Medical support devices and medical support systems

The medical support device addresses the inefficiency of generic responses by using a system that acquires patient information, evaluates conditions, and determines personalized treatment plans, enhancing patient care efficiency.

JP7836658B2Active Publication Date: 2026-03-27CANON MEDICAL SYST CORP
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-11-26
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Conventional automated response systems in medical support devices provide generic responses that do not reflect the individual treatment progress of each patient, leading to increased physician workload and inefficiencies in patient care.

Method used

A medical support device that includes a medical information acquisition unit, inquiry unit, evaluation unit, and decision unit to determine patient treatment based on individual patient data, enabling personalized responses while minimizing physician workload.

Benefits of technology

The system provides efficient and appropriate medical care by evaluating patient conditions and determining personalized treatment plans, reducing the need for constant physician intervention.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a medical support device and a medical support system which allow a doctor to efficiently and properly perform a medical care of a patient.SOLUTION: In a medical support system which comprises: a medical support device; a patient terminal; a radiation therapy management system; a radiation therapy device; a treatment planning device; a medical image diagnostic device; and a medical image storage device, and in which the medical support device and the patient terminal are connected to each other in a communicable manner via a network of a public line such as the Internet, the medical support device 10 comprises: a medical information acquisition function 101a which acquires medical information of a patient; an inquiry function 101b which acquires a question item based on the past medical information of the patient and inquires about a state of the patient with the question item; an evaluation function 101c which receives an answer of the patient to the inquiry and evaluates the state of the patient with the answer; and a determination function 101d which determines a treatment for the patient on the basis of the evaluation result.SELECTED DRAWING: Figure 3
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Description

Technical Field

[0001] The embodiments disclosed in this specification and the drawings relate to a medical support device and a medical support system.

Background Art

[0002] Generally, the treatment of a patient is first determined by a treatment plan and is carried out based on this determined treatment plan. In particular, in cancer treatment, since the treatment effect decreases when a rest period is taken, it is important to continue the initially determined treatment plan until the end. However, due to various factors such as pain during treatment and the treatment process, and the image of radiation therapy, which is one of the cancer treatments, the treatment plan for cancer treatment may be interrupted or aborted. This interruption or abortion of the treatment plan is also due to a lack of supportive communication (opportunities to talk to doctors and nurses).

[0003] In recent years, medical support devices such as doctor consultation systems and initial consultation systems that allow patients to receive medical consultations remotely have become widespread. With the spread of these medical support devices, doctors have been able to appropriately handle changes outside the hospital of patients who require follow-up of treatment prognosis, and supportive communication has been created. On the other hand, with the spread of these medical support devices, doctors are forced to respond to changes outside the hospital of patients each time, and there is a problem that the workload of doctors increases.

[0004] To address the problem of increased workload for physicians, automated response systems are sometimes used to automatically respond to patient inquiries. However, conventional automated response systems use generic, standardized responses or responses based on guidelines, and therefore cannot provide responses that reflect the individual treatment progress of each patient. This problem occurs not only in cancer treatment but also in various other treatments that require follow-up after treatment prognosis. For this reason, it is desirable that medical support devices provide responses that reflect the individual treatment progress of each patient, while minimizing the increase in physicians' workload, and allowing physicians to respond to changes in patients' conditions outside the hospital. In other words, it is desirable to enable physicians to provide efficient and appropriate medical care to patients. [Prior art documents] [Patent Documents]

[0005] [Patent Document 1] Japanese Patent Publication No. 2002-366652 [Patent Document 2] Special Publication No. 2020-506012 [Patent Document 3] Japanese Patent Publication No. 2017-102786 [Overview of the project] [Problems that the invention aims to solve]

[0006] One of the problems that the embodiments disclosed in this specification and drawings aim to solve is to enable physicians to provide efficient and appropriate medical care to patients. However, the problems that the embodiments disclosed in this specification and drawings aim to solve are not limited to the above problem. Problems corresponding to the effects of each configuration shown in the embodiments described later can also be positioned as other problems. [Means for solving the problem]

[0007] The medical support device according to this embodiment includes a medical information acquisition unit that acquires the patient's medical information, an inquiry unit that acquires questions based on the patient's past medical information and inquires about the patient's condition based on those questions, an evaluation unit that receives the patient's answers to the inquiries and evaluates the patient's condition based on those answers, and a decision unit that determines how to treat the patient based on the evaluation results. [Brief explanation of the drawing]

