CN212522456U - Surgical instrument disinfecting equipment for oncology department - Google Patents
Surgical instrument disinfecting equipment for oncology department Download PDFInfo
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- CN212522456U CN212522456U CN202020556733.4U CN202020556733U CN212522456U CN 212522456 U CN212522456 U CN 212522456U CN 202020556733 U CN202020556733 U CN 202020556733U CN 212522456 U CN212522456 U CN 212522456U
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Abstract
The utility model discloses an operation instrument disinfection device for oncology, which comprises a base for supporting the whole device, an outer shell positioned at the upper part of the base, a first containing cavity arranged in the outer shell, a plurality of ultraviolet disinfection piles arranged on the inner wall annular array of the first containing cavity, a steam injection part capable of injecting steam into the first containing cavity, an inner storage grid positioned in the first containing cavity, a main shaft rotating matching hole arranged at the top end of the outer shell, a main shaft extending up and down arranged in the main shaft rotating matching hole, a rotating body fixedly connected at the outer side of the main shaft, an annular containing cavity arranged in the rotating body, an annular electric heating drying net arranged in the annular containing cavity, an operation instrument needing disinfection is placed in the inner storage grid, the steam injection part can clean the operation instrument, the annular electric heating drying net can dry the operation instrument, and the ultraviolet disinfection piles can efficiently disinfect the operation instrument, thereby completing the cleaning and disinfecting work of the surgical instruments.
Description
Technical Field
The utility model relates to the technical field of medical instrument disinfecting equipment, in particular to an operating instrument disinfecting equipment for oncology department.
Background
In the related field of surgical instrument disinfection equipment for oncology, the disinfection of surgical instruments is vital, surgical instruments are strictly sterilized, the instruments used for surgery are thoroughly cleaned and then sterilized by high-pressure steam or chemical sterilization, sterile articles are stored in a sterile area special cabinet, and the room is ventilated, dried, cleaned, dustless and free of impurities;
if the surgical instruments cannot be thoroughly sterilized, serious infection can occur to patients after use, the common sterilization mode is manual sterilization and machine sterilization, the manual sterilization is time-consuming and labor-consuming, the efficiency is low, human factors are inevitable and can cause errors, the sterilization procedures are generally cleaning, drying and sterilization, the existing procedures cannot be completely automatically processed, and the sterilization efficiency and the sterilization cleanness are insufficient.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an operation utensil disinfecting equipment for oncology has the lower and clean sterile thorough degree of efficiency phenomenon to some deficits of current operation utensil disinfecting equipment existence, designs an operation utensil disinfecting equipment for oncology, can realize carrying out high-efficient quick disinfection cleanness with operation utensil to oncology.
In order to achieve the above object, the utility model provides a following technical scheme:
a surgical instrument disinfection device for oncology comprises a base used for supporting the whole device, wherein one side of the base is provided with a steam inlet, the other side of the base is provided with a waste gas and waste liquid guiding interface, and the inside of the base is provided with an annular steam conduction groove communicated with the steam inlet and used for evacuating steam and an annular waste gas and waste liquid conduction groove used for collecting waste gas and waste liquid; the annular steam guide groove is convenient for rapidly and uniformly distributing steam entering from the steam inlet into each steam guide pipe.
The device comprises a base, a shell body and a first accommodating cavity, wherein the shell body is positioned at the upper part of the base, the first accommodating cavity is formed in the shell body, a plurality of ultraviolet disinfection piles are arranged on the inner wall of the first accommodating cavity in an annular array mode, a main shaft rotating matching hole is formed in the top end of the shell body, a main shaft extending up and down is arranged in the main shaft rotating matching hole, and a window for taking/placing surgical instruments for oncology is further formed in the shell body; the ultraviolet disinfection piles are arranged, so that the surgical instruments can be disinfected more efficiently without dead angles.
