Infusion Management Method, System and Medium
By setting up a display screen and an infusion monitor on the infusion seat, the infusion status is monitored and managed in real time, the problem of inconvenient seat management of patients is solved, automated management is realized, and efficiency and safety are improved.
Patent Information
- Application Number
- CN202210395576.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-04-15
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2042-04-15
AI Technical Summary
During the infusion process, the patient's seat management is inconvenient, which can easily lead to seat matching errors, poses safety hazards and low management efficiency.
Design an infusion management system to ensure that patients are seated by setting up a display screen and infusion monitor on the infusion seat and binding through the backend, and real-time monitoring and management of infusion status are ensured, and seat matching is performed through large screens and broadcast notifications.
The automated management of infusion seats has been realized, the efficiency of seat management has been improved, the probability of sitting in the wrong seats has been reduced, safety hazards have been avoided, and the work burden of medical staff has been reduced.
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Figure CN114664424B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of medical instruments, and more specifically, to an infusion management method, system and medium, and more particularly to a biomedical medical service related to an infusion management system, method and medium, warning of adverse interactions "incompatibility" between drugs, unable to continuously infuse (flush the tube), and obtaining the starting warning of infusion. Background Art
[0002] In daily life, people often need to take their seats according to the numbers. For example, when people take trains, buses, airplanes and other means of transportation, they need to take their seats according to the train tickets or air tickets. For another example, when people attend meetings in the venue, they also need to sit in the designated positions. For another example, when people go to cinemas, theaters, etc. to watch movies or plays, they also need to take their seats according to the numbers.
[0003] However, in practical applications, due to the lack of effective control of seats, the situation of taking the wrong seats often occurs, which not only causes unnecessary disputes, but also wastes a lot of manpower; especially when patients are receiving infusions, the seats are random and difficult to manage, and there may even be potential safety hazards.
[0004] Patent document CN110515976A (application number: 201910650982.1) discloses a seat management method, device, system and storage medium. In the embodiments of the present application, a seat terminal is added on the side of the seat, and the seat terminal is combined with the server device. Through the attribute information of the sitting user of the seat and the attribute information of the reserved user, the automatic verification of whether the sitting user of the seat is suitable for the seat is realized, the automatic management of the seat is realized, the input of the labor cost for seat management is reduced, which not only helps to improve the management efficiency of the seat, but also helps to reduce the probability of taking the wrong seat and reduce disputes.
[0005] The present invention provides a biomedical medical service related to an infusion management system and method, warning of adverse interactions "incompatibility" between drugs, unable to continuously infuse (flush the tube), and obtaining the starting warning of infusion. Summary of the Invention
[0006] Aiming at the defects in the prior art, the purpose of the present invention is to provide an infusion management method, system and medium.
[0007] According to an infusion management method provided by the present invention, it includes:
[0008] Step S1: There are infusion seats, infusion monitors and display screens in the personal infusion area, and the infusion monitors and the display screens are bound through the background;
[0009] Step S2: Use the display screen to display the name and seat number of the infusion patient assigned to the infusion seat;
[0010] Step S3: Use an infusion monitor to monitor the infusion status of the infusion patient on the infusion seat in real time;
[0011] Step S4: Transmit the infusion status obtained based on the infusion monitor to the infusion monitoring platform for real-time monitoring through the infusion monitoring platform;
[0012] Step S5: Based on the first infusion monitor, obtain that the infusion status of the matching infusion patient on the first infusion seat is the unfinished state. When the weight of the infusion bottle monitored by the first infusion monitor is 0, the infusion monitoring platform continues to monitor according to the infusion speed before the weight of the infusion bottle monitored by the first infusion monitor is 0;
[0013] Step S6: At time t0, the weight of the infusion bottle obtained by the first infusion monitor is 0, and at time t1, the weight of the infusion bottle obtained by the first infusion monitor is m1;
[0014] Step S7: Compare the weight m1 of the infusion bottle newly obtained by the first infusion monitor with the weight m of the infusion bottle of the matching infusion patient on the first infusion seat monitored by the infusion monitoring platform at time t1; if they are not equal, the first infusion seat and the infusion patient are mismatched; if they are equal, the first infusion seat and the patient are correctly matched;
[0015] Step S8: When the first infusion seat and the infusion patient are mismatched, then match according to the infusion speed and the weight of the infusion bottle obtained by the first infusion monitor at time t1 and the weights and infusion speeds of the infusion bottles on all the infusion seats monitored on the infusion monitoring platform to obtain the matching second infusion seat number; and notify the patient to return to the second infusion seat number through the large screen and / or broadcast;
[0016] Step S9: At time t2, the weight of the infusion bottle obtained by the first infusion monitor is 0, the infusion monitoring platform continues to monitor according to the infusion speed before the weight of the infusion bottle monitored by the first infusion monitor is 0, and at time t3, the corresponding second infusion monitor on the second infusion seat newly obtains the weight m2 of the infusion bottle; obtain the monitoring data of the first infusion monitor on the infusion monitoring platform from time t1 to t3 and send it to the second infusion monitor on the infusion monitoring platform, and the weight of the infusion bottle monitored by the second infusion monitor on the infusion monitoring platform at time t3 is equal to the weight m2 of the infusion bottle newly obtained by the corresponding second infusion monitor on the second infusion seat at time t3;
[0017] Step S10: Delete the detection data obtained by the first infusion monitor on the infusion monitoring platform from time t1 to t3.