[0008] [Figure 1] A block diagram showing an example of the configuration of a medical support system according to one embodiment. [Figure 2] A block diagram showing another example of the configuration of a medical support system according to one embodiment. [Figure 3] This is a block diagram showing an example configuration of a medical support device according to one embodiment. [Figure 4] A flowchart illustrating the content of the notification process performed by a medical support device according to one embodiment. [Figure 5] A flowchart illustrating the content of the notification process performed by a medical support device according to one embodiment. [Figure 6] In one embodiment, this figure shows an example of a list of questions LT1 for inquiring about the patient's condition. [Figure 7] A figure showing an example of the display mode of a patient terminal display according to one embodiment. [Figure 8] A figure showing an example of the display mode of a patient terminal display according to one embodiment. [Figure 9] A figure showing an example of the display mode of a patient terminal display according to one embodiment. [Figure 10] A diagram showing an example of the display mode of a medical support device according to one embodiment. [Figure 11] A figure showing an example of the display mode of a patient terminal display according to one embodiment. [Figure 12] A flowchart illustrating the content of the requerying process performed by a medical support device according to one embodiment. [Figure 13]A figure showing an example of the display mode of a patient terminal display according to one embodiment. [Figure 14] A figure showing an example of the display mode of a patient terminal display according to one embodiment. [Figure 15] A flowchart illustrating the contents of the first update process performed by a medical support device according to one embodiment. [Figure 16] A flowchart illustrating the contents of the second update process performed by a medical support device according to one embodiment. [Figure 17] A flowchart illustrating the contents of the summary creation process performed by a medical support device according to one embodiment. [Figure 18] A diagram showing an example of how summary and examination order information are displayed on the display of a medical support device according to one embodiment. [Modes for carrying out the invention]

[0009] Embodiments of the medical support device and medical support system will be described below with reference to the drawings. In the following description, components having substantially the same function and configuration will be denoted by the same reference numeral, and redundant explanations will be given only when necessary.

[0010] FIG. 1 is a block diagram showing an example of the configuration of a medical support system 1 according to the present embodiment. As shown in FIG. 1, the medical support system 1 according to the present embodiment includes a medical support device 10, a patient terminal 30, a radiation therapy management system (treatment RIS (Radiology Information Systems)) 50, a radiation therapy device 70, a treatment planning device 90, a medical image diagnostic device (modality) 110, and a medical image storage device 130. The medical support device 10 and the patient terminal 30 are communicably connected to each other via a network NW using a public line such as the Internet. Further, as shown in FIG. 1, the medical support device 10, the radiation therapy management system 50, the radiation therapy device 70, the treatment planning device 90, the medical image diagnostic device 110, and the medical image storage device 130 are communicably connected via an in-hospital network using a dedicated line within the hospital.

[0011] Note that the medical support device 10, the patient terminal 30, the radiation therapy management system 50, the radiation therapy device 70, the treatment planning device 90, the medical image diagnostic device 110, and the medical image storage device 130 may also be communicably connected to each other via a network NW using a public line such as the Internet.

[0012] The medical support device 10 is a device that determines how to handle a patient based on the patient's medical information. For example, in the present embodiment, the medical support device 10 acquires the patient's medical information from the radiation therapy management system 50, the medical image storage device 130, etc., makes an inquiry about the patient's condition based on the acquired patient's medical information, evaluates the patient's condition based on the patient's response to the inquiry, and determines how to handle the patient based on the evaluation result. In the example of FIG. 1, the medical support device 10 is configured integrally with, for example, a doctor system operated by a doctor. Further, when the medical support device 10 is integrated with the doctor system, the medical support device 10 may be, for example, an electronic medical record system.

[0013] Here, medical information refers to information related to medical treatment, including examinations, diagnoses, and treatments, as well as information related to tests, health checkups, and treatment plans, including completed and uncompleted treatment plans. It should be noted that medical information does not necessarily have to include information related to all of these; it only needs to include information related to at least one of them. Furthermore, medical information may also include other information besides that related to medical treatment, tests, health checkups, and treatment plans.

[0014] The patient terminal 30 is a terminal used by the patient. In this embodiment, for example, the patient terminal 30 receives questions related to inquiries from the medical support device 10 via the network NW. The patient terminal 30 also receives the patient's answers to the received questions. The patient terminal 30 also transmits the patient's answers to the questions to the medical support device 10 via the network NW. The patient terminal 30 is a terminal owned by the patient or their family, such as a mobile device like a smartphone or tablet PC (Personal Computer), or a personal computer. The patient terminal 30 may also be a wearable device worn on the patient's body.

[0015] In the example shown in Figure 1 of this embodiment, one patient terminal 30 is connected to the network NW, but the number of patient terminals 30 connected to the network NW is not limited to this. In other words, the number of patient terminals 30 is arbitrary, and multiple patient terminals 30 may be connected to the network NW.

