A TISSUE PROCESSING APPARATUS, A FILTER AND A METHOD FOR PROCESSING TISSUE THEREFROM
20200248127 ยท 2020-08-06
Inventors
Cpc classification
B01D24/00
PERFORMING OPERATIONS; TRANSPORTING
A61M1/88
HUMAN NECESSITIES
C12M47/02
CHEMISTRY; METALLURGY
C12M29/00
CHEMISTRY; METALLURGY
C12M45/02
CHEMISTRY; METALLURGY
C12M21/08
CHEMISTRY; METALLURGY
International classification
C12M1/34
CHEMISTRY; METALLURGY
C12M3/00
CHEMISTRY; METALLURGY
Abstract
A tissue processing apparatus, a filter and a method for processing tissue therefrom #! The problem to be solved is to provide a portable apparatus for processing harvested fat to form a good quality graft that does not clog syringes, and the problem is solved by providing an apparatus as in the present invention with a filter that is inclined to the base of the apparatus and comprises of plurality of elongated protrusion that are structured at an angle on the surface of the filter and blocks the fibres when the harvested fat moves on the inclined surface of the filter, thereby filtering the harvested fat and avoiding clogging of syringes.
Claims
1. A tissue processing apparatus comprising: a container forming a closed volume with a bottom surface; a first opening on said container to receive a harvested fat; a filter including a plurality of elongated protrusion on a surface of said filter; and a second opening on said container to access said harvested fat filtered by said filter, wherein said surface of said filter forms an inclination with said bottom surface of said container and said plurality of elongated protrusion are structured at an angle on said surface of said filter for filtering said harvested fat received from said first opening such that when said harvested fat, moves on said surface of said filter, said elongated protrusion prevents fibers in said harvested fat to pass through said filter, thereby filtering said harvested fat.
2. The tissue processing apparatus according to claim 1, wherein said plurality of elongated protrusion is perpendicular to said surface of said filter.
3. The tissue processing apparatus according to claim 2, wherein plurality of said elongated protrusion includes a passageway for allowing flow of said harvested fat through said elongated protrusions and blocking fibers.
4. The tissue processing apparatus according to claim 1, wherein said surface includes plurality of openings for filtering fluids from said harvested fat in said filter.
5. The tissue processing apparatus according to claim 4, wherein said plurality of openings structure to form a passage through said filter, said passage drains fluid from said harvested fat to said bottom surface by facing said bottom surface at an acute angle.
6. The tissue processing apparatus according to claim 1, wherein said container includes a third opening to remove fluids from said bottom surface of said container.
7. The tissue processing apparatus according to claim 1, wherein said filter is circumferentially connected to an inner surface of said container dividing said closed volume into two parts.
8. The tissue processing apparatus according to claim 1, wherein said container includes a base with at least two legs for supporting said container.
9. The tissue processing apparatus according to claim 1, wherein said container includes a first transparent screen to monitor volume of said harvested fat filtered in said container.
10. The tissue processing apparatus according to claim 1, wherein said container includes a second transparent screen to monitor volume of fluid in said container.
11. A filter for a tissue processing apparatus comprising: a surface for receiving a harvested fat; and a plurality of elongated protrusion on said surface of said filter, wherein said surface of said filter when positioned inside said tissue processing apparatus forms an inclination with horizontal axis of said tissue processing apparatus, and said plurality of elongated protrusion are structured at an angle on said surface of said filter for filtering said harvested fat such that when said harvested fat moves on said surface of said filter, said elongated protrusion prevents fibers in said harvested fat to pass through said filter, thereby filtering said harvested fat.
12. The tissue processing apparatus according to claim 11, wherein said plurality of elongated protrusion is perpendicular to said surface of said filter.
13. The tissue processing apparatus according to claim 12, wherein plurality of said elongated protrusion includes a passageway for allowing flow of said harvested fat through said elongated protrusions and blocking fibers.
14. The tissue processing apparatus according to claim 11, wherein said surface includes plurality of openings for filtering fluids from said harvested fat in said filter.
15. The tissue processing apparatus according to claim 14, wherein said plurality of opening is structured to form a passage at an acute angle with a bottom surface at horizontal axis of said tissue processing apparatus for draining fluids from said harvested fat.
