CN214232282U - Wound orthopedics wound washing unit - Google Patents

Wound orthopedics wound washing unit Download PDF

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Publication number
CN214232282U
CN214232282U CN202022706127.9U CN202022706127U CN214232282U CN 214232282 U CN214232282 U CN 214232282U CN 202022706127 U CN202022706127 U CN 202022706127U CN 214232282 U CN214232282 U CN 214232282U
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liquid storage
pipe
wound
storage barrel
flushing
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Expired - Fee Related
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CN202022706127.9U
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Chinese (zh)
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吴宝岭
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Individual
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Individual
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Abstract

The utility model relates to the technical field of medical instruments, in particular to a wound orthopedic wound irrigation device; the utility model comprises a placing platform, a liquid storage barrel, a mixing component, a flushing gun and a control box, wherein the left end and the right end of the placing platform are both provided with the liquid storage barrel, the position of the placing platform, which is positioned in the middle of the liquid storage barrel, is provided with the control box, the top of the liquid storage barrel is provided with a liquid exchange pipe, a heating rod and a water pump, the bottom end of the heating rod extends into the liquid storage barrel, the bottom wall of the liquid storage barrel is provided with a temperature sensor, the mixing component comprises a three-way pipe, check valves arranged on the two branch pipes of the three-way pipe and a vortex piece arranged in the main pipe of the three-way pipe, the flushing gun is internally provided with an ultrasonic generator, and a gripping part of the flushing gun is provided with an ultrasonic switch and a flushing switch; the utility model discloses can solve among the prior art effectively that the doctor meets when washing traumatic orthopedics patient's wound the relatively poor, the flow of washing comparatively troublesome and the not good problem of washing effect of the travelling comfort of process of washing.