[0016] The radiation therapy management system 50 is a device that manages various information for performing radiation therapy. In this embodiment, the radiation therapy management system 50 manages medical information such as clinical information and treatment plan information for performing radiation therapy, which is transmitted from the radiation therapy device 70, treatment planning device 90, medical imaging diagnostic device 110, etc., via the hospital network.

[0017] The radiotherapy device 70 is a device that irradiates a patient with radiation and performs radiotherapy. In this embodiment, for example, the radiotherapy device 70 performs radiotherapy according to the treatment plan set by the treatment planning device 90 and under the management of the radiotherapy management system 50.

[0018] The treatment planning device 90 is a device that plans radiation therapy using the radiation therapy device 70, using medical images acquired by the medical imaging diagnostic device 110. Specifically, for example, the treatment planning device 90 uses medical images acquired by the medical imaging diagnostic device 110 to identify the location of the target site for treatment, such as a tumor, within the patient, and then plans the radiation dose, irradiation angle, and number of irradiations to be delivered by the radiation therapy device 70 to the tumor or other site located using the medical images.

[0019] The medical imaging device 110 is a device that images patients and collects medical images. The medical imaging device 110 transmits the acquired medical images to the radiation therapy management system 50, the treatment planning system 90, the medical image storage system 130, etc., via the hospital network. For example, the medical imaging device 110 is an X-ray imaging device such as an X-ray diagnostic device or an X-ray CT (Computed Tomography) device, an ultrasound diagnostic device or an MRI (Magnetic Resonance Imaging) device, etc. The medical imaging device 110 is also called a modality.

[0020] The medical image storage device 130 is a device for storing medical images, and in this embodiment, for example, it stores medical images captured by the medical image diagnostic device 110. The medical image storage device 130 also transmits the stored medical images to the medical support device 10 or to the treatment planning device 90 via the hospital network. The medical image storage device 130 is, for example, an image server such as a PACS (Picture Archiving and Communication System).

[0021] The term "network" (NW) refers to all information and communication networks that utilize telecommunications technology. A typical example of a network is the internet. In other words, a network is a public network connecting a patient's home or other location to a hospital. On the other hand, a hospital network is a network composed of dedicated lines such as wireless / wired LANs (e.g., hospital backbone LANs), telecommunications circuits, fiber optic communication networks, cable communication networks, and satellite communication networks.

[0022] In the medical support system 1 according to this embodiment described above, the medical support device 10 was integrated with the physician system, but the physician system does not necessarily have to be integrated with the medical support device 10. In other words, the physician system may be separate from the medical support device 10. Figure 2 is a block diagram showing another example of the configuration of the medical support system 1 according to this embodiment, where the physician system is separate from the medical support device 10, and is a diagram corresponding to Figure 1. The parts that differ from Figure 1 described above will be explained below.

[0023] As shown in Figure 2, the medical support system 1 according to this embodiment comprises a medical support device 10, a patient terminal 30, a radiation therapy management system 50, a radiation therapy device 70, a treatment planning device 90, a medical image diagnostic device 110, a medical image storage device 130, and a physician system 150. The configuration examples of the patient terminal 30, the radiation therapy management system 50, the radiation therapy device 70, the treatment planning device 90, the medical image diagnostic device 110, and the medical image storage device 130 are the same as those described in Figure 1 above and are therefore omitted.

[0024] The medical support device 10 shown in Figure 2, like the medical support device 10 shown in Figure 1, is a device that determines how to treat a patient based on the patient's medical information. For example, in this embodiment, the medical support device 10 acquires the patient's medical information from the radiation therapy management system 50, the medical image storage device 130, the physician system 150, etc., and based on the acquired patient medical information, it inquires about the patient's condition, evaluates the patient's condition based on the patient's response to the inquiry, and determines how to treat the patient based on the evaluation result. The medical support device 10 is, for example, a terminal such as a computer.

[0025] The physician system 150 is a system operated by a physician, and in this embodiment, for example, it is a terminal such as a computer that includes the physician system 150. The physician system 150 acquires medical information such as clinical information and treatment plan information from the radiation therapy management system 50 and the medical image storage device 130, and the physician performs medical treatment based on the acquired medical information. The physician system 150 may be, for example, an electronic medical record system.

[0026] In the example shown in Figure 2 of this embodiment, one physician system 150 is connected to the medical support device 10, the radiation therapy management system 50, and the medical image storage device 130. However, the number of physician systems 150 connected to the medical support device 10, the radiation therapy management system 50, and the medical image storage device 130 is not limited to this. In other words, the number of physician systems 150 is arbitrary, and multiple physician systems 150 may be connected to the medical support device 10, the radiation therapy management system 50, and the medical image storage device 130.

