (16) by means of the tool (24) of the second Z-rod (20) and/or by means of the fixed tip (22;46) or the disposable tip (36) of the first Z-rod (20), putting aside the tool (24) received by the second Z-rod (20) on a docking station (28) subsequent to said operating.
2. The method according to claim 1, wherein the tool is a downholding means (30).
3. The method according to claim 2, wherein operating on the target (16) comprises abutting the target (16) from above by means of the downholding means (30) such to fix the target (16) in relation to the worktable (12).
4. The method according to claim 2, wherein operating on the target (16) comprises: piercing a membrane (43) comprised by the target (16) from above by means of the fixed tip (22), introducing the fixed tip (22) at least partially into the target (16) via the piercing, aspirating or dispensing liquid (45) from or rather into the target (16) via the fixed tip (22).
5. The method according to claim 4, wherein operating on the target (16) comprises withdrawing the fixed tip (22) from the target (16) via the piercing while still abutting the target (16) from above by means of the downholding means (30).
6. The method according to claim 1, wherein the tool (24) is a piercing means (38) comprising a central opening (44).
7. The method according to claim 6, wherein operating on the target (16) comprises piercing a membrane (43) comprised by the target (16) from above by means of the piercing means (38) such to provide the membrane (43) with an opening.
8. The method according to claim 7, wherein operating on the target (16) comprises: introducing the disposable tip (36) or fixed tip (22;46) at least partially into the target (16) via the opening or via the central opening (44) of the piercing means (38), aspirating or dispensing liquid (45) from or rather into the target (16) via the disposable tip (36) or fixed tip (22;46), withdrawing the disposable tip (36) or fixed tip (22,46) from the target via the opening or via the central opening (44) of the piercing means (38).
9. The method according to claim 1, wherein the tool (24) is a receptacle (50) comprising a drip catcher (52).
10. The method according to claim 9, wherein operating on the fixed tip (22,46) or disposable tip (36) of the first Z-rod (20) comprises traversing the second Z-rod (20) such to place the drip catcher (52) of the receptacle (50) beneath the fixed tip (22,46) or disposable tip (36).
11. The method according to claim 10, further comprising traversing the first Z-rod (20) across the worktable (12) and further traversing the second Z-rod (20) in parallel movement to the movement of the first Z-rod (20) such to continuously place the drip catcher (52) of the receptacle (50) beneath the fixed tip (22,46) or disposable tip (36).
12. A pipetting system (10) comprising a worktable (12), at least one manipulator arm (18) and a plurality of Z-rods (20,20) arranged on the at least one manipulator arm (18), said plurality of Z-rods (20,20) comprise a first Z-rod (20) and a second Z-rod (20), said first Z-rod (20) comprises a fixed tip (22;46) or comprises a disposable tip (36) attached to said first Z-rod (20) via a connecting feature (40), wherein the first Z-rod (20) comprises a Z-axis (ZA) defined along a central axis of the fixed tip (22;46) or disposable tip (36), wherein the pipetting system (10) is adapted to: receiving by said second Z-rod (20) a tool (24) via an adapter (34) attached to said second Z-rod (20), wherein said tool (24) comprises a central axis (CA) and a working area (WA), said working area (WA) being defined by a circle which center is located on the central axis (CA) of said tool (24) and which radius (R) being a distance between said central axis (CA) and a largest extension of an outline of the tool (24) in a projection, and wherein the pipetting system (10) is further adapted to: traversing the Z-rods (20,20) such that the working area (WA) of the respective tool (24) is penetrated orthogonally by the Z-axis (ZA) of the first Z-rod (20), as viewed in longitudinal direction of said first Z-rod (20), operating on the fixed tip (22;46) or disposable tip (36) of the first Z-rod (20) by means of the tool (24) of the second Z-rod (20), putting aside the tool (24) received by the second Z-rod (20) on a docking station (28) subsequent to said operating, or traversing the Z-rods (20,20) such that the Z-axis (ZA) of the first Z-rod (20) and the working area (WA) of the respective tool (24), as viewed in longitudinal direction of said first Z-rod (20), at least partially overlap a target area (TA) comprised by a target (16) operable by means of the tool (24) of the second Z-rod (20), operating on the target (16) by means of the tool (24) of the second Z-rod (20) and/or by means of the fixed tip (22;46) or the disposable tip (36) of the first Z-rod (20), putting aside the tool (24) received by the second Z-rod (20) on a docking station (28) subsequent to said operating.
13. The pipetting system (10) according to claim 12, wherein the tool (24) comprises a downholding means (30), a piercing means (38) or a receptacle (50).
14. A tool (24) for operating on a target (16) in a pipetting system (10) according to claim 12, wherein said tool (24) comprises a downholding means (30) or a piercing means (38).
