CN216855425U - Intelligent non-gravity closed loop closed type transfusion management system - Google Patents

Intelligent non-gravity closed loop closed type transfusion management system Download PDF

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CN216855425U
CN216855425U CN202122891414.6U CN202122891414U CN216855425U CN 216855425 U CN216855425 U CN 216855425U CN 202122891414 U CN202122891414 U CN 202122891414U CN 216855425 U CN216855425 U CN 216855425U
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infusion
module
information
alarm
medical personnel
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李超
谷海飞
专志伟
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Yuxi Children's Hospital
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Yuxi Children's Hospital
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Abstract

The utility model discloses an intelligent non-gravity closed-loop closed infusion management system, which relates to the technical field of medical treatment and comprises an information acquisition module, an execution module, an information transmission module, an information processing module, an information display module and an alarm module; through setting up information acquisition module, execution module, information transmission module, information processing module, information display module, alarm module, demonstrate after taking notes, handling the user information who obtains to in time inform medical personnel with user's abnormal condition, the medical personnel overall management of being convenient for improves work efficiency. It is long when reacing the infusion after calculating user's infusion capacity, velocity of flow through information processing module, combines the user state to preset the warning count down, the alarm incident that medical personnel of being convenient for took place and the alarm incident that is about to take place are handled in general nearby, avoid because the too much condition that medical personnel are difficult to the coordination that causes of user, improve medical personnel's work efficiency, reduce medical personnel's working strength.

