CN114588395A - Analgesia system, analgesia terminal and analgesia method - Google Patents
Analgesia system, analgesia terminal and analgesia method Download PDFInfo
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- 238000000034 method Methods 0.000 title claims abstract description 13
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- 238000004458 analytical method Methods 0.000 claims abstract description 8
- 238000005259 measurement Methods 0.000 claims abstract description 6
- 229940035676 analgesics Drugs 0.000 claims abstract description 3
- 230000000202 analgesic effect Effects 0.000 claims description 54
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- QVGXLLKOCUKJST-UHFFFAOYSA-N atomic oxygen Chemical compound [O] QVGXLLKOCUKJST-UHFFFAOYSA-N 0.000 claims description 13
- 229910052760 oxygen Inorganic materials 0.000 claims description 13
- 239000001301 oxygen Substances 0.000 claims description 13
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- 230000002547 anomalous effect Effects 0.000 claims 1
- 230000003247 decreasing effect Effects 0.000 claims 1
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Abstract
The invention provides an analgesia system, an analgesia terminal and an analgesia method, wherein the analgesia system comprises an analgesia terminal and a control platform for remotely controlling the analgesia terminal, the analgesia terminal comprises an infusion pipeline, an analgesia pump, a control unit, a sign measurement unit, a wireless communication unit, an information sending unit and an information receiving unit, the control platform comprises a communication module, an analysis module and an information transceiving module, the information sending unit is suitable for sending data information to the control platform through the wireless communication unit, the communication module is suitable for receiving the data information, the analysis module is suitable for generating instruction information according to the data information, the information transceiving module is suitable for sending the instruction information to the analgesia terminal, the information receiving unit is suitable for receiving the instruction information, and the control unit is suitable for controlling the speed of the analgesia pump for infusing analgesic drugs according to the instruction information. The analgesia system, the analgesia terminal and the analgesia method provided by the invention can avoid the problem of excessive or insufficient infusion under the condition of non-professional analgesia.
Description
Technical Field
The invention relates to the technical field of medical instruments, in particular to an analgesia system, an analgesia terminal and an analgesia method.
Background
In scientific investigation, major disaster rescue and military operations, pain relief is needed when the participators are injured. In the prior art, a professional medical staff is required to operate an analgesia pump to relieve pain of a wounded person. However, scientific investigations, major disaster relief and military operations are often in the field and are difficult for professional medical personnel to reach quickly.
The wounded self-operates or teammates help the analgesic pump, which is often difficult to reach professional standards, resulting in too little analgesic infusion and failure of analgesic effect, or too much infusion, which damages the health of the wounded.
Disclosure of Invention
The invention aims to provide an analgesic system, an analgesic terminal and an analgesic method, which aim to solve the problem that under the condition that medical staff is absent, non-professional staff use an analgesic pump to cause that the infusion amount of an analgesic agent is too small or too much.
The technical problem to be solved by the invention is realized by adopting the following technical scheme.
The invention provides an analgesia system for analgesia of a user, which comprises an analgesia terminal and a control platform for remotely controlling the analgesia terminal, wherein the analgesia terminal comprises an infusion pipeline, an analgesia pump, a control unit, a sign measuring unit, a wireless communication unit, an information sending unit and an information receiving unit, the control platform comprises a communication module, an analysis module and an information transceiving module, the analgesia pump is suitable for infusing analgesia medicaments to the user through the infusion pipeline, the sign measuring unit is suitable for measuring the sign information of the user, the information sending unit is suitable for sending data information to the control platform through the wireless communication unit, the data information comprises the sign information, the communication module is suitable for receiving the data information, the analysis module is suitable for analyzing the data information and generating instruction information according to the data information, and the information transceiving module is suitable for sending the instruction information to the analgesia terminal through the communication module, the information receiving unit is adapted to receive instruction information, and the control unit is adapted to control the speed at which the analgesic pump infuses the analgesic agent in dependence on the instruction information.
In a preferred embodiment of the present invention, the analgesia terminal includes an analgesia assembly and a wearable device, the analgesia assembly includes an infusion pipeline, an analgesia pump and a control unit, the wearable device includes a sign measurement unit, a wireless communication unit, an information transmission unit and an information receiving unit, and the analgesia assembly and the wearable device are adapted for wireless communication.