[0018] Preferably, obtain the corresponding infusion doctor's order according to the patient identity information, and quickly allocate seats for the patients based on the infusion status of each seat obtained by the infusion monitoring platform;
[0019] Based on the infusion status of each seat obtained by the infusion monitoring platform, assign an infusion seat number to the patient waiting for infusion, and preferentially assign the seat number with the infusion status of infusion completed on the seat; when the infusion status of all seats is in progress, then preferentially assign the seat number with the minimum remaining infusion time; when there are multiple consecutive seats with the infusion status of infusion completed, then preferentially assign the seat number where the infusion status of adjacent seats is all infusion completed; and display the name, seat number, and infusion doctor's order of the patient waiting for infusion assigned to the infusion seat number through the display screen;
[0020] Monitor the current infusion drug name, infusion duration, and infusion speed through the infusion monitor, so that medical staff can monitor the patient's infusion situation;
[0021] Display through the display screen the patient name, seat number, current infusion drug name, remaining duration of the current infusion drug, total remaining duration of the current patient's infusion, and matters needing attention during the drug infusion process that match the current seat.
[0022] Preferably, the infusion monitor adopts:
[0023] Step S1.1: Obtain all drug information and drug infusion sequence of the current patient based on the infusion doctor's order;
[0024] Step S1.2: The infusion monitor obtains the starting weight A of the current infusion bottle device, matches the obtained starting weight of the infusion bottle device with the weight of the drug to be infused by the current patient, and when the match is successful, obtains the corresponding drug information;
[0025] Step S1.3: Judge whether the current infusion sequence is correct based on the drug infusion sequence in the infusion doctor's order according to the obtained drug information; when it is incorrect, output an alarm signal through the display screen for further information verification.
[0026] Preferably, use the display screen to display the drug information of the patient's infusion, and check the patient's infusion before infusion through the patient's infusion bottle information and the patient's infusion information.
[0027] Preferably, use the infusion monitor to monitor the infusion status of the infusion patients on the infusion seats in real time and report abnormalities in real time, including: abnormal monitor power, abnormal infusion drip speed, infusion interruption, reminder of infusion remaining volume, and push of infusion end warning;
[0028] Among them, monitor the current drip speed through the infusion monitor. If the current drip speed exceeds the infusion speed information in the infusion doctor's order, then send a warning message through the display screen to avoid potential safety hazards.
[0029] According to an infusion management system provided by the present invention, it includes:
[0030] Module M1: There are infusion seats, infusion monitors, and display screens in the personal infusion area, and the infusion monitors and display screens are bound through the background;
[0031] Module M2: Use the display screen to display the names and seat numbers of the infusion patients assigned to the infusion seats;
[0032] Module M3: Use the infusion monitor to monitor the infusion status of the infusion patients on the infusion seats in real time;
[0033] Module M4: Transmit the infusion status obtained based on the infusion monitor to the infusion monitoring platform for real-time monitoring;
[0034] Module M5: Based on the first infusion monitor, the infusion status of the infusion patient matching the first infusion seat is in an unfinished state. When the weight of the infusion bottle monitored by the first infusion monitor is 0, the infusion monitoring platform continues to monitor according to the infusion speed before the weight of the infusion bottle monitored by the first infusion monitor reaches 0;
[0035] Module M6: At time t0, the weight of the infusion bottle obtained by the first infusion monitor is 0, and at time t1, the weight of the infusion bottle obtained by the first infusion monitor is m1;
[0036] Module M7: Compare the weight m1 of the infusion bottle newly obtained by the first infusion monitor with the weight m of the infusion bottle of the infusion patient matching the first infusion seat monitored by the infusion monitoring platform at time t1. If they are not equal, the matching between the first infusion seat and the infusion patient is incorrect; if they are equal, the matching between the first infusion seat and the patient is correct;
[0037] Module M8: When the matching between the first infusion seat and the infusion patient is incorrect, then match according to the infusion speed and the weight of the infusion bottle obtained by the first infusion monitor at time t1 and the weights and infusion speeds of the infusion bottles on all the infusion seats monitored on the infusion monitoring platform to obtain the matching second infusion seat number; and notify the patient to return to the second infusion seat number through the large screen and / or broadcast;
[0038] Module M9: At time t2, the weight of the infusion bottle obtained by the first infusion monitor is 0, the infusion monitoring platform continues to monitor according to the infusion speed before the weight of the infusion bottle monitored by the first infusion monitor reaches 0, and at time t3, the corresponding second infusion monitor on the second infusion seat newly obtains the weight m2 of the infusion bottle; Obtain the monitoring data of the first infusion monitor on the infusion monitoring platform from time t1 to t3 and send it to the second infusion monitor on the infusion monitoring platform, and the weight of the infusion bottle monitored by the second infusion monitor on the infusion monitoring platform at time t3 is equal to the weight m2 of the infusion bottle newly obtained by the corresponding second infusion monitor on the second infusion seat at time t3;
[0039] Module M10: Delete the detection data obtained by the first infusion monitor on the infusion monitoring platform from time t1 to time t3.
[0040] Preferably, obtain the corresponding infusion doctor's order according to the patient identification information, and quickly allocate seats for patients based on the infusion status of each seat obtained by the infusion monitoring platform;
[0041] Allocate an infusion seat number for the patients waiting for infusion based on the infusion status of each seat obtained by the infusion monitoring platform, and preferentially allocate the seat number with the infusion status of infusion completed on the seat; when the infusion status of all seats is in progress, then preferentially allocate the seat number with the smallest remaining infusion time; when there are multiple consecutive seats with the infusion status of infusion completed, then preferentially allocate the seat number with the infusion status of infusion completed for adjacent seats; and display the name, seat number, and infusion doctor's order of the patient waiting for infusion allocated on the infusion seat number through the display screen;
[0042] Monitor the current infusion drug name, infusion duration, and infusion speed through the infusion monitor so that medical staff can monitor the patient's infusion situation;
[0043] Display through the display screen the patient name, seat number, current infusion drug name, remaining duration of the current infusion drug, total remaining duration of the current patient's infusion, and matters needing attention during the drug infusion corresponding to the current seat.
