Consumable management system
By introducing a consumables management system based on user sign data in the smart medicine box, the problem of inaccurate treatment strategies in the existing technology is solved, and safer and more accurate drug use management is achieved.
Patent Information
- Application Number
- CN202311502491.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-10
- Publication Date
- 2025-05-13
AI Technical Summary
The existing smart drug boxes rely on clinical experience of drug manufacturers or doctors’ prescription experience in drug use management, resulting in insufficient precision in the treatment strategy, and there are problems such as poor efficacy when there are too few medications or major side effects when there are too many medications.
A consumables management system based on user sign data is provided, including a detection device and a management device. The detection device obtains user's sign data, and the management device uses these data, consumable information and real-time weight generation to generate accurate usage strategies.
Through personalized usage strategies, the safety and accuracy of the use process of consumables can be improved and safety problems caused by inaccurate treatment strategies can be reduced.
Smart Images

Figure CN119993406A_ABST
Abstract
Description
Technical Field
[0001] The present disclosure generally relates to the field of smart medical devices, and more particularly to a management system for consumables. Background Art
[0002] With the development of technology, various smart products are becoming more and more popular due to their convenience, efficiency and intelligence, such as smart medicine boxes (or smart medicine management equipment and systems) with medication management. The smart medicine box can accurately determine whether the user takes the medicine on time and in the right amount according to the user's medication plan, and can also issue reminders when the medication is abnormal, thereby improving the safety, compliance, efficiency and intelligence of medication.
[0003] Most of the smart medicine boxes in the prior art have an information input unit, a measuring and weighing unit, a control unit and a prompt unit, among which the information input unit is mainly used for users to input drug information and medication plans, the measuring and weighing unit is mainly used to weigh the drugs and record the real-time weight, the control unit is mainly used to issue correct medication prompts to users based on drug information, medication plans and real-time weight of drugs, and to determine whether the user has taken the drugs correctly on time and in the right amount, etc. The prompt unit is mainly used for prompts, including medication prompts and alarm prompts.
[0004] The prior art also includes smart medicine boxes with automatic drug identification functions or remote communication functions. The smart medicine box uses identification technologies such as code scanning and NFC electronic tag identification combined with the barcode or electronic tag of the drug, which can automatically identify the drug to obtain drug information and medication recommendations, reduce the situation of personal input information errors, and improve the convenience and safety of medication. In addition, the smart medicine box also uses remote communication technology, which can realize remote prescription and monitoring by doctors, further improving the convenience and safety of medication.
[0005] However, the smart medicine boxes (or smart medicine management devices and systems) in the above-mentioned prior art are mostly based on the clinical experience of pharmaceutical companies or the prescription experience of doctors for medication management. There are still shortcomings such as poor efficacy when users take too little medicine or large side effects when users take too much medicine, that is, the treatment strategy is not accurate enough, which leads to safety issues such as untimely treatment time and insufficient treatment effect. Summary of the invention
[0006] The present disclosure is completed in view of the above-mentioned state of the prior art, and its purpose is to provide a consumables management system, which is a system for managing the use of consumables based on the user's vital sign data, and can provide more accurate usage strategies, thereby improving the safety and accuracy of the consumables use process.
[0007] To this end, the present disclosure provides a management system for consumables, which is a system for managing the consumables based on the user's vital sign data, including: a detection device for acquiring the vital sign data and a management device for providing the user with a usage strategy for the consumables based on the vital sign data; the management device includes an identification module, a weighing module, a control module and a prompt module, the identification module is used to identify the consumables to obtain consumable information, the weighing module is used to weigh the consumables and record the real-time weight of the consumables, the control module generates the usage strategy based on the consumable information, the real-time weight and the vital sign data; the prompt module is used to display the usage strategy.
[0008] In the present disclosure, after the detection device obtains the vital sign data of the user, the management device can provide an accurate consumables usage strategy based on the vital sign data. In this case, the problem of insufficient safety caused by the use management of consumables based only on empirical data such as the clinical experience of pharmaceutical companies or the prescription experience of doctors can be reduced, that is, the safety and accuracy of the use process of consumables can be improved. In addition, the identification module of the management device identifies consumables and obtains consumable information, which can reduce the inconvenience of the user needing to input consumable information, thereby improving the user's convenience of use, and at the same time, it can facilitate the subsequent control module to generate a more accurate usage strategy based on the consumable information, thereby improving the safety of the use of consumables. In addition, the weighing module of the management device weighs the consumables and records the real-time weight, which can facilitate the subsequent control module to judge whether the user uses the consumables on time and in quantity based on the real-time weight of the consumables, and at the same time, the control module can generate a more accurate usage strategy based on the real-time weight of the consumables, thereby improving the safety of the use of consumables. In addition, the use strategy generated by the control module of the management device based on the consumables information, the real-time weight of the consumables and the user's physical data is more accurate than the use strategy generated based on one or more of the empirical data, the consumables information and the real-time weight of the consumables, because the user's physical data is strongly related to the user's physiological condition. In addition, the use strategy generated by the control module is displayed by the prompt module, which can improve the visualization or intelligent prompt level of the management system, thereby improving the compliance and convenience of the user in the process of using consumables through the management system of the present disclosure.
[0009] In addition, according to the management system involved in the present disclosure, optionally, the control module generates the usage strategy based on a preset algorithm, and the preset algorithm is a matching relationship between the consumable information, the real-time weight, and the vital sign data. In this case, the control module generates a plurality of usage strategies for consumables by calling a preset algorithm that reflects the matching relationship between the consumable information, the real-time weight of the consumables, and the user's vital sign data, and can adjust the usage strategy in time when the real-time weight of the consumables and the user's vital sign data change, thereby improving the intelligence of the consumable management system to ensure the safety and effectiveness of the user's use of consumables.
