1. Field of the Invention
The present invention relates generally to trays for storing specimen collection containers and, more particularly, to plastic injection molded trays for storing blood collection tubes.
2. Description of Related Art
It is common for medical specimens to be collected by a technician in a collection container for subsequent testing. Specimen collection containers, such as blood collection tubes, are typically cylindrical in shape and include a semispherical bottom portion. Blood collection tubes often have an additive disposed within the tube, such as EDTA, heparin, acid citrate dextrose, and/or oxalate. Blood collection tubes may be evacuated and/or non-evacuated and are generally sterilized. Blood collection tubes are typically stored and transported in trays configured to hold each blood collection tube upright. These trays are generally rectangular or square in shape and include wells or apertures formed therein to hold the blood collection tubes. Typically, blood collection tube trays are constructed from expanded polystyrene (EPS), which is rarely recycled due to logistical and economic factors and therefore adds to waste in landfills. Another shortcoming of current EPS trays is they use a substantial amount of material relative to the number of tubes they hold and are bulkier than necessary.
In the medical field, it is important to lower material costs to reduce operational overhead. Therefore, a replacement for standard EPS trays is needed that allows for easy recycling and/or multiple uses. A need further exists for a tray for holding blood collection tubes that is inexpensively produced, easily inspected for damage and defects, and operates efficiently in a medical setting.
There presently exists a need for a tray for storing and transporting blood collection tubes that is lightweight, has a high strength to weight ratio, is inexpensive to manufacture, and is easily recyclable.
Accordingly, there is a general need for a blood collection tube tray that has a reduced cost to manufacture, tighter tolerances, lower weight, increased strength, and greater ease of recyclability than prior art blood collection tube trays.
In accordance with an embodiment of the present invention, a tray for holding a plurality of blood collection tubes includes a deck portion, and a sidewall portion disposed about at least a portion of a perimeter of the deck portion. A first well is defined within the deck portion and a second well is defined within the deck portion, each well being configured to receive a blood collection tube therein, and each well defining an aperture therein. The tray includes at least one structural rib interconnecting the first well and the second well without extending into the aperture of either of the first well or the second well.
In certain configurations, the deck portion, the sidewall portion, the first well, the second well, and the at least one structural rib are co-formed. The tray may formed of injection molded polymeric material.
Each well may include a substantially semispherical bottom portion. The substantially semispherical bottom portion may include a truncated region. In certain configurations, each substantially semispherical bottom portion defines the aperture therein. The tray may also include a plurality of wells, each well defining an aperture therein, and a plurality of structural ribs, each structural rib interconnecting at least a portion of the plurality of wells without extending into an aperture of any of the wells. Optionally, the plurality of structural ribs may include at least one inter-well rib and at least one sidewall-connecting rib.
In certain configurations, an inter-well rib is defined along a first plane and the sidewall-connecting rib is defined along a second plane, the first plane being different from the second plane. The first plane may be anti-parallel with respect to the second plane. The plurality of structural ribs may include at least one rib disposed along a first plane, at least one rib disposed along a second plane, at least one rib disposed along a third plane, and at least one rib disposed along a fourth plane, wherein each of the first plane, the second plane, the third plane, and the fourth plane are anti-parallel with respect to the other of the first plane, the second plane, the third plane, and the fourth plane.
At least one structural rib may be disposed along a first plane, and the tray may also include a second structural rib disposed along a second plane, wherein the at least one structural rib and the second structural rib each contact a common well. At least one structural rib is disposed on an underside of the deck portion. The deck portion may include an underside and the tray may define a bottom surface, wherein the at least one structural rib extends between the underside of the deck portion and the bottom surface.
In accordance with another embodiment of the present invention, a tray for holding a plurality of blood collection tubes includes a deck portion having an underside, and a sidewall portion disposed about at least a portion of a perimeter of the deck portion. A plurality of wells is defined within the deck portion, each well configured to receive a blood collection tube therein. At least one structural rib interconnects at least two of the plurality of wells, wherein the at least one structural rib extends between the underside of the deck portion and at least two of the plurality of wells.
In certain configurations, the tray is formed of injection molded polymeric material. Each well may define an aperture therein, and the at least one structural rib connects at least two of the plurality of wells without extending into the aperture of either well. The tray may also include a plurality of structural ribs having at least one inter-well rib and at least one sidewall-connecting rib. The inter-well rib is defined along a first plane and the sidewall-connecting rib is defined along a second plane, the first plane being anti-parallel to the second plane.
In accordance with another embodiment of the present invention, a tray for holding a plurality of blood collection tubes includes a deck portion having an underside, and a sidewall portion disposed about at least a portion of a perimeter of the deck portion. A plurality of wells is defined within the deck portion, each well configured to receive a blood collection tube therein. The tray also includes a first plurality of structural ribs interconnecting at least a portion of the plurality of wells, wherein each rib of the first plurality of structural ribs extends between the underside of the deck and a bottom surface of the tray. The tray further includes a second plurality of structural ribs interconnecting at least a portion of the plurality of wells and the sidewall portion, wherein each rib of the second plurality of structural ribs extends between the underside of the deck and the sidewall portion.