[0044] Preferably, the infusion monitor adopts:
[0045] Module M1.1: Obtain all drug information and drug infusion sequence of the current patient based on the infusion doctor's order;
[0046] Module M1.2: The infusion monitor obtains the starting weight A of the current infusion bottle device, matches the obtained starting weight of the infusion bottle device with the weight of the drug to be infused by the current patient, and when the match is successful, obtains the corresponding drug information;
[0047] Module M1.3: Judge whether the current infusion sequence is correct according to the obtained drug information based on the drug infusion sequence in the infusion doctor's order; when it is incorrect, output an alarm signal through the display screen for further information verification.
[0048] Preferably, use the infusion monitor to monitor the infusion status of the infusion patients on the infusion seats in real time and report abnormalities in real time, including: abnormal monitor power, abnormal infusion drip speed, infusion interruption, reminder of remaining infusion volume, and push of infusion end warning;
[0049] Among them, monitor the current drip speed through the infusion monitor. If the current drip speed exceeds the infusion speed information in the infusion doctor's order, a warning message is sent through the display screen to avoid potential safety hazards.
[0050] A computer-readable storage medium storing a computer program, when the computer program is executed by a processor, implements the steps of the method described above.
[0051] Compared with the prior art, the present invention has the following beneficial effects:
[0052] 1. During the infusion process, it realizes the automated management of the patients receiving infusion in their seats, which helps improve the management efficiency of the seats, and also helps reduce the probability of sitting in the wrong seat and avoid potential safety hazards.
[0053] 2. By transmitting information through the system, it reduces manual communication, reduces the possibility of errors, lightens the workload of medical staff, and improves work efficiency.
[0054] 3. Nurses can not only obtain patient information and drug identification numbers by scanning drug labels and confirming with patients, but also further confirm patient information and drug information through the display screen, further avoiding potential safety hazards.
[0055] 4. The present invention can accurately match the doctor's order information with the actual drugs of nurses and can inform patients through the display screen to ensure correct medication.
[0056] 5. The present invention sets up multiple safeguard mechanisms for correct medication, monitors in real time through the infusion monitoring module, and synchronously monitors nurses and patients through the display module. BRIEF DESCRIPTION OF THE DRAWINGS
[0057] By reading the following detailed description of non-limiting embodiments with reference to the accompanying drawings, other features, objects, and advantages of the present invention will become more apparent:
[0058] Figure 1 It is a flowchart of the infusion management method. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0059] The present invention will be described in detail below with reference to specific embodiments. The following embodiments will help those skilled in the art to further understand the present invention, but do not limit the present invention in any form. It should be noted that those of ordinary skill in the art can make several changes and improvements without departing from the concept of the present invention. These all belong to the protection scope of the present invention.
[0060] In the ward, patients and the ward are matched and fixed to each other, and there will be no situation where a patient receives infusion on someone else's hospital bed; while during outpatient infusion, the phenomenon of patients sitting randomly in seats occurs frequently, such as seats being occupied, or seats being occupied when temporarily leaving; thus resulting in the inability to pair the monitor with the person.
[0061] To prevent errors in the inquiries between nurses and patients when patients do not take their seats according to the assigned seats during infusion, resulting in the inability of the infusion monitor to be paired with the patient, potential safety hazards and disorder in order, etc., on the basis of the original method of scanning codes to match drugs and people, an infusion management method and system are proposed. By binding a display screen and an infusion monitor to the infusion seat and displaying the name of the current infusion patient on the display screen, it is ensured that patients take their seats according to the numbers, facilitating medical staff to check the seats and drugs. Based on this, the infusion process of the patient is monitored by the infusion monitor.
[0062] Example 1
[0063] An infusion management method provided by the present invention includes:
[0064] Step S1: There are infusion seats, infusion monitors and display screens in the personal infusion area, and the infusion monitors and display screens are bound through the background; at the same time, the infusion monitors and display screens are bound to the monitoring large screen through the background;
[0065] Step S2: Use the display screen to display the name and seat number of the infusion patient assigned to the infusion seat;
[0066] Step S3: Use the infusion monitor to monitor the infusion status of the infusion patient on the infusion seat in real time;
[0067] Step S4: Transmit the infusion status obtained based on the infusion monitor to the infusion monitoring platform for real-time monitoring through the infusion monitoring platform.
[0068] More specifically, as Figure 1 shown, the HIS system issues infusion orders, and the infusion monitoring platform obtains the order information; nurses can obtain the corresponding infusion orders by swiping the medical insurance card and ID card information, quickly assign seat numbers to patients based on the infusion progress on each seat, and at the same time print the corresponding infusion cards and infusion bottle labels for infusion verification; generate new orders with seat numbers based on the infusion progress on each seat (preferably select seat numbers that are not in use); the outpatient infusion seat screen displays the seat number of the infusion order and the name of the infusion person; the nurse obtains the infusion order and notifies the patient of the infusion seat number; the patient goes to the infusion seat number to wait for the previous infusion to end or wait for the nurse to come for infusion puncture; when the previous infusion ends, after the previous infusion is completed, the name and serial number of the next infusion person are displayed on the display screen; when waiting for the nurse to come for infusion puncture, the name and serial number of the current infusion person are displayed on the display screen; the nurse hangs the liquid and performs infusion matching according to the seat number; during the infusion process, the infusion status of the current infusion patient is monitored in real time through the infusion monitor and displayed on the display screen of the infusion seat; the infusion progress is transmitted to the infusion monitoring platform for the nurse to monitor in real time.
[0069] Specifically, based on the infusion progress obtained by the infusion monitoring platform, infusion seat numbers are assigned to the patients waiting for infusion, and the names, seat numbers, and infusion orders of the patients waiting for infusion assigned to the infusion seat numbers are displayed through a display screen. Seats with no one are preferentially assigned. If all current seat numbers are occupied by patients in the process of infusion, seats with infusion about to be completed are preferentially assigned; when there are multiple empty seats, positions with empty seats on both sides are preferentially assigned.
[0070] Specifically, the infusion monitor monitors the name of the current infusion drug, the infusion duration, and the infusion speed, so that medical staff can monitor the patient's infusion situation.