Description

Wound orthopedics wound washing unit
Technical Field
The utility model relates to the technical field of medical equipment, concretely relates to wound orthopedics wound washing unit.
Background
Traumatic orthopedics is a small branch of osteology, and the targeted population is various traumatic diseases. Because the orthopedic patients on the bed are mostly accompanied with skin injuries, doctors need to clean the wounds of the patients immediately after completing hemostasis, and the doctors can only adopt related treatment operations such as fixation, bandaging and the like after the wounds of the patients are cleaned.
Doctors often encounter the following difficulties in cleaning the wound for the patient:
firstly, the comfort of the washing process is poor, and when the ambient temperature is low, the cold cleaning solution can cause great stimulation to the wound of the patient, thereby aggravating the pain of the patient;
secondly, the flushing process is troublesome, as some wounds need to be flushed by using normal saline and also need to be flushed by using a cleaning solution prepared from a normal saline mixed liquid medicine and having a certain concentration, but doctors cannot flexibly switch between the normal saline and the cleaning solution when flushing the wounds of patients, and doctors waste a certain time when mixing the cleaning solution;
thirdly, the washing effect is not good because doctors usually pour normal saline or cleaning solution directly on the wound of the patient for washing, so that the impurities in the deep part of the wound are difficult to be removed, and the impurities in the wound are difficult to be washed away.
SUMMERY OF THE UTILITY MODEL
Solves the technical problem
To the above-mentioned shortcoming that prior art exists, the utility model provides a wound orthopedics wound washing unit can solve among the prior art effectively that the doctor meets when washing wound orthopedics patient's wound the relatively poor, the flow of washing comparatively troublesome and the not good problem of washing effect of the travelling comfort of process.
Technical scheme
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes:
a wound and orthopedic wound irrigation device comprises a placing table, a liquid storage barrel, a mixing assembly, a water flushing gun and a control box; liquid storage barrels are arranged at the left end and the right end of the placing table, a control box is arranged at the position, located in the middle of the liquid storage barrels, on the placing table, and a clamping seat matched with a flushing gun is arranged on the back face of a baffle at the rear end of the placing table; the top of the liquid storage barrel is provided with a liquid exchange pipe, a heating rod and a water pump, a pipe cap is detachably mounted on the liquid exchange pipe, water pipes for connecting the interior of the liquid storage barrel with the outside are arranged on the water pumps, the bottom end of the heating rod extends into the liquid storage barrel, and a temperature sensor is arranged on the bottom wall of the interior of the liquid storage barrel; the mixing component comprises a three-way pipe, check valves arranged on two branch pipes of the three-way pipe and a vortex piece arranged in a main pipe of the three-way pipe, and the branch pipes at the two ends of the three-way pipe are respectively connected with water pipes on the two liquid storage barrels; an ultrasonic generator is arranged inside the flushing gun, an ultrasonic switch and a flushing switch are arranged on the handle part of the flushing gun, and the tail end of the flushing gun is connected with the main pipe through a spring pipe; the control box is characterized in that a display screen, a key module, a power distribution interface and a charging interface are arranged on the outer wall of the control box, a power module and a control panel are arranged in a containing cavity in the control box, and a storage module and a microprocessor are arranged on the control panel.
Furthermore, supporting legs are arranged at four top corners of the bottom of the placing table and made of rubber materials.
Furthermore, the end parts of the heating rod and the water pipe, which are positioned inside the liquid storage barrel, are close to the bottom wall of the liquid storage barrel.
Furthermore, the liquid storage barrel is made of a hard transparent material meeting medical standards, and scale marks are further arranged on the outer side wall of the liquid storage barrel.
Furthermore, the outer side wall of the liquid changing pipe is provided with an external thread, the inner side wall of the pipe cap is provided with an internal thread matched with the external thread, and the bottom wall of the inside of the pipe cap is provided with a sealing plug matched with the liquid changing pipe.
Still further, the maximum heating temperature of the heating rod is less than 40 degrees celsius.
