CONFIGURABLE PLACEMENT INDICATION FOR SAMPLE TUBE RACK RECEPTACLES

20210322994 · 2021-10-21

    Inventors

    Cpc classification

    International classification

    Abstract

    Body fluid sample carrier for use in a body fluid analyser and body fluid analyser using a body fluid sample carrier, wherein the body fluid sample carrier has a plurality of rack receptacles and a plurality of marker receptacles for receiving corresponding markers in order to improve the association between racks positioned on the carrier and the correct position on the carrier.

    Claims

    1. A body fluid sample carrier for use in a body fluid analyzer, the body fluid sample carrier (100) comprises a frame (101) having: a plurality of rack receptacles (10) along a longitudinal extension of the body fluid sample carrier (100), an arrangement of one or more rack receptacles (10) is adapted for receiving a rack (300) having one or more cavities for carrying a container (301) for body fluids; a plurality of marker receptacles (20) each being adapted for receiving a marker; wherein each of the plurality of marker receptacles (20) is associated to at least one of the plurality of rack receptacles (10); wherein each of the plurality of marker receptacles (20) is adapted to receive a marker being indicative for a rack of body fluids in the respective rack receptacles (10) or a space between racks of body fluids in the respective rack receptacles (10).

    2. The body fluid sample carrier according to claim 1, further comprising at least one marker (30), wherein the marker is adapted to be received by one of the marker receptacles (20) of the frame (101), wherein the marker carries optical information.

    3. The body fluid sample carrier according to claim 2, wherein the optical information is a color code.

    4. The body fluid sample carrier (100) according to claim 2, wherein the optical information comprises an arrow indicative of a mounting direction of the body fluid sample carrier (100) for mounting the body fluid sample carrier (100) in a body fluid analyzer (200).

    5. The body fluid sample carrier (100) according to claim 2, wherein the optical information comprises an input attribute indicative of an input region of the body fluid sample carrier (100) configured to carry at least one rack (300) to be supplied to a body fluid analyzer (200) for processing.

    6. The body fluid sample carrier (100) according to claim 2, wherein the optical information comprises an output attribute indicative of an output region of the body fluid sample carrier (100) configured to carry at least one rack (300) that had been processed by a body fluid analyzer (200).

    7. Body fluid sample carrier (100) according to claim 2, wherein the optical information comprises a blockage attribute indicative of a region of the body fluid sample carrier (100) configured to carry at least one rack (300) that should not be removed.

    8. The body fluid sample carrier according to claim 2, wherein the optical information comprises at least one of an icon attribute and a text attribute.

    9. The body fluid sample carrier according to claim 2, wherein the marker (30) is adapted to reveal the optical information from both, a side view of the body fluid sample carrier (100) and a top view of the body fluid sample carrier (100).

    10. The body fluid sample carrier according to claim 2, wherein each of the markers comprises a first plated section (31), which, when being received in the respective marker receptacle (20), extends in a top-down direction along a longitudinal extension of the body fluid sample carrier (100), and a second plated section (32), which, when being received in the respective marker receptacle (20), extends in a direction perpendicular to the first plated section (31) along a longitudinal extension of the body fluid sample carrier (100).

    11. The body fluid sample carrier according to claim 10, wherein the second plated section (32) is adapted to serve as a finger grip.

    12. The body fluid sample carrier according to claim 11, wherein the marker receptacles (20) each comprise a bay arrangement (21, 22) for receiving a marker from a top-down mounting direction.

    13. The body fluid sample carrier according to claim 12, wherein the bay arrangement (21, 22) comprises two pockets (21, 22), each pocket being oriented to be open toward an upward direction and toward each other in a direction along the longitudinal extension of the body fluid sample carrier (100).

    14. The body fluid sample carrier according to claim 1, wherein the marker receptacles (20) each comprise a magnetic attachment area (23) for receiving a marker in a magnetic adhesive manner.

    15. The body fluid sample carrier according to claim 14, wherein the magnetic attachment area (23) comprises a magnet arrangement (25), wherein the marker (30) comprises a magnet arrangement (35), wherein the magnet arrangement (25) on the magnetic attachment area (23) and the magnet arrangement (35) on the marker (30) are matched to each other in a manner that the cooperation between the magnet arrangement (25) on the magnetic attachment area (23) and the magnet arrangement (35) on the marker (30) brings the marker (30) in a predetermined position when being attached.