[0071] Specifically, the display screen displays the name of the patient matching the current seat, the seat number, the name of the current infusion drug, the remaining duration of the current infusion drug, the total remaining duration of the current patient's infusion, and matters needing attention during the drug infusion process.
[0072] Due to privacy protection, the patient's name cannot be fully displayed. The patient can find their matching position through the seat number, and then double-check through the seat number and the patient's name displayed on the display screen to ensure the correctness of the information; at the same time, the seat number can also be guided by the large screen, making it easier to find.
[0073] Specifically, the infusion monitor adopts:
[0074] Step S1.1: Obtain all drug information of the current patient and the drug infusion order based on the infusion order;
[0075] Step S1.2: The infusion monitor obtains the starting weight A of the current infusion bottle device, matches the obtained starting weight of the infusion bottle device with the weight of the drug to be infused by the current patient. When the match is successful, the corresponding drug information is obtained;
[0076] Step S1.3: Judge whether the current infusion order is correct according to the obtained drug information based on the drug infusion order in the infusion order; when it is incorrect, an alarm signal is output through the display screen for further information verification.
[0077] At the same time, the drug information of the patient's infusion can also be displayed by the display screen. Before the infusion, the nurse can check the patient's infusion by scanning the patient's infusion bottle label and the patient's infusion card.
[0078] Specifically, the infusion monitor adopts:
[0079] Step S1.4: When a set number of drops of the liquid medicine drip from the drip chamber of the infusion bottle device, weigh and obtain the weight B of the infusion bottle device;
[0080] Step S1.5: Divide the weight difference between the starting weight A and the weight B by the set number of drops to obtain the weight of each drop of the liquid medicine.
[0081] Step S1.6: Divide the total weight of the medicine for this infusion by the weight of each drop of the liquid medicine to obtain the total number of drops for this infusion.
[0082] Step S1.7: Subtract the number of drops of the liquid medicine that have dripped from the drip chamber from the total number of drops for this infusion to obtain the remaining number of drops for this infusion.
[0083] Step S1.8: Divide the remaining number of drops for this infusion by the current drip rate to obtain the remaining infusion time.
[0084] Step S1.9: When the remaining infusion time is less than the preset value, issue a warning to prompt corresponding operations, and at the same time, prompt to reduce the drip rate and wait for the nurse to operate through the display screen.
[0085] Specifically, use the infusion monitor to monitor the infusion status of the infusion patient on the infusion seat in real time and report abnormalities in real time, including: abnormal monitor power, abnormal infusion drip rate, infusion interruption, reminder of remaining infusion volume, and push of infusion end warning.
[0086] Among them, monitor the current drip rate through the infusion monitor. If the current drip rate exceeds the infusion speed information in the infusion doctor's order, a warning message will be sent through the display screen to avoid potential safety hazards.
[0087] Specifically,
[0088] Step S5: Based on the first infusion monitor, it is obtained that the infusion status of the infusion patient matching the first infusion seat is the uncompleted state. When the weight of the infusion bottle monitored by the first infusion monitor is 0, the infusion monitoring platform continues to monitor according to the infusion speed before the weight of the infusion bottle monitored by the first infusion monitor is 0.
[0089] Step S6: At time t0, the weight of the infusion bottle obtained by the first infusion monitor is 0, and at time t1, the weight of the infusion bottle obtained by the first infusion monitor is m1.
[0090] Step S7: Compare the weight m1 of the infusion bottle newly obtained by the first infusion monitor with the weight m of the infusion bottle of the infusion patient matching the first infusion seat monitored by the infusion monitoring platform at time t1. If they are not equal, the matching between the first infusion seat and the infusion patient is incorrect; if they are equal, the matching between the first infusion seat and the patient is correct.
[0091] Step S8: When there is a mismatch between the first infusion seat and the infusion patient, match the infusion rate obtained by the first infusion monitor at time t1 and the weight of the infusion bottle with the weights and infusion rates of the infusion bottles on all the infusion seats monitored on the infusion monitoring platform to obtain the matching second infusion seat number; and notify the patient to return to the second infusion seat number through the large screen and / or broadcast.
[0092] Step S9: At time t2, the weight of the infusion bottle obtained by the first infusion monitor is 0. The infusion monitoring platform continues to monitor according to the infusion rate before the weight of the infusion bottle monitored by the first infusion monitor reaches 0. At time t3, the corresponding second infusion monitor on the second infusion seat re-obtains the weight m2 of the infusion bottle; obtain the monitoring data of the first infusion monitor on the infusion monitoring platform from time t1 to t3, and send it to the second infusion monitor on the infusion monitoring platform, and the weight of the infusion bottle monitored by the second infusion monitor on the infusion monitoring platform at time t3 is equal to the weight m2 of the infusion bottle re-obtained by the corresponding second infusion monitor on the second infusion seat at time t3.
[0093] Step S10: Delete the detection data obtained by the first infusion monitor on the infusion monitoring platform from time t1 to t3.
[0094] Specifically, during the epidemic control period, the distance between infusion seats is set to be maximized.
[0095] According to an infusion management system provided by the present invention, it includes:
[0096] Module M1: There are infusion seats, infusion monitors, and display screens in the personal infusion area, and the infusion monitors and display screens are bound through the background; at the same time, the infusion monitors and display screens are bound to the monitoring large screen through the background;
[0097] Module M2: Use the display screen to display the name and seat number of the infusion patient assigned to the infusion seat;
[0098] Module M3: Use the infusion monitor to monitor the infusion status of the infusion patient on the infusion seat in real time;
[0099] Module M4: Transmit the infusion status obtained based on the infusion monitor to the infusion monitoring platform for real-time monitoring through the infusion monitoring platform.