In a preferred embodiment of the present invention, the analgesic assembly further comprises a key module, the key module comprises a load button and a start button, the load button is adapted to be pressed to control the speed of the analgesic pump for infusing the analgesic agent, and the start button is adapted to be pressed to forcibly start the analgesic assembly.
In a preferred embodiment of the present invention, the wearable device further comprises a positioning unit.
In a preferred embodiment of the invention, the wearable device further comprises an input unit, the user is adapted to input a pain score via the input unit, and the data information comprises the pain score.
In a preferred embodiment of the present invention, the physical sign measuring unit comprises an infrared temperature measuring module, an electrocardiograph sensor, a blood oxygen sensor and an electronic sphygmomanometer, wherein the infrared temperature measuring module is adapted to measure the body temperature of the user, the electrocardiograph sensor is adapted to measure the heart rate of the user, the blood oxygen sensor is adapted to measure the pulse oxygen saturation of the user, and the electronic sphygmomanometer is adapted to measure the blood pressure of the user.
In a preferred embodiment of the present invention, the control platform further includes a monitoring module, and the monitoring module is adapted to monitor the data information and to discover abnormal information in the data information.
The invention also provides an analgesia terminal for analgesia of a user, which comprises an infusion pipeline, an analgesia pump, a control unit, a sign measuring unit, a wireless communication unit, an information sending unit and an information receiving unit, wherein the analgesia pump is suitable for infusing the analgesia medicament to the user through the infusion pipeline, the sign measuring unit is suitable for measuring the sign information of the user, the information sending unit is suitable for sending the data information to a control platform through the wireless communication unit, the data information comprises the sign information, the information receiving unit is suitable for receiving the instruction information generated based on the data information, and the control unit is suitable for controlling the speed of the analgesia pump for infusing the analgesia medicament according to the instruction information.
The invention also provides an analgesic method of the analgesic system, which comprises the following steps:
the analgesia terminal measures the physical sign information of a user and sends data information comprising the physical sign information to the control platform;
the control platform receives the data information and generates instruction information according to the data information;
and the analgesia terminal receives the instruction information and controls the speed of the analgesia pump for infusing the analgesic medicament according to the instruction information.
In the preferred embodiment of the present invention, the physical sign information includes heart rate, blood pressure, and pulse oxygen saturation, and the generating of the instruction information according to the data information includes:
when the heart rate and the blood pressure of a user rise simultaneously, the control platform generates instruction information for instructing the analgesia pump to increase the speed of infusing the analgesic medicament;
when the heart rate, the blood pressure and the pulse oxygen saturation of the user are simultaneously reduced, the control platform generates instruction information for instructing the speed of the analgesia pump to inject the analgesia medicament to be reduced.
According to the analgesia system, the analgesia terminal and the analgesia method provided by the embodiment of the invention, the analgesia terminal acquires data information in real time and sends the data information to the control platform, and the control platform analyzes the data information and sends instruction information to the analgesia terminal so as to control the speed of the analgesia pump for infusing analgesic medicaments. Therefore, under the condition that a user can relieve pain by himself or a non-medical team-mate can help to relieve pain, the speed of the analgesic pump for infusing the analgesic medicament is in a reasonable range, and the problem of excessive or insufficient infusion is avoided.
Drawings
FIG. 1 is a functional block diagram of an analgesic system according to a preferred embodiment of the present invention.
FIG. 2 is a flow chart of the method of analgesia in accordance with a preferred embodiment of the present invention.
Detailed Description
To further illustrate the technical means and effects of the present invention adopted to achieve the predetermined objects, the following detailed description of the embodiments, structures, features and effects of the present invention will be made with reference to the accompanying drawings and examples.
Referring to fig. 1, an analgesic system for analgesia of a user 900 according to an embodiment of the present invention includes an analgesic terminal 100 and a control platform 700 for remotely controlling the analgesic terminal 100.
The analgesia terminal 100 comprises an infusion line 201, an analgesia pump 203, a control unit 205, a physical sign measurement unit 410, a wireless communication unit 420, an information transmitting unit 421 and an information receiving unit 423.
The control platform 700 includes a communication module 710, an analysis module 730, and an information transceiver module 750.
