Antibiotic use timer for sepsis patient

By designing an antibiotic use timer for septic patients, accurate timing and information management are achieved, and the problems of inaccurate timing and information dispersion in antibiotic use in septic patients are solved, the timeliness of treatment and resource utilization efficiency are improved, and the risk of complications is reduced.

CN120478162AInactive Publication Date: 2025-08-15广东医科大学附属第二医院
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Patent Information

Application Number
CN202510489505.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2025-08-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The prior art has problems such as inaccurate timing, difficult information dispersion and difficulty in integrating drug delivery under intensive monitoring in patients with sepsis, resulting in improper treatment timing and waste of medical resources.

Method used

A timer for antibiotic use in septic patients including a timing delivery system, a timer and a drug taker is designed. Through the coordinated work of the reception module, a grouping timer, an intensive monitoring module, a drug delivery module and a data recording module, accurate timing, information management and intelligent reminders are achieved to ensure that antibiotics are given at the best time.

Benefits of technology

It improves the accuracy and timeliness of antibiotic use, optimizes the allocation of medical resources, reduces the risk of complications and mortality, and reduces drug errors and waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of medical instruments, in particular to a sepsis patient antibiotic use timer, which comprises a timing drug delivery system, a timer and a drug taking device, and is characterized in that the timing drug delivery system comprises a receiving module, a grouping timing module, a severe case monitoring module, a drug delivery module and a data recording module; the grouping timing module is used for grouping according to the information of the timer and calculating definite diagnosis or suspected definite diagnosis time, and the drug administration module is used for analyzing the types of germs of patients diagnosed with sepsis and generating corresponding drug administration time and drug administration amount data of antibiotics. The intensive care monitoring module is used for monitoring the antibiotic use condition of the patient in real time under the intensive care condition. Through cooperation of the administration module and the severe case monitoring module, an antibiotic administration scheme is adjusted in real time according to the condition of a patient so as to provide reference for medical staff, and the timeliness and effectiveness of treatment are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of medical devices, and in particular to a timer for the use of antibiotics in patients with sepsis. Background Art

[0002] Sepsis is a systemic inflammatory response syndrome caused by infection. Its etiologies are diverse, primarily encompassing skin and soft tissue infections, lung infections, urinary tract infections, intestinal infections, abdominal infections, and bloodstream infections. This syndrome is closely associated with multi-organ failure and high mortality, making timely and effective treatment crucial. Antibiotics, as an important tool for infection control, play a central role in the treatment of sepsis. They control infection by inhibiting bacterial growth or killing pathogens, thereby reducing toxin production and lowering the risk of mortality. However, the use of antibiotics is not simply a matter of administering them; the timing of their use is equally crucial. Studies have shown that timely administration of antibiotics (e.g., within 1 hour of diagnosis) significantly reduces in-hospital mortality in patients with sepsis and septic shock. Therefore, precise timing of antibiotic administration is crucial. This not only ensures that patients receive treatment at the optimal time but also optimizes the allocation of medical resources and avoids unnecessary medical waste.

[0003] Although timely antibiotic administration is crucial for patients with sepsis, existing timekeeping methods have many drawbacks in practice. First, in sepsis treatment, traditional methods can delay antibiotic administration due to manual recording or misjudgment. Second, in real-world medical settings, patient information and medication records are often scattered across different systems, making efficient integration difficult. Furthermore, in traditional medical settings, during critical care monitoring, medical staff may forget or delay medication due to busy schedules. Furthermore, due to the patient's critical condition, medical staff are preoccupied with rescuing patients and are unable to adjust antibiotic dosing regimens in a timely manner. Therefore, an antibiotic timer for sepsis patients that can accurately time, effectively connect patient information management with medication records, and provide intelligent reminders is particularly important. Summary of the Invention

[0004] To address the above issues, the present invention provides an antibiotic usage timer for sepsis patients. Through the collaboration of the medication module and the critical care monitoring module, the antibiotic medication regimen is adjusted in real time according to the patient's condition to provide a reference for medical staff, thereby improving the timeliness and effectiveness of treatment.

