FILTER APPARATUS AND FILTER DEVICE FOR BIOLOGICAL SAMPLES
20190134541 ยท 2019-05-09
Inventors
Cpc classification
A61B10/0038
HUMAN NECESSITIES
B01L3/5021
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/184
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/60
PERFORMING OPERATIONS; TRANSPORTING
B01D29/33
PERFORMING OPERATIONS; TRANSPORTING
G01N1/4077
PHYSICS
International classification
B01D29/44
PERFORMING OPERATIONS; TRANSPORTING
B01D29/33
PERFORMING OPERATIONS; TRANSPORTING
B01L3/00
PERFORMING OPERATIONS; TRANSPORTING
A61B10/00
HUMAN NECESSITIES
Abstract
According to at least one aspect, the invention provides a filter assembly (100) comprising a tubular housing and a filter device (70) locateable to extend longitudinally within the housing. The filter device (70) comprises a lattice structure of crossing internal and external elongated elements (18, 20). The lattice structure comprises an arrangement of pores (22), and the external elongated elements (20) are presented outwardly of the filter device (70) with respect to the plane of the pores, thereby to provide ribs on the exterior of the lattice which define a shaped channel that will act as a first level filter for larger particles. The external elongated elements are shaped and arranged to provide one or more additional filter levels for smaller particles in advance of said pores, through which yet even smaller particles may pass.
Claims
1. A filter assembly comprising a tubular housing and a filter device comprising an open end and a closed end and being located in and extending longitudinally within the tubular housing, the tubular housing comprising a first receptacle for mixing, the first receptacle having an open end and a closed end; and a second receptacle for receiving filtrate, the second receptacle having an open end and a closed end; the filter device being structured and arranged to be enclosed by said first and second receptacles and the open ends of the first and second receptacles each being closeable by the filter device when located to extend longitudinally therein, such that an enclosed filter assembly is formed wherein the filter device comprises a lattice structure of crossing internal and external elongated elements, the lattice structure thereby defining an arrangement of pores, wherein the external elongated elements are presented outwardly of the filter device with respect to the plane of the pores, thereby to provide ribs on the exterior of the lattice structure which are shaped and arranged to provide a first level filter for larger particles, and wherein the external elongated elements are further shaped and arranged to provide one or more additional filter levels for smaller particles in advance of said pores, through which yet even smaller particles may pass, the external elongated elements being shaped and arranged by having one or more side walls that are shaped in a stepped or castellated manner in order to provide at least three levels of filtration.
2. The filter assembly of claim 1, wherein the lattice structure of crossing internal and external elongated elements comprises internal ribs extending longitudinally in a direction from the closed end of the filter device to the open end of the filter device; and external ribs extending transversely to the internal ribs.
3. The filter assembly of claim 2, wherein said pores of the lattice structure are defined at least in part by said internal ribs.
4. The filter assembly of claim 2, wherein the external ribs extend substantially circumferentially about at least a substantial part of the filter device.
5. The filter assembly of claim 2, wherein between two adjacent external ribs a channel is formed, which channel is defined by parts of each of said two adjacent external ribs, and wherein said channel will act as a first level filter for larger particles and provides one or more additional filter levels for smaller particles in advance of said pores.
6. The filter assembly according to claim 5, wherein the external ribs each have two side walls which are each shaped in a stepped manner such that between two adjacent external ribs an opening is formed which has a maximum outer width (a), a minimum inner width (c) and one or more widths between said maximum outer width and said minimum inner width such that the filter assembly is capable of providing at least three levels of filtration.
7. The filter assembly according to claim 6, wherein the external ribs each have two side walls which are shaped in a stepped manner such that between two adjacent external ribs an opening is formed which has a maximum outer width (a), a minimum inner width (c) and an intermediate width (b) that is less than said maximum outer width and that is greater than said minimum inner width such that the filter assembly is capable of providing three levels of filtration.
8. The filter assembly according to claim 7 wherein the maximum outer width (a) of the castellated opening formed between two adjacent external ribs comprises a first level filter of about 1 mm; the intermediate width (b) of the opening formed between two adjacent external ribs comprises a second level filter of about 440 microns; and minimum inner width (c) of the castellated opening formed between two adjacent external ribs comprises a third level filter of about 220 microns.