Further, be responsible for the adoption and accord with medical standard's hard material and make, the vortex spare includes the tourus and fixes the awn star paddle on the tourus, the angle number of awn star paddle is 2 ~ 6, the inner ring lateral wall of being responsible for is equidistant along its central axis direction set up a set of annular that matches with the tourus, equal movable mounting has the tourus in the annular, and the direction of rotation of awn star paddle is the same.
Furthermore, the conducting directions of the one-way valves are all from branch pipes to main pipes.
Furthermore, the type of the charging interface is type-c, the power module adopts a rechargeable lithium battery, and the type of the microprocessor is a single chip microcomputer.
Furthermore, the water pump, the heating rod, the temperature sensor, the one-way valve, the ultrasonic switch, the ultrasonic generator and the flushing switch are all electrically connected with the power module through the power distribution interface, and the display screen, the key module, the charging interface and the power module are all electrically connected with the control panel.
Advantageous effects
Adopt the utility model provides a technical scheme compares with known public technique, has following beneficial effect:
the utility model discloses an increase and place the bench left side, the right side both ends all are equipped with the liquid storage bucket, place the position department in the middle of the liquid storage bucket on the bench and be equipped with the control box, the top of liquid storage bucket is equipped with the liquid change pipe, heating rod and water pump, detachably installs the pipe cap on the liquid change pipe, all be equipped with the water pipe of connecting the liquid storage bucket inside with the external world on the water pump, the bottom of heating rod stretches into inside the liquid storage bucket, and be equipped with temperature sensor on the diapire of liquid storage bucket inside, mixing assembly includes the three-way pipe, the check valve that sets up on two branch pipes of three-way pipe and the vortex spare of setting in the three-way pipe main pipe, the branch pipe at three-way pipe both ends respectively with the water piping connection on two liquid storage buckets, the inside ultrasonic generrator that is equipped with of bath rifle, bath rifle portion of gripping is equipped with ultrasonic switch and bath switch, through the spring union coupling between the tail end of water gun and the main pipe, be equipped with the display screen on the outer wall of control box, The control box comprises a key module, a power distribution interface and a charging interface, wherein a power module and a control panel are arranged in a containing cavity in the control box, and a storage module and a microprocessor are arranged on the control panel; thus, a doctor can respectively heat and preserve the physiological saline and the liquid medicine stored in the two liquid storage barrels by controlling the heating rod through the key module, whether the one-way valves on the two branch pipes of the three-way pipe are conducted or not and the working states of the water feeding pumps of the two liquid storage barrels are controlled, and then the cleaning solution (or the physiological saline) water flow with proper temperature at the spraying position of the washing gun is enabled to be provided by the matching of the vortex piece in the main pipe and the ultrasonic generator in the washing gun, and the cleaning solution (or the physiological saline) water flow has fine bubbles; the effects of effectively improving the washing comfort, simplifying the washing process and improving the washing effect are achieved.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below. It is obvious that the drawings in the following description are only some embodiments of the invention, and that for a person skilled in the art, other drawings can be derived from them without inventive effort.
Fig. 1 is a visual diagram of the present invention at a first viewing angle;
fig. 2 is a visual diagram of the present invention at a second viewing angle;
FIG. 3 is a partial cross-sectional view of the flush gun of the present invention;
fig. 4 is a partial sectional view of the main pipe of the three-way pipe of the present invention;
FIG. 5 is a pictorial view of the vortex member of the present invention;
FIG. 6 is a cross-sectional internal view of the control box of the present invention;
FIG. 7 is a partial cross-sectional view of a reservoir of the present invention;
fig. 8 is a partial cross-sectional view of a cap according to the present invention;
the reference numerals in the drawings denote: 1-placing a table; 2-a liquid storage barrel; 3-a mixing assembly; 4-flushing a water gun; 5-a control box; 6-a baffle plate; 7-a card seat; 8-liquid changing pipe; 9-heating rod; 10-a water pump; 11-a pipe cap; 12-a water pipe; 13-a temperature sensor; 14-a tee pipe; 15-branch pipe; 16-a one-way valve; 17-main tube; 18-a vortex member; 19-an ultrasonic generator; 20-an ultrasonic switch; 21-flushing switch; 22-a spring tube; 23-a display screen; 24-a key module; 25-a power distribution interface; 26-a charging interface; 27-a housing chamber; 28-a power module; 29-a control panel; 30-a storage module; 31-a microprocessor; 32-supporting feet; 33-graduation mark; 34-external threads; 35-internal thread; 36-a sealing plug; 37-torus; 38-mango star blade; 39-ring groove.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the drawings in the embodiments of the present invention are combined below to clearly and completely describe the technical solutions in the embodiments of the present invention. It is to be understood that the embodiments described are only some of the embodiments of the present invention, and not all of them. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