15. A tool (24) for operating on a target (16) in a pipetting system (10) according to claim 13, wherein said tool (24) comprises a downholding means (30) or a piercing means (38).
16. A computer-implemented method for controlling at least one manipulator arm (18) with at least two Z-rods (20,20) of a pipetting system (10) according to claim 12 according to the method of any one of claim 1.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0049] Exemplary embodiments of the present invention are explained in further detail hereinafter with references to the figures. These merely serve for explanation and should not be interpreted as restrictive. In the figures
[0050]
[0051]
[0052]
[0053]
[0054]
[0055]
[0056]
[0057]
[0058]
[0059]
[0060]
DETAILED DESCRIPTION OF THE INVENTION
[0061]
[0062] The pipetting system 10 further comprises a manipulator arm 18 which can be moved ahead of the worktable 12 along the X-direction. The manipulator arm 18 supports two Z-rods 20,20, which are shown arranged in succession, both elongated in Z-direction. The two Z-rods 20,20 itself can be driven along the manipulator arm 18 in Y-direction. In doing so, the Z-rods 20,20 can be transferred such that projections thereof can reach nearly every position on the worktable 12. Lower ends of the Z-rods 20,20 are configured to receive a respective means, to be explained in the following. The lower ends of the Z-rods 20,20 can be individually driven upwards or downwards via e.g. a respective gear rack drive. The two Z-rods 20,20 are shown arranged along the manipulator arm 18 side by side. However, while not shown, the two Z-rods 20,20 can be arranged on the manipulator arm 18 such to be spaced apart from each other via one or more further Z-rods interposed between the two Z-rods 20,20. Further, while not shown, the pipetting system 10 can comprise more than one manipulator arm. In the case of the pipetting system comprises more than one manipulator arm, the two Z-rods 20,20 can be arranged on different manipulator arms, e.g. adjacent manipulator arms.
[0063] The first Z-rod 20 is equipped with a fixed tip 22. The second Z-rod 20 is equipped with a fixed tip 22 (refer to
[0064] The pipetting system 10 can further comprise at least one docking station 28, which can be arranged on the worktable 12. The docking station 28 can be configured to receive the tool 24 via a coupling 29 comprised by the respective tool 24. The coupling 29 can comprise position bores arranged such to correspond to pins P comprised by the docking station 28, to be explained in further detail in the following. In doing so, the tool 24 can be attached or rather pinned to the docking station 28 laterally such to achieve a positive connection in at least vertical direction. In this situation, the second Z-rod 20 can be moved upwards, resulting in a separation of the tool 24 from the second Z-rod 20 while the tool 24 remains attached or rather pinned to the docking station 28.
[0065] The tool 24 can be placed or rather stored on the docking station 28 as far as not required for operation. In this case, the second Z-rod 20 can be used ordinary, e.g. for liquid handling. The docking station 28 can receive two tools 24 in a back-to-back manner. Further, several docking stations 28 can be arranged next to one another on the worktable 12. In order to avoid an undesired lateral slippage of the tool(s) 24 from the docking station 28, both can be magnetic or magnetizable and at least one of the two elements comprises a permanent magnet, to be explained in further detail in the following.
[0066]
[0067] While the first Z-rod 20 is shown equipped with the fixed tip 22, the second Z-rod 20 is shown equipped with the fixed tip 22 and the tool 24. The second Z-rod 20 receives the tool 24 by its coupling 29 via an adapter attached to said second Z-rod 20, to be described in further detail in the following. Advantageously, no further modification on one of the Z-rods 20,20 is requiredthe tool 24, via it's coupling 29, is simply detachably received by the second Z-rod 20 by means of e.g. a clip-mechanism. Therefore, in the shown case, the fixed tip 22, which is already mounted on the second Z-rod 20, can remain in place or rather on standby, since the tool 24 is received on a surrounding thereof. Hence, only as many tools are used as necessarily required for a respective operation, resulting in reduced deployment of tools. Further advantageously, an increased number of Z-rods can be equipped with fixed tips, which results in an increased throughput or rather performance of the pipetting system.
[0068] In the shown example, the tool 24 comprises a downholding means 30. The downholding means 30 is configured to abut the target from above such to fix the target in relation to the worktable (refer to
[0069] The both Z-rods 20,20 perform a collaborative interaction: while the second Z-rod 20, via the downholding means 30, abuts the target from above in order to securely fix it in relation to the worktable, the first Z-rod 20 performs steps which can e.g. comprise ordinary liquid handling steps.