[0005] To achieve the above objectives, the technical solution of the present invention is as follows: a timer for the use of antibiotics in patients with sepsis, comprising a timed medication system, a timer, and a medication dispenser, wherein the timed medication system comprises a receiving module, a grouping timing module, a critical monitoring module, a medication module, and a data recording module;

[0006] The receiving module is used to receive the information of the timer;

[0007] The group timing module is used to group patients based on the timer information and calculate the time of confirmed or suspected diagnosis. For patients with confirmed sepsis, medication is required within 1 hour after diagnosis. Therefore, the information transmitted by the timer records the time when antibiotic administration starts for confirmed patients. For patients with suspected sepsis, secondary testing is required. At the same time, since suspected sepsis patients also have the risk of confirmed sepsis, medication is required within 3 hours of the secondary test. Therefore, the information transmitted by the timer records the start time of the secondary test for suspected sepsis patients.

[0008] The medication module is used to analyze the types of pathogens in patients diagnosed with sepsis and generate corresponding antibiotic administration time and dosage data;

[0009] The critical care monitoring module is used to monitor the patient's antibiotic use in real time under intensive care conditions. Medical staff adjust the antibiotic dosing regimen based on the timing records, combined with the advice and experience of the medication module. The critical care monitoring module adjusts the treatment plan based on the adjusted medication regimen and provides reference to medical staff.

[0010] The data recording module is used to record the patient's sepsis diagnosis results and automatically determine the type and dosage of antibiotics that need to be administered based on the diagnosis results. The data recording module is also used to record the patient information transmitted by the timer and scan the timer through the medicine dispenser. Medical staff can take the medicine as required based on the patient's medication information displayed on the medicine dispenser.

[0011] The above scheme has the following beneficial effects:

[0012] 1. This solution enables the system to precisely ensure that confirmed patients receive antibiotic treatment within one hour of diagnosis, a key factor in improving the success rate of sepsis treatment. For patients suspected of sepsis, the system uses a timer to record the start time of secondary testing, ensuring timely treatment within three hours of suspected infection. This reduces the risk of worsening conditions, even if the patient has not yet received a final diagnosis. Electronically recording and managing time information avoids potential errors associated with traditional manual recording, improving treatment efficiency and accuracy.

[0013] 2. In this solution, patients' conditions often change rapidly in critical care settings, placing extremely high demands on the accuracy and timeliness of antibiotic use. This system uses the critical care monitoring module to monitor patients' antibiotic use in real time. If an abnormality or adjustment is detected, it can immediately alert medical staff to ensure timely and effective treatment.

[0014] 3. This solution: Intensive care patients often have complex conditions and require personalized treatment plans. Through the drug delivery module, this system can generate personalized antibiotic dosing plans based on factors such as the type of pathogen and the severity of the patient's condition, ensuring targeted and effective treatment.

[0015] 4. This solution: In intensive care settings, the rational allocation and utilization of medical resources is crucial. By accurately recording and analyzing patients' antibiotic usage, this system can help medical staff arrange treatment plans more rationally, avoid unnecessary drug waste, and optimize the use of medical resources.

[0016] Furthermore, the timed medication system also includes a reminder module, which is used to send reminders to medical staff through the APP when the preset medication time is about to be reached. The reminder module is also used to send reminders to medical staff who pick up the medicine when the medication record of the medicine dispenser scanning timer does not match the patient information.

[0017] Beneficial Effects: The reminder module can promptly alert medical staff via an app when the preset medication time is approaching, ensuring that patients receive antibiotic treatment on time and improving medication punctuality. If medication records and patient information do not match, the reminder module can immediately send a reminder through the medicine dispenser, avoiding medication risks caused by information errors and enhancing medication safety.