16. A method for processing tissue in a tissue processing apparatus including the steps of: Receiving a harvested fat from a first opening on a container forming a closed volume with a bottom surface; Filtering said harvested fat by a filter including a plurality of elongated protrusion structured at an angle on a surface of said filter forming an inclination with said bottom surface such that when said harvested fat received from said first opening, said harvested fat moves on said surface and, said elongated protrusion prevents fibers in said harvested fat to passing through said filter; and Accessing said harvested fat after filtration from a second opening on said container
17. The method according to claim 16, including filtering of said harvested fat by said elongated protrusions perpendicular to said surface of said filter.
18. The method according to claim 17, including filtering of said harvested fat by said elongated protrusion including a passageway for allowing flow of said harvested fat through said elongated protrusion and blocking fibers.
19. The method according to claim 16, including accessing said harvested fat from said second opening after monitoring volume of said harvested fat filtered by said filter on a first transparent screen on said container.
20. The method according to claim 16, including filtering of said harvested fat by said filter including plurality of openings that structured to form a passage for draining fluids from said harvested fat to said bottom surface by facing said bottom surface at an acute angle.
21. The method according to claim 19, including filtering of said harvested fat by said filter including removing fluids from said harvested fat on said bottom surface by a third opening on said container.
22. The method according to claim 20, including removing drained fluids from said third opening after monitoring volume of fluid on a second transparent screen on said container.
Description
BRIEF DESCRIPTION OF DRAWINGS
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TABLE-US-00001 Description of Elements Reference Numeral Tissue Processing Apparatus 100 Container 110 First opening 112 Second opening 114 Third opening 116 Bottom surface 118 Base 120 Legs 122 First transparent screen 124 Second transparent screen 126 Filter 130 Surface 132 Openings 134 Passage 136 Elongated protrusion 138 Passageway 140
DETAILED DISCLOSURE OF THE INVENTION
[0041] The embodiments of the present invention can be understood by reading following detailed description of some of the embodiments with reference to the accompanying drawings.
[0042] In an embodiment of the present invention, a tissue processing apparatus (100) forms a sealed airtight system with three openings that are locked by the syringes. The tissue processing apparatus (100) comprises of a container (110) and a filter (130) for filtering harvested fat. The tissue is harvested from a donor site of a body and are processed for increasing the quality of graft. The container (110) for processing harvested fat forms a closed chamber or volume with a top surface, a bottom surface (118) and surrounding walls to enclose a volume.
[0043] As shown in
[0044] As shown in
[0045] As shown in
[0046] The plurality of opening (134) on the surface (132) of the filter (130) is structured to form a passage (136) as shown in
[0047] As shown in
[0048] Further, the tissue processing apparatus (100) can have various dimensions and scale while maintaining the same embodiment of the invention as disclosed above. Examples of variation in dimensions include reducing or increasing the bottom surface (118) of the container (110). Other modification can include elongating or shortening the height of the container (110). These modifications in dimensions will also produce size modification in the filter (130) and the filter surface (132). Such modification in filter surface (132) will result in modifying the quantity of the plurality of opening (134) on the surface (132) of the filter (130). This modification in quantity of opening (134) should maintain both the size of the opening (134) forming passage (136) as well as the spacing between the openings (134). Also, the size of the elongated protrusion (138) with the passageway (140) can remain the same or modified in a non-proportional way or substantially for the modification, which incurred on the container (100) or on the filter (130). On the other hand, the dimension and sizes of the first opening (112), second opening (114) and the third opening (116) may remain the same to allow proper connection to the syringe.
[0049] Also, the tissue processing apparatus (100) can be fabricated from various types of materials that can be sterilized. The material should withstand high autoclave temperature required to kill any Bacteria or any other microscopic pathogenic organism or the like, while at the same time not allowing the heat from the autoclave to deform or change the structure or the form of the Apparatus (100).
[0050] In an alternate embodiment, both the base (120) and legs (122) of the tissue processing apparatus (100) can be either an integrated part or a separate detachable part of the container (110). In the case the base (120) and legs (122) are detachable, the containers can be mounted on top of them by simple insertion. The base (120) and legs (122) can be manufactured from various materials.
[0051] The present invention is however not limited to the above embodiments disclosed above and referred in