CN217566931U - Drainage bottle capable of monitoring drainage data in real time - Google Patents

Drainage bottle capable of monitoring drainage data in real time Download PDF

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Publication number
CN217566931U
CN217566931U CN202220580017.9U CN202220580017U CN217566931U CN 217566931 U CN217566931 U CN 217566931U CN 202220580017 U CN202220580017 U CN 202220580017U CN 217566931 U CN217566931 U CN 217566931U
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CN
China
Prior art keywords
drainage
bottle
real time
intake pipe
flowmeter
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN202220580017.9U
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Chinese (zh)
Inventor
兰轲
倪云峰
郭海华
康树宏
吕峰
王娟
姜涛
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Air Force Medical University of PLA
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Air Force Medical University of PLA
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Priority to CN202220580017.9U priority Critical patent/CN217566931U/en
Application granted granted Critical
Publication of CN217566931U publication Critical patent/CN217566931U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model belongs to the technical field of medical equipment, concretely relates to drainage bottle that can real time monitoring drainage data, the bottle comprises a bottle body, hydrops chamber and water seal chamber have been seted up to the inside of bottle, the upper end threaded connection in hydrops chamber has first sealed lid, the upper end threaded connection in water seal chamber has the sealed lid of second, first sealed covering is fixed with mixture stand pipe and flowmeter, the upper end and the lower extreme of flowmeter all are fixed with first outlet duct, the sealed second that covers of second is equipped with second outlet duct and intake pipe, the sealed lid of second and intake pipe sliding connection, and be located be connected through the trachea between first outlet duct of flowmeter upper end and the intake pipe, be equipped with controlling element on the bottle. The utility model discloses can monitor and warn hydrops and gaseous drainage volume, reduce the deviation of drainage volume data, avoid the great condition that causes pulmonary edema and complication of drainage volume.