[0027] Furthermore, in the example shown in Figure 2 of this embodiment, the medical support device 10 is connected not only to the physician system 150 but also to the radiation therapy management system 50 and the medical image storage device 130. However, the medical support device 10 does not necessarily have to be connected to the radiation therapy management system 50 and the medical image storage device 130. That is, the medical support device 10 may acquire patient medical information from the radiation therapy management system 50 and the medical image storage device 130 via the physician system 150.

[0028] As shown in Figures 1 and 2, the medical support system 1 according to this embodiment is applicable not only when the medical support device 10 and the physician system 150 are integrated, but also when they are separate. In the following description, the details of this embodiment will be explained using the case in which the medical support device 10 and the physician system 150 are integrated, as shown in Figure 1, as an example.

[0029] Figure 3 is a block diagram showing an example configuration of the medical support device 10 according to this embodiment. As shown in Figure 3, the medical support device 10 is configured to include a processing circuit 101, an input interface 103, a display 105, a storage circuit 107, and a communication circuit 109. The multiple components for configuring this medical support device 10 may be housed in a single housing, or they may be distributed and housed in multiple housings.

[0030] The processing circuit 101 is an arithmetic circuit that performs various calculations. In this embodiment, the processing circuit 101 may, for example, ask questions to the patient, evaluate the patient's condition based on the patient's answers, and decide on the treatment for the patient based on the evaluation results.

[0031] Therefore, the processing circuit 101 according to this embodiment includes a medical information acquisition function 101a, an inquiry function 101b, an evaluation function 101c, a decision function 101d, a first update function 101e, a second update function 101f, a summary creation function 101g, and a physician system function 201. The medical information acquisition function 101a corresponds to the medical information acquisition unit in this embodiment, the inquiry function 101b corresponds to the inquiry unit in this embodiment, the evaluation function 101c corresponds to the evaluation unit in this embodiment, the decision function 101d corresponds to the decision unit in this embodiment, the first update function 101e corresponds to the first update unit in this embodiment, the second update function 101f corresponds to the second update unit in this embodiment, the summary creation function 101g corresponds to the summary creation unit in this embodiment, and the physician system function 201 corresponds to the physician system unit in this embodiment.

[0032] In the embodiment shown in Figure 3, each processing function performed by the medical information acquisition function 101a, inquiry function 101b, evaluation function 101c, decision function 101d, first update function 101e, second update function 101f, summary creation function 101g, and physician system function 201 is stored in the memory circuit 107 in the form of a program that can be executed by a computer. The processing circuit 101 is a processor that reads the program from the memory circuit 107 and executes it to realize the function corresponding to each program. In other words, the processing circuit 101 in the state in which each program has been read has the functions shown in the processing circuit 101 of Figure 3. In Figure 3, the medical information acquisition function 101a, inquiry function 101b, evaluation function 101c, decision function 101d, first update function 101e, second update function 101f, summary creation function 101g, and physician system function 201 are explained as being realized by a single processing circuit 101. However, these functions may also be realized by combining multiple independent processors to form the processing circuit 101, with each processor executing a program.

[0033] The input interface 103 receives various input operations from, for example, a doctor, converts the received input operations into electrical signals, and outputs them to the processing circuit 101. This input interface 103 can be implemented using, for example, a mouse, keyboard, trackball, manual switch, foot switch, button, joystick, etc.

[0034] The display 105 displays various types of information. For example, the display 105 displays a GUI (Graphical User Interface) for accepting various operations from the user. In this embodiment, the display 105 is composed of, for example, a liquid crystal display or a CRT (Cathode Ray Tube) display.

[0035] The memory circuit 107 is implemented by, for example, a semiconductor memory element such as RAM (Random Access Memory) or flash memory, a hard disk, or an optical disc. In this embodiment, the memory circuit 107 stores, for example, information about adverse events, questions for the patient, the patient's answers to those questions, and various other information.

[0036] Here, information on adverse events includes information on the adverse event itself and the symptoms associated with it. An adverse event refers to any undesirable medical occurrence in a patient. Adverse events include worsening of the patient's condition due to the disease and the occurrence of side effects from treatment. Examples of worsening of the patient's condition due to the disease include heart failure and stroke. Examples of side effects from treatment include bone marrow suppression, skin disorders, gastrointestinal failure, hypersensitivity, and renal dysfunction due to radiation therapy for cancer, as well as liver and kidney dysfunction due to medication. Information on symptoms associated with adverse events refers to information on symptoms caused by the adverse event. For example, if the adverse event is bone marrow suppression, symptoms may include fever, fatigue, and body aches.