The steam jet part can jet steam into the first accommodating cavity, the steam jet part comprises a plurality of steam guide pipes which are vertically upward along the inner wall of the first accommodating cavity and are arranged in an annular array, steam through holes are formed in the steam guide pipes, the steam through holes are communicated with the annular steam conduction grooves, a plurality of steam jet nozzles are uniformly arranged on one side, facing the central axis of the first accommodating cavity, of each steam guide pipe from top to bottom, and steam jet holes communicated with the steam through holes are formed in the steam jet nozzles;
steam jet part sprays high-speed high temperature's clean antiseptic solution steam to first holding the intracavity, and high-speed clean antiseptic solution steam can clear away the dirt on the surgical instruments, and clean antiseptic solution steam also is the high temperature, possesses certain disinfection effect, and several steam spout combined action can realize the cleaning work at the all-round no dead angle of surgical instruments, and cooperation ultraviolet ray disinfection stake working effect can be better.
The inner storage lattice is positioned in the first accommodating cavity and comprises a rotating support body rotatably mounted on a base, a perforated plate fixedly connected between the rotating support body and the main shaft, a plurality of waste gas and waste liquid discharge holes which are communicated up and down are formed in the perforated plate, a rotating body fixedly connected to the outer side of the main shaft and a plurality of partition plates fixedly connected to the peripheral wall of the outer side of the rotating body, and an annular accommodating cavity is formed in the rotating body;
inside matter storage lattice can slowly rotate, and its purpose carries out diversified cleanness to the surgical instruments in order to cooperate steam injection part, and the baffle falls into different spaces with whole inside matter storage lattice, more conveniently places the surgical instruments classification of difference, and the produced waste gas waste liquid of cleaning work is in time followed first holding intracavity and is discharged in a plurality of waste gas waste liquid earial drainage hole on the perforated plate.
The annular supporting body is fixedly connected to the top of the annular accommodating cavity, an annular fixing groove is formed in the bottom of the annular supporting body, and an annular electric heating drying net is fixedly arranged in the annular fixing groove;
the annular holds the chamber and is a confined space, and its inside can not receive high temperature steam's influence, and the annular holds the intracavity portion electric heat stoving net heating back and makes the first intracavity temperature that holds rise through heat-conduction, then dries to the surgical instruments on the inside matter storage lattice.
The sealing shell is fixedly arranged at the top end of the outer shell and is provided with a second accommodating cavity;
and a power part for providing power for the main shaft is arranged in the second accommodating cavity.
Preferably, a rotation matching hole is formed in the base, and the rotation supporting body is in rotation matching with the rotation matching hole.
Preferably, a steam inlet communicated with the annular steam conduction groove is formed in the steam inlet; a plurality of steam guide pipe communication holes used for communicating the steam through holes are arranged above the annular steam conduction groove.
Preferably, be located the inside base top of first holding chamber has the inverted triangle-shaped annular, inverted triangle-shaped annular tank bottom through several waste gas waste liquid circulation hole with annular waste gas waste liquid switches on the groove mutually. The annular groove is arranged to be in an inverted triangle shape, and the purpose is that under the action of gravity, waste gas and waste liquid in the first accommodating cavity can enter the waste gas and waste liquid circulation hole more conveniently.
Preferably, a waste gas and waste liquid leading-out hole is formed in the waste gas and waste liquid leading-out interface and communicated with the annular waste gas and waste liquid guiding groove. The annular waste gas waste liquid guide groove gathers the waste gas waste liquid in unison, derives the interface through waste gas waste liquid at last and discharges.
Preferably, a first stop block is arranged on the left side of the window, a second stop block is arranged on the right side of the window, a first sliding groove is formed in the right side of the first stop block, a second sliding groove is formed in the left side of the second stop block, an arc-shaped window baffle is arranged between the first sliding groove and the second sliding groove, and a sliding handle is arranged at the front end of the arc-shaped window baffle.
The arc-shaped window baffle plate is selected to be vertically slidable in an opening mode, and when the equipment works, the first accommodating cavity has pressure difference with external air pressure, radial force along the outer shell can be generated on the arc-shaped window baffle plate, and the arc-shaped window baffle plate is restrained by the fixed first stop block and the second stop block along the radial direction of the outer shell, so that the good tightness of the interior of the first accommodating cavity is kept.