[0100] More specifically, as Figure 1As shown in the figure, the HIS system issues infusion orders, and the infusion monitoring platform obtains the order information. Nurses can obtain the corresponding infusion orders by swiping the medical insurance card and ID card information, and quickly assign seats to patients based on the infusion progress of each seat by allocating seat numbers. At the same time, print the corresponding infusion cards and infusion bottle labels for infusion verification. Generate a new order with a seat number based on the infusion progress of each seat (preferably select a seat number that is not in use). The outpatient infusion seat screen displays the seat number of the infusion order and the name of the infusion person. The nurse obtains the infusion order and notifies the patient of the infusion seat number. The patient goes to the infusion seat number to wait for the previous infusion to end or wait for the nurse to come for infusion puncture. When the previous infusion ends, the name and serial number of the next infusion person are displayed on the display screen after the previous infusion is completed. When waiting for the nurse to come for infusion puncture, the name and serial number of the current infusion person are displayed on the display screen. The nurse hangs the liquid and performs infusion matching according to the seat number. During the infusion process, the infusion status of the current infusion patient is monitored in real time through the infusion monitor and displayed on the display screen of the infusion seat. Transmit the infusion progress to the infusion monitoring platform for the nurse to monitor in real time.
[0101] Specifically, based on the infusion progress of each seat obtained by the infusion monitoring platform, assign infusion seat numbers to the patients waiting for infusion, and display the name of the patient waiting for infusion, the seat number, and the infusion order assigned to the infusion seat number through the display screen. Preferentially assign seat numbers that are unoccupied. If all current seat numbers are in the process of infusion, then preferentially assign seat numbers where the infusion is about to be completed. When there are multiple empty seats, preferentially assign positions where both sides are empty seats.
[0102] Specifically, monitor the current infusion drug name, infusion duration, and infusion speed through the infusion monitor so that medical staff can monitor the patient's infusion situation.
[0103] Specifically, display through the display screen the name of the patient matched by the current seat, the patient serial number (i.e., the seat number), the current infusion drug name, the remaining duration of the current infusion drug, the total remaining duration of the current patient's infusion, and the matters needing attention during the drug infusion process.
[0104] Due to privacy protection, the patient's name cannot be fully displayed. The patient can find their matching position through the seat number, and then double-check through the seat number and patient name displayed on the display screen to ensure the correctness of the information. At the same time, the seat number can also be guided by the large screen, making it easier to find.
[0105] Specifically, the infusion monitor adopts:
[0106] Module M1.1: Obtain all drug information and drug infusion order of the current patient based on the infusion order;
[0107] Module M1.2: The infusion monitor obtains the starting weight A of the current infusion bottle device, matches the obtained starting weight of the infusion bottle device with the weight of the medicine to be infused for the current patient. When the matching is successful, the corresponding medicine information is obtained;
[0108] Module M1.3: Based on the obtained medicine information, judge whether the current infusion sequence is correct according to the medicine infusion sequence in the infusion order; when it is incorrect, an alarm signal is output through the display screen for further information verification.
[0109] Meanwhile, the medicine information of the patient's infusion can also be displayed on the display screen. Before the infusion, the nurse can check the patient's infusion by scanning the patient's infusion bottle label and the patient's infusion card.
[0110] Specifically, the infusion monitor adopts:
[0111] Module M1.4: When a set number of drops of liquid medicine drip from the drip chamber of the infusion bottle device, weigh and obtain the weight B of the infusion bottle device;
[0112] Module M1.5: Divide the weight difference between the starting weight A and the weight B by the set number of drops to obtain the weight of each drop of liquid medicine;
[0113] Module M1.6: Divide the total weight of the medicine for this infusion by the weight of each drop of liquid medicine to obtain the total number of drops for this infusion;
[0114] Module M1.7: Subtract the number of drops of liquid medicine that have dripped from the drip chamber from the total number of drops for this infusion to obtain the remaining number of drops for this infusion;
[0115] Module M1.8: Divide the remaining number of drops for this infusion by the current drip rate to obtain the remaining infusion time;
[0116] Module M1.9: When the remaining infusion time is less than the preset value, a warning is issued to prompt corresponding operations, and at the same time, the display screen is used to prompt to reduce the drip rate and wait for the nurse to operate.
[0117] Specifically, the infusion monitor is used to monitor the infusion status of the infusion patients on the infusion seats in real time and report abnormalities in real time, including: abnormal monitor power, abnormal infusion drip rate, infusion interruption, reminder of remaining infusion volume, and push of infusion end alarm;
[0118] Among them, the current drip rate is monitored by the infusion monitor. If the current drip rate exceeds the infusion speed information in the infusion order, a warning message is sent through the display screen to avoid potential safety hazards.
[0119] Specifically,
[0120] Module M5: Based on the first infusion monitor, it is obtained that the infusion status of the infusion patient matching the first infusion seat is the unfinished status. When the weight of the infusion bottle monitored by the first infusion monitor is 0, the infusion monitoring platform continues to monitor according to the infusion speed before the weight of the infusion bottle monitored by the first infusion monitor reaches 0;
[0121] Module M6: At time t0, the weight of the infusion bottle obtained by the first infusion monitor is 0, and at time t1, the weight of the infusion bottle obtained by the first infusion monitor is m1;
[0122] Module M7: Compare the weight m1 of the infusion bottle newly obtained by the first infusion monitor with the weight m of the infusion bottle of the infusion patient matching the first infusion seat monitored by the infusion monitoring platform at time t1. If they are not equal, the matching between the first infusion seat and the infusion patient is incorrect; if they are equal, the matching between the first infusion seat and the patient is correct;
[0123] Module M8: When the matching between the first infusion seat and the infusion patient is incorrect, then match according to the infusion speed obtained by the first infusion monitor at time t1 and the weights and infusion speeds of the infusion bottles on all the infusion seats monitored on the infusion monitoring platform to obtain the matching second infusion seat number; and notify the patient to return to the second infusion seat number through the large screen and / or broadcast;
[0124] Module M9: At time t2, the weight of the infusion bottle obtained by the first infusion monitor is 0, the infusion monitoring platform continues to monitor according to the infusion speed before the weight of the infusion bottle monitored by the first infusion monitor reaches 0. At time t3, the corresponding second infusion monitor on the second infusion seat newly obtains the weight m2 of the infusion bottle; obtain the monitoring data of the first infusion monitor on the infusion monitoring platform from time t1 to t3 and send it to the second infusion monitor on the infusion monitoring platform, and the weight of the infusion bottle monitored by the second infusion monitor on the infusion monitoring platform at time t3 is equal to the weight m2 of the infusion bottle newly obtained by the corresponding second infusion monitor on the second infusion seat at time t3;
[0125] Module M10: Delete the detection data obtained by the first infusion monitor on the infusion monitoring platform from time t1 to t3.