[0070] The downholding means 30 comprises an abutment 32, which, at least in a bottom portion thereof, can be formed U-like or rather horseshoe-like. This design allows lateral passage or rather entrance of the fixed tip 22 to a substantially central portion of the bottom portion, substantially surrounded by the abutment 32. While not shown, the abutment 32, at least in the bottom portion thereof, can be formed ring-like. In this design, the two Z-rods 20,20 have to be moved vertically in relation to each other such to allow traversal of the fixed tip 22 above the ring to a substantially central portion of the ring, wherein such traversal is performed by horizontally moving the two Z-rods 20,20 in relation to each other.
[0071] The first Z-rod 20 comprises a Z-axis ZA defined along a central axis of the fixed tip 22. The abutment 32 of the downholding means 30 in turn comprises a central axis CA and a working area WA, as best seen in
[0072] The Z-rods 20,20 can be traversed such that the Z-axis ZA of the first Z-rod 20 and the working area WA of the abutment 32 of the downholding means 30, as viewed in longitudinal direction of said first Z-rod 20, at least partially overlap a target area TA (schematically indicated by a dashed circle) comprised by the target operable by means of the abutment 32 of the downholding means 30 of the second Z-rod 20. This allows operating on the target by means of the abutment 32 of the downholding means 30 of the second Z-rod 20 (fixing the target in relation to the worktable) and/or by means of the fixed tip 22 of the first Z-rod 20 (penetrating the membrane of the target, aspirating/dispensing liquid, etc.).
[0073] In case of further operation with the downholding means 30 is no longer required, the downholding means 30 can be simply set aside on the docking station 28 (refer to
[0074] The body of the coupling 29 can comprises magnet bores MB which extend substantially perpendicular to the recess and in which magnets M are arranged at a distance from the recess. For example, the magnet bores MB are arranged on the opposite side of the holding device 33 and end at a distance from the recess of the holding device 33. The magnets M can be cylindrical permanent magnets which are let into the magnet bores MB. The docking station 28 (refer to
[0075]
[0076] The first Z-rod 20 is equipped with an adapter 34 comprising a connecting feature 40, which, via its distal end, receives a disposable tip 36. The second Z-rod 20 is equipped with an adapter 34, too, comprising a connecting feature 40, which, via its distal end, receives the tool 24, which in the shown example is embodied as a piercing means 38.
[0077] The adapters 34,34 can be connected to the Z-rods 20,20 via e.g. a screw connection. The distal ends of the adapters 34,34 are provided with the connecting features 40,40, respectively, which can comprise one or more bulges. The disposable tip 36 as well as the piercing means 38 can be attached to the adapters 34,34, respectively, simply by means of a clip mechanism. For fetching disposable tips, the connecting feature 40,40 acts as pipetting cones. In an example, the disposable tip 36 and/or the piercing means 38 can be provided with an elastomer material (not shown), which can lock or rather snuggly fit to the bulge. In an example, the elastomer material can comprise an O-ring or a torsion spring, which can click into place by simply being transferred in upward direction across the bulge. In an example, the connecting feature 40,40 can comprise a notch. The elastomer material can simply snap into the notch.
[0078] The distal end of the piercing means 38 is provided with a circular piercer 42, which is formed chamfered in downward direction. Pushing the piercer 42 from above to a membrane 43 of the target 16 results in piercing the membrane 43 such to provide thereof with an opening. The piercer 42 is provided with a central opening 44, which allows passage of the disposable tip 36 affixed to the first Z-rod 20.
[0079] The shown embodiment allows piercing the membrane 43 from above by means of the piercer 42 of the piercing means 38 such to provide the membrane 43 with an opening. Subsequently, the disposable tip 36 comprised by the first Z-rod 20 can be introduced at least partially into the target 16 via the thus created opening or rather via the central opening 44 of the piercing means 38, such to reach a liquid 45 filled into the target 16. Said liquid 45 can be aspirated from the target 16 via the disposable tip 36. Otherwise, a liquid can be dispensed into the target 16. Afterwards, the disposable tip 36 can be withdrawn from the target 16 via the opening or via the central opening 44 of the piercing means 38.
[0080] Advantageously, this embodiment allows to operate on the target 16, which is provided with or rather sealed by the membrane 43, by means of the disposable tip 36, which distal end is rather formed blunt and otherwise unsuitable for piercing. Further advantageously, said operation can be performed rapidly, by allowing passage of the disposable tip 36 (comprised by the first Z-rod 20) through the central opening 44 of the piercer 42 of the piercing means 38 (comprised by the second Z-rod 20). The steps of piercing the membrane 43 and introducing the disposable tip 36 can be performed almost simultaneously, thus allowing an increased throughput. The inventive collaborative interaction between the two Z-rods 20,20 provides improvements which are unknown so far.