    16. The body fluid sample carrier according to claim 2, wherein the marker receptacle (20) further comprises an arrangement of protrusions and/or detentions (28, 29), wherein the marker (30) further comprises an arrangement of protrusions and/or detentions (38, 39), wherein the arrangement of protrusions and/or detentions (28, 29) of the marker receptacle and the arrangement of protrusions and/or detentions (38, 39) of the marker match with each other according to allowed combinations of a marker receptacle (20) and a corresponding marker (30).

    17. The body fluid sample carrier according claim 1, further comprising a detecting unit (40) being adapted to detect at least one of an information comprised in the marker (30) and a position of the marker (30) on the body fluid sample carrier (100).

    18. A body fluid analyzer (200) comprising: a track (210) for a body fluid sample carrier according to claim 1 to be used in connection with the body fluid analyzer (200); a receiver (250) for receiving an information comprised in a marker or a position of a marker being detected by at least one of a detecting unit being provided at a body fluid sample carrier to be used in connection with the body fluid analyzer and a detecting unit being provided at the body fluid analyzer; a processor unit (260) being adapted to control a graphical user interface to be connected to the body fluid analyzer (200); wherein the processor unit (260) is adapted to collect from the receiver (250) at least one of an information comprised in a marker and a position of a marker on the body fluid sample carrier to be used in connection with the body fluid analyzer (200); wherein the processor unit (260) is adapted to control a graphical user interface to be connected to the body fluid analyzer (200) to display a rack scheme in correspondence with the actual body fluid sample carrier being used in connection with the body fluid analyzer.

    19. The body fluid analyzer according to claim 18, further comprising a detecting unit (240) being adapted to detect at least one of an information comprised in a marker and a position of a marker on a body fluid sample carrier to be used in connection with the body fluid analyzer (200), wherein the detecting unit (240) provides the detected information with the receiver (250).

    20. A method for marking a body fluid sample carrier for use in a body fluid analyzer, the method comprising: arranging (S10) at least one rack (300) having one or more cavities for carrying a container (301) for body fluids to a respective number of one or more of a plurality of rack receptacles (10) along a longitudinal extension of the body fluid sample carrier (100), each rack receptacle (10) being adapted for receiving at least a part of a rack (300); arranging (S20) at least one marker (30) on a respective one of a plurality of marker receptacles (20) on a frame (101) of a body fluid sample carrier (100), each of a plurality of marker receptacles (20) being adapted for receiving a marker; wherein each of the plurality of marker receptacles (20) is associated to at least one of the plurality of rack receptacles (10); wherein the at least one of the plurality of markers (30) on the marker receptacles (20) is indicative for a rack of body fluids in the respective associated rack receptacles (10) or a space between racks of body fluids in the respective rack receptacles (10).

    21. The method of claim 20, the method further comprising: moving (S30) the body fluid sample carrier along a track of a body fluid analyzer (200); detecting (S40) at least one of an information comprised in a marker (30) and a position of a marker on a body fluid sample carrier (100) to be used in connection with the body fluid analyzer (200), receiving (S50) the detected information and/or position with the receiver (250) of a processor unit (260); processing (S60) the detected information and/or position for at least one of a check routine and a visualization of the racks on the body fluid sample carrier based on the information on the marker and the position of the marker.

    22. The method of claim 21, further comprising: controlling (S70) a graphical user interface to be connected to the body fluid analyzer (200) based on the processed detected marker information and/or marker position to display a rack scheme in correspondence with the actual body fluid sample carrier being used in connection with the body fluid analyzer.

    23. The method of claim 20, wherein the detection (S40) takes place in a body fluid analyzer (200).

    Description

    BRIEF DESCRIPTION OF THE FIGURES

    [0049] In the following it is referred to the following figures and drawings in order to explain the exemplary embodiments in detail. In the following,

    [0050] FIG. 1 illustrates a perspective view of a body fluid sample carrier as well as a detailed enlargement of a marker receptacle with marker according to an exemplary embodiment;

    [0051] FIG. 2 illustrates a perspective view of a loaded body fluid sample carrier having racks of different sizes and being positioned on a drawer according to an exemplary embodiment;

    [0052] FIG. 3 illustrates a top view of a body fluid sample carrier having positioned different racks of different sizes thereon according to an exemplary embodiment;