[0018] Furthermore, the timer includes a fixed ring, both ends of which are provided with magnetic buckles, a recording box is detachably connected to the fixed ring, a first timing component for starting the administration of antibiotics for patients diagnosed with sepsis and a second timing component for testing patients suspected of sepsis are fixedly connected to the top of the recording box, a first transmission module for transmitting patient information is provided in the recording box, the first transmission module is electrically connected to the first timing component and the second timing component respectively, a first display screen for displaying the timing time is fixedly connected to the recording box, and an identification component for identifying patient information is also provided on the recording box, the identification component is electrically connected to the first transmission module, and the first transmission module is connected to the timing medication system signal.

[0019] Beneficial Effects: The second timing component measures the initial diagnosis of suspected sepsis patients, ensuring timely assessment within three hours of suspected infection, saving valuable time for subsequent treatment. Once sepsis is confirmed, medical staff can quickly start antibiotic administration using the first timing component on the fixed ring, ensuring optimal treatment, reducing the risk of complications and mortality. The identification component accurately identifies patient information and transmits it to the timing medication system in real time via the first transmission module, eliminating manual input errors and improving the accuracy and efficiency of patient information management.

[0020] Furthermore, the medicine dispenser includes an antibiotic storage cabinet, a sensor box is fixedly connected to the cabinet door of the antibiotic storage cabinet, and the sensor box is provided with a second transmission module for transmitting the sensor box signal and a sensor component for monitoring whether the cabinet door of the antibiotic storage cabinet is opened.

[0021] Beneficial effects: The sensing component on the surface of the sensor box can identify patient information, automatically match the corresponding antibiotic type and dosage, and display it on the second display screen, effectively avoiding medication errors and improving the accuracy of medication.

[0022] Furthermore, the first timing component includes a first timing button, which is mounted on the fixing ring and is electrically connected to the first transmission module and the first display screen respectively.

[0023] Beneficial effects: The first timing button is convenient for medical staff to operate, so that the action of pressing the button can immediately trigger the start of timing, and synchronize relevant information to the first transmission module and the first display screen. Medical staff only need to simply press the first timing button to immediately start the antibiotic administration timing for patients diagnosed with sepsis, without the need for additional operating steps or waiting time, which greatly improves work efficiency.

[0024] Furthermore, the second timing component includes a second timing button, which is mounted on the fixing ring and electrically connected to the first transmission module and the first display screen respectively.

[0025] Beneficial Effect: When a patient is initially diagnosed with suspected sepsis, medical staff can quickly press the second timer button to start the test timer for the suspected condition. This helps ensure timely completion of the condition assessment within 3 hours of the suspected infection, providing a critical time reference for subsequent treatment. The second timer button and the first timer button are operated separately, allowing medical staff to distinguish them.

[0026] Furthermore, the identification component includes a first NFC identifier fixedly connected to the inner wall of the recording box and a first identification area fixedly connected to the surface of the recording box, and the first NFC identifier is electrically connected to the first identification area and the first transmission module respectively.

[0027] Beneficial Effect: Through the cooperation of the first NFC identifier and the first identification area, patient information can be accurately recorded and transmitted to the timed medication system in real time. This helps medical staff better understand the patient's condition and develop more personalized treatment plans.

[0028] Furthermore, the sensing component includes a vibration sensor fixedly connected to the sensor box. The vibration sensor is used to monitor the vibration signal when the antibiotic storage cabinet door is closed and record it as the medicine removal time. The vibration sensor is signal-connected to the second transmission module.

[0029] Beneficial effects: The traditional manual recording method may cause errors due to human factors, while the vibration sensor records time in an automated and electronic way, avoiding this problem. The vibration sensor captures the instantaneous vibration when the cabinet door is closed, thereby accurately recording the time of taking medicine, which helps to improve the treatment effect.

[0030] Furthermore, the sensing component includes a second NFC identifier fixedly connected to the inner wall of the sensing box and a second identification area fixedly connected to the surface of the sensing box, and the second NFC identifier is electrically connected to the second identification area and the second transmission module respectively.