[0010] In addition, according to the management system involved in the present disclosure, optionally, the prompt module includes at least one of a display unit for displaying the usage policy, a broadcast unit for broadcasting the usage policy, and a tactile unit that vibrates based on the usage policy. In this case, by showing the usage policy through the display unit, the broadcast unit, or the tactile unit, the visualization level or intelligent prompt level of the management system can be improved, thereby improving the compliance and convenience of the user when using the management system.
[0011] In addition, according to the management system involved in the present disclosure, optionally, the detection device includes a detection module for acquiring the vital sign data and a sending module for sending the vital sign data to the management device. In this case, after the detection module acquires the vital sign data reflecting the physiological condition of the user, it can be sent to the management device through the sending module, thereby facilitating the management device to generate an accurate usage strategy based on the user's vital sign data to improve the safety and accuracy of the consumables usage process.
[0012] In addition, according to the management system involved in the present disclosure, optionally, the physical sign data includes at least one of the condition, weight, body temperature, electrocardiogram, blood pressure, blood sugar and blood lipids. In this case, the consumables usage strategy generated based on the physical sign data of the user's physiological condition including at least one of the condition, weight, body temperature, electrocardiogram, blood pressure, blood sugar and blood lipids can make the consumables usage strategy more adapted to the user's physiological condition, thereby improving the safety and effectiveness of the use of consumables.
[0013] In addition, according to the management system involved in the present disclosure, optionally, the consumables information includes usage suggestions for the consumables, and the management device also includes an input module for inputting the consumables information. In this case, the control module can combine the usage suggestions for consumables (such as usage suggestions when the medicine leaves the factory and usage suggestions provided by doctors) with the user's vital signs data to obtain a more accurate usage strategy, thereby improving the safety and effectiveness of the use of consumables. In addition, when, for example, the identification module fails to identify the consumables, the consumables information is input through the input module, which can improve the risk resistance of the management system.
[0014] In addition, according to the management system involved in the present disclosure, optionally, the management device includes a bearing part having a groove for arranging the weighing module and the identification module, the weighing module is located on the bottom surface of the groove, and the identification module is located on the bottom surface or side surface of the groove. In this case, when the consumables are placed on the bearing part of the management device, the groove can provide stable support, and at the same time, the weighing module arranged on the bottom surface of the groove can weigh the consumables, and the identification module arranged on the bottom surface or side surface of the groove can identify the consumables to obtain consumable information.
[0015] In addition, according to the management system involved in the present disclosure, optionally, the identification module obtains the consumables information by at least one of scanning code identification and electronic tag identification. In this case, obtaining the consumables information by scanning code identification can reduce the inconvenience of setting up electronic tags; obtaining the consumables information by electronic tag identification can reduce the situation where the barcode cannot be identified by the scanning code identification method, thereby improving the accuracy of identification.
[0016] In addition, according to the management system involved in the present disclosure, optionally, the management device further includes a driving module for driving the weighing module to rotate at a preset angle. In this case, if the barcode or electronic tag of the consumable is not placed in place, the weighing module can be driven to rotate by the driving module, so that the consumable can be rotated to the correct position, thereby facilitating the identification module to accurately identify and obtain the consumable information.
[0017] In addition, according to the management system involved in the present disclosure, optionally, the management device further includes a database, and the database is used to store the consumables information and the preset algorithm. In this case, when there is too much consumables information and preset algorithms, storing them in the database can reduce the memory usage of the control module, thereby improving the operating efficiency of the control module.
[0018] In addition, according to the management system involved in the present disclosure, optionally, the identification module, the weighing module, the control module and the prompt module are integrated into the management device. In this case, the integration degree of the management device can be improved, thereby reducing the problem of high complexity of the management system caused by setting unnecessary devices.
[0019] In addition, according to the management system involved in the present disclosure, optionally, the management device also includes a mobile terminal, and the control module is integrated in the mobile terminal. In this case, it is convenient for the user to control and monitor the management device through the mobile terminal, thereby improving the personalization of the management system.
[0020] In addition, according to the management system involved in the present disclosure, optionally, the management device further includes a communication module for communicating with the detection device, and the communication connection mode between the communication module and the detection device includes at least one of Ethernet, WLAN, Wi-Fi, Bluetooth, Zig-bee and NFC. In this case, it is convenient to transmit the vital sign data obtained by the detection device to the management device, thereby facilitating the management device to generate accurate usage strategies to help users control the use of consumables.
[0021] According to the present disclosure, a management system can be provided for managing the use of consumables based on the user's vital sign data, which can provide more accurate use strategies, thereby improving the safety and accuracy of the consumables use process. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Embodiments of the present disclosure will now be explained in further detail, by way of example only, with reference to the accompanying drawings.
[0023] Figure 1 is a diagram showing an application scenario of the management system involved in the example of the present disclosure.
[0024] Figure 2 It is a schematic diagram showing a scenario in which consumables are placed on the management device involved in the example of the present disclosure.
[0025] Figure 3 1 is a schematic diagram showing a usage strategy of consumables generated by a management device according to an example of the present disclosure.
[0026] Figure 4 Detailed description of the invention is given in detail below.
[0027] Figure 5 It is a structural block diagram showing a first embodiment of the management device involved in the example of the present disclosure.
[0028] Figure 6 It is a schematic diagram showing the internal structure of the management device involved in the example of the present disclosure.
[0029] Figure 7 It is a schematic diagram showing the data connection between the user, consumables, detection device and various modules in the management device involved in the example of the present disclosure.
[0030] Figure 8 It is a schematic diagram showing the three-dimensional structure of the management device involved in the example of the present disclosure.