    [0053] FIG. 4 illustrates a schematic view of a detection arrangement on the body fluid sample carrier site and/or a body fluid analyser site according to an exemplary embodiment;

    [0054] FIG. 5 illustrates a first magnetic arrangement combination of a marker receptacle and a respective marker according to an exemplary embodiment;

    [0055] FIG. 6 illustrates another magnetic arrangement of a marker receptacle and a corresponding marker according to an exemplary embodiment; and

    [0056] FIG. 7 illustrates another magnet arrangement of a marker receptacle and a marker in combination with a protrusion and/or detention arrangement on the marker receptacle and the marker site.

    [0057] FIG. 8 illustrates a flow chart of a method according to an exemplary embodiment of the invention.

    DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENTS

    [0058] FIG. 1 illustrates a body fluid sample carrier 100. The body fluid sample carrier of FIG. 1 has integrated features, which act as receptacles for markers or chips, which may be for example coloured markers. The markers can be inserted into receptacles so as to visualise the correct expected positions on the rack. For this purpose, the body fluid sample carrier 100 has a frame 101, wherein the frame has rack receptacles 10 to receive racks. The body fluid sample carrier may have a plurality of rack receptacles 10 which may have a similar or corresponding shape, in order to have a modular positioning concept for the racks on the body fluid sample carrier as can be seen from following figures which will be described later. It should be noted that the receptacles may also have different shapes, if it is intended to allow only particular kinds of racks, which then may have a corresponding coupling geometry. The frame 101 has marker receptacles 20 for receiving markers 30. As can be seen from the enlarged view of FIG. 1, the marker receptacles 20 may have particular features 21, 22, for receiving the markers 30 and to keep the markers 30 in the correct position. The marker receptacles 30 may have the same size and shape so as to provide a modular system. It should be noted that the marker receptacles may also have different shapes, if it is intended to allow only particular kinds of markers, which then may have a corresponding coupling geometry. Although not illustrated in detail, a marker may also have a larger size to cover more than one receptacle. In particular, if adjacent receptacles are to be provided with the same marker type, a lager marker can be used to cover the corresponding plurality of receptacles. In case a rack is larger and covers more than one rack receptacles, also the size of the marker receptacle can be made larger, so that a marker receptacle is allocated to a plurality of rack receptacles. In this case a larger marker can be used for the larger marker receptacle so as to indicate a corresponding occupation of a plurality of rack receptacles.

    [0059] The markers 30 may have a first plated section 31 and a second plated section 32. The first plated section faces a lateral side of the body fluid sample carrier so that the marker is perceivable from the side. The marker 30 may also have the second face 32, which is arranged in a perpendicular direction to the first face 31 in order to make the marker perceivable from a top view. Thus, it is possible for a user or operator to perceive the information of the marker from several views. It should be noted that the information provided by the marker may be an optical information, in particular a colour indication, so as to improve the association between racks and the correct position on the frame of the body fluid sample carrier.

    [0060] As can be seen from the enlarged view of FIG. 1, the marker receptacle 20 may be provided with a pocket arrangement for receiving the marker from a top to down direction. The pockets being open toward the upward direction as well as toward each other provide a large viewing face of the marker without covering a large area of the first plated section 31. It should be noted that pockets of adjacent marker receptacles 20 may be provided by a single structure providing two adjacent pockets, one being allocated to one marker receptacle and the other being allocated to an adjacent marker receptacle.

    [0061] Further, the body fluid sample carrier as shown in FIG. 1 comprises a detecting unit 40, which may detect the information contained in the marker with respect to the position of that particular marker when being in position. It should be noted that the unit 40 may detect the optical information laid down in the marker 30, but may also detect an information stored, for example in, an RFID being implemented in the marker 30. Thus, it is possible to detect the information of the marker and the respective position on the body fluid sample carrier so as to provide this information to a body fluid analyser.

    [0062] FIG. 2 illustrates a body fluid sample carrier 100 on a drawer of a body fluid analyser 200. The body fluid sample carrier 100 may travel on a track 210 of the body fluid analyser 200. FIG. 2 further illustrates how several racks 300 may be positioned on the body fluid sample carrier 100. As can be seen from FIG. 2, racks 300 of different sizes may be positioned on the body fluid sample carrier 100. Each rack 300 may have one or a plurality of rack containers or rack cavities for carrying a container, each being adapted for receiving or holding body fluids.