[0126] Specifically, during the epidemic control period, the distance between infusion seats is set to be maximized.
[0127] According to a computer-readable storage medium storing a computer program provided by the present invention, when the computer program is executed by a processor, the steps of the above-mentioned method are implemented.
[0128] Example 2
[0129] Embodiment 2 is a preferred example of Embodiment 1
[0130] The present invention provides an infusion management method, including:
[0131] Step 1: When a patient has a face-to-face consultation, the doctor issues an infusion order through the HIS system, including drug information, medication sequence, patient information, and infusion speed information;
[0132] Step 2: The nurse obtains the infusion order issued by the HIS system through the infusion monitoring platform;
[0133] Step 3: The nurse obtains the total remaining infusion duration of the patient through the infusion monitors bound to each seat in the infusion hall through the infusion monitoring platform; uses the infusion monitor to predict the end time;
[0134] Step 4: The nurse assigns the seat number with the shortest total remaining infusion duration among the current seats to the patient to be infused (preferably assign the seat number that no one is using); and tells the patient the seat number;
[0135] Step 5: Match the relevant information of the patient and the infusion order with the current seat number, and display it through the display screen;
[0136] Step 6: The patient takes the seat according to the seat number informed and the display information on the seat number under the guidance of the large screen, and waits for the nurse to perform the infusion puncture;
[0137] Step 7: When the nurse starts the infusion, place the infusion bottle device on the infusion rack, obtain the starting weight of the current infusion bottle device through the infusion monitor, match the starting weight with the weight of all the drugs to be infused by the patient, and when the match is successful, obtain the corresponding drug information; verify whether the infusion bottle on the current infusion rack conforms to the infusion sequence, and when it does not conform, output an alarm signal through the display screen, and the nurse conducts further information verification;
[0138] Step 8: During the infusion process, when patient A takes his own infusion bottle and temporarily leaves his infusion seat, the infusion monitoring platform continues to monitor according to the infusion speed before the infusion monitor monitors that the weight of the infusion bottle is 0; at time t0, the weight of the infusion bottle obtained by the infusion monitor is 0, and at time t1, the weight of the infusion bottle obtained by the infusion monitor is m1; then it is necessary to determine whether the current infusion bottle is the infusion bottle of the patient matched with the infusion seat monitored by the infusion monitoring platform; compare the weight m1 of the infusion bottle newly obtained by the infusion monitor with the weight m of the infusion bottle of the infusion patient matched with the infusion seat at time t1; when they are not equal, the infusion seat and the infusion patient are mismatched; when they are equal, the infusion seat and the patient are correctly matched;
[0139] Step 9: When there is a mismatch between the infusion seat and the infusion patient, i.e., when the current infusion patient is sitting in the wrong position, the correct seat for the patient needs to be found again; match the infusion rate and the weight of the infusion bottle obtained by the infusion monitor at time t1 with the weights and infusion rates of the infusion bottles on all the monitored infusion seats on the infusion monitoring platform to obtain the correct infusion seat number; and notify the patient to return to the correct infusion seat number through the large screen and / or broadcast.
[0140] Step 10: Send the data monitored during the time when the wrong seat was occupied to the corresponding database for continuous monitoring; at time t2, the weight of the infusion bottle obtained by the infusion monitor is 0, and the infusion monitoring platform continues to monitor based on the infusion rate before the weight of the infusion bottle monitored by the infusion monitor reaches 0. At time t3, the patient returns to their own infusion seat, and the corresponding infusion monitor on the current own infusion seat re-obtains the weight m2 of the infusion bottle; obtain the monitoring data of the original wrongly occupied infusion monitor on the infusion monitoring platform from time t1 to t3, and send it to the correct infusion monitor on the infusion monitoring platform, and the weight of the infusion bottle monitored by the correct infusion monitor on the infusion monitoring platform at time t3 is equal to the weight m2 of the infusion bottle re-obtained by the corresponding infusion monitor on the correct infusion seat at time t3; delete the detection data obtained by the original wrongly occupied infusion monitor on the infusion monitoring platform from time t1 to t3.
[0141] Step 11: During the infusion process, when the patient increases the drip rate and the drip rate detected by the infusion monitor exceeds the infusion rate information in the infusion doctor's order, a warning is issued through the display screen; monitor the remaining infusion duration of the current infusion bottle through the infusion monitor. When the remaining infusion duration is less than 1 minute, notify the nurse that needle removal or dressing change is required; when the remaining infusion duration is less than 1 minute, the patient can be informed of the treatment method through the display screen, for example: reduce the drip rate.
[0142] Those skilled in the art know that in addition to implementing the system, device, and their respective modules provided by the present invention in the form of pure computer-readable program code, the method steps can be logically programmed to enable the system, device, and their respective modules provided by the present invention to be implemented in the form of logic gates, switches, application-specific integrated circuits, programmable logic controllers, and embedded microcontrollers, etc. to achieve the same program. Therefore, the system, device, and their respective modules provided by the present invention can be regarded as a kind of hardware component, and the modules included therein for implementing various programs can also be regarded as the structure within the hardware component; the modules for implementing various functions can also be regarded as either software programs for implementing the method or the structure within the hardware component.