[0031] Fig. 9 It is a schematic diagram showing another internal structure of the management device involved in the example of the present disclosure.
[0032] Fig.10 is a schematic diagram showing another arrangement of the identification module of the management device involved in the example of the present disclosure.
[0033] Fig.11 It is a schematic diagram showing an application scenario of another management system involved in the example of the present disclosure.
[0034] Description of reference numerals:
[0035] 1… management system, 10… management device, 101… identification module, 102… weighing module, 103… control module, 104… prompt module, 105… input module, 106… driving module, 107… communication module, 108… bearing part, 1041… display screen, 1042… sound player, 1043… indicator light, 1044… vibrator, 1081… groove,
[0036] 11...detection device, 111...detection module, 112...sending module, 12...mobile terminal,
[0037] 2…User, 3…Consumables, 31…Medicine bottles, 32…Soft packaging, 33…Medication pens. DETAILED DESCRIPTION
[0038] Hereinafter, the preferred embodiments of the present disclosure will be described in detail with reference to the accompanying drawings. In the following description, the same symbols are assigned to the same components, and repeated descriptions are omitted. In addition, the accompanying drawings are only schematic diagrams, and the ratio of the dimensions of the components or the shapes of the components may be different from the actual ones.
[0039] It should be noted that the terms "including" and "having" and any variations thereof in the present disclosure, such as a process, method, system, product or device that includes or has a series of steps or units, are not necessarily limited to those steps or units clearly listed, but may include or have other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.
[0040] Figure 1is a diagram showing an application scenario of the management system 1 involved in the example of the present disclosure. Figure 2 It is a schematic diagram showing a scenario in which the management device 10 involved in the example of the present disclosure places consumables 3. Figure 3 1 is a schematic diagram showing the generation of a usage policy of consumables 3 by the management device 10 according to the example of the present disclosure.
[0041] like Figure 1 As shown, the present disclosure provides a management system 1 for managing the use of consumables 3 based on the vital sign data of a user 2, which can provide a more accurate use strategy, thereby improving the safety and accuracy of the use process of the consumables 3. In some examples, the management system 1 can also be called an "intelligent management system", "control system" or "supervision system" of the consumables 3.
[0042] like Figure 2 As shown, the consumables 3 involved in the present disclosure may include but are not limited to medicines, carbon water or energy bars (i.e., energy bars or energy gels) for special use, etc. For example, medicines may be medicines for treating diabetes, oral medicines include biguanides such as glibenclamide and metformin, thiazolidinediones such as rosiglitazone, and α-glucosidase inhibitors such as acarbose, and injectable medicines include insulin and recombinant human insulin, etc.; carbon water or energy bars for special use may be food for diabetics. It should be noted that the drug treatment methods involved in the present disclosure, such as the use of diabetes drugs, are only used to describe the operating process of the device or system in the embodiments of the present disclosure, and are not and cannot be used as real medical guidance. The consumables 3 involved in the present disclosure may be consumables 3 with packaging, such as medicine bottles 31, medicine boxes or soft packaging 33 (aluminum film), and medicine pens 33 (insulin pens).
[0043] The physical sign data involved in the present disclosure may include at least one of the condition, weight, body temperature, electrocardiogram, blood pressure, blood sugar and blood lipids. In this case, the use strategy of the consumables 3 generated based on the physical sign data of the physiological condition of the user 2 including at least one of the condition, weight, body temperature, electrocardiogram, blood pressure, blood sugar and blood lipids can make the use strategy of the consumables 3 more adapted to the physiological condition of the user 2, thereby improving the safety and effectiveness of the use of the consumables 3.
[0044] The management system 1 of consumables 3 involved in the present disclosure, as described above, is a system for managing consumables 3 based on the vital sign data of the user 2. Figure 1As shown, the management system 1 of consumables 3 may include a detection device 11 and a management device 10, wherein the detection device 11 may be used to obtain vital sign data, and the management device 10 may provide a usage strategy for consumables 3 to the user 2 based on the vital sign data. In the present disclosure, after the detection device 11 obtains the vital sign data of the user 2, the management device 10 can provide an accurate usage strategy for consumables 3 based on the vital sign data. In this case, the problem of insufficient safety caused by the use management of consumables 3 based only on empirical data such as the clinical experience of pharmaceutical companies or the prescription experience of doctors can be reduced, that is, the safety and accuracy of the use process of consumables 3 can be improved.
[0045] In some examples, such as Figure 3 As shown, the management device 10 can generate a usage strategy based on the consumables information, the real-time weight and the vital signs data. In this case, since the vital signs data of the user 2 is strongly associated with the physiological condition of the user 2, the usage strategy generated based on one or more of the empirical data, the consumables information and the real-time weight of the consumables 3 is more accurate.
[0046] The usage strategy involved in the present disclosure may refer to classifying and managing consumables 3, providing a usage plan, or monitoring the usage process, etc. For example, identifying consumables 3 to obtain consumable information and classifying consumables 3, or providing a real-time or long-term usage plan in combination with the vital sign data of user 2 and consumable information, or weighing the weight of consumables 3 to monitor whether the use of consumables 3 complies with the usage plan, thereby helping user 2 to correctly manage the use of consumables 3 or improve the effect of the use of consumables 3. Among them, the usage plan may include a usage plan with a specified time and quantity, and may also include an immediate usage plan in an emergency.
[0047] Figure 4 is a block diagram showing the structure of the detection device 11 involved in the example of the present disclosure.
[0048] like Figure 4 As shown, in some examples, the detection device 11 may include a detection module 111. In some examples, the detection device 11 may also include a sending module 112. That is, in some examples, the detection device 11 may include a detection module 111 and a sending module 112.