    [0063] As can be seen from FIG. 2, markers 30 are positioned at respective positions on the body fluid sample carrier on corresponding marker receptacles 20 and provide information to an operator or user where to place which rack 300 on the body fluid sample carrier 100. As can be seen from FIG. 2, the particular colour of a marker 30 may be used to indicate that a small rack should be positioned, wherein a different colour may be used to indicate that a larger rack of a particular size can be positioned at this marked position on the body fluid sample carrier 100.

    [0064] FIG. 3 illustrates a top view of a body fluid sample carrier 100 with racks 300 positioned thereon in a top view. Racks 300 of different sizes are positioned on the body fluid sample carrier 100, wherein respective markers 30 are in respective positions to marker receptacles 20 to indicate where to position respective racks of a particular size.

    [0065] FIG. 4 illustrates a schematic view of a detection arrangement on a body fluid sample carrier 100 and/or a body fluid analyser 200. FIG. 4 illustrates a body fluid sample carrier 100 on a track 210 of a body fluid analyser 200. The body fluid sample carrier 100 travels along the rack 210. According to one option, the body fluid sample carrier 100 is provided with a detecting unit 40 so as to detect a respective marker 30 and its information with respect to the particular position of a marker receptacle 20 which receives the marker 30. The information detected by the detecting unit 40 may be provided to a receiver 250 of the analyser 200 in order to provide this information to a processor unit 260. As an alternative, also the analyser 200 may be provided with a detecting unit 240 in order to detect the markers 30 with its information with respect to the respective position of the marker receptacle 20. This received information may be provided to the receiver 250 of the body fluid analyser 200. It should be noted that, according to one embodiment, a detecting unit may also be provided on both the body fluid sample carrier, as well as the analyser.

    [0066] The information received from the detecting units 40, 240 may be evaluated in a processor unit 260 and may be provided to a graphical user interface 400, which may be connected to the analyser 200. Thus, the graphical user interface may illustrate for a user or operator the respective racks on a body fluid sample carrier by an automatic detection. Thus, a user or operator may directly recognise whether the body fluid sample carrier is correctly loaded with racks, wherein the graphical user interface 400 may also be used to output error warnings if the processor unit should detect that the actual positioning of the racks on the body fluid sample carrier is incorrect or not as intended.

    [0067] FIG. 5 illustrates an embodiment of a magnet arrangement on a marker receptacle 20 and a marker 30. The marker receptacle 20 may have a magnetic attachment area so as to receive a marker. It should be noted that, the magnetic attachment area may be a flat area where, for example, visual markings for a positioning (not shown) may be provided for supporting the positioning of the marker 30 onto a marker receptacle 20. When choosing a particular magnet arrangement 25 on the marker receptacle 20, as well as a magnet arrangement 35 on the marker 30, the positioning may be supporting by coding the orientation of the magnet poles of the magnet arrangements so as to match a north pole and a south pole of a magnet cooperating mutually. Thus, it can be achieved that a marker is arranged in a correct orientation. As can be seen in FIG. 5, if a user were to change the orientation of the marker 30 by changing left and right orientation, the magnets on the marker side and the magnets of the marker receptacle side would have the same polarity and therefore would avoid attachment of the marker in a wrong position/orientation.

    [0068] FIG. 6 illustrates a further embodiment of a marker 30 and marker receptacle 20, each having a respective magnet arrangement 25, 35, a magnet arrangement 25 on the marker receptacle 20 side and a magnet arrangement 35 on the marker 30 side. Providing respective polarities of the magnets of each of the magnet arrangements will ensure a correct positioning of the marker without any further guiding structures, as the marker according to FIG. 6 will automatically flip into the correct position on the marker receptacle 20 owing to the polarity and magnet arrangement orientation on the receptacle side and the marker side.

    [0069] FIG. 7 illustrates a further embodiment, wherein the magnet arrangement 25 of the marker receptacle 20 does not have explicit magnets, but rather is formed from a magnetic material, for example a metal, an alloy, a composite structure or a matrix structure comprising iron, nickel or cobalt.