Preferably, the power unit comprises a motor, a first bevel gear connected to an output shaft of the motor, and a second bevel gear engaged with the first bevel gear, and the second bevel gear is fixedly connected to the top end of the main shaft. The power part is arranged to drive the internal storage lattices to rotate slowly, and the high-speed steam sprayed by the steam nozzles can scour the surgical instruments from different angles when the internal storage lattices rotate, so that the surgical instruments are cleaned more thoroughly.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model discloses simple structure, convenient operation can high-efficient automatic a plurality of processes of accomplishing among the surgical instruments disinfection process, through the high-speed disinfection cleaning solution of high temperature that the steam orifice erupted carries out quick cleaning to surgical instruments to accomplish certain disinfection, the rotor holds intracavity portion the electric heat dries by the net can carry out quick stoving with the surgical instruments that the cleanness finishes, at last by the ultraviolet ray disinfection stake carries out last degree of depth disinfection work to surgical instruments, after the time of regulation is opened to the ultraviolet ray disinfection stake, whole disinfection work is accomplished.
Drawings
Fig. 1 is a front view of the present invention;
FIG. 2 is a sectional view taken along line A-A of FIG. 1;
fig. 3 is a left side view of fig. 1.
In the figure, 1-base, 11-steam inlet, 111-steam inlet hole, 12-annular steam conducting groove, 13-steam conduit communicating hole, 14-annular waste gas and waste liquid conducting groove, 15-waste gas and waste liquid circulating hole, 16-inverted triangle ring groove, 17-rotary matching hole, 18-waste gas and waste liquid guiding interface, 181-waste gas and waste liquid guiding hole, 2-outer shell, 21-first accommodating cavity, 22-first block, 221-first sliding groove, 23-second block, 231-second sliding groove, 24-arc window baffle, 241-sliding handle, 25-main shaft rotary matching hole, 26-ultraviolet disinfection pile, 27-window, 3-steam injection component, 30-steam conduit, 31-steam injection hole, 32-steam nozzle, 33-steam nozzle, 4-internal storage grid, 41-rotary support body, 42-porous plate, 421-waste gas and waste liquid discharge hole, 43-rotary body, 432-annular containing cavity, 44-partition plate, 50-annular support body, 51-annular fixing groove, 52-annular electric heating drying net, 7-main shaft, 8-power part, 81-motor, 82-first bevel gear, 83-second bevel gear, 9-sealed shell and 91-second containing cavity.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The present invention will be described in detail with reference to fig. 1 to 3, and for convenience of description, the following orientations will be defined as follows: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.
Example (b):
referring to fig. 1-3, in order to achieve the above purpose, the present invention provides the following technical solutions:
an operation instrument disinfection device for oncology department comprises a base 1 used for supporting the whole device, wherein one side of the base 1 is provided with a steam inlet 11, the other side of the base 1 is provided with a waste gas and waste liquid guiding interface 18, and the inside of the base 1 is provided with an annular steam conduction groove 12 communicated with the steam inlet 11 and used for evacuating steam and an annular waste gas and waste liquid conduction groove 14 used for collecting waste gas and waste liquid; a steam inlet hole 111 communicated with the annular steam conduction groove 12 is formed in the steam inlet 11; a plurality of steam guide pipe communication holes 13 for communicating the steam through holes 31 are arranged above the annular steam conduction groove 12. The waste gas and liquid guiding interface 18 is internally provided with a waste gas and liquid guiding hole 181, and the waste gas and liquid guiding hole 181 is communicated with the annular waste gas and liquid guiding groove 14.