[0049] In some examples, the detection module 111 can be used to obtain vital sign data. In some examples, the sending module 112 can be used to send the vital sign data to the management device 10. In this case, after the detection module 111 obtains the vital sign data reflecting the physiological condition of the user 2, it can be sent to the management device 10 through the sending module 112, thereby facilitating the management device 10 to generate an accurate usage strategy based on the vital sign data of the user 2 to improve the safety and accuracy of the use process of the consumables 3.
[0050] In some examples, the detection device 11 may be a CGM (Continuous Glucose Monitoring) product, a medical condition recording device, a weight measurement device, a temperature measurement device, an ECG measurement device, and a blood pressure measurement device, etc. In some examples, the detection device 11 may be a sports watch or sports equipment (such as a smart treadmill) with functions of detecting ECG, heart rate, blood pressure, blood oxygen, etc.
[0051] Taking a CGM product for detecting blood sugar as an example, in some examples, the detection module 111 may be a sensor in the CGM product for detecting the blood sugar of the user 2, thereby obtaining the blood sugar data of the user 2. The blood sugar data may be sent to the management device 10 through the data communication unit of the CGM product, i.e., the sending module 112, thereby facilitating the management device 10 to provide a reasonable and accurate drug use strategy based on the blood sugar data of the user 2 and the condition of the user 2 (such as whether the user has diabetes, whether the user has type I diabetes, whether the user is in a strict glucose control stage, etc.).
[0052] Taking a sports watch that detects ECG, blood pressure, blood oxygen, etc. as an example, in some examples, the detection module 111 may be various sensors in the sports watch for detecting the ECG, blood pressure, blood oxygen, etc. of the user 2, thereby being able to obtain the ECG, blood pressure, blood oxygen, etc. data of the user 2. The ECG, blood pressure, blood oxygen, etc. data may be sent to the management device 10 through the data communication unit of the sports watch, i.e., the sending module 112, thereby being able to facilitate the management device 10 to provide a reasonable and accurate drug use strategy based on the ECG, blood pressure, blood oxygen, etc. data of the user 2 and the condition of the user 2 (such as whether the user 2 is in a healthy state).
[0053] Figure 5 1 is a block diagram showing a first embodiment of the management device 10 according to the present disclosure. Figure 6 1 is a schematic diagram showing the internal structure of the management device 10 involved in the example of the present disclosure.
[0054] like Figure 5 or Figure 6 As shown, in some examples, the management device 10 may include an identification module 101. Figure 5 or Figure 6 As shown, in some examples, the management device 10 may further include a weighing module 102. Figure 5 or Figure 6 As shown, in some examples, the management device 10 may further include a control module 103. Figure 5As shown, in some examples, the management device 10 may further include a prompt module 104. That is, the management device 10 involved in the present disclosure may include an identification module 101, a weighing module 102, a control module 103, and a prompt module 104. Figure 6 As shown, the identification module 101, the weighing module 102, the control module 103 and the prompt module 104 can be electrically connected or data connected.
[0055] As described above, the management device 10 may include an identification module 101. In some examples, the identification module 101 may be used to identify the consumables 3 to obtain the consumables information. In this case, the identification module 101 of the management device 10 identifies the consumables 3 and obtains the consumables information, which can reduce the inconvenience of the user 2 needing to input the consumables information, thereby improving the user 2's convenience of use, and can also facilitate the subsequent control module 103 to generate a more accurate use strategy based on the consumables information, thereby improving the safety of the use of the consumables 3.
[0056] In some examples, the consumables information may include usage suggestions for consumables 3. In this case, the control module 103 can combine usage suggestions for consumables 3 (such as usage suggestions when the medicine leaves the factory and usage suggestions provided by doctors) with the vital sign data of the user 2 to obtain a more accurate usage strategy, thereby improving the safety and effectiveness of the use of consumables 3.
[0057] In some examples, the consumables information may also include, but is not limited to, the type, function, side effects, recommended dosage, production date, shelf life, net weight, quantity, brand, etc. of the consumables 3.
[0058] In some examples, the identification module 101 can obtain consumable information by scanning code identification. In this case, obtaining consumable information by scanning code identification can reduce the inconvenience of setting electronic tags. Specifically, the identification module 101 can be a barcode scanner, such as a barcode scanner gun or a camera, etc., and the barcode scanning identification can include identifying information labels such as barcodes and QR codes on consumables 3 or the outer packaging of consumables 3, thereby obtaining consumable information including usage recommendations, types, effects, side effects, recommended dosages, production dates, shelf life, net weight, quantities, brands, etc. from the information labels, and then generating accurate usage strategies based on the consumable information in the subsequent control module 103.
[0059] In some examples, the identification module 101 can obtain consumable information by electronic tag identification. In this case, obtaining consumable information by electronic tag identification can reduce the situation where the barcode cannot be recognized by the code scanning identification method, and improve the accuracy of identification. Specifically, the identification module 101 can be an electronic tag reading device, such as an NFC (Near Field Communication, NFC for short) card reader, an RFID (Radio Frequency Identification, radio frequency identification) identifier, etc. Electronic tag identification can include identifying electronic tags such as NFC or RFID on consumables 3 or the outer packaging of consumables 3, thereby obtaining consumable information including usage recommendations, types, effects, side effects, recommended dosages, production dates, shelf life, net weight, quantity, brands, etc. from the electronic tags, and then generating accurate usage strategies based on the consumable information in the subsequent control module 103.
[0060] In some examples, the identification module 101 can obtain the consumable information by at least one of scanning code identification and electronic tag identification.