The present invention will be further described with reference to the following examples.
Examples
The wound irrigation device for orthopaedics of the embodiment is as follows with reference to fig. 1-8: including placing platform 1, stock solution bucket 2, hybrid module 3, bath gun 4 and control box 5.
Place the platform 1 on the left and right both ends all be equipped with liquid storage bucket 2, place the platform 1 on be in the position department in the middle of liquid storage bucket 2 and be equipped with control box 5, place the 6 backs of baffle of platform 1 rear end and be equipped with the cassette 7 that matches with water gun 4.
The top of stock solution bucket 2 is equipped with liquid changing pipe 8, heating rod 9 and water pump 10, and detachably installs pipe cap 11 on the liquid changing pipe 8, all is equipped with on the water pump 10 and connects 2 inside and external water pipes 12 of stock solution bucket, and inside the stock solution bucket 2 was stretched into to the bottom of heating rod 9 to be equipped with temperature sensor 13 on the diapire of 2 inside of stock solution bucket.
The mixing component 3 comprises a three-way pipe 14, check valves 16 arranged on two branch pipes 15 of the three-way pipe 14 and a vortex piece 18 arranged in a main pipe 17 of the three-way pipe 14, wherein the branch pipes 15 at two ends of the three-way pipe 14 are respectively connected with water pipes 12 on the two liquid storage barrels 2.
The inside ultrasonic generator 19 that is equipped with of water flushing gun 4, water flushing gun 4 handle portion is equipped with ultrasonic switch 20 and bath switch 21, is connected through spring pipe 22 between the tail end of water flushing gun 4 and the person in charge 17.
The outer wall of the control box 5 is provided with a display screen 23, a key module 24, a power distribution interface 25 and a charging interface 26, a power supply module 28 and a control panel 29 are arranged in an accommodating cavity 27 inside the control box 5, and the control panel 29 is provided with a storage module 30 (wherein the storage module 30 mainly stores corresponding control programs) and a microprocessor 31.
Four apex angles in the bottom of placing platform 1 all are equipped with supporting legs 32, and supporting legs 32 adopt rubber materials to make, can guarantee well like this and place the stability of platform 1, place the phenomenon that platform 1 can not take place to slide easily promptly.
The tip that heating rod 9 and water pipe 12 are in the inside of stock solution bucket 2 all is close to the diapire of stock solution bucket 2, can guarantee like this that heating rod 9 can heat the heat preservation to normal saline or the liquid medicine in stock solution bucket 2, can also guarantee simultaneously that water pump 10 can be with the comparatively complete extraction of normal saline or liquid medicine in stock solution bucket 2.
The liquid storage barrel 2 is made of a hard transparent material meeting medical standards, and scale marks 33 are further arranged on the outer side wall of the liquid storage barrel 2, so that a doctor can conveniently and quickly observe the surplus of the physiological saline or the liquid medicine in the liquid storage barrel 2, and the liquid storage barrel 2 can be timely supplemented with new physiological saline or liquid medicine.
The outer side wall of the liquid changing pipe 8 is provided with an external thread 34, the inner side wall of the pipe cap 11 is provided with an internal thread 35 matched with the external thread 34, the bottom wall of the inner part of the pipe cap 11 is provided with a sealing plug 36 matched with the liquid changing pipe 8, and the sealing plug 36 can further improve the sealing performance between the liquid changing pipe 8 and the pipe cap 11.
The maximum heating temperature of the heating rod 9 is lower than 40 ℃, and a doctor can manually set the maximum heating temperature to 36.5 ℃ through the key module 24 in actual use, because the body surface temperature of a normal person is around 36.5 ℃, and the physiological saline or the cleaning solution at the temperature is neither hot nor cold for a patient.
The main pipe 17 adopts the hard material that accords with medical standard to make, vortex piece 18 includes tourus 37 and fixes the miscanthus paddle 38 on tourus 37, the angle number of miscanthus paddle 38 is 3, the equidistant annular groove 39 of a set of and tourus 37 matching of seting up of the inner ring lateral wall of main pipe 17 along its central axis direction, equal movable mounting has tourus 37 in the annular groove 39, and the direction of rotation of miscanthus paddle 38 is the same, make vortex piece 18 take place the rotation through the normal saline and the liquid medicine of main pipe 17 like this, the rotation of vortex piece 18 will be to stirring the mixture through the normal saline and the liquid medicine of main pipe 17 simultaneously, thereby make the washing solution that the even miscanthus of a normal saline mixes and is appointed concentration.