[0031] Beneficial effect: When medical staff use the first NFC identifier to approach the second identification area, the second NFC identifier can quickly complete the identification and use of medicines, simplifying the medicine management process.

[0032] Additional aspects and advantages of the present invention will be set forth in part in the description which follows and, in part, will be obvious from the description which follows, or may be learned by practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] Figure 1 A schematic diagram of the system framework of an embodiment of a timer for antibiotic use in sepsis patients according to the present invention;

[0034] Figure 2 A schematic isometric view of an embodiment of a timer for antibiotic use in sepsis patients according to the present invention;

[0035] Figure 3 This is an axonometric schematic diagram of a medicine dispenser according to an embodiment of a timer for antibiotic use in sepsis patients of the present invention.

[0036] The figure marks in the drawings of the specification include: 1. fixing ring; 2. recording box; 3. second timing button; 4. first identification area; 5. first display screen; 6. first timing button; 7. antibiotic storage cabinet; 8. sensor box; 9. second display screen; 10. second identification area. DETAILED DESCRIPTION

[0037] The technical solution of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0038] In the description of the present invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limitations on the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0039] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed, detachable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.

[0040] The following is further described in detail through specific implementation methods:

[0041] Example 1:

[0042] As attached Figure 1 As shown: A timer for the use of antibiotics in patients with sepsis, including a timed drug delivery system, a timer and a drug dispenser. The timed drug delivery system includes a receiving module, a group timing module, a critical care monitoring module, a drug delivery module and a data recording module;

[0043] The receiving module is used to receive the information of the timer;

[0044] The group timing module is used to group patients based on the timer information and calculate the time of confirmed or suspected diagnosis. For patients with confirmed sepsis, medication is required within 1 hour after diagnosis. Therefore, the information transmitted by the timer records the time when antibiotic administration starts for confirmed patients. For patients with suspected sepsis, secondary testing is required. At the same time, since suspected sepsis patients also have the risk of confirmed sepsis, medication is required within 3 hours of the secondary test. Therefore, the information transmitted by the timer records the start time of the secondary test for suspected sepsis patients.

[0045] The medication module is used to analyze the types of pathogens in patients diagnosed with sepsis and generate corresponding antibiotic administration time and dosage data;

[0046] The critical care monitoring module is used to monitor the patient's antibiotic use in real time under intensive care conditions. Medical staff adjust the antibiotic dosing regimen based on the timing records, combined with the advice and experience of the medication module. The critical care monitoring module adjusts the treatment plan based on the adjusted medication regimen and provides reference to medical staff.

[0047] The data recording module is used to record the patient's sepsis diagnosis results and automatically determine the type and dosage of antibiotics that need to be administered based on the diagnosis results. The data recording module is also used to record the patient information transmitted by the timer and scan the timer through the medicine dispenser. Medical staff can take the medicine as required based on the patient's medication information displayed on the medicine dispenser.

[0048] The specific implementation process is as follows: When a patient with suspected or confirmed sepsis enters the intensive care unit, the patient's basic information is entered into the data recording module through the medical information system or manually. Once the patient is diagnosed with sepsis, the group timing module is immediately activated to record the diagnosis time and set an antibiotic administration reminder within 1 hour. For patients with suspected sepsis, the secondary testing process is initiated, and the group timing module is also activated at the same time to record the start time of the secondary testing and set an antibiotic administration preparation reminder within 3 hours.

[0049] The patient's sepsis analysis results are obtained through the detection equipment and transmitted to the drug administration module. After receiving the patient information, the drug administration module analyzes the types of pathogens in the confirmed sepsis patient. Based on the analysis results of the pathogen types, the drug administration module will screen out antibiotics that are sensitive to specific pathogens from the preset antibiotic database. After determining the type of antibiotic, the drug administration module will calculate the optimal drug administration time and dosage based on factors such as the patient's weight, age, renal function, as well as the antibiotic's half-life, the presence or absence of post-antimicrobial effect (PAE), and other characteristics. The data recording module records the patient's sepsis diagnosis results and the type and dosage of antibiotics that need to be administered.