[0061] In some examples, the recognition module 101 can also recognize the consumable 3 in an image recognition manner to obtain the consumable information. For example, the recognition module 101 can be a smart camera, which can obtain the consumable information by recognizing the shape, text, etc. of the consumable 3 or the outer packaging of the consumable 3 through the smart camera and analyzing it.
[0062] As described above, the management device 10 may further include a weighing module 102. In some examples, the weighing module 102 may be used to weigh the consumables 3 and record the real-time weight of the consumables 3. In this case, the weighing module 102 of the management device 10 weighs the consumables 3 and records the real-time weight, which can facilitate the subsequent control module 103 to determine whether the user 2 uses the consumables 3 on time and in quantity based on the real-time weight of the consumables 3. At the same time, the control module 103 can generate a more accurate usage strategy based on the real-time weight of the consumables 3, thereby improving the safety of the use of the consumables 3.
[0063] In some examples, the weighing module 102 may be an electronic scale (also referred to as an electronic weighing device), which is a device that uses Hooke's law or the lever balance principle of force to measure the mass of the consumable 3 .
[0064] In some examples, the weighing module 102 can be configured to weigh the consumables 3 in real time, and can record the weight of the consumables 3 when the consumables 3 are removed from the weighing module 102. At the same time, the weighing module 102 is configured to automatically reset to zero so that a new weight can be obtained when the consumables 3 are placed back on the weighing module 102. In this case, the weighing module 102 can weigh the consumables 3 and record the real-time weight of the consumables 3, and can also facilitate the control module 103 to determine whether the user 2 uses the consumables 3 on time and in quantity based on the changes in the weighing data of the weighing module 102.
[0065] For example, when the consumable 3 is removed from the weighing module 102, the real-time weight that has been obtained is recorded as the initial weight, and the current time is recorded as the usage time. When the consumable 3 is placed on the weighing module 102 again, the real-time weight at this time is the weight after the user 2 has used the consumable 3. The control module 103 can determine whether the user 2 has used the consumable 3 on time and in the correct amount through the initial weight, the weight after the consumable 3 has been used, and the usage time.
[0066] In some examples, the weighing module 102 may be rotatably arranged. In this case, the rotation of the weighing module 102 can drive the consumables 3 to rotate to assist the identification module 101 to smoothly and accurately read the information tag or electronic tag of the consumables 3.
[0067] Figure 7 It is a schematic diagram showing the data connection between the user 2, consumables 3, detection device 11 and various modules in the management device 10 involved in the example of the present disclosure.
[0068] As described above, the management device 10 may further include a control module 103. In some examples, the control module 103 may generate a usage strategy based on the consumables information, real-time weight and vital signs data. Figure 3 and Figure 7 As shown, the control module 103 can generate a usage strategy based on the consumable information obtained after the identification module 101 identifies the consumable 3, based on the real-time weight obtained by the weighing module 102 weighing the consumable 3, and based on the vital sign data obtained by the detection device 11 detecting the physiological condition of the user 2. In this case, the control module 103 of the management device 10 can generate a usage strategy based on the consumable information, the real-time weight of the consumable 3, and the vital sign data of the user 2. Because the vital sign data of the user 2 is strongly associated with the physiological condition of the user 2, it is more accurate than the usage strategy generated based on only one or more of the empirical data, the consumable information, and the real-time weight of the consumable 3.
[0069] In some examples, the usage strategy may refer to classifying and managing the consumables 3. For example, when there are multiple consumables 3, the control module 103 may classify the consumable information of the multiple consumables 3 obtained by the recognition module 101, and the classification method may be to mark the consumable information, so that the use of one or more consumables 3 can be confirmed by marking.
[0070] In some examples, the usage strategy may refer to providing a usage plan for the consumables 3. For example, after the control module 103 has confirmed the consumable information, the control module 103 can provide the user 2 with a long-term usage plan for the consumables 3, including timed use, quantitative use, and usage, etc., in combination with the current user 2's vital sign data (such as the recent user 2's vital sign data is in normal condition), wherein the real-time weight of the consumables 3 can also be combined to determine whether the user 2 uses the consumables 3 on a timed or quantitative basis so as to control the prompt module 104 to prompt, thereby improving the safety and effectiveness of the use of the consumables 3. If the recent user 2 vital sign data is in an abnormal or emergency situation (such as abnormal blood sugar or abnormal heart rate), the control module 103 can provide the user 2 with a real-time or emergency usage plan for the consumables 3, including the type, amount, and usage, etc., and can also determine whether the user 2 uses the consumables 3 according to the real-time or emergency usage plan for the consumables 3 in combination with the real-time weight of the consumables 3, and can also provide the next real-time or long-term usage plan in combination with the real-time weight of the consumables 3.
[0071] In some examples, the usage strategy may refer to monitoring the usage process of the consumables 3. For example, the control module 103 may combine the real-time weight of the consumables 3 obtained by the weighing module 102 to determine whether the user 2 uses the consumables 3 on a regular or quantitative basis, or determine whether the user 2 uses the consumables 3 according to the real-time or emergency usage plan of the consumables 3, or determine whether the user 2 uses the correct consumables 3, etc., thereby being able to monitor the usage process of the consumables 3.
[0072] In some examples, the control module 103 may generate a usage strategy based on a preset algorithm. In some examples, the preset algorithm may be a matching relationship between consumable information, real-time weight, and vital sign data. In this case, the control module 103 generates a plurality of usage strategies for consumables 3 by calling a preset algorithm that reflects the matching relationship between consumable information, the real-time weight of consumables 3, and the vital sign data of user 2, and can adjust the usage strategy in time when the real-time weight of consumables 3 and the vital sign data of user 2 change, thereby improving the intelligence of the management system 1 of consumables 3 to ensure the safety and effectiveness of user 2 in using consumables 3.