The conducting directions of the one-way valve 16 are from the branch pipe 15 to the main pipe 17, so that the normal saline or the liquid medicine in the three-way pipe 14 can be effectively ensured to only flow out from the main pipe 17, and the liquid medicine is prevented from being mixed in the liquid storage barrel 2 filled with the normal saline (or the normal saline is mixed in the liquid storage barrel 2 filled with the liquid medicine).
The type of the charging interface 26 is type-c, the power module 28 adopts a rechargeable lithium battery, and the type of the microprocessor 31 is a single chip microcomputer.
The water pump 10, the heating rod 9, the temperature sensor 13, the one-way valve 16, the ultrasonic switch 20, the ultrasonic generator 19 and the flushing switch 21 are electrically connected with a power module 28 through a power distribution interface 25, and the display screen 23, the key module 24, the charging interface 26 and the power module 28 are electrically connected with a control board 29.
When in use:
firstly, a doctor adds a proper amount of physiological saline and liquid medicine into two liquid storage barrels 2 respectively;
secondly, the doctor starts the power supply module 28 through the key module 24, and then controls the heating rods 9 on the two liquid storage barrels 2 through the key module 24 to heat the normal saline and the liquid medicine in the two liquid storage barrels 2 to the specified temperature and preserve heat;
thirdly, the doctor controls the one-way valve 16 communicated with the liquid storage barrel 2 filled with the physiological saline to be communicated through the key module 24, and the one-way valve 16 communicated with the liquid storage barrel 2 filled with the liquid medicine to be closed;
fourthly, the doctor sets the power of the water pump 10 on the liquid storage barrel 2 filled with the physiological saline through the key module 24 and waits for the doctor;
fifthly, the doctor takes the flushing gun off the clamping seat 7, the doctor presses the ultrasonic switch 20 to enable the ultrasonic generator 19 to work, meanwhile, the doctor presses the flushing switch (after the microprocessor 31 receives a signal of the flushing switch, the microprocessor immediately instructs the water pump 10 on the liquid storage tank filled with the physiological saline to enter a working state) to enable the flushing gun to spray a physiological saline water flow containing fine bubbles, and then the doctor holds the flushing gun to flush the wound of the patient;
sixthly, the doctor presses the ultrasonic switch 20 to stop the ultrasonic generator 19, and simultaneously presses the flushing switch (after the microprocessor 31 receives a signal of the flushing switch, the microprocessor immediately instructs the water pump 10 on the liquid storage tank filled with the physiological saline to enter a standby state) to stop the water outlet of the flushing gun;
seventhly, the doctor controls the conduction of the two one-way valves 16 on the three-way pipe 14 through the key module 24;
eighthly, preparing the concentration of the cleaning solution as required, and respectively setting the working power of the two water pumps 10 on the liquid storage barrel 2 filled with the normal saline and the liquid medicine by the doctor through the key module 24 (specifically, the ratio of the concentrations of the normal saline and the liquid medicine in the cleaning solution is equal to the ratio of the working power of the two water pumps 10 on the liquid storage barrel 2 filled with the normal saline and the liquid medicine), wherein both the two water pumps 10 are in a standby state at the moment;
ninth, the doctor presses the ultrasonic switch 20 to make the ultrasonic generator 19 work, and simultaneously the doctor presses the flushing switch (after the microprocessor 31 receives the signal of the flushing switch, the microprocessor immediately instructs the two water pumps 10 to be installed and simultaneously enters a working state) to make the flushing gun spray out water flow of the cleaning solution containing fine bubbles, and then the doctor holds the flushing gun to flush the wound of the patient;
step ten, after the doctor finishes cleaning the wound of the patient, the doctor turns off the product of the invention through the ultrasonic switch 20, the button switch and the key module 24.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and to simplify the description, but do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the present invention.
The above embodiments are only used to illustrate the technical solution of the present invention, and not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention in its corresponding aspects.