The analgesia pump 203 is suitable for infusing an analgesia medicament to the user 900 through the infusion pipeline 201, the sign measuring unit 410 is suitable for measuring sign information of the user 900, the information sending unit 421 is suitable for sending data information to the control platform 700 through the wireless communication unit 420, the data information comprises the sign information, the communication module 710 is suitable for receiving the data information, the analysis module 730 is suitable for analyzing the data information and generating instruction information according to the data information, the information transceiving module 750 is suitable for sending the instruction information to the analgesia terminal 100 through the communication module 710, the information receiving unit 423 is suitable for receiving the instruction information, and the control unit 205 is suitable for controlling the speed of infusing the analgesia medicament by the analgesia pump 203 according to the instruction information.
It will be appreciated that the data information may also include analgesic infusion data.
It is understood that the wireless communication unit 420 may be a mobile communication network module. The communication module 710 may be a mobile communication network module, and may also be a broadband network card.
In the preferred embodiment of the present invention, the analgesic terminal 100 includes an analgesic assembly 200 and a wearable device 400.
The analgesia assembly 200 comprises the infusion line 201, the analgesia pump 203 and the control unit 205, the wearable device 400 comprises a sign measuring unit 410, a wireless communication unit 420, an information transmitting unit 421 and an information receiving unit 423, and wireless communication is suitable between the analgesia assembly 200 and the wearable device 400.
In the preferred embodiment of the present invention, the wearable device 400 is embodied as a smart wristwatch.
It is understood that the control Unit 205 may be an MCU (micro controller Unit).
It is understood that the analgesic assembly 200 can include a first bluetooth module 213 and the wearable device 400 can include a second bluetooth module 497, and that the analgesic assembly 200 and the wearable device 400 are adapted for wireless communication via bluetooth.
It can be understood that the analgesia assembly 200 and the wearable device 400 are worn by the user 900, the wearable device 400 sends data information to the control platform 700 through the mobile communication network, and after the user 900 is in battle, expedition or rescue injury, a rear medical unit can remotely know the vital signs of the wounded in real time, and the analgesia infusion of the wounded is effectively controlled through sign analysis and pain intervention. Meanwhile, the wounded person can also directly carry out manual infusion control instructions on the wearable device 400 through voice and a touch screen or send data to the control platform 700. After the wearable device 400 receives the instruction information from the control platform 700, the instruction information is sent to the analgesic assembly 200 through the bluetooth module, and the analgesic assembly 200 receives and executes the instruction information.
In a preferred embodiment of the present invention, the analgesic assembly 200 further comprises a key module 207, the key module 207 comprising a load button 207a and an activation button 207b, the load button 207a being adapted to be pressed to control the rate at which the analgesic pump 203 infuses the analgesic agent, the activation button 207b being adapted to be pressed to forcibly activate the analgesic assembly 200.
It is understood that the activation button 207b is adapted to be pressed to forcibly activate the analgesic assembly 200 in case the analgesic assembly 200 fails to activate after the wearable device 400 is damaged.
In a preferred embodiment of the present invention, if the user 900 presses the load button 207a more than three times within a set time frame, indicating insufficient analgesia, the analgesic assembly 200 will increase the rate of infusion of the analgesic agent. Preferably, the set period of time is 10 minutes.
In the preferred embodiment of the present invention, the analgesic assembly 200 further includes an alarm unit 209 and a power supply unit 211.
The alarm unit 209 is adapted to issue an alarm in case of an abnormality of the pain relieving assembly 200.
The power supply unit 211 is adapted to supply power to the pain relieving assembly 200.
In the preferred embodiment of the present invention, the wearable device 400 further comprises a positioning unit 430.
In the preferred embodiment of the present invention, the positioning unit 430 is a beidou positioning module.
In a preferred embodiment of the present invention, the wearable device 400 further comprises an input unit 450, and the user 900 is adapted to input a pain score through the input unit 450, and the data information comprises the pain score.
It is understood that the input unit 450 may be a voice input module through which the user 900 inputs the pain score.
The input unit 450 may also be a touch screen, and the user 900 inputs the pain score by touching the touch screen.
It is to be understood that the pain score can be set in three grades, severe, moderate, and mild, and that the analgesic assembly 200 is adapted to adjust the rate of infusion of the analgesic agent as appropriate based on the pain score.
In the preferred embodiment of the present invention, the wearable device 400 further comprises a display screen 470, a central processor 491 and a memory 493.