The device comprises an outer shell 2 positioned at the upper part of a base 1, wherein a first accommodating cavity 21 is arranged in the outer shell 2, a plurality of ultraviolet disinfection piles 26 are arranged in an annular array on the inner wall of the first accommodating cavity 21, a main shaft rotating matching hole 25 is formed in the top end of the outer shell 2, a main shaft 7 extending up and down is arranged in the main shaft rotating matching hole 25, and a window 27 used for taking/placing surgical instruments for oncology is further formed in the outer shell 2; the top of the base 1 positioned in the first accommodating cavity 21 is provided with an inverted triangle ring groove 16, and the bottom of the inverted triangle ring groove 16 is communicated with the annular waste gas and waste liquid conducting groove 14 through a plurality of waste gas and waste liquid flowing holes 15. The window 27 is provided with a first stopper 22 on the left side, a second stopper 23 on the right side, a first sliding groove 221 on the right side of the first stopper 22, a second sliding groove 231 on the left side of the second stopper 23, an arc-shaped window baffle 24 between the first sliding groove 221 and the second sliding groove 231, and a sliding handle 241 at the front end of the arc-shaped window baffle 24.
The steam injection part 3 can inject steam into the first accommodating cavity 21, the steam injection part 3 comprises a plurality of steam guide pipes 30 which are vertically upward and arranged in an annular array along the inner wall of the first accommodating cavity 21, steam through holes 31 are formed in the steam guide pipes 30, the steam through holes 31 are communicated with the annular steam conducting grooves 12, a plurality of steam nozzles 32 are uniformly formed in one side, facing the central axis of the first accommodating cavity 21, of the steam guide pipes 30 from top to bottom, and steam spray holes 33 communicated with the steam through holes 31 are formed in the steam nozzles 32;
the inner storage lattice 4 is positioned in the first accommodating cavity 21, the inner storage lattice 4 comprises a rotating support body 41 rotatably mounted on the base 1, a porous plate 42 fixedly connected between the rotating support body 41 and the main shaft 7, the porous plate 42 is provided with a plurality of waste gas and waste liquid discharge holes 421 which are vertically communicated, a rotating body 43 fixedly connected to the outer side of the main shaft 7, and a plurality of partition plates 44 fixedly connected to the peripheral wall of the outer side of the rotating body 43, and an annular accommodating cavity 432 is formed in the rotating body 43; the base 1 is provided with a rotary matching hole 17, and the rotary supporting body 41 is rotatably matched in the rotary matching hole 17.
The annular supporting body 50 is fixedly connected to the top of the annular accommodating cavity 432, an annular fixing groove 51 is formed in the bottom of the annular supporting body 50, and an annular electric heating drying net 52 is fixedly arranged in the annular fixing groove 51;
a sealing shell 9 fixedly arranged at the top end of the outer shell 2, wherein the sealing shell 9 is provided with a second accommodating cavity 91;
a power unit 8 for providing power for the spindle 7 is arranged in the second accommodating cavity 91, the power unit 8 includes a motor 81, a first bevel gear 82 connected to an output shaft of the motor 81, and a second bevel gear 83 engaged with the first bevel gear 82, and the second bevel gear 83 is fixedly connected to the top end of the spindle 7.