In certain configurations, the tray is formed of injection molded polymeric material. Each well may define an aperture therein, and each rib of the first plurality of structural ribs connects at least two of the plurality of wells without extending into the aperture of either well. Each of the structural ribs of the second plurality of ribs interconnects at least one well of the plurality of wells and a portion of the sidewall. Each of the structural ribs of the first plurality of structural ribs interconnects at least two of the plurality of wells.
Further details and advantages of the invention will become clear upon reading the following detailed description in conjunction with the accompanying drawing figures, wherein like parts are designated with like reference numerals throughout.
For purposes of the description hereinafter, spatial orientation terms, if used, shall relate to the referenced embodiment as it is oriented in the accompanying drawing figures or otherwise described in the following detailed description. However, it is to be understood that the embodiments described hereinafter may assume many alternative variations and embodiments. It is also to be understood that the specific devices illustrated in the accompanying drawing figures and described herein are simply exemplary and should not be considered as limiting.
The tray 10 includes a plurality of wells 12 disposed through a deck portion 14. Deck portion 14 is defined by a top edge 16 which connects to a sidewall portion 18. Sidewall portion 18 is bounded by top edge 16 and a bottom edge 20. Sidewall portion 18 may extend completely around edge 16. Alternatively, sidewall portion 18 can be partially discontinuous about the deck portion 14. It is contemplated herein that deck portion 14 extends in a substantially horizontal plane and sidewall portion 18 depends therefrom in a plane substantially perpendicular to the deck portion 14.
Wells 12 of the tray 10 may be defined as substantially cylindrical recesses defined within tray 10 and extending through the deck portion 14. Each well 12 includes an internal sidewall 22 extending away from the deck portion 14 and toward the bottom edge 20 of the tray 10. Each well 12 forms a truncated semispherical bottom portion 24 with an aperture 26 defined therethrough at the truncation of truncated semispherical bottom portion 24, as shown in
Referring specifically to
In one embodiment, the bottom edge 20, portions of the structural ribs 28, and the apertures 26 of each well 12 may all terminate along the same plane. In another embodiment, each structural rib 28 may be oriented substantially parallel to, or disposed along, one of a first plane A, a second plane B, a third plane C, and a fourth plane D each being defined by lines A, B, C, and D respectively, as shown in
Tray 10 may have an inter-well rib 32 defined along a first plane A and a sidewall-connecting rib 34 defined along a second plane B, the first plane A being different from the second plane B. Tray 10 may have an inter-well rib 32 defined along a first plane A and a sidewall-connecting rib 34 defined along a second plane B. In one embodiment, the first plane A is anti-parallel and/or anti-perpendicular with respect to the second plane B. The plurality of ribs may comprise at least one inter-well rib 32 defined along a first plane A, and at least one inter-well rib 32 defined along a second plane B, the first plane A being different from the second plane B. The plurality of ribs 28 may comprise at least one inter-well rib 32 defined along a first plane A, and at least one inter-well rib 32 defined along a second plane B. In one embodiment, the first plane A is anti-parallel and/or anti-perpendicular with respect to at least one of the second plane B, the third plane C, and the fourth plane D. In accordance with another embodiment, at least one inter-well rib 32 defined along a first plane A and at least one inter-well rib 32 defined along a second plane B are anti-parallel and/or anti-perpendicular with respect to each other. In a further configuration, the first plane A and the second plane B are anti-parallel and anti-perpendicular with respect to the third plane C and the fourth plane D.
At least a portion of the plurality of structural ribs 28 may be substantially parallel. The plurality of structural ribs 28 may include at least one rib 28 disposed along or parallel to the first plane A, at least one rib 28 disposed along or parallel to the second plane B, at least one rib 28 disposed along or parallel to the third plane C, and at least one rib 28 disposed along or parallel to the fourth plane D, wherein each of the first plane A, the second plane B, the third plane C, and the fourth plane D are anti-parallel and/or anti-perpendicular to the other of the first plane A, the second plane B, the third plane C, and the fourth plane D. At least one structural rib 28 may be parallel to or disposed along the first plane A, and at least one structural rib 28 parallel to or disposed along the second plane B intersects at least a portion of a common well 13, as shown in
In another embodiment, at least one well 12 is connected to at least two ribs and is considered to be a common well 13 relative to the at least two structural ribs 28. The tray 10 of the present invention may include a plurality of common wells for enhancing the overall strength and rigidity of the tray 10.
The plurality of wells 12 of the tray 10 may be formed into rows, specifically a plurality of rows at least partially offset with respect to an adjacent row, as shown in
Tray 10 as shown in
Referring specifically to
Referring specifically to
Referring specifically to
While several embodiments of a tray for holding blood collection tubes were described in the foregoing detailed description, those skilled in the art may make modifications and alterations to these embodiments without departing from the scope and spirit of the invention. Accordingly, the foregoing description is intended to be illustrative rather than restrictive. The invention described hereinabove is defined by the appended claims and all changes to the invention that fall within the meaning and the range of equivalency of the claims are embraced within their scope.
Filing Document | Filing Date | Country | Kind |
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PCT/US2013/050843 | 7/17/2013 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2014/028159 | 2/20/2014 | WO | A |
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Number | Date | Country | |
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20150182968 A1 | Jul 2015 | US |
Number | Date | Country | |
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61683940 | Aug 2012 | US |