[0037] The communication circuit 109 implements various information communication protocols depending on the configuration of the network NW and the hospital network. The communication circuit 109 enables communication with other devices via the network NW and the hospital network according to these protocols. In this embodiment, the medical support device 10 is connected to the network NW via the communication circuit 109 to enable communication with the patient terminal 30. In this embodiment, the medical support device 10 is also connected to the hospital network via the communication circuit 109 to enable communication with the radiation therapy management system 50 and the medical image storage device 130.

[0038] Figures 4 and 5 are flowcharts illustrating the contents of the notification process performed by the medical support device 10 according to this embodiment. In this notification process, the device contacts the patient based on the patient's medical information, evaluates the patient's condition based on the patient's response, determines the appropriate course of action for the patient based on the evaluation result, and notifies the patient terminal 30. For example, the notification process is performed when input from the patient regarding the patient's condition is received, or when a predetermined period of time has elapsed since the last medical consultation.

[0039] As shown in Figure 4, first, the medical support device 10 determines whether or not it has received input from the patient (step S11). This process of determining whether or not it has received input from the patient is performed by the query function 101b in the processing circuit 101. Specifically, the medical support device 10 determines whether or not it has received input from the patient regarding the patient's condition, transmitted from the patient terminal 30 via the communication circuit 109. If it has not received input from the patient (step S11: No), the medical support device 10 determines whether or not a predetermined period has elapsed since the last medical consultation (step S13). This process of determining whether or not a predetermined period has elapsed is performed by the query function 101b in the processing circuit 101. If the predetermined period has not elapsed since the last medical consultation (step S13: No), the medical support device 10 waits by repeating steps S11 and S13 until it receives input from the patient regarding the patient's condition or until a predetermined period has elapsed since the last medical consultation.

[0040] On the other hand, in step S11 described above, if the medical support device 10 receives input from the patient regarding the patient's condition transmitted from the patient terminal 30 via the communication circuit 109 (step S11: Yes), or if a predetermined period of time has elapsed since the last medical treatment (step S13: Yes), the medical support device 10 acquires the patient's medical information (step S15). This process of acquiring the patient's medical information is realized by the medical information acquisition function 101a in the processing circuit 101. Specifically, the medical support device 10 acquires the patient's medical information from the radiation therapy management system 50 and the medical image storage device 130 via the communication circuit 109. This patient's medical information may be directly acquired by the medical information acquisition function 101a in the processing circuit 101 via the communication circuit 109, or the acquired patient's medical information may be temporarily stored in the storage circuit 107, and then acquired from this storage circuit 107 by the medical information acquisition function 101a in the processing circuit 101.

[0041] Next, as shown in Figure 4, the medical support device 10 selects an adverse event that may occur in the patient based on the patient's medical information (step S17). This process of selecting an adverse event is realized by the query function 101b in the processing circuit 101. Specifically, based on the patient's medical information acquired in step S15, the medical support device 10 selects one or more adverse events that may occur in the patient from the adverse event information stored in the memory circuit 107.

[0042] For example, if the patient's medical information indicates that they are undergoing "radiation therapy to the head and neck," which is a type of cancer treatment, then information regarding adverse events such as bone marrow suppression, skin disorders, gastrointestinal failure, and renal dysfunction may be selected. Furthermore, if input from the patient regarding their condition is received in step S11, the system may select adverse events that may occur in the patient based on the input received in step S11 and the patient's medical information. That is, if multiple adverse events are selected in step S17 based on the patient's medical information, the system may further narrow down the list of adverse events based on the input received in step S11.

[0043] Next, as shown in Figure 4, the medical support device 10 acquires questions for the patient (step S19). This process of acquiring questions for the patient is realized by the inquiry function 101b in the processing circuit 101. Specifically, the medical support device 10 acquires questions for the patient from the memory circuit 107 based on the patient's past medical information. More specifically, for example, the medical support device 10 acquires questions for the patient related to the adverse event selected in step S17 from the list of questions stored in the memory circuit 107, based on the patient's past medical information. For example, if bone marrow suppression and renal dysfunction are selected as adverse events in step S17, the medical support device 10 acquires questions related to bone marrow suppression and renal dysfunction from the list of questions.

[0044] Furthermore, if the medical support device 10 receives input from the patient regarding the patient's condition in step S11, in step S19, it may retrieve questions for the patient based on the input received from the patient in step S11, along with questions for the patient related to the adverse event selected in step S17, from the list of questions stored in the memory circuit 107. More specifically, for example, if the medical support device 10 receives input from the patient in step S11 stating "I can't stop coughing" as input from the patient regarding the patient's condition, it may retrieve questions related to coughing from the list of questions stored in the memory circuit 107.