Description

Intelligent non-gravity closed-loop closed infusion management system
Technical Field
The utility model relates to the technical field of medical treatment, in particular to an intelligent non-gravity closed-loop closed-type infusion management system.
Background
In clinical practice, intravenous infusion is often an indispensable procedure, the main objectives of which include: supplementing water and electrolyte, and correcting unbalance of water, electrolyte and acid-base; supplementing nutrition and supplying heat; thirdly, inputting medicines to treat diseases; increasing circulating blood volume, improving microcirculation and maintaining blood pressure; inputting dehydrating medicine to reduce intracranial pressure and induce diuresis to reduce edema. The principle of intravenous infusion is to use atmospheric pressure and hydrostatic pressure to transfuse a large amount of sterile liquid, electrolyte and medicine into human body through veins. When using the existing infusion device, on one hand, medical staff is required to pay attention to the infusion condition of a patient at any time, such as the residual amount of medicines, the infusion speed and the like, meanwhile, the existing calling device often cannot accurately reflect the objective and real infusion condition, the medical staff cannot clearly determine whether to change a medicine bottle or other requirements when the patient calls, and the nursing staff is caused to run back and forth, and on the other hand, the patient or family members also need to pay attention to the infusion condition at any time so as to avoid the situations that the pipeline is blocked due to inadequate nursing, blood returns, air bubble input or even the pipeline falls off and the like. Under the condition, more labor cost is required to be consumed, the working efficiency of medical care personnel is reduced, the nursing of family members and patients is relied on, the psychological burden of the family members and the patients is increased, the satisfaction degree is low, and meanwhile, greater potential safety hazards exist. Therefore, it is necessary to provide a new intelligent infusion management system device to solve the above technical problems.
SUMMERY OF THE UTILITY MODEL
In order to solve the problems, the utility model designs an intelligent non-gravity closed-loop closed infusion management system, the infusion monitoring management system is a set of infusion management platform integrating informatization, intellectualization and digitization into a whole, the modern Internet of things technology is applied, the system has the advantages of system integration, high precision, stability, reliability, flexible networking, multiple early warning, unified allocation and management and the like, and the detailed infusion information of all wards in the whole ward is clear at a glance in a monitoring room, so that the timely and effective infusion management is provided for patients.
In order to solve the technical problems and achieve the technical effects, the utility model is realized by the following technical contents:
the intelligent non-gravity closed-loop closed-type transfusion management system comprises an information acquisition module, an execution module, an information transmission module, an information processing module, an information display module and an alarm module;
the information acquisition module is connected with the execution module and is used for acquiring user information;
the execution module comprises an infusion apparatus, an infusion pump, a flow rate sensor, a camera and a blocker, wherein the infusion apparatus is connected with an infusion bottle and a patient, a pipeline of the infusion apparatus is arranged in the infusion pump and is arranged at the upper part of a Murphy's drip cup of the infusion apparatus, the camera is arranged on the infusion pump, and the blocker is arranged on the pipeline of the infusion apparatus;
the information transmission module comprises a storage mechanism and a wireless transmission mechanism, the storage mechanism is connected with the camera, and the wireless transmission mechanism is connected with the storage mechanism;
the information processing module comprises an image recognition mechanism, a processing chip and a PC (personal computer) terminal, wherein the image recognition mechanism is connected with the wireless transmission mechanism, the processing chip is wirelessly connected with the wireless transmission mechanism, and the processing chip controls the blocker through wireless signal transmission; the PC end is connected with the processing chip;
the information display module comprises a nurse station host, a mobile terminal and a corridor LED display screen; the processing chip is connected with the nurse station host, the mobile terminal and the corridor LED display screen through wireless signals;
the alarm module comprises a vibrator, a UI flicker reminder and an audible alarm.
Furthermore, be equipped with snakelike regulation pole on the camera, be equipped with the clip on the snakelike regulation pole, the clip centre gripping is on the transfer pump.
Further, the blocker is a solenoid valve.
Further, the vibrator is arranged on the mobile terminal, and the audible alarm is arranged on the LED display screen of the corridor.
The utility model has the beneficial effects that:
1. through setting up information acquisition module with user's information acquisition, be convenient for take notes information in user initial information, the use, the information after the use, the medical personnel of being convenient for manage infusion system according to user information, quick, convenient correspondence information improves work efficiency.
2. Through setting up execution module, be convenient for control infusion velocity of flow, infusion are long, upload and keep a file user's real-time infusion information, monitor the infusion state at the infusion in-process.
3. Through setting up information processing module be convenient for record, handle, contrast user's infusion state, length, the velocity of flow when infusing, in time discover abnormal information, the medical personnel of being convenient for handle.
4. Through setting up information display module, the medical personnel of being convenient for convenient, timely acquire user information, user state, carry out the work for medical personnel and facilitate.
5. Through setting up information acquisition module, execution module, information transmission module, information processing module, information display module, alarm module, demonstrate after taking notes, handling the user information who obtains to in time inform medical personnel with user's abnormal state, the medical personnel of being convenient for overall management improves work efficiency.
6. Through information processing module to user's infusion capacity, it is long when the velocity of flow calculates the back reachs the infusion, combine the user state, and preset the warning count-down, be convenient for medical personnel to process the alarm incident that has taken place and the alarm incident that is about to take place on the ground, avoid because the user leads to the fact medical personnel to be difficult to the condition of coordinating excessively, through the blocker that sets up, when medical personnel handle the alarm incident that is about to take place nearby, will be apart from the transfusion system stop work of medical personnel's more remote department, wait to handle, improve medical personnel's work efficiency, save time, reduce medical personnel's working strength.
Of course, it is not necessary for any product in which the utility model is practiced to achieve all of the above-described advantages at the same time.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a block diagram of an embodiment of an intelligent non-gravity closed-loop closed-type infusion management system according to the present invention;
FIG. 2 is a flow chart of the operation of the intelligent non-gravity closed-loop closed-type infusion management system of the present invention;
in the drawings, the components represented by the respective reference numerals are listed below:
the system comprises an information acquisition module, a 2-infusion pump, a 3-flow rate sensor, a 4-infusion apparatus, a 5-camera, a 6-blocker, a 7-storage mechanism, an 8-wireless transmission mechanism, a 9-image recognition mechanism, a 10-processing chip, a 11-PC terminal, a 12-nurse station, a 13-mobile terminal and a 14-corridor LED display screen.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
For a more clear description of the utility model, the following description is made with reference to specific embodiments:
example 1