Description

Drainage bottle capable of monitoring drainage data in real time
Technical Field
The utility model belongs to the technical field of medical equipment, concretely relates to drainage bottle of real time monitoring drainage data.
Background
The drainage bottle is a medical instrument, and it can be to the inside gas of patient's thorax and hydrops drainage and discharge to the patient external, is the medical equipment that treatment pneumothorax, empyema, blood chest patient used commonly, divides according to its appearance, can divide into single chamber drainage bottle, two-chamber drainage bottle and three chamber drainage bottle, and the drainage bottle comprises bottle, sealed lid, drainage tube, connecting pipe and blast pipe mostly.
When utilizing the drainage bottle to carry out the drainage to internal gas of hemopneumothorax patient and hydrops, in order to avoid compound Zhang Guodu of patient's lung, and arouse the emergence of other serious conditions such as acute pulmonary edema, the first day drainage volume should not exceed 600ml, begin from the second day, the drainage volume should not exceed 1000ml every day, in the prior art, medical personnel usually adopt the mode of "a small amount of many times" to carry out the drainage to internal hydrops of patient and gas, in order to cause pulmonary edema and complication, however, the drainage volume of hydrops can only be observed through the scale mark of drainage bottle body to current drainage bottle mostly, the drainage volume of the internal gas of patient can not be observed, make drainage volume data appear the deviation, the probability of causing pulmonary edema and complication has been improved, make the device not practical enough.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a but drainage bottle of real time monitoring drainage data can monitor and warn hydrops and gaseous drainage volume, reduces the deviation of drainage volume data, has avoided the great condition that causes pulmonary edema and complication of drainage volume.
The utility model discloses the technical scheme who takes specifically as follows:
the utility model provides a but drainage bottle of real time monitoring drainage data, is equipped with controlling element on the bottle, hydrops chamber and water seal chamber have been seted up to the inside that is equipped with controlling element on the bottle, the upper end threaded connection of hydrops chamber has and is equipped with controlling element on the first sealed cap, the upper end threaded connection in water seal chamber has and is equipped with controlling element on the second sealed cap, be equipped with controlling element on being equipped with controlling element on the first sealed cap on being fixed with the mixture stand pipe and being equipped with controlling element on flowmeter, the upper end and the lower extreme that are equipped with controlling element on the flowmeter all are fixed with and are equipped with controlling element on the first outlet duct, be equipped with controlling element on the second sealed cap on being equipped with controlling element and being equipped with controlling element on the intake pipe, be equipped with controlling element on the second sealed cap and be equipped with controlling element sliding connection on the intake pipe, and be located be equipped with controlling element on the flowmeter on the first outlet duct of controlling element upper end on being equipped with controlling element and be equipped with between controlling element and being equipped with controlling element on the intake pipe and be connected through the trachea, be equipped with controlling element on the bottle and be equipped with controlling element on the flowmeter.
Further, the upper end in hydrops chamber is fixed with and is equipped with control element on the distance sensor, just it passes through wire electric connection to be equipped with control element on control element and the control element on the distance sensor, be equipped with control element on the inside sliding connection in hydrops chamber has the kickboard, be equipped with control element on the inside that is equipped with control element on the kickboard is fixed with the honeycomb duct on, just be equipped with control element sliding connection on being equipped with control element and the mixture stand pipe on the honeycomb duct.
Furthermore, a plurality of air holes are uniformly formed in the floating plate provided with the control element.
Furthermore, the outside that is equipped with control element on the intake pipe has seted up the external screw thread section, the inside that is equipped with control element on the sealed lid of second rotates and is connected with the knob and is equipped with control element on the knob, just be equipped with control element and intake pipe on the knob and be equipped with control element threaded connection.
Furthermore, a plurality of scale marks are uniformly arranged on the outer side of the air inlet pipe, which is provided with the control element.
Furthermore, the inside that is equipped with control element on the second sealed lid has seted up one and has stopped the boss that changes, the inside that stops the boss has seted up and has stopped the face that changes, the outside that is equipped with control element on the intake pipe has seted up the edging face with stopping the face looks adaptation that changes.
Furthermore, the control element is assembled with a control element at least comprising a display screen, a mainboard, a function key, a warning element, a storage unit and a power supply element.
The utility model discloses the technological effect who gains does:
the utility model has the advantages that the control element is assembled on the flowmeter and the control element is assembled on the distance sensor, so that the drainage quantity of the accumulated liquid and the gas can be monitored conveniently, the deviation of the data of the drainage quantity is reduced, the probability of causing pulmonary edema and complications is reduced, and the device is more practical;
the utility model can store and monitor the data of the drainage quantity by assembling the control element on the control element, and can send out a warning signal when the drainage quantity reaches a set value, thereby avoiding the pulmonary edema and complications caused by overlarge drainage quantity;
the utility model discloses an it can adjust the position that is equipped with control element in the intake pipe to be equipped with control element on the knob, is convenient for make the intake pipe in be equipped with control element's lower extreme and the liquid level of aseptic water keep suitable distance for device convenient to use.
Drawings
Fig. 1 is a schematic overall structure diagram of the present invention;
FIG. 2 is a schematic sectional view of the overall structure of the present invention;
FIG. 3 is a schematic view of the internal structure of the present invention;
fig. 4 is a schematic sectional view of a second sealing cover according to the present invention.
In the drawings, the components represented by the respective reference numerals are listed below:
10. a bottle body; 11. a first sealing cover; 12. a second sealing cover; 13. a mixture guide pipe; 14. a flow meter; 15. a first outlet pipe; 16. a second air outlet pipe; 17. an air inlet pipe; 18. a control element; 19. a distance sensor; 20. a floating plate; 21. a flow guide pipe; 22. a knob.
Detailed Description
In order to make the objects and advantages of the present invention more apparent, the present invention will be described in detail with reference to the following embodiments. It is to be understood that the following text is only intended to describe one or several particular embodiments of the invention, and does not strictly limit the scope of the claims specifically claimed.