Claims (10)

1. A wound orthopedics wound washing unit which characterized in that: comprises a placing table, a liquid storage barrel, a mixing component, a water flushing gun and a control box; liquid storage barrels are arranged at the left end and the right end of the placing table, a control box is arranged at the position, located in the middle of the liquid storage barrels, on the placing table, and a clamping seat matched with a flushing gun is arranged on the back face of a baffle at the rear end of the placing table; the top of the liquid storage barrel is provided with a liquid exchange pipe, a heating rod and a water pump, a pipe cap is detachably mounted on the liquid exchange pipe, water pipes for connecting the interior of the liquid storage barrel with the outside are arranged on the water pumps, the bottom end of the heating rod extends into the liquid storage barrel, and a temperature sensor is arranged on the bottom wall of the interior of the liquid storage barrel; the mixing component comprises a three-way pipe, check valves arranged on two branch pipes of the three-way pipe and a vortex piece arranged in a main pipe of the three-way pipe, and the branch pipes at the two ends of the three-way pipe are respectively connected with water pipes on the two liquid storage barrels; an ultrasonic generator is arranged inside the flushing gun, an ultrasonic switch and a flushing switch are arranged on the handle part of the flushing gun, and the tail end of the flushing gun is connected with the main pipe through a spring pipe; the control box is characterized in that a display screen, a key module, a power distribution interface and a charging interface are arranged on the outer wall of the control box, a power module and a control panel are arranged in a containing cavity in the control box, and a storage module and a microprocessor are arranged on the control panel.
2. The wound and orthopedic wound irrigation device according to claim 1, wherein supporting legs are arranged at four top corners of the bottom of the placing table, and the supporting legs are made of rubber materials.
3. A traumatic orthopaedic wound irrigation apparatus according to claim 1, wherein the ends of the heating rod and the water pipe inside the reservoir are close to the bottom wall of the reservoir.
4. A wound and orthopaedics wound irrigation device according to claim 1, wherein the liquid storage barrel is made of a hard transparent material which meets medical standards, and scale marks are further arranged on the outer side wall of the liquid storage barrel.
5. The wound orthopedics wound irrigation device of claim 1, characterized in that the outer side wall of the liquid changing pipe is provided with an external thread, the inner side wall of the pipe cap is provided with an internal thread matched with the external thread, and the bottom wall of the inner part of the pipe cap is provided with a sealing plug matched with the liquid changing pipe.
6. A traumatic orthopaedic wound irrigation apparatus according to claim 1, wherein the maximum heating temperature of the heating rod is below 40 degrees celsius.
7. The wound orthopaedics wound irrigation device according to claim 1, wherein the main tube is made of a hard material meeting medical standards, the vortex piece comprises a ring body and mango star paddles fixed on the ring body, the number of the angles of the mango star paddles is 2-6, a group of ring grooves matched with the ring body are formed in the side wall of the inner ring of the main tube at equal intervals along the central axis direction of the side wall, the ring body is movably installed in each ring groove, and the rotation directions of the mango star paddles are the same.
8. A traumatic wound irrigation device according to claim 1, wherein the one-way valves are all in branch-to-main pipe communication direction.
9. The wound and orthopedic wound irrigation device according to claim 1, wherein the type of the charging interface is type-c, the power module adopts a rechargeable lithium battery, and the type of the microprocessor is a single chip microcomputer.
10. The traumatic orthopedic wound irrigation device according to claim 1, wherein the water pump, the heating rod, the temperature sensor, the one-way valve, the ultrasonic switch, the ultrasonic generator and the flushing switch are all electrically connected with the power module through a power distribution interface, and the display screen, the button module, the charging interface and the power module are all electrically connected with the control board.
CN202022706127.9U 2020-11-20 2020-11-20 Wound orthopedics wound washing unit Expired - Fee Related CN214232282U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022706127.9U CN214232282U (en) 2020-11-20 2020-11-20 Wound orthopedics wound washing unit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022706127.9U CN214232282U (en) 2020-11-20 2020-11-20 Wound orthopedics wound washing unit

Publications (1)

Publication Number Publication Date
CN214232282U true CN214232282U (en) 2021-09-21

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022706127.9U Expired - Fee Related CN214232282U (en) 2020-11-20 2020-11-20 Wound orthopedics wound washing unit

Country Status (1)

Country Link
CN (1) CN214232282U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114098849A (en) * 2021-10-15 2022-03-01 北京积水潭医院 Flushing device and flushing method in operation

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114098849A (en) * 2021-10-15 2022-03-01 北京积水潭医院 Flushing device and flushing method in operation
CN114098849B (en) * 2021-10-15 2023-06-13 北京积水潭医院 Flushing device in operation

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