[0045] Figure 6 shows an example of a question list LT1 for inquiring about the patient's condition in this embodiment. As shown in Figure 6, in this embodiment, the question list LT1 consists of adverse events and questions related to those adverse events. For example, taking the case of bone marrow suppression, which is one of the adverse events, the first question for bone marrow suppression is "How high is your fever?", the second question for bone marrow suppression is "How tired are you?", and the third question for bone marrow suppression is "Do you have pain in your joints?".

[0046] In the LT1 questionnaire list shown in Figure 6, each adverse event has three questions, from Question 1 to Question 3. However, the number of questions set is arbitrary. That is, the number of questions set for a single adverse event may be two or fewer, or four or more. Furthermore, the number of questions set for each adverse event may differ.

[0047] Furthermore, the setting of the question list LT1 in the medical support device 10 is optional, and it is possible to add or change the questions according to the doctor's request or at the doctor's discretion. If the doctor sets any questions, the questions set by the doctor are also stored in the memory circuit 107 as part of the question list LT1.

[0048] Furthermore, while the question list LT1 shown in Figure 6 consists of adverse events and questions related to adverse events, it may also be configured to include arbitrary questions unrelated to adverse events. In other words, the questions included in the question list LT1 are arbitrary. For example, the question list LT1 may include questions about cough, wheezing, rash, etc., under the category of "other" adverse events.

[0049] Next, as shown in Figure 4, the medical support device 10 selects questions for the patient (step S21). This process of selecting questions for the patient is implemented by the inquiry function 101b in the processing circuit 101. Specifically, the medical support device 10 selects questions for the patient from the questions acquired in step S19.

[0050] For example, in step S19, if questions related to bone marrow suppression and renal dysfunction are obtained from the question list LT1, the medical support device 10 will select either question 2 for bone marrow suppression, "How tired are you?", or question 2 for renal dysfunction, "How often are you urinating?", as a question that is not common to both, as shown in Figure 6. In other words, if multiple adverse events are selected in step S17, the medical support device 10 will select a question that narrows down the multiple adverse events. Note that in step S19, if questions related to multiple adverse events are obtained, the medical support device 10 may also select a common question related to each adverse event. For example, in step S19, if questions related to bone marrow suppression and renal dysfunction are obtained from the question list LT1, the medical support device 10 may select "How high is your fever?" as a common question, as shown in Figure 6. Also, if bone marrow suppression is selected as one adverse event in step S17, the medical support device 10 may select one of the questions related to bone marrow suppression.

[0051] Next, as shown in Figure 4, the medical support device 10 transmits questions for the patient to the patient terminal 30 (step S23). This process of transmitting questions for the patient to the patient terminal 30 is realized by the inquiry function 101b in the processing circuit 101. Specifically, the medical support device 10 transmits questions for the patient related to the adverse event selected in step S21 to the patient terminal 30 via the communication circuit 109 to inquire about the patient's condition. In addition to transmitting questions for the patient to the patient terminal 30, the medical support device 10 also transmits the adverse event selected in step S17. Note that the medical support device 10 does not need to transmit the adverse event selected in step S17 in step S23.

[0052] Figure 7 shows an example of the display mode of the display DSP1 of the patient terminal 30 according to this embodiment. As shown in Figure 7, the patient terminal 30 receives questions for the patient and information on adverse events transmitted by the medical support device 10, and displays the questions for the patient and information on adverse events on the display DSP1. More specifically, as shown in Figure 7, the top of the display DSP1 shows that bone marrow suppression and renal dysfunction are possible adverse events, the right side of the display DSP1 shows "I have a fever" entered by the patient via the patient terminal 30, and the left side of the display DSP1 shows the questions for the patient transmitted by the medical support device 10, "How high is your fever? 1. Slight fever 2. High fever."

[0053] Next, as shown in Figure 4, the medical support device 10 determines whether or not it has received the patient's response to the inquiry (step S25). This process of determining whether or not the patient's response has been received is implemented by the inquiry function 101b in the processing circuit 101. Specifically, the medical support device 10 determines, via the communication circuit 109, whether or not it has received the patient's response to the question sent in step S23. If the patient's response to the question has not been received from the patient terminal 30 (step S25: No), the medical support device 10 waits until it receives the patient's response to the question from the patient terminal 30.

[0054] On the other hand, in step S25, if the medical support device 10 receives the patient's answers to the questions sent in step S23 from the patient terminal 30 (step S25: Yes), the medical support device 10 evaluates the patient's condition (step S27), as shown in Figure 4. This evaluation of the patient's condition is performed by the evaluation function 101c in the processing circuit 101. Specifically, the medical support device 10 evaluates the patient's condition based on the patient's answers received in step S25 and derives an evaluation result, which is the result of evaluating the patient's condition.