The utility model relates to an operation instrument disinfecting equipment for oncology, when needing to use the equipment, the steam inlet 11 is connected with the external disinfection steam supply equipment for steam channel, the waste gas and waste liquid export interface 18 is connected with the external waste gas and waste liquid treatment equipment, the sliding handle 241 is pushed upwards manually, the arc window baffle 24 is taken out, the operation instrument needing to be disinfected is placed between the clapboards 44 through the window 27, then the arc window baffle 24 is installed back to the original position window, the external disinfection steam supply equipment and the external waste gas and waste liquid treatment equipment start working, high-temperature and high-pressure steam enters the annular steam conduction groove 12 through the steam inlet hole 111, high-temperature and high-pressure steam in the annular steam conduction groove 12 is evenly distributed again and enters the steam through hole 31, the high-temperature and high-pressure steam in the steam through hole 31 is finally sprayed out through the steam spray hole 33, the steam jet holes 33 face the direction of the main shaft 7, high-temperature and high-pressure steam jetted by the steam jet holes 33 washes the surgical instruments to be sterilized to clean and sterilize the surgical instruments, waste gas and waste liquid can be formed by the used high-temperature and high-pressure steam, the waste gas and waste liquid enters the inverted triangular ring groove 16 through the waste gas and waste liquid discharge holes 421 on the porous plate 42, the waste gas and waste liquid in the inverted triangular ring groove 16 enters the annular waste gas and waste liquid conducting groove 14 through the waste gas and waste liquid flowing hole 15, and the waste gas and waste liquid in the annular waste gas and waste liquid conducting groove 14 is finally discharged to external waste gas and waste liquid treatment equipment through the waste gas and waste liquid guide hole;
when the external sterilizing steam supply equipment starts to work, the power part 8 is started, the output shaft of the motor 81 drives the first bevel gear 82 to rotate, the first bevel gear 82 is meshed with and connected with and drives the second bevel gear 83 to rotate, the second bevel gear 83 drives the main shaft 7 fixedly connected with the main shaft to rotate, and the main shaft 7 drives the porous plate 42 fixedly connected with the main shaft and the rotating body 43 to rotate together;
when the cleaning and disinfection work of the surgical instrument by the high-temperature and high-pressure steam is finished, the external disinfection steam supply equipment stops working firstly, then the external waste gas and liquid treatment equipment stops working, the power part 8 also stops working,
standing for a moment, the annular electric heating drying net 52 is started, so that the temperature in the annular accommodating cavity 432 is raised, the temperature in the inner storage grid 4 is also raised through heat conduction, the surgical instrument is rapidly dried under the action of high temperature, the ultraviolet disinfection pile 26 starts to be started after drying for a certain time, the surgical instrument is efficiently disinfected, the disinfection work is carried out after a certain time, and the annular electric heating drying net 52 and the ultraviolet disinfection pile 26 stop working.
The reason why the annular electric heating drying net 52 does not stop working immediately after the drying work is completed is that a certain disinfection and sterilization effect is achieved in a high-temperature environment, and the disinfection effect is better when the annular electric heating drying net is matched with the ultraviolet disinfection piles 26 for disinfection in the high-temperature environment.
The motor 81 adopts a stepping motor (produced by model alpha STEP AZ east motor company), the motor 81 is horizontally arranged, the installation is convenient and the space is saved, because the motor 82 is horizontally arranged, the axis of the motor output shaft is relatively vertical to the axis of the main shaft 7, the transmission mode selects bevel gear transmission, the transmission is accurate and stable, the annular electric heating drying net 52 is an electric heating net with a heating wire heating mode and mainly comprises a high-temperature resistant hollow cylindrical material and a heating wire wound on the outer surface of the hollow cylindrical material, the steam nozzle 32 is a wide-angle nozzle, and the sprayed fan angle is about 50 degrees.
Claims (7)
1. An equipment for sterilizing surgical instruments for oncology department, comprising: the base is used for supporting the whole equipment (1), one side of the base (1) is provided with a steam inlet (11), the other side of the base is provided with a waste gas and waste liquid guiding interface (18), and the inside of the base (1) is provided with an annular steam conducting groove (12) which is communicated with the steam inlet (11) and used for evacuating steam and an annular waste gas and waste liquid conducting groove (14) used for collecting waste gas and waste liquid;
the device comprises a base (1), an outer shell (2) positioned on the upper portion of the base (1), a first accommodating cavity (21) is arranged in the outer shell (2), a plurality of ultraviolet disinfection piles (26) are arranged in an annular array on the inner wall of the first accommodating cavity (21), a main shaft rotating matching hole (25) is formed in the top end of the outer shell (2), a main shaft (7) extending up and down is arranged in the main shaft rotating matching hole (25), and a window (27) used for taking/placing surgical instruments for oncology is further formed in the outer shell (2);