[0050] The critical care monitoring module monitors patients' vital signs, antibiotic use, and possible complications or adverse reactions in real time. Medical staff use this data, combined with the medication module's recommendations and personal experience, to promptly adjust antibiotic dosing regimens.

[0051] When medical staff go to the antibiotic storage cabinet to get medicine, the type of disease the patient has is identified by the medicine dispenser, and the patient's medication information is displayed on the medicine dispenser. The medical staff takes the medicine as required. When the medical staff takes the medicine, the medicine dispenser can also monitor the vibration signal of the cabinet door closing. The signal is transmitted to the timing medication system to record the time of medication. The data recording module updates the patient's medication record in real time, including medication time, medication amount, medication time, etc.

[0052] Example 2:

[0053] As attached Figure 1 As shown, the difference from Example 1 is that the timed medication system also includes a reminder module. The reminder module is used to send a reminder to the medical staff through the APP when the preset medication time is about to be reached. The reminder module is also used to send a reminder to the medical staff who picks up the medicine when the medication record of the medication dispenser scanning timer does not match the patient information.

[0054] The specific implementation process is as follows: when the preset antibiotic administration time is about to be reached, the reminder module will send a reminder to the medical staff responsible for the patient through the APP push function. When the medical staff goes to pick up the medicine, the reminder module will verify whether the scanned medication records and patient information match the records in the system through the medicine dispenser identification timer. If the match is successful, the system will continue to execute subsequent steps; if there is no match, the reminder module will immediately send a reminder to the medical staff who is picking up the medicine through the medicine dispenser. In emergency situations, such as if the patient's condition deteriorates rapidly, the system should be able to immediately trigger an emergency reminder to guide the medical staff to quickly adjust the medication plan or take other emergency treatment measures.

[0055] Example 3:

[0056] As attached Figure 2 As shown, the difference from Example 2 is that the timer includes a fixing ring 1, both ends of the fixing ring 1 are provided with magnetic buckles, and a recording box 2 is detachably connected to the fixing ring 1. A first timing component for starting the administration of antibiotics for patients diagnosed with sepsis and a second timing component for detecting and timing patients suspected of sepsis are fixedly connected to the top of the recording box 2. A first transmission module for transmitting patient information is provided in the recording box 2, and the first transmission module is electrically connected to the first timing component and the second timing component respectively. A first display screen 5 for displaying the timing time is fixedly connected to the recording box 2. The recording box 2 is also provided with an identification component for identifying patient information, and the identification component is electrically connected to the first transmission module, and the first transmission module is connected to the timing medication system signal.

[0057] The medicine dispenser includes an antibiotic storage cabinet 7, a door of which is fixedly connected to a sensor box 8, wherein the sensor box 8 is provided with a second transmission module for transmitting the sensor box 8 signal and a sensor component for monitoring whether the door of the antibiotic storage cabinet 7 is opened.

[0058] The surface of the sensor box 8 is provided with a sensing component for identifying patient information data and a second display screen 9 for displaying medication information. The sensing component, the sensing component and the second display screen 9 are all connected to the second transmission signal.

[0059] The first timing component includes a first timing button 6, which is installed on the fixed ring 1 and is electrically connected to the first transmission module and the first display screen 5 respectively. The second timing component includes a second timing button 3, which is installed on the fixed ring 1 and is electrically connected to the first transmission module and the first display screen 5 respectively.

[0060] The identification component includes a first NFC identifier fixedly connected to the inner wall of the recording box 2 and a first identification area 4 fixedly connected to the surface of the recording box 2. The first NFC identifier is electrically connected to the first identification area 4 and the first transmission module respectively.