[0055] More specifically, the medical support device 10 evaluates the patient's condition to identify adverse events and the severity of symptoms based on the patient's responses received in step S25. The evaluation results include, for example, the adverse events and the severity of symptoms identified by evaluating the patient's condition. The adverse events are identified, for example, by comparing information about adverse events stored in the memory circuit 107 with the patient's responses received in step S25. If the medical support device 10 can identify an adverse event through this comparison, it derives the identified adverse event as an evaluation result. On the other hand, if the adverse event cannot be identified through this comparison, it derives an evaluation result indicating that no adverse events could be identified. The severity of symptoms is identified by evaluating whether each symptom is mild or severe based on the patient's responses received in step S25. The evaluation results may also include evaluation comments indicating whether or not there is a problem based on the severity of the identified symptoms.

[0056] Next, as shown in Figure 4, the medical support device 10 determines whether the question has been completed (step S29). This determination of whether the question has been completed is implemented by the inquiry function 101b in the processing circuit 101. Specifically, the medical support device 10 determines whether the question has been completed based on the evaluation result derived in step S27. If the question has not been completed (step S29: No), the medical support device 10 selects other questions for the patient (step S31). Here, "not completed" refers to cases such as when the severity of an adverse event or symptom has not been identified, and other questions can be selected.

[0057] In step S31, the process of selecting other questions is implemented by the inquiry function 101b in the processing circuit 101. Specifically, the medical support device 10 selects other questions related to the adverse event selected in step S17 from the questions acquired in step S19.

[0058] More specifically, in step S17, if multiple adverse events are selected, the medical support device 10 selects questions to narrow down the multiple adverse events. For example, if bone marrow suppression and renal dysfunction are selected as multiple adverse events in step S17, the medical support device 10 compares the questions for bone marrow suppression and renal dysfunction and selects either question 3 for bone marrow suppression, "Do you have pain in your joints?", or question 3 for renal dysfunction, "Do you experience shortness of breath?", which are not common questions. Also, if one adverse event is selected in step S17, the device selects other questions to determine the severity of the symptoms.

[0059] Furthermore, even if an adverse event is identified in step S29 based on the evaluation results derived in step S27, the medical support device 10 may select other questions to determine the severity of the symptoms. Also, even if an adverse event and the severity of the symptoms are identified, if there are still questions remaining in the question list LT1, the medical support device 10 may consider the questions incomplete and select other questions from the remaining questions.

[0060] Next, as shown in Figure 4, the medical support device 10 transmits additional questions to the patient selected in step S31 (step S33). This transmission of additional questions is implemented by the inquiry function 101b in the processing circuit 101. Specifically, the medical support device 10 transmits the additional questions related to the adverse event selected in step S31 to the patient terminal 30 via the communication circuit 109 to inquire about the patient's condition. After transmitting the additional questions related to the adverse event selected in step S31 to the patient terminal 30 to inquire about the patient's condition, it waits until it receives the patient's response to the inquiry. In other words, the process of steps S25, S27, S29, S31, and S33 is repeated until the questions are completed.

[0061] On the other hand, in step S29, if the questions are completed based on the evaluation results derived in step S27 (step S29: Yes), the medical support device 10 determines whether or not a physician's intervention is necessary (step S35), as shown in Figure 4. Here, "questions completed" means that the adverse event and the severity of the symptoms have been identified, or that the questions for the patient obtained in step S19 have been completed and no other questions can be selected.

[0062] In step S35, the process of determining whether or not physician intervention is necessary is implemented by the decision function 101d in the processing circuit 101. Specifically, the medical support device 10 determines whether or not physician intervention is necessary based on the evaluation result derived in step S27. If it is determined that physician intervention is not necessary (step S35: No), as shown in Figure 4, the medical support device 10 decides on the patient's course of action without notifying the physician system of a request for intervention (step S37). Cases where physician intervention is not necessary include, for example, when an adverse event is identified and the symptoms are mild. The process of deciding on the patient's course of action is implemented by the decision function 101d in the processing circuit 101. Specifically, without notifying the physician system function 201 of a request for patient intervention to the physician, the medical support device 10 decides on the patient's course of action, such as whether or not an examination is necessary or whether or not medication is prescribed, based on the evaluation result derived in step S27.

[0063] Here, the physician system function 201 is a function that enables the medical support device 10 to function as a physician system operated by a physician. The physician system function 201, for example, notifies the physician of a patient treatment request via the display 105 based on information transmitted from other functions in the processing circuit 101, displays information acquired from the memory circuit 107 on the display 105, displays information acquired via the communication circuit 109 on the display 105, and receives electrical signals of input operations received from the physician via the input interface 103.