9. The filter assembly according to claim 5, wherein the external ribs each have two side walls and wherein one side wall is substantially flat, and wherein the other side wall is shaped in a stepped manner such that between two adjacent external ribs an opening is formed which has a maximum outer width (a), a minimum inner width (c) and one or more widths between said maximum outer width and said minimum inner width such that the filter assembly is capable of providing at least three levels of filtration.
10. The filter assembly according to claim 5, wherein the external ribs each have two side walls and wherein one side wall is shaped in a first stepped manner, and wherein the other side wall is shaped in a second stepped manner, the two side walls being differently shaped such that between two adjacent external ribs an asymmetric opening is formed which has a maximum outer width (a), a minimum inner width (c) and one or more intermediate widths (b) between said maximum outer width and said minimum inner width such that the filter assembly is capable of providing at least three levels of filtration.
11. The filter assembly according to claim 1 wherein because the filter device can close said first and second receptacles, the filter assembly when closed is configured for forced filtration by centrifuge.
12. The filter assembly according to claim 1 wherein the filter device comprises a head, a body comprising the lattice structure, and a closing portion structured and arranged for fitting into and closing the open ends of the first and second receptacles, wherein the body comprising the lattice structure has a cross-sectional shape taken in a plane through the external elongated elements of the lattice structure that is generally circular, hexagonal or another polygonal shape.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Embodiments of the invention will now be described, by way of example only, with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION OF EMBODIMENTS
[0041] Detailed descriptions of specific embodiments of the filter assembly, filter device and methods of the present invention are disclosed herein. It will be understood that the disclosed embodiments are merely examples of the way in which certain aspects of the invention can be implemented and do not represent an exhaustive list of all of the ways the invention may be embodied. Indeed, it will be understood that the filter assembly, filter device and methods described herein may be embodied in various and alternative forms. The figures are not necessarily to scale and some features may be exaggerated or minimised to show details of particular components. Well-known components, materials or methods are not necessarily described in great detail in order to avoid obscuring the present disclosure. Any specific structural and functional details disclosed herein are not to be interpreted as limiting, but merely as a basis for the claims and as a representative basis for teaching one skilled in the art to variously employ the invention.
[0042] An optional three level, injection moulded, filter assembly 100 is shown in
[0043] The filter device 70 may also be referred to as filtration device 70 without imparting any limitation or additional meaning to the term filter device 70. The filter device 70 is shown in
[0044] The filter device 70 is locateable within the first and second receptacles 80, 90, such that it extends longitudinally within a housing of the filter assembly 100 provided by the first mixing receptacle 80 and the second filtrate receiving receptacle 90. The body 12 of the filter device 70 comprises a lattice structure of crossing internal 18 and external 20 elongated elements. A cross-sectional view of the filter device 70 is shown in
[0045] The pores 22 of the lattice structure are defined at least in part by said internal ribs 18.
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[0047] Optionally and as shown in
[0048] As shown in
[0049] The lattice structure disclosed herein allows for the filter device 70 to be injection moulded as a single unit, such that the filter assembly 100 conveniently only comprises three parts 70, 80, 90 which are easily and simply attached together. Because the filter device 70 can close the mixing tube 80 and filtrate receiving tube 90, the filter assembly 100 when closed is configured for forced filtration by centrifuge. Beneficially, the necessity for additional solvent is removed, thus providing a safer filtering system.
[0050] In prior art systems, in order to obtain three levels of filtering, more components are required. Beneficially, however, in the present arrangement providing external ribs 20 on the exterior of the lattice which will act as a pre-filter for larger particles in advance of the pores 22; then subsequently a second level of the same providing additional pre filtration; and a third level filter used to finely separate the sample presented and eject it delivering micro-organisms to the lower chamber 90, a filter assembly 100 is provided that is easier to manufacture and assemble, quicker to use and that requires no solvent.
[0051] Referring now to
[0052] In
[0053] Referring now to
[0054] Referring now to
[0055] It can be appreciated that various changes may be made within the scope of the present invention, for example, the elongate ribs may not be symmetrical in form.