[0143] The specific embodiments of the present invention have been described above. It should be understood that the present invention is not limited to the above specific embodiments, and those skilled in the art can make various changes or modifications within the scope of the claims, which does not affect the essence of the present invention. Without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other arbitrarily.
Claims
1. An infusion management method, characterized in that, Including: Step S1: In the personal infusion area, there are infusion seats, infusion monitors, and display screens, and the infusion monitors are bound to the display screens through the background; Step S2: Use the display screen to display the names and seat numbers of the infusion patients assigned to the infusion seats; Step S3: Use the infusion monitor to monitor the infusion status of the infusion patients on the infusion seats in real time; Step S4: Transmit the infusion status obtained based on the infusion monitor to the infusion monitoring platform for real-time monitoring; Step S5: Based on the first infusion monitor, it is obtained that the infusion status of the infusion patient matching the first infusion seat is not ended. When the weight of the infusion bottle monitored by the first infusion monitor is 0, the infusion monitoring platform continues to monitor according to the infusion speed before the weight of the infusion bottle monitored by the first infusion monitor is 0; Step S6: At time t0, the weight of the infusion bottle obtained by the first infusion monitor is 0, and at time t1, the weight of the infusion bottle obtained by the first infusion monitor is m1; Step S7: Compare the weight m1 of the infusion bottle newly obtained by the first infusion monitor with the weight m of the infusion bottle of the infusion patient matching the first infusion seat monitored by the infusion monitoring platform at time t1; if they are not equal, the first infusion seat and the infusion patient are mismatched; if they are equal, the first infusion seat and the patient are correctly matched; Step S8: When the first infusion seat and the infusion patient are mismatched, then match according to the infusion speed and the weight of the infusion bottle obtained by the first infusion monitor at time t1 with the weights and infusion speeds of the infusion bottles on all the infusion seats monitored on the infusion monitoring platform to obtain the matching second infusion seat number; and notify the patient to return to the second infusion seat number through the large screen and / or broadcast; Step S9: At time t2, the weight of the infusion bottle obtained by the first infusion monitor is 0, the infusion monitoring platform continues to monitor according to the infusion speed before the weight of the infusion bottle monitored by the first infusion monitor is 0, and at time t3, the corresponding second infusion monitor on the second infusion seat newly obtains the weight m2 of the infusion bottle; obtain the monitoring data of the first infusion monitor on the infusion monitoring platform from time t1 to time t3 and send it to the second infusion monitor on the infusion monitoring platform, and the weight of the infusion bottle monitored by the second infusion monitor on the infusion monitoring platform at time t3 is equal to the weight m2 of the infusion bottle newly obtained by the corresponding second infusion monitor on the second infusion seat at time t3; Step S10: Delete the monitoring data obtained by the first infusion monitor on the infusion monitoring platform from time t1 to time t3; The infusion monitor adopts: Step S1.4: When a set number of drops of liquid medicine drip from the drip chamber of the infusion bottle device, weigh to obtain the weight B of the infusion bottle device; Step S1.5: Divide the weight difference between the starting weight A and the weight B by the set number of drops to obtain the weight of each drop of liquid medicine; Step S1.6: Divide the total weight of the liquid medicine for this infusion by the weight of each drop of liquid medicine to obtain the total number of drops for this infusion; Step S1.7: Subtract the number of drops of liquid medicine that have dripped from the drip chamber from the total number of drops for this infusion to obtain the remaining number of drops for this infusion; Step S1.8: Divide the remaining number of drops for this infusion by the current drip speed to obtain the remaining infusion time; Step S1.9: When the remaining infusion time is less than the preset value, a warning is issued to prompt corresponding operations. At the same time, the display screen is used to prompt to reduce the drip rate and wait for the nurse to operate.
2. The infusion management method according to claim 1, wherein Obtain the corresponding infusion order according to the patient's identity information, and allocate seats for the patient based on the infusion status of each seat obtained from the infusion monitoring platform; Based on the infusion status of each seat obtained from the infusion monitoring platform, allocate an infusion seat number for the patient waiting for infusion. Priority is given to allocating the seat number with the infusion status of infusion completed on the seat. When the infusion status of all seats is in progress, priority is given to allocating the seat number with the smallest remaining infusion time. When there are multiple consecutive seats with the infusion status of infusion completed, priority is given to allocating the seat number with the infusion status of infusion completed for adjacent seats. And the name, seat number, and infusion order of the patient waiting for infusion allocated on the infusion seat number are displayed through the display screen; Monitor the current infusion drug name, infusion duration, and infusion speed through the infusion monitor to facilitate medical staff to monitor the patient's infusion situation; Display through the display screen the patient's name, seat number, current infusion drug name, remaining duration of the current infusion drug, total remaining duration of the patient's infusion, and matters needing attention during the drug infusion.
3. The infusion management method according to claim 2, characterized in that, The infusion monitor adopts: Step S1.1: Obtain all drug information and drug infusion sequence of the current patient based on the infusion order; Step S1.2: The infusion monitor obtains the starting weight A of the current infusion bottle device, matches the obtained starting weight of the infusion bottle device with the weight of the drug to be infused by the current patient. When the match is successful, the corresponding drug information is obtained; Step S1.3: Judge whether the current infusion sequence is correct according to the obtained drug information based on the drug infusion sequence in the infusion order. When it is incorrect, an alarm signal is output through the display screen for further information verification.
4. The infusion management method according to claim 1, characterized in that, Use the display screen to display the drug information of the patient's infusion, and check the patient's infusion before infusion through the patient's infusion bottle information and infusion information.
5. The infusion management method according to claim 1, characterized in that, Use the infusion monitor to monitor the infusion status of the infusion patient on the infusion seat in real time and report abnormalities in real time, including: abnormal monitor power, abnormal infusion drip rate, infusion interruption, infusion remaining volume reminder, and infusion end alarm push; Among them, monitor the current drip rate through the infusion monitor. If the current drip rate exceeds the infusion speed information in the infusion order, a warning message is sent through the display screen to avoid potential safety hazards.