    [0070] Thus, it is sufficient to provide a magnet only on one side, here the marker side 30. However, it should be noted that the magnets may also be provided on the receptacle side and to manufacture the marker from a material adhering to the magnet, for example a material containing iron, nickel or cobalt. In order to support a positioning, the marker receptacle 20 may be provided with a protrusion and/or a detention arrangement 28, 29, wherein the marker 30 has a corresponding protrusion and/or detention arrangement 38, 39, in order to match with the marker receptacle 20. It should be noted, that the protrusions and/or detentions may have several shapes, for example a spherical shape as illustrated at the outer positions of the marker 30, but also may have a frustro-conical or trapezoid shape as illustrated on the inner positions. It should be noted that the shape of the protrusions/detentions are not limited to the illustrated shapes. It should also be noted, that the receptacle site may be provided with only protrusions or only detentions, wherein the markers may also be provided with corresponding ones of only protrusions or detentions.

    [0071] FIG. 8 illustrates a schematic flow chart of a method for marking a body fluid sample carrier for use in a body fluid analyzer. The method may have the following steps. It should be noted that not all steps are mandatory, and that some steps may be left out. Further, some steps may take place in a changed order or even parallel.

    [0072] The steps are step S10 of arranging at least one rack 300 having one or more cavities for carrying a container 301 for body fluids to a respective number of one or more of a plurality of rack receptacles 10 along a longitudinal extension of the body fluid sample carrier 100. Each rack receptacle 10 may be adapted for receiving at least a part of a rack 300. A further step is step S20 of arranging at least one marker 30 on a respective one of a plurality of marker receptacles 20 on a frame 101 of a body fluid sample carrier 100, each of a plurality of marker receptacles 20 being adapted for receiving a marker. Each of the plurality of marker receptacles 20 is associated to a corresponding one of the plurality of rack receptacles 10 or a space there between. The at least one of the plurality of markers 30 on the marker receptacles 20 is indicative for a rack of body fluids in the respective associated rack receptacles 10 or a space between racks of body fluids in the respective rack receptacles 10.

    [0073] The method may further comprise the step S30 of moving the body fluid sample carrier along a track of a body fluid analyzer 200, and the step S40 of detecting at least one of an information comprised in a marker 30 and a position of a marker on a body fluid sample carrier 100 to be used in connection with the body fluid analyzer 200. Further the method may comprise the step S50 of receiving the detected information and/or position with the receiver 250 of a processor unit 260, and the step S60 of processing the detected information and/or position for at least one of a check routine and a visualization of the racks on the body fluid sample carrier.

    [0074] The method may further comprise the step S70 of controlling a graphical user interface to be connected to the body fluid analyzer 200 based on the processed detected information and/or position to display a rack scheme in correspondence with the actual body fluid sample carrier being used in connection with the body fluid analyzer. The step S40 of detection may take place in a body fluid analyzer 200, but may also take place on the carrier, or may take place on both, the analyzer and the carrier.

    REFERENCES USED

    [0075] 10 rack receptacles [0076] 20 marker receptacles [0077] 21 bay arrangement, first pocket [0078] 22 bay arrangement, second pocket [0079] 23 magnetic attachment area on body fluid sample carrier [0080] 25 magnet arrangement [0081] 28 positioning protrusion on carrier body [0082] 29 positioning detention on carrier body [0083] 31 first plated section [0084] 32 second plated section [0085] 35 magnet arrangement on marker [0086] 38 positioning protrusion on marker [0087] 39 positioning detention on marker [0088] 40 detecting unit on body fluid sample carrier [0089] 100 body fluid sample carrier [0090] 101 frame of body fluid sample carrier [0091] 200 body fluid analyzer [0092] 210 track of body fluid analyzer [0093] 240 detecting unit on body fluid analyzer [0094] 250 receiver on body fluid analyzer for receiving detection information [0095] 260 processor unit on body fluid analyzer [0096] 300 rack [0097] 301 rack container/rack cavity for carrying a container [0098] 400 graphical user interface [0099] S10 arranging a rack a rack receptacle of a body fluid sample carrier [0100] S20 arranging a marker on a marker receptacle of a body fluid sample carrier [0101] S30 moving a body fluid sample carrier along a track of a body fluid analyzer [0102] S40 detecting an information/position of a marker on a body fluid sample carrier [0103] S50 receiving detected information/position [0104] S60 processing detected information/position for check routine/visualization [0105] S70 controlling a graphical user interface