[0061] The specific implementation process is as follows: before diagnosing a sepsis patient, the fixing ring 1 is worn on the patient's wrist through the magnetic buckle and the diagnosis is started. The second timing button 3 is pressed to start the timing. The patient is diagnosed with clinical manifestations of sepsis through preliminary qSOFA detection and evaluation of organ dysfunction. The first display screen 5 reminds the medical staff of the diagnosis time at any time. If sepsis is confirmed, the medical staff responds quickly and removes the patient's fixing ring 1. The timing is restarted by pressing the first timing button 6 and the medical staff quickly goes to the antibiotic storage cabinet 7 to get the medicine. During this period, the first display screen 5 continuously displays the diagnosis time of the sepsis patient and reminds the medical staff The medical staff adheres the first identification area 4 of the fixing ring 1 to the sensing component on the sensing box to identify the patient information. The timing medication system determines the type of septic bacteria of the patient and the corresponding type and dosage of antibiotics according to the received patient information and the preset antibiotic usage rules, and displays them on the sensor box 8 through the second display screen 9 for the medical staff's reference. The medical staff takes out the corresponding antibiotics from the antibiotic storage cabinet 7 according to the medication information on the second display screen 9. After taking out the antibiotics, the medical staff closes the cabinet door, monitors whether the cabinet door of the antibiotic storage cabinet 7 is opened through the sensing component, and records the time when the medical staff takes the medicine.

[0062] If the patient is suspected of having sepsis and needs secondary monitoring of the condition, the second timing button 3 will continuously time the diagnosis work of the medical staff and record the time used for the secondary monitoring of the condition during the suspected sepsis infection period, so as to preliminarily determine the type of pathogen and the corresponding type of antibiotic within 3 hours of the suspected infection time.

[0063] Example 4:

[0064] As attached Figure 3 As shown, the difference from Example 3 is that the sensing component includes a vibration sensor fixedly connected to the sensor box 8, the vibration sensor is used to monitor the vibration signal when the door of the antibiotic storage cabinet 7 is closed and record the time of taking medicine, and the vibration sensor is connected to the second transmission module signal.

[0065] The sensing component includes a second NFC identifier fixedly connected to the inner wall of the sensor box 8 and a second identification area 10 fixedly connected to the surface of the sensor box 8. The second NFC identifier is electrically connected to the second identification area 10 and the second transmission module respectively.

[0066] The specific implementation process is as follows: the second NFC identifier is used to identify the patient information recorded by the first NFC identifier on the fixed ring 1 held by the medical staff, and the vibration sensor is used to detect the vibration signal generated by the closing door of the antibiotic storage cabinet 7. This signal is captured by the sensor and converted into an electrical signal, which serves as the basis for recording the time when the medical staff retrieves the medicine.

[0067] Obviously, the above embodiments are merely examples for clarity of explanation and are not intended to limit the implementation methods. Those skilled in the art will readily appreciate that other variations or modifications based on the above descriptions are possible. It is not necessary and impossible to enumerate all implementation methods here. Obvious variations or modifications arising therefrom remain within the scope of protection of the present invention.

Claims

1. A timer for the use of antibiotics in patients with sepsis, characterized in that: It includes a timing drug delivery system, a timer and a drug dispenser. The timing drug delivery system includes a receiving module, a group timing module, a critical care monitoring module, a drug delivery module and a data recording module. The receiving module is used to receive the information of the timer; The group timing module is used to group patients based on the timer information and calculate the time of confirmed or suspected diagnosis. For patients with confirmed sepsis, medication is required within 1 hour after diagnosis. Therefore, the information transmitted by the timer records the time when antibiotic administration starts for confirmed patients. For patients with suspected sepsis, secondary testing is required. At the same time, since suspected sepsis patients also have the risk of confirmed sepsis, medication is required within 3 hours of the secondary test. Therefore, the information transmitted by the timer records the start time of the secondary test for suspected sepsis patients. The medication module is used to analyze the types of pathogens in patients diagnosed with sepsis and generate corresponding antibiotic administration time and dosage data; The critical care monitoring module is used to monitor the patient's antibiotic use in real time under intensive care conditions. Medical staff adjust the antibiotic dosing regimen based on the timing records, combined with the advice and experience of the medication module. The critical care monitoring module adjusts the treatment plan based on the adjusted medication regimen and provides reference to medical staff. The data recording module is used to record the patient's sepsis diagnosis results and automatically determine the type and dosage of antibiotics that need to be administered based on the diagnosis results. The data recording module is also used to record the patient information transmitted by the timer and scan the timer through the medicine dispenser. Medical staff can take the medicine as required based on the patient's medication information displayed on the medicine dispenser.