Referring to fig. 1-2, the intelligent non-gravity closed-loop closed-type infusion management system comprises an information acquisition module 1, an execution module, an information transmission module, an information processing module, an information display module and an alarm module;
the information acquisition module 1 is used for acquiring user information;
the execution module comprises an infusion apparatus 4, an infusion pump 2, a flow rate sensor 3, a camera 5 and a blocker 6, wherein the infusion pump 2 is used for controlling the flow rate of liquid in the infusion apparatus 4, the flow rate sensor 3 is used for monitoring the flow rate of the liquid, the camera 5 is arranged on the infusion pump 2 and is used for capturing information on the infusion pump 2, and the blocker 6 is used for controlling the on-off of the liquid in a pipeline of the infusion apparatus 4;
the information transmission module comprises a storage mechanism 7 and a wireless transmission mechanism 8, the storage mechanism 7 is connected with the camera 5 to store the shot image information, and the wireless transmission mechanism 8 is connected with the storage mechanism 7 to transmit the information;
the information processing module comprises an image recognition mechanism 9, a processing chip 10 and a PC (personal computer) end, wherein the image recognition mechanism 9 is connected with the wireless transmission mechanism 8 and is used for recognizing image information shot by the camera 5 and converting the image information into digital information to be transmitted to the processing chip 10, the processing chip 10 is used for processing user information in the information acquisition module 1, information on the infusion pump 2 and flow rate information of the flow rate monitor, and the processing chip 10 controls the blocker 6 to be controlled through wireless signal transmission; the PC terminal is used for displaying the user information and the infusion information processed by the processing chip 10; the information on the infusion pump 2 comprises infusion volume and flow rate;
the infusion information comprises an infusion state, infusion starting time, predicted ending time, infusion flow rate and alarm countdown;
the information display module comprises a host of a nurse station 12, a mobile terminal 13 and a corridor LED display screen 14; the processing chip 10 transmits user information and infusion information to a host computer of a nurse station 12, a mobile terminal 13 and a corridor LED display screen 14 through wireless signals;
the alarm module comprises a vibrator, a UI flicker reminder and an audible alarm.
The pipeline of the transfusion device 4 is arranged in the transfusion pump 2, and the flow velocity sensor 3 is arranged at the upper part of the Murphy's of the transfusion device 4.
Be equipped with snakelike regulation pole on the camera 5, be equipped with the clip on the snakelike regulation pole, the clip centre gripping is on transfer pump 2.
The blocker 6 is a solenoid valve.
When the method is implemented specifically, user information is input into a PC end, information of the name, department, room number, bed, medicine type, liquid medicine capacity and state of a user is generated at the PC end, infusion flow rate, infusion starting time, estimated ending time and alarm countdown are preset, an infusion apparatus 4 is connected with an infusion bottle, a pipeline of the infusion apparatus 4 is arranged in an infusion pump 2, infusion capacity and infusion flow rate are arranged on the infusion pump 2, a flow rate sensor 3 is arranged at the upper part of a Murphy's drip cup, air in the pipeline of the infusion apparatus 4 is discharged, and the infusion apparatus 4 is connected with the user;
the camera 5 stores the information on the panel of the infusion pump 2 in a storage module and transmits the information to an image recognition mechanism 9 through a wireless transmission module, the image recognition mechanism 9 converts the recognized liquid medicine capacity and the infusion flow rate into digital information and transmits the digital information to a PC (personal computer) end for comparison, prompt is carried out when the data is wrong, the flow rate sensor 3 transmits the infusion flow rate to an information processing module in real time and compares the infusion flow rate with the preset infusion flow rate, and when the infusion flow rate is not consistent, the wireless transmission module transmits a signal to a host computer of a nurse station 12, the mobile terminal 13 and the corridor LED display screen 14 for alarming and presents red color to remind medical personnel to process;
the monitored liquid medicine capacity is compared with the infusion flow rate in the information processing module to obtain the infusion duration, the alarm countdown is preset, and after the alarm countdown is started, the alarm information is displayed on a host of a nurse station 12, a mobile terminal 13 and a corridor LED display screen 14 through a wireless transmission module and is orange;
after the alarm countdown is finished, the user information displayed on the host computer of the nurse station 12, the mobile terminal 13 and the corridor LED display screen 14 is changed from right orange to red, so that medical care personnel are reminded to process the user information;
the medical staff comprehensively processes the alarm events which are already generated and the alarm events which are about to occur nearby according to the real-time state of the user displayed on the host computer of the nurse station 12, the mobile terminal 13 and the corridor LED display screen 14, and processes the alarm events which are already generated and the alarm events which are about to occur through the room where the user is located, the bed number and the alarm countdown; avoid because the too much condition that causes medical personnel to be difficult to coordinate of user, through the blocker 6 that sets up, when medical personnel handled the alarm incident about to take place nearby, with the transfusion system 4 stop work of the more distant department of medical personnel apart from, wait for the processing, improve medical personnel's work efficiency, save time reduces medical personnel's working strength, medical personnel handles the back, opens blocker 6 according to the condition.
Example 2
The user information includes a user name, a room number, a bed number, a medicine type, and a medicine capacity.
Example 3
The processing chip 10 calculates the drug infusion time according to the information of the drug volume and the flow rate, and presets alarm countdown according to the drug infusion time.
The alarm countdown is displayed on the host computer of the nurse station 12, the mobile terminal 13 and the corridor LED display screen 14 through UI flicker reminding, and the UI flicker reminding adopts orange; medical personnel prepare in advance according to the left overall process of warning count down, improve work efficiency.
Example 4
The vibrator is arranged on the mobile terminal 13 and the audible alarm is arranged on the corridor LED display 14.
Example 5
The infusion state comprises a normal state and an abnormal state, the normal state and the abnormal state are respectively displayed on the mobile terminal 13 and the corridor LED display screen 14 through UI flicker reminding, the UI flicker reminding adopts green in the normal state, and the UI flicker reminding adopts red in the abnormal state.
Example 6
The display sequence of the normal state, the abnormal state and the alarm countdown on the mobile terminal 13 is the abnormal state, the alarm countdown and the normal state, the alarm countdown is displayed in an increasing sequence according to the time length of the alarm, and when medical staff handle the abnormal state, the medical staff can conveniently check and quickly handle the abnormal state.
In the description herein, references to the description of "one embodiment," "an example," "a specific example" or the like are intended to mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the utility model. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
The preferred embodiments of the utility model disclosed above are intended to be illustrative only. The preferred embodiments are not intended to be exhaustive or to limit the utility model to the precise embodiments disclosed. Obviously, many modifications and variations are possible in light of the above teaching. The embodiments were chosen and described in order to best explain the principles of the utility model and the practical application, to thereby enable others skilled in the art to best utilize the utility model. The utility model is limited only by the claims and their full scope and equivalents.