The display screen 470 is used to provide an interface for the user 900 to interact with the wearable device 400.
The central processor 491 is used to control the operation of the wearable device 400.
The memory 493 is used for storing information such as the data information.
In a preferred embodiment of the present invention, the physical sign measuring unit 410 comprises an infrared temperature measuring module 411, an electrocardiograph sensor 413, a blood oxygen sensor 415 and an electronic sphygmomanometer 417, wherein the infrared temperature measuring module 411 is adapted to measure the body temperature of the user 900, the electrocardiograph sensor 413 is adapted to measure the heart rate of the user 900, the blood oxygen sensor 415 is adapted to measure the pulse oxygen saturation of the user 900, and the electronic sphygmomanometer 417 is adapted to measure the blood pressure of the user 900.
In a preferred embodiment of the present invention, the control platform 700 further includes a monitoring module 770, and the monitoring module 770 is adapted to monitor the data information and to find abnormal information in the data information.
In the preferred embodiment of the present invention, the control platform 700 further comprises a device management module 790. The device management module 790 can bind the usage relationship between the analgesic terminal 100 and the user 900, and set parameters of the analgesic terminal 100 and physical sign information of the user 900, such as height, weight, and age.
The data information includes parameters of the analgesic terminal 100, and physical sign information of the user 900, such as height, weight, and age.
The embodiment of the invention also provides an analgesia terminal 100 for analgesia of the user 900.
The analgesia terminal 100 comprises an infusion line 201, an analgesia pump 203, a control unit 205, a vital signs measurement unit 410, a wireless communication unit 420, an information transmitting unit 421 and an information receiving unit 423.
The analgesia pump 203 is adapted to infuse an analgesia medicament to the user 900 through the infusion line 201, the sign measuring unit 410 is adapted to measure sign information of the user 900, the information transmitting unit 421 is adapted to transmit the data information to a control platform 700 through the wireless communication unit 420, the data information includes the sign information, the information receiving unit 423 is adapted to receive instruction information generated based on the data information, and the control unit 205 is adapted to control the speed of the analgesia pump 203 to infuse the analgesia medicament according to the instruction information.
Referring to fig. 2, an embodiment of the present invention further provides an analgesic method of an analgesic system, including:
s1: the analgesia terminal 100 measures the physical sign information of the user 900 and sends the data information including the physical sign information to the control platform 700;
s2: the control platform 700 receives the data information and generates instruction information according to the data information;
s3: the analgesic terminal 100 receives the instruction information and controls the speed of the analgesic pump 203 to infuse the analgesic agent according to the instruction information.
In a preferred embodiment of the present invention, the physical sign information includes heart rate, blood pressure, and pulse oxygen saturation, and the generating of the instruction information according to the data information includes:
s21: when the heart rate and the blood pressure of the user 900 rise simultaneously, the control platform 700 generates instruction information instructing the analgesic pump 203 to increase the speed of infusing the analgesic agent;
s22: control platform 700 generates instructional information instructing analgesia pump 203 to slow the rate at which to infuse the analgesic drug as the heart rate, blood pressure, and pulse oxygen saturation of user 900 fall simultaneously.
In the analgesia system, the analgesia terminal and the analgesia method provided by the embodiment of the invention, the analgesia terminal 100 collects data information in real time and sends the data information to the control platform 700, and the control platform 700 sends instruction information to the analgesia terminal 100 after analyzing the data information so as to control the speed of the analgesia pump 203 for infusing the analgesic medicament. Therefore, under the condition that the user 900 is self-analgesia or a non-medical team-friend helps analgesia, the speed of the analgesia pump 203 for infusing the analgesic medicament is in a reasonable range, and the problem of excessive or insufficient infusion is avoided.
As used herein, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, including not only those elements listed, but also other elements not expressly listed.
In this document, the terms front, back, upper and lower are used to define the components in the drawings and the positions of the components relative to each other, and are used for clarity and convenience of the technical solution. It is to be understood that the use of the directional terms should not be taken to limit the scope of the claims.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents, improvements and the like that fall within the spirit and principle of the present invention are intended to be included therein.