2. The antibiotic usage timer for sepsis patients according to claim 1, characterized in that: The timed medication system also includes a reminder module, which is used to send reminders to medical staff through the APP when the preset medication time is about to be reached. The reminder module is also used to send reminders to medical staff who pick up the medicine when the medication record of the medication dispenser scanning timer does not match the patient information.

3. The antibiotic usage timer for sepsis patients according to claim 2, characterized in that: The timer comprises a fixed ring (1), both ends of the fixed ring (1) are provided with magnetic buckles, a recording box (2) is detachably connected to the fixed ring (1), a first timing component for timing the start of antibiotic administration for confirmed sepsis patients and a second timing component for timing the detection of suspected sepsis patients are fixedly connected to the top of the recording box (2), a first transmission module for transmitting patient information is provided in the recording box (2), the first transmission module is electrically connected to the first timing component and the second timing component respectively, a first display screen (5) for displaying the timing time is fixedly connected to the recording box (2), an identification component for identifying patient information is also provided on the recording box (2), the identification component is electrically connected to the first transmission module, and the first transmission module is connected to the timing medication system signal.

4. The antibiotic usage timer for sepsis patients according to claim 3, characterized in that: The medicine dispenser comprises an antibiotic storage cabinet (7), a cabinet door of the antibiotic storage cabinet (7) is fixedly connected to a sensor box (8), and the sensor box (8) is provided with a second transmission module for transmitting a signal of the sensor box (8) and a sensor component for monitoring whether the cabinet door of the antibiotic storage cabinet (7) is opened.

5. The antibiotic usage timer for sepsis patients according to claim 4, characterized in that: The surface of the sensor box (8) is provided with a sensing component for identifying patient information data and a second display screen (9) for displaying medication information. The sensing component, the sensing component and the second display screen (9) are all connected to the second transmission signal.

6. The antibiotic usage timer for sepsis patients according to claim 5, characterized in that: The first timing component comprises a first timing button (6), which is mounted on the fixing ring (1) and is electrically connected to the first transmission module and the first display screen (5) respectively.

7. The antibiotic usage timer for sepsis patients according to claim 6, characterized in that: The second timing component comprises a second timing button (3), which is mounted on the fixing ring (1). The second timing button (3) is electrically connected to the first transmission module and the first display screen (5) respectively.

8. The antibiotic usage timer for sepsis patients according to claim 7, characterized in that: The identification component comprises a first NFC identifier fixedly connected to the inner wall of the recording box (2) and a first identification area (4) fixedly connected to the surface of the recording box (2); the first NFC identifier is electrically connected to the first identification area (4) and the first transmission module respectively.

9. The antibiotic usage timer for sepsis patients according to claim 8, characterized in that: The sensing assembly includes a vibration sensor fixedly connected to the sensing box (8), the vibration sensor is used to monitor the vibration signal when the door of the antibiotic storage cabinet (7) is closed and record the time of taking medicine, and the vibration sensor is connected to the second transmission module signal.

10. The antibiotic usage timer for sepsis patients according to claim 9, characterized in that: The sensing component comprises a second NFC identifier fixedly connected to the inner wall of the sensing box (8) and a second identification area (10) fixedly connected to the surface of the sensing box (8); the second NFC identifier is electrically connected to the second identification area (10) and the second transmission module respectively.