Claims (4)

1. Intelligent non-gravity closed loop closed infusion management system, its characterized in that: the system comprises an information acquisition module, an execution module, an information transmission module, an information processing module, an information display module and an alarm module;
the information acquisition module is connected with the execution module;
the execution module comprises an infusion apparatus, an infusion pump, a flow rate sensor, a camera and a blocker, wherein the infusion apparatus is connected with an infusion bottle and a patient, a pipeline of the infusion apparatus is arranged in the infusion pump and is arranged at the upper part of a Murphy's drip cup of the infusion apparatus, the camera is arranged on the infusion pump, and the blocker is arranged on the pipeline of the infusion apparatus;
the information transmission module comprises a storage mechanism and a wireless transmission mechanism, the storage mechanism is connected with the camera, and the wireless transmission mechanism is connected with the storage mechanism;
the information processing module comprises an image recognition mechanism, a processing chip and a PC (personal computer) terminal, wherein the image recognition mechanism is connected with the wireless transmission mechanism, the processing chip is wirelessly connected with the wireless transmission mechanism, and the processing chip controls the blocker through wireless signal transmission; the PC end is connected with the processing chip;
the information display module comprises a nurse station host, a mobile terminal and a corridor LED display screen; the processing chip is connected with the nurse station host, the mobile terminal and the corridor LED display screen through wireless signals;
the alarm module comprises a vibrator, a UI flicker reminder and an audible alarm.
2. The intelligent non-gravity closed-loop closed-type infusion management system of claim 1, wherein: the camera is provided with an S-shaped adjusting rod, the S-shaped adjusting rod is provided with a clamp, and the clamp is clamped on the infusion pump.
3. The intelligent non-gravity closed-loop closed-type infusion management system of claim 1, wherein: the blocker is an electromagnetic valve.
4. The intelligent non-gravity closed-loop closed-type infusion management system of claim 1, wherein: the vibrator is arranged on the mobile terminal, and the audible alarm is arranged on the LED display screen of the corridor.
CN202122891414.6U 2021-11-19 2021-11-19 Intelligent non-gravity closed loop closed type transfusion management system Active CN216855425U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117577294A (en) * 2024-01-12 2024-02-20 南方医科大学珠江医院 Intelligent sickbed monitoring system used in laminar flow bin

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117577294A (en) * 2024-01-12 2024-02-20 南方医科大学珠江医院 Intelligent sickbed monitoring system used in laminar flow bin
CN117577294B (en) * 2024-01-12 2024-05-10 南方医科大学珠江医院 Intelligent sickbed monitoring system used in laminar flow bin

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