Claims (10)
1. An analgesia system for analgesia a user (900), comprising an analgesia terminal (100) and a control platform (700),
the analgesic terminal (100) comprises:
an infusion line (201) for infusing an analgesic agent to the user (900);
an analgesia pump (203) for applying infusion pressure to the infusion line (201);
a vital signs measurement unit (410) for measuring vital signs information of the user (900);
a wireless communication unit (420) for communicating with the control platform (700);
an information sending unit (421) for sending data information to the control platform (700) through a wireless communication unit (420), wherein the data information includes the physical sign information;
an information receiving unit (423) for receiving instruction information generated based on the data information;
a control unit (205) for controlling the speed at which the analgesic pump (203) infuses the analgesic agent in accordance with the instruction information;
the control platform (700) is for remotely controlling the analgesic terminal (100), comprising:
a communication module (710) for receiving the data information;
the analysis module (730) is used for analyzing the data information and generating instruction information according to the data information;
and an information transceiving module (750) adapted to transmit the instruction information to the analgesic terminal (100) through the communication module (710).
2. The analgesia system of claim 1, wherein the analgesia terminal (100) comprises an analgesia assembly (200) and a wearable device (400), the analgesia assembly (200) comprises the infusion line (201), the analgesia pump (203) and the control unit (205), the wearable device (400) comprises a physical sign measuring unit (410), a wireless communication unit (420), an information transmitting unit (421) and an information receiving unit (423), and wireless communication is adapted between the analgesia assembly (200) and the wearable device (400).
3. The analgesia system of claim 2, wherein the analgesia assembly (200) further comprises a key module (207), the key module (207) comprising a load button (207a) and an activation button (207b), the load button (207a) being adapted to be pressed to control the rate at which the analgesia pump (203) infuses the analgesic drug, the activation button (207b) being adapted to be pressed to forcibly activate the analgesia assembly (200).
4. The analgesia system of claim 2, wherein the wearable device (400) further comprises a positioning unit (430).
5. The analgesia system of claim 2, wherein the wearable device (400) further comprises an input unit (450), the user (900) being adapted to input a pain score through the input unit (450), the data information comprising the pain score.
6. The analgesia system of claim 1, wherein the vital sign measurement unit (410) comprises an infrared thermometry module (411), an electrocardiograph sensor (413), an oximetry sensor (415), and an electronic sphygmomanometer (417), the infrared thermometry module (411) being adapted to measure the body temperature of the user (900), the electrocardiograph sensor (413) being adapted to measure the heart rate of the user (900), the oximetry sensor (415) being adapted to measure the pulse oxygen saturation of the user (900), the electronic sphygmomanometer (417) being adapted to measure the blood pressure of the user (900).
7. The analgesic system of claim 1, wherein the control platform (700) further comprises a monitoring module (770), the monitoring module (770) adapted to monitor the data information and to discover anomalous information in the data information.
8. An analgesia terminal for analgesia in a user (900), comprising:
an infusion line (201) for infusing an analgesic agent to the user (900);
an analgesia pump (203) for applying infusion pressure to the infusion line (201);
a vital signs measurement unit (410) for measuring vital signs information of the user (900);
a wireless communication unit (420) for communicating with the control platform (700);
an information sending unit (421) for sending data information to the control platform (700) through a wireless communication unit (420), wherein the data information includes the physical sign information;
an information receiving unit (423) for receiving instruction information generated based on the data information;
a control unit (205) for controlling the speed at which the analgesic pump (203) infuses the analgesic agent in accordance with the instruction information.
9. A method of analgesia in an analgesia system comprising:
the analgesia terminal (100) measures the physical sign information of a user (900) and sends data information comprising the physical sign information to the control platform (700);
the control platform (700) receives the data information and generates instruction information according to the data information;
the analgesia terminal (100) receives the instruction information and controls the speed of the analgesia pump (203) for infusing the analgesia medicament according to the instruction information.
10. The method of analgesia of claim 9, wherein said vital sign information includes heart rate, blood pressure, pulse oxygen saturation, and said generating instruction information from said data information includes:
when the heart rate and the blood pressure of the user (900) rise simultaneously, the control platform (700) generates instruction information for instructing the analgesia pump (203) to increase the speed of infusing the analgesic medicament;
the control platform (700) generates instructional information instructing the analgesia pump (203) to slow down the rate of infusion of the analgesic agent when the heart rate, blood pressure, and pulse oxygen saturation of the user (900) are simultaneously decreasing.
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