[0081] The first Z-rod 20 comprises a Z-axis ZA defined along a central axis of the disposable tip 36. The piercer 42 of the piercing means 38 in turn comprises a central axis CA and a working area WA, as best seen in
[0082] The Z-rods 20,20 can be traversed such that the Z-axis ZA of the first Z-rod 20 and the working area WA of the piercer 42 of the piercing means 38, as viewed in longitudinal direction of said first Z-rod 20, at least partially overlap a target area TA (schematically indicated by a dashed circle) comprised by the target 16 operable by means of the piercer 42 of the piercing means 38 of the second Z-rod 20. This allows operating on the target by means of the piercing means 38 of the second Z-rod 20 (piercing the membrane 43 from above) and/or by means of the disposable tip 36 of the first Z-rod 20 (introducing the disposable tip 36 at least partially into the target 16 via the opening, aspirating or dispensing liquid, etc.).
[0083]
[0084] The first Z-rod 20 is equipped with a fixed tip 46. The second Z-rod 20 is equipped with a fixed tip 46, as well. Both fixed tips 46,46 can be attached to the Z-rods 20,20 by means of a screw connection. Both, the first and second fixed tips 46,46 comprise a connecting feature 48,48, which can comprise a bulge formed at a lower end thereof. The second Z-rod 20 is schematically shown to receive the tool 24, which is configured as a receptacle 50.
[0085] The receptacle 50 can be attached to the connecting feature 48 simply by means of a clip mechanism. In an example, the clip mechanism can be provided by an elastomer material (not shown), which can lock or rather snuggly fit to the bulge. In an example, the elastomer material can comprise an O-ring or a torsion spring, which can click into place by simply being transferred in direction to the above across the bulge. In an example, the connecting feature 48,48 can comprise a notch. The elastomer material can simply snap into the notch.
[0086] The receptacle 50 comprises a drip catcher 52, adapted to receive or rather catch drips which might drip from the first fixed tip 46. In doing so, the first and second Z-rods 20,20 are traversed in relation to each otheror rather collaborativelysuch to place the drip catcher 52 beneath the first fixed tip 46. Hence, collaborative interaction between the first and second Z-rods 20,20 allows to prevent that droplets, which might probably drip from the distal end of the first fixed tip 46, might drop into further liquids, which might be filled in respective containers provided on the worktable. Hence, the risk of contamination of further liquids is highly reduced.
[0087] The first Z-rod 20 comprises a Z-axis ZA defined along a central axis of the first fixed tip 46. The drip catcher 52 of the receptacle 50 in turn comprises a central axis CA and a working area WA, as best seen in
[0088] The Z-rods 20,20 can be traversed such that the working area WA of the drip catcher 52 of the receptacle 50 is penetrated orthogonally by the Z-axis ZA of the first Z-rod 20, as viewed in longitudinal direction of said first Z-rod 20. This allows operating on the first fixed tip 22 of the first Z-rod 20 by means of the drip catcher 52 of the receptacle 50 of the second Z-rod 20. Operating on the fixed tip 22 of the first Z-rod 20 can comprise traversing the second Z-rod 20 such to place the drip catcher 52 of the receptacle 50 beneath the fixed tip 22. Said operating can further comprise traversing the first Z-rod 20 across the worktable 12 and further traversing the second Z-rod 20 in parallel movement to the movement of the first Z-rod 20 such to continuously place the drip catcher 52 of the receptacle 50 beneath the fixed tip 22.
[0089] Those skilled in the art will be able to integrate or combine different embodiments or examples and features of different embodiments or examples described herein as long as they do not contradict each other.
REFERENCE SIGNS LIST
[0090] 10 pipetting system [0091] 12 worktable [0092] 14 carrier [0093] 16 target [0094] 18 manipulator arm [0095] 20,20 Z-rod [0096] 22,22 fixed tip [0097] 24 tool [0098] 26,26 hose [0099] 28 docking station [0100] 29 coupling [0101] 30 downholding means (as tool 24) [0102] 32 abutment [0103] 33 holding device [0104] 34,34 adapter [0105] 36 disposable tip [0106] 38 piercing means (as tool 24) [0107] 40,40 connecting feature [0108] 42 piercer [0109] 43 membrane [0110] 44 central opening [0111] 45 liquid [0112] 46,46 fixed tip [0113] 48,48 connecting feature [0114] 50 receptacle (as tool 24) [0115] 52 drip catcher [0116] CA Central Axis [0117] M Magnet [0118] MB Magnet Bore [0119] P Pin [0120] PB Position Bore [0121] R Radius of Working Area [0122] TA Target Area [0123] WA Working Area [0124] ZA Z-Axis