[0073] For example, the matching relationship may include the relationship between the physiological condition of user 2, the required usage amount of consumable 3 and the time of use, wherein the physiological condition of user 2 is directly obtained by the detection device 11, the required usage amount of consumable 3 can be obtained based on the consumable information and the real-time weight obtained by weighing, and the time when consumable 3 should be used can be determined based on the effects and side effects in the consumable information and the current vital sign data (i.e., physiological condition) of user 2.
[0074] Taking diabetes as an example, consumable 3 may be injectable insulin. When there is no abnormality in the vital sign data of user 2 (such as blood sugar), user 2 can inject insulin regularly (that is, the long-term time of use) according to the long-term injection dose (that is, the amount that should be used). The long-term injection dose may be a small dose of insulin. When the vital sign data of user 2 is abnormal (such as blood sugar), user 2 needs to inject insulin according to the immediate injection dose within the specified time (that is, the immediate time of use, such as within 0.5 hours) to avoid hypoglycemia or hyperglycemia due to poor injection time or dosage. The immediate injection dose may be a larger dose than the long-term injection dose.
[0075] In some examples, the matching relationship may also include the relationship between the type of consumable 3, the amount to be used, and the conditions of use, wherein the type of consumable 3 is directly obtained from the consumable information, the amount to be used can be determined based on the consumable information and the real-time weight obtained by weighing, and the conditions of use can be determined based on the effects, side effects, and current vital sign data (i.e., physiological condition) of the user 2 in the consumable information.
[0076] Taking diabetes as an example, consumable 3 may be oral glibenclamide, metformin and injected insulin (i.e., the type of consumable 3). When there is no abnormality in the vital sign data of user 2 (such as blood sugar), user 2 can take glibenclamide and metformin orally and inject insulin regularly according to the long-term dosage. The long-term dosage can be the oral dose or a small dose of insulin recommended by the doctor. When the vital sign data of user 2 is abnormal (such as blood sugar), user 2 needs to inject insulin according to the immediate injection dose within the prescribed time (such as within 0.5 hours) and does not need to take glibenclamide and metformin orally, so as to avoid injecting insulin and taking glibenclamide and metformin orally at the same time, which may lead to a conflict of drug effects in a short period of time and cause dangerous situations such as hypoglycemia or hyperglycemia.
[0077] In some examples, corresponding to different medical conditions, the matching relationship between the consumable information, the real-time weight of the consumable 3 and the vital sign data of the user 2 may be different, that is, the preset algorithms may be different or may be set to multiple.
[0078] In some examples, the diseases corresponding to the consumables 3 may include, but are not limited to, acute diseases and chronic diseases, physiological diseases and pathological diseases, medical diseases and surgical diseases, etc.
[0079] Figure 8 2 is a schematic diagram showing the three-dimensional structure of the management device 10 involved in the example of the present disclosure.
[0080] As described above, the management device 10 may further include a prompt module 104. In some examples, the prompt module 104 may be used to show the usage policy. In this case, by showing the usage policy generated by the control module 103 described above through the prompt module 104, the visualization or intelligent prompting level of the management system 1 can be improved, thereby improving the compliance and convenience of the user 2 in the process of using the consumables 3 through the management system 1 of the present disclosure.
[0081] In some examples, the prompt module 104 may include a display unit for displaying the usage policy. Figure 8 As shown, the display module may be a display screen 1041 or an indicator light 1043. The display screen 1041 is used to display the usage strategy of the consumable 3, which may include at least a portion of the consumable information (such as usage suggestions, types, effects, side effects, recommended dosages, production date, shelf life, net weight, quantity, and brand), at least a portion of the physical sign data (such as at least one of the condition, weight, temperature, electrocardiogram, blood pressure, blood sugar, and blood lipids), and the current amount to be used, the time to use, etc. The indicator light 1043 may indicate the location of the consumable 3 to be used currently.
[0082] Taking diabetes as an example, display screen 1041 can display entries such as "You are type 1 diabetes, your current blood sugar is normal, please take xx medicine orally in xx amount at xx time", "The dose you just took is inaccurate, please repeat the operation!", "The current medicine has expired, please do not use it and replace it in time", "Blood sugar is rising, please inject xx medicine in xx amount immediately", "Current blood sugar is falling, it is not suitable to take xx medicine orally, it is recommended to wait for blood sugar to stabilize", etc.
[0083] In some examples, the prompt module 104 may include a reporting unit for reporting the usage strategy. Figure 8 As shown, the announcement unit may be a sound player 1042, such as a speaker or earphone. In some examples, the announcement unit may announce the usage strategy displayed by the display module in the form of sound, for example, the announcement unit may announce at least a portion of the consumables information (such as at least one of usage suggestions, types, effects, side effects, recommended dosages, production dates, shelf life, net weight, quantity, and brands), at least a portion of the physical sign data (such as at least one of the condition, weight, temperature, electrocardiogram, blood pressure, blood sugar, and blood lipids), the current amount to be used, the time to use, and the location of the consumables 3 to be used.
[0084] In some examples, the language, volume, type of sound, etc. used by the announcement unit can be switched according to the settings of user 2.
[0085] In some examples, prompt module 104 may include a tactile unit that vibrates based on the usage strategy. Figure 8 As shown, the tactile unit may be a vibrator 1044, which may facilitate the visually impaired user 2 to find the location of the consumable 3 that should be currently used. In some examples, the indicator light 1043 and the vibrator 1044 may be arranged at the same location, such as the location of the consumable 3, or the indicator light 1043 and the vibrator 1044 may be arranged integrally.