6. An infusion management system, characterized in that, Include: Module M1: There are infusion seats, infusion monitors, and display screens in the personal infusion area, and the infusion monitor and the display screen are bound through the background; Module M2: Use the display screen to display the name and seat number of the infusion patient allocated on the infusion seat; Module M3: Use the infusion monitor to monitor the infusion status of the infusion patient on the infusion seat in real time; Module M4: Transmit the infusion status obtained based on the infusion monitor to the infusion monitoring platform for real-time monitoring; Module M5: Based on the first infusion monitor, it is obtained that the infusion status of the infusion patient matching the first infusion seat is the unfinished status. When the weight of the infusion bottle monitored by the first infusion monitor is 0, the infusion monitoring platform continues to monitor according to the infusion speed before the weight of the infusion bottle monitored by the first infusion monitor becomes 0; Module M6: At time t0, the weight of the infusion bottle obtained by the first infusion monitor is 0, and at time t1, the weight of the infusion bottle obtained by the first infusion monitor is m1; Module M7: Compare the weight m1 of the infusion bottle newly obtained by the first infusion monitor with the weight m of the infusion bottle of the infusion patient matching the first infusion seat monitored by the infusion monitoring platform at time t1. If they are not equal, then the first infusion seat and the infusion patient are mismatched; if they are equal, then the first infusion seat and the patient are correctly matched; Module M8: When the first infusion seat and the infusion patient are mismatched, then match according to the infusion speed and the weight of the infusion bottle obtained by the first infusion monitor at time t1 with the weights and infusion speeds of the infusion bottles on all the infusion seats monitored on the infusion monitoring platform to obtain the matching second infusion seat number; and notify the patient to return to the second infusion seat number through the large screen and / or broadcast; Module M9: At time t2, the weight of the infusion bottle obtained by the first infusion monitor is 0, the infusion monitoring platform continues to monitor according to the infusion speed before the weight of the infusion bottle monitored by the first infusion monitor becomes 0. At time t3, the corresponding second infusion monitor on the second infusion seat newly obtains the weight m2 of the infusion bottle; obtain the monitoring data of the first infusion monitor on the infusion monitoring platform from time t1 to t3 and send it to the second infusion monitor on the infusion monitoring platform, and the weight of the infusion bottle monitored by the second infusion monitor on the infusion monitoring platform at time t3 is equal to the weight m2 of the infusion bottle newly obtained by the corresponding second infusion monitor on the second infusion seat at time t3; Module M10: Delete the monitoring data obtained by the first infusion monitor on the infusion monitoring platform from time t1 to t3; The infusion monitor includes: Module M1.4: When a set number of drops of the liquid medicine drip from the drip chamber of the infusion bottle device, weigh to obtain the weight B of the infusion bottle device; Module M1.5: Divide the weight difference between the starting weight A and the weight B by the set number of drops to obtain the weight of each drop of the liquid medicine; Module M1.6: Divide the total weight of the current infusion medicine by the weight of each drop of the liquid medicine to obtain the total number of drops of the current infusion; Module M1.7: Subtract the number of drops of the liquid medicine that has dripped from the drip chamber from the total number of drops of the current infusion to obtain the remaining number of drops of the current infusion; Module M1.8: Divide the remaining number of drops of the current infusion by the current drip speed to obtain the remaining infusion time; Module M1.9: When the remaining infusion time is less than the preset value, then issue a warning to prompt for corresponding operations, and at the same time prompt to reduce the drip speed and wait for the nurse to operate through the display screen.
7. The infusion management system according to claim 6, wherein Obtain the corresponding infusion doctor's advice according to the patient identity information, and allocate seats for the patients based on the infusion status of each seat obtained by the infusion monitoring platform; Based on the infusion status of each seat obtained from the infusion monitoring platform, assign an infusion seat number to the patients waiting for infusion, and preferentially assign the seat number of the seat with the infusion status of "infusion completed"; when the infusion status of all seats is "infusion in progress", then preferentially assign the seat number with the minimum remaining infusion time; when there are multiple consecutive seats with the infusion status of "infusion completed", then preferentially assign the seat number of the adjacent seats where the infusion status of both is "infusion completed"; and display the name, seat number, and infusion doctor's order of the patient waiting for infusion assigned to the infusion seat number through the display screen; Monitor the current infusion drug name, infusion duration, and infusion speed through the infusion monitor, so that medical staff can monitor the patient's infusion situation; Display through the display screen the patient name, seat number, current infusion drug name, remaining duration of the current infusion drug, total remaining duration of the current patient's infusion, and matters needing attention during the drug infusion corresponding to the current seat.
8. The infusion management system according to claim 7, wherein The infusion monitor adopts: Module M1.1: Obtain all drug information and drug infusion order of the current patient based on the infusion doctor's order; Module M1.2: The infusion monitor obtains the starting weight A of the current infusion bottle device, matches the obtained starting weight of the infusion bottle device with the weight of the drug to be infused by the current patient, and when the match is successful, obtains the corresponding drug information; Module M1.3: Judge whether the current infusion order is correct based on the drug information obtained and the drug infusion order in the infusion doctor's order; when it is incorrect, output an alarm signal through the display screen for further information verification.
9. The infusion management system according to claim 6, wherein Use the infusion monitor to monitor the infusion status of the patients on the infusion seats in real time and report abnormalities in real time, including: abnormal monitor power, abnormal infusion drip speed, infusion interruption, infusion remaining volume reminder, and infusion completion alarm push; Among them, monitor the current drip speed through the infusion monitor. If the current drip speed exceeds the infusion speed information in the infusion doctor's order, then send a warning message through the display screen to avoid potential safety hazards.
10. A computer-readable storage medium storing a computer program, characterized in that, When the computer program is executed by the processor, it implements the steps of the method described in any one of claims 1 to 5.
Citation Information
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