As shown in fig. 1-4, a drainage bottle capable of monitoring drainage data in real time comprises a bottle body 10, a liquid accumulation cavity and a water seal cavity are formed in the bottle body 10, sterile water is filled in the water seal cavity, a first sealing cover 11 is in threaded connection with the upper end of the liquid accumulation cavity, a second sealing cover 12 is in threaded connection with the upper end of the water seal cavity, a mixture guide pipe 13 and a flowmeter 14 are fixed on the first sealing cover 11, a drainage tube is matched with the mixture guide pipe 13, a first air outlet pipe 15 is fixed on each of the upper end and the lower end of the flowmeter 14, a second air outlet pipe 16 and an air inlet pipe 17 are arranged on the second sealing cover 12, the second sealing cover 12 is in sliding connection with the air inlet pipe 17, the first air outlet pipe 15 and the air inlet pipe 17 on the upper end of the flowmeter 14 are connected through an air pipe, a control element 18 is arranged on the bottle body 10, and the control element 18 is electrically connected with the flowmeter 14 through a conducting wire;
the control element 18 at least comprises a display screen, a mainboard, function keys, a warning element, a storage unit and a power supply element, wherein the mainboard is used for receiving, calculating and outputting electric signals, the display screen is used for displaying related information, the function keys are used for performing man-machine interaction, the warning element is used for sending warning signals, the storage unit is used for storing data, and the power supply element is used for supplying power to the electrical element;
a distance sensor 19 is fixed at the upper end of the dropsy cavity, the distance sensor 19 is electrically connected with the control element 18 through a lead, a floating plate 20 is connected in the dropsy cavity in a sliding manner, a guide pipe 21 is fixed in the floating plate 20, and the guide pipe 21 is connected with the mixture guide pipe 13 in a sliding manner;
furthermore, the accumulated liquid drained into the accumulated liquid cavity can drive the floating plate 20 to move upwards, the moving distance of the floating plate 20 can be monitored through the distance sensor 19, the accumulated liquid is converted into the drainage quantity of the accumulated liquid through related calculation, the accumulated liquid can be guided and drained through the guide pipe 21, and the accumulated liquid is prevented from falling to the surface of the floating plate 20;
a plurality of air holes are uniformly formed in the floating plate 20;
further, the gas in the gas-liquid mixture which is drained from the patient to the inner part of the hydropneum can flow to the first gas outlet pipe 15 through the gas vent;
an external thread section is arranged on the outer side of the air inlet pipe 17, a knob 22 is rotatably connected inside the second sealing cover 12, and the knob 22 is in threaded connection with the air inlet pipe 17;
a plurality of scale marks are uniformly arranged on the outer side of the air inlet pipe 17;
after the sterile water is injected into the water seal cavity, the lower end of the air inlet pipe 17 is submerged in the sterile water, the knob 22 is rotated, the air inlet pipe 17 is driven to move by the knob 22 through the threaded connection between the knob 22 and the air inlet pipe 17, the lower end of the air inlet pipe 17 is located 1-2CM below the liquid level, and the distance from the lower end of the air inlet pipe 17 to the liquid level of the sterile water can be accurately adjusted through the scale marks;
furthermore, in the prior art, when the gas in the patient is drained, the lower end of the air inlet pipe 17 is usually located 1-2CM below the liquid level of the sterile water, if the distance of inserting the air inlet pipe 17 into the water is too shallow, the outlet is easy to leak, and bacteria enter the chest cavity of the patient; if the air inlet pipe 17 is inserted too far into the water, the water pressure is large, and the air is not beneficial to the exhaust of a patient;
a rotation stopping boss is arranged inside the second sealing cover 12, a rotation stopping surface is arranged inside the rotation stopping boss, and a chamfered surface matched with the rotation stopping surface is arranged outside the air inlet pipe 17;
further, when the knob 22 is rotated to adjust the position of the air inlet pipe 17, the air inlet pipe 17 can be prevented from rotating synchronously along with the knob 22 by matching the rotation stop surface inside the second sealing cover 12 with the edge cutting surface outside the air inlet pipe 17.
The utility model discloses a theory of operation does:
when the device is used for draining effusion and gas in a patient body, a proper amount of sterile water is injected into the water seal cavity, the knob 22 is rotated, the air inlet pipe 17 is driven to move by the knob 22 through the threaded connection between the knob 22 and the air inlet pipe 17 and the sliding connection between the air inlet pipe 17 and the second sealing cover 12, the distance from the lower end of the air inlet pipe 17 to the liquid level of the sterile water is observed through the scale mark on the outer side of the air inlet pipe 17, the lower end of the air inlet pipe 17 is positioned 1-2CM below the liquid level, the lower end of the air inlet pipe 17 is conveniently kept at a proper distance from the liquid level of the sterile water, and the device is convenient to use;
setting a drainage warning value through a function key, respectively connecting two ends of a drainage tube which is used in a matched manner with the thoracic cavity of a patient and a mixture guide tube 13, forming a gas-liquid mixture by effusion and gas in the body of the patient after drainage is started, sequentially entering the inner part of a hydrops cavity through the mixture guide tube 13 and a guide tube 21, and allowing the gas in the gas-liquid mixture to flow into the inner part of a flowmeter 14 through air holes in a floating plate 20;
after accumulated liquid is retained in the accumulated liquid cavity, the floating plate 20 can be driven to float upwards, the moving distance of the floating plate 20 is monitored through the distance sensor 19, meanwhile, a monitoring signal is transmitted to the control element 18, and the drainage quantity of the accumulated liquid can be calculated and stored through the control element 18;
after the gas in the gas-liquid mixture flows through the interior of the flowmeter 14, the flow of the gas is monitored through the flowmeter 14, monitoring signals are transmitted to the control element 18, the drainage quantity of the gas can be calculated and stored through the control element 18, and then the drainage quantity of accumulated liquid and the gas is monitored through the cooperation of the flowmeter 14, the control element 18 and the distance sensor 19, so that the deviation of the drainage quantity data is reduced, and the device is more practical;
when the drainage volume reaches the warning value, the warning element in the control element 18 can send out a warning signal to medical personnel, so that pulmonary edema and complications caused by overlarge drainage volume can be effectively avoided.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention. Structures, devices and methods of operation not specifically described or illustrated in the present application are not specifically illustrated or described, but are generally practiced in the art without limitation.