the steam injection part (3) can inject steam into the first accommodating cavity (21), the steam injection part (3) comprises a plurality of steam guide pipes (30) which are vertically upward along the inner wall of the first accommodating cavity (21) and are arranged in an annular array, steam through holes (31) are formed in the steam guide pipes (30), the steam through holes (31) are communicated with the annular steam conducting groove (12), a plurality of steam nozzles (32) are uniformly arranged on one side, facing the central axis of the first accommodating cavity (21), of the steam guide pipes (30) from top to bottom, and steam spray holes (33) communicated with the steam through holes (31) are formed in the steam nozzles (32);
the inner storage lattice (4) is positioned in the first accommodating cavity (21), the inner storage lattice (4) comprises a rotating support body (41) rotatably mounted on the base (1), a porous plate (42) fixedly connected between the rotating support body (41) and the main shaft (7), the porous plate (42) is provided with a plurality of vertically through waste gas and waste liquid discharge holes (421), a rotating body (43) fixedly connected to the outer side of the main shaft (7) and a plurality of partition plates (44) fixedly connected to the peripheral wall of the outer side of the rotating body (43), and an annular accommodating cavity (432) is formed in the rotating body (43);
the annular supporting body (50) is fixedly connected to the top of the annular accommodating cavity (432), an annular fixing groove (51) is formed in the bottom of the annular supporting body (50), and an annular electric heating drying net (52) is fixedly arranged in the annular fixing groove (51);
the sealing shell (9) is fixedly arranged at the top end of the outer shell (2), and the sealing shell (9) is provided with a second accommodating cavity (91);
and a power part (8) for providing power for the main shaft (7) is arranged in the second accommodating cavity (91).
2. The surgical instrument disinfection apparatus for oncology department according to claim 1, wherein: the base (1) is provided with a rotating matching hole (17), and the rotating supporting body (41) is rotatably matched in the rotating matching hole (17).
3. The surgical instrument disinfection apparatus for oncology department according to claim 1, wherein: a steam inlet hole (111) communicated with the annular steam conduction groove (12) is formed in the steam inlet (11); a plurality of steam guide pipe communication holes (13) used for communicating the steam through holes (31) are arranged above the annular steam conduction groove (12).
4. The surgical instrument disinfection apparatus for oncology department according to claim 1, wherein: the top of the base (1) inside the first accommodating cavity (21) is provided with an inverted triangular ring groove (16), and the bottom of the ring groove (16) is communicated with the annular waste gas and waste liquid conducting groove (14) through a plurality of waste gas and waste liquid circulating holes (15).
5. The surgical instrument disinfection apparatus for oncology department according to claim 1, wherein: and a waste gas and waste liquid leading-out hole (181) is formed in the waste gas and waste liquid leading-out interface (18), and the waste gas and waste liquid leading-out hole (181) is communicated with the annular waste gas and waste liquid guiding groove (14).
6. The surgical instrument disinfection apparatus for oncology department according to claim 1, wherein: the window is characterized in that a first stop block (22) is arranged on the left side of the window (27), a second stop block (23) is arranged on the right side of the window, a first sliding groove (221) is arranged on the right side of the first stop block (22), a second sliding groove (231) is arranged on the left side of the second stop block (23), an arc-shaped window baffle (24) is arranged between the first sliding groove (221) and the second sliding groove (231), and a sliding handle (241) is arranged at the front end of the arc-shaped window baffle (24).
7. The surgical instrument disinfection apparatus for oncology department according to claim 1, wherein: the power part (8) comprises a motor (81), a first bevel gear (82) connected to an output shaft of the motor (81), and a second bevel gear (83) meshed with the first bevel gear (82), wherein the second bevel gear (83) is fixedly connected to the top end of the spindle (7).
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CN202020556733.4U CN212522456U (en) | 2020-04-15 | 2020-04-15 | Surgical instrument disinfecting equipment for oncology department |
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CN202020556733.4U CN212522456U (en) | 2020-04-15 | 2020-04-15 | Surgical instrument disinfecting equipment for oncology department |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN112826601A (en) * | 2021-03-04 | 2021-05-25 | 象山县第一人民医院医疗健康集团 | Tool fixing device for thoracic cavity operation |
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2020
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112826601A (en) * | 2021-03-04 | 2021-05-25 | 象山县第一人民医院医疗健康集团 | Tool fixing device for thoracic cavity operation |
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