[0086] As described above, the prompt module 104 may include at least one of a display unit for displaying the usage strategy, a broadcast unit for broadcasting the usage strategy, and a tactile unit that vibrates based on the usage strategy. In this case, by showing the usage strategy through the display unit, the broadcast unit, or the tactile unit, the visualization level or intelligent prompt level of the management system 1 can be improved, thereby improving the compliance and convenience of the user 2 when using the management system 1.
[0087] Fig. 9 It is a schematic diagram showing another internal structure of the management device 10 involved in the example of the present disclosure.
[0088] In addition, if Fig. 9 As shown, in some examples, the management device 10 may further include a driving module 106 for driving the weighing module 102 to rotate at a preset angle. In this case, if the barcode or electronic tag of the consumable 3 is not placed in place, the weighing module 102 is driven to rotate by the driving module 106, so that the consumable 3 can be driven to rotate to the correct position, thereby facilitating the identification module 101 to accurately identify and obtain the consumable information.
[0089] In some examples, the drive module 106 may be a motor or a motion cylinder.
[0090] In some examples, the driving module 106 can be electrically connected to the control module 103. Thus, when the identification module 101 fails to identify the consumables 3, the driving module 106 can be started under the control of the control module 103 and can drive the weighing module 102 to rotate.
[0091] In addition, refer to the above Figure 7As shown, in some examples, the management device 10 may further include a communication module 107 for communicating with the detection device 11. In some examples, the communication connection method between the communication module 107 and the detection device 11 may include at least one of Ethernet, WLAN, Wi-Fi, Bluetooth, Zig-bee, and NFC. In this case, it is convenient to transmit the vital sign data acquired by the detection device 11 to the management device 10, thereby facilitating the management device 10 to generate an accurate usage strategy to help the user 2 control the use of the consumables 3.
[0092] Specifically, for example, when the communication module 107 and the detection device 11 communicate via Ethernet, the detection device 11 can be carried around and detect the vital sign data of the user 2 in real time, and the management device 10 can remotely obtain the vital sign data of the detection device 11 via Ethernet, thereby providing an accurate usage strategy to facilitate long-term use by the user 2. For example, when the communication module 107 and the detection device 11 communicate via short-distance communication such as Wi-Fi and Bluetooth, the detection device 11 can detect the vital sign data of the user 2 in real time, and the management device 10 can obtain the vital sign data of the detection device 11 via the aforementioned short-distance communication, thereby providing an accurate usage strategy to facilitate immediate use by the user 2, and at the same time can reduce critical situations that may occur when there is no network.
[0093] In addition, in some examples, refer to the above Figure 7 As shown, the management device 10 may also include a database for storing consumables information and preset algorithms. In this case, when there is too much consumables information and preset algorithms, storing them in the database can reduce the memory usage of the control module 103, thereby improving the operating efficiency of the control module 103.
[0094] In some examples, the database may include a local database or a cloud database. In some examples, the local database may be a memory or a storage chip. In some examples, the cloud database is a database in the cloud, which may be a database in the network service of the medical interconnection, and the control module 103 may access the cloud database through the network.
[0095] In addition, refer to Figure 8 As shown, in some examples, the management device 10 may further include an input module 105 for inputting consumable information. In this case, when, for example, the identification module 101 fails to identify the consumable 3, the consumable information is input through the input module 105, which can improve the risk resistance of the management system 1.
[0096] In some examples, the input module 105 may be at least one of a keyboard, a button, a virtual keyboard, a voice input device, and the like.
[0097] In addition, in some examples, the management device 10 further includes an environment monitoring module. In some examples, the environment monitoring module can be used to monitor the environment of the management device 10, such as temperature, humidity, etc. Thus, the storage environment of the consumables 3 and the weighing accuracy of the weighing module 102 can be determined through the environment of the management device 10.
[0098] In some examples, the management device 10 is roughly in the shape of a cube or a rectangular parallelepiped. Figure 8 As shown, in some examples, the management device 10 is roughly rectangular and has a curved surface, which can be used to set a prompt module 104 (such as a display screen 1041), an input module 105 (such as a button), etc., so that the user 2 can view or input from both a top-down and a horizontal perspective.
[0099] In some examples, the management device 10 may include a carrier 108, and the carrier 108 may be used to set the weighing module 102 and the identification module 101. In some examples, the carrier 108 may have a groove 1081. In this case, when the consumables 3 are placed on the carrier 108 of the management device 10, the groove 1081 can provide a stable support. 。
[0100] In some examples, the weighing module 102 may be located at the bottom surface of the groove 1081. In this case, the weighing module 102 disposed at the bottom surface of the groove 1081 can weigh the consumables 3.
[0101] In some examples, the identification module 101 can be located on the bottom or side of the groove 1081. In this case, the identification module 101 disposed on the bottom or side of the groove 1081 can identify the consumable 3 to obtain the consumable information. Specifically, when the weighing module 102 can be partially set to be transparent, the identification module 101 (such as a barcode scanner) can be set on the bottom surface of the groove 1081, and the barcode of the consumable 3 can be identified through the transparent part of the weighing module 102; the identification module 101 (such as an NFC card reader) can also be set on the bottom surface of the groove 1081 with the weighing module 102; in addition, the identification module 101 can also be set on the side of the groove 1081, and the height can match the height of the barcode or electronic tag.
[0102] Fig.10 FIG. 1 is a schematic diagram showing another arrangement of the identification module 101 of the management device 10 involved in the example of the present disclosure. Since the barcode is usually arranged on the package by the manufacturer during production, the height, size, shape or type of the barcode of different types of consumables 3 is different, so preferably, as shown in FIG. Fig.10As shown, the identification module 101 can also be arranged on the side of the groove 1081 and can be arranged to scan the barcode over a large area, thereby reducing the situation where the barcode cannot be scanned.