Claims (7)

1. The utility model provides a drainage bottle of drainage data can real time monitoring, includes bottle (10), its characterized in that: hydrops chamber and water seal chamber have been seted up to the inside of bottle (10), the upper end threaded connection in hydrops chamber has first sealed lid (11), the upper end threaded connection in water seal chamber has second sealed lid (12), be fixed with mixture stand pipe (13) and flowmeter (14) on first sealed lid (11), the upper end and the lower extreme of flowmeter (14) all are fixed with first outlet duct (15), be equipped with second outlet duct (16) and intake pipe (17) on the sealed lid of second (12), second sealed lid (12) and intake pipe (17) sliding connection, and be located be connected through the trachea between first outlet duct (15) and the intake pipe (17) of flowmeter (14) upper end, be equipped with controlling element (18) on bottle (10), just controlling element (18) and flowmeter (14) pass through wire electric connection.
2. The drainage bottle of claim 1, wherein the drainage bottle is capable of monitoring drainage data in real time, and comprises: the upper end in hydrops chamber is fixed with distance sensor (19), just distance sensor (19) and control element (18) pass through wire electric connection, the inside sliding connection in hydrops chamber has kickboard (20), the inside of kickboard (20) is fixed with honeycomb duct (21), just honeycomb duct (21) and mixture stand pipe (13) sliding connection.
3. The drainage bottle of claim 2, wherein the drainage bottle is capable of monitoring drainage data in real time, and comprises: a plurality of air holes are uniformly formed in the floating plate (20).
4. The drainage bottle capable of monitoring drainage data in real time according to claim 1, characterized in that: the outside screw thread section has been seted up in the outside of intake pipe (17), the inside rotation of the sealed lid of second (12) is connected with knob (22), just knob (22) and intake pipe (17) threaded connection.
5. The drainage bottle of claim 1, wherein the drainage bottle is capable of monitoring drainage data in real time, and comprises: the outside of intake pipe (17) evenly is provided with a plurality of scale marks.
6. The drainage bottle of claim 1, wherein the drainage bottle is capable of monitoring drainage data in real time, and comprises: the rotary stopping device is characterized in that a rotary stopping boss is arranged inside the second sealing cover (12), a rotary stopping face is arranged inside the rotary stopping boss, and a chamfered face matched with the rotary stopping face is arranged on the outer side of the air inlet pipe (17).
7. The drainage bottle capable of monitoring drainage data in real time according to claim 1, characterized in that: the control element (18) at least comprises a display screen, a mainboard, a function key, a warning element, a storage unit and a power supply element.
CN202220580017.9U 2022-03-17 2022-03-17 Drainage bottle capable of monitoring drainage data in real time Expired - Fee Related CN217566931U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220580017.9U CN217566931U (en) 2022-03-17 2022-03-17 Drainage bottle capable of monitoring drainage data in real time

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220580017.9U CN217566931U (en) 2022-03-17 2022-03-17 Drainage bottle capable of monitoring drainage data in real time

Publications (1)

Publication Number Publication Date
CN217566931U true CN217566931U (en) 2022-10-14

Family

ID=83539850

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220580017.9U Expired - Fee Related CN217566931U (en) 2022-03-17 2022-03-17 Drainage bottle capable of monitoring drainage data in real time

Country Status (1)

Country Link
CN (1) CN217566931U (en)

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Granted publication date: 20221014