[0103] In other examples, the driving device may not be provided, and the identification module 101 may be provided as a ring-shaped barcode scanner, thereby eliminating the need for additionally providing the driving module 106 , thereby reducing the complexity of the management device 10 .
[0104] In some examples, the number and shape of the grooves 1081 can be set according to the type of consumables 3, that is, the number of grooves 1081 can be unlimited, and the shape of the grooves 1081 can match the consumables 3 or the outer packaging of the consumables 3. In this case, the management device 10 can adapt to multiple consumables 3 and can manage multiple consumables 3.
[0105] In some examples, the number of identification modules 101 , weighing modules 102 , prompt modules 104 (such as indicator lights 1043 ), and driving modules 106 may be the same as the number of grooves 1081 .
[0106] In some examples, the driving module 106 may be disposed inside the management device 10. In this case, when the barcode or electronic tag of the consumable 3 is not placed properly, the driving module 106 drives the weighing module 102 to rotate, and the consumable 3 can be driven to rotate to the correct position, thereby facilitating the identification module 101 to accurately identify and obtain the consumable information.
[0107] In some examples, the driving module 106 can be transmitted to the weighing module 102 via bearings or gears.
[0108] In some examples, the prompt module 104 may be disposed on a surface, such as a curved surface, of the management device 10. In some examples, multiple prompt modules 104 (such as indicator lights 1043) may be disposed on the surface of the management device 10 corresponding to the positions of the grooves 1081.
[0109] In some examples, the identification module 101, the weighing module 102, the control module 103 and the prompt module 104 can be integrated into the management device 10. In this case, the integration level of the management device 10 can be improved, thereby reducing the problem of high complexity of the management system 1 caused by setting unnecessary devices.
[0110] Fig.11 It is a schematic diagram showing an application scenario of another management system 1 involved in the example of the present disclosure.
[0111] In some examples, such as Fig.11As shown, the management device 10 may further include a mobile terminal 12, and the control module 103 may be integrated in the mobile terminal 12. In some examples, the mobile terminal 12 may receive the vital sign data of the user 2 acquired by the detection device 11. In some examples, the mobile terminal 12 may receive the consumables information acquired by the identification module 11 of the management device 10 and the real-time weight of the consumables 3 acquired by the weighing module 102. In this case, it is convenient for the user 2 to control and monitor the management device 10 through the mobile terminal 12, thereby improving the personalization of the management system 1.
[0112] In some examples, the mobile terminal 12 may include, but is not limited to, personal devices such as a mobile phone, a computer, or a sports watch.
[0113] According to the present disclosure, a management system 1 can be provided for managing the use of consumables 3 based on the vital sign data of the user 2 , which can provide a more accurate use strategy, thereby improving the safety and accuracy of the use process of the consumables 3 .
[0114] Although the present disclosure is specifically described above in conjunction with the accompanying drawings and embodiments, it is to be understood that the above description does not limit the present disclosure in any form. Those skilled in the art may modify and change the present disclosure as needed without departing from the essential spirit and scope of the present disclosure, and these modifications and changes all fall within the scope of the present disclosure.
Claims
1. A consumables management system is a system for managing the consumables based on the user's vital sign data, characterized in that: include: A detection device for acquiring the vital sign data and a management device for providing a user with a usage strategy for the consumables based on the vital sign data; The management device includes an identification module, a weighing module, a control module and a prompt module. The identification module is used to identify the consumables to obtain consumables information. The weighing module is used to weigh the consumables and record the real-time weight of the consumables. The control module generates the usage strategy based on the consumables information, the real-time weight and the vital signs data; The prompt module is used to show the usage strategy.
2. The consumables management system according to claim 1, characterized in that: The control module generates the usage strategy based on a preset algorithm, where the preset algorithm is a matching relationship between the consumable information, the real-time weight and the vital sign data.
3. The consumables management system according to claim 1, characterized in that: The prompt module includes at least one of a display unit for displaying the usage strategy, a broadcasting unit for broadcasting the usage strategy, and a tactile unit that vibrates based on the usage strategy.
4. The consumables management system according to claim 1, characterized in that: The detection device comprises a detection module for acquiring the vital sign data and a sending module for sending the vital sign data to the management device.
5. The consumables management system according to claim 1, characterized in that: The physical sign data includes at least one of the condition, weight, body temperature, electrocardiogram, blood pressure, blood sugar and blood lipids.
6. The consumables management system according to claim 1, characterized in that: The consumables information includes usage suggestions for the consumables, and the management device also includes an input module for inputting the consumables information.
7. The consumables management system according to claim 1, characterized in that: The management device comprises a bearing portion having a groove for arranging the weighing module and the identification module, wherein the weighing module is located on the bottom surface of the groove, and the identification module is located on the bottom surface or side surface of the groove.
8. The consumables management system according to claim 1 or 6, characterized in that: The identification module obtains the consumable information by at least one of code scanning identification and electronic tag identification.
9. The consumables management system according to claim 1, characterized in that: The management device also includes a driving module for driving the weighing module to rotate at a preset angle.
10. The consumables management system according to claim 1, characterized in that: The management device further comprises a database, and the database is used to store the consumables information and the preset algorithm.
11. The consumables management system according to claim 1, characterized in that: The identification module, the weighing module, the control module and the prompt module are integrated in the management device.
12. The consumables management system according to claim 1, characterized in that: The management device also includes a mobile terminal, and the control module is integrated in the mobile terminal.
13. The consumables management system according to claim 1, characterized in that: The management device also includes a communication module for communicating with the detection device, and the communication connection method between the communication module and the detection device includes at least one of Ethernet, WLAN, Wi-Fi, Bluetooth, Zig-bee and NFC.