[0064] Next, as shown in Figure 4, the medical support device 10 generates query result information (step S39). This process of generating query result information is realized by the decision function 101d in the processing circuit 101. Specifically, the medical support device 10 generates query result information based on the evaluation result of the patient's condition evaluated in step S27 and the patient's treatment decided in step S37. The query result information is information related to the results of querying the patient's condition and consists of information such as adverse events, the severity of symptoms, and the actions the patient takes in response to adverse events. Note that the query result information may also include other information. In other words, the composition of the query result information is arbitrary, and for example, it may include information about the treatment that causes the adverse events.

[0065] Next, as shown in Figure 4, the medical support device 10 stores the inquiry result information, the questions, and the patient's answers (step S41). This process of storing the inquiry result information, the questions, and the patient's answers is realized by the decision function 101d in the processing circuit 101. Specifically, the medical support device 10 stores the inquiry result information generated in step S39, the questions sent to the patient terminal 30 in step S23 and / or step S33, and the patient's answers received in step S25 in the storage circuit 107.

[0066] Next, as shown in Figure 4, the medical support device 10 notifies the patient terminal 30 of the query result information (step S43). This process of notifying the patient terminal 30 of the query result information is realized by the decision function 101d in the processing circuit 101. Specifically, the medical support device 10 transmits the query result information to the patient terminal 30 via the communication circuit 109. When the medical support device 10 has notified the patient terminal 30 of the query result information, it terminates the notification process.

[0067] Figure 8 shows an example of the display mode of the display DSP1 of the patient terminal 30 when the inquiry result information IRIF according to this embodiment is notified. As shown in Figure 8, the display DSP1 of the patient terminal 30 displays the questions sent to the patient by the medical support device 10, the patient's answers to the questions, information on adverse events, and the inquiry result information IRIF notified in step S43. More specifically, as shown in Figure 8, the upper part of the display DSP1 displays that the adverse event is bone marrow suppression, the right side of the display DSP1 displays the patient's answers entered by the patient terminal 30, and the left side of the display DSP1 displays the questions sent to the patient by the medical support device 10 and the inquiry result information IRIF. As shown in Figure 8, the inquiry result information IRIF displays, for example, the evaluation result of the patient's condition, such as "Bone marrow suppression: mild" and "No particular problems," and the patient's response, such as "Observe the situation and request a consultation if symptoms worsen, and we will prescribe medication."

[0068] Furthermore, the query result information (IRIF) may include other information. In other words, the structure of the query result information (IRIF) is arbitrary. For example, the query result information (IRIF) may include patient medical information, such as head and neck radiation therapy, as the reason why the adverse event occurred.

[0069] On the other hand, if, in step S35, it is determined that a physician's intervention is necessary based on the evaluation results of the patient's condition (step S35: Yes), the medical support device 10 generates patient condition information (step S45), as shown in Figure 5. A physician's intervention is necessary, for example, when an adverse event is identified and the symptoms are moderate or severe, or when no adverse event can be identified. In step S45, the process of generating patient condition information is realized by the decision function 101d in the processing circuit 101. Specifically, the medical support device 10 generates patient condition information based on the evaluation results derived in step S27, or the patient's answers to the questions received in step S25 and / or the patient's past medical information.

[0070] Patient status information refers to information about the patient's condition. If an adverse event has been identified based on the evaluation results derived in step S27, the patient status information includes information about the adverse event and the severity of the symptoms based on the evaluation results derived in step S27. If no adverse event has been identified based on the evaluation results derived in step S27, the patient status information includes information about the patient's symptoms based on the patient's responses and the patient's past medical information. Past medical information of the patient included in the patient status information is, for example, the patient's medical records related to the information about the patient's symptoms. Patient status information may also include other information. In other words, the composition of patient status information is arbitrary, and for example, patient status information may include information such as a patient ID to identify the patient, questions asked to the patient, the patient's answers to the questions, and candidate adverse events when no adverse event has been identified.

[0071] Figure 9 shows an example of the display mode of the display DSP1 of the patient terminal 30 when an adverse event cannot be identified according to this embodiment. As shown in Figure 9, the display DSP1 of the patient terminal 30 displays the questions sent to the patient by the medical support device 10 and the patient's answers to the questions. Also, as shown in Figure 9, if an adverse event cannot be identified based on the evaluation results derived in step S27, a symbol indicating that it does not constitute an adverse event is displayed at the top of the display DSP1 of the patient terminal 30.

[0072] Next, as shown in Figure 5, the medical support device 10 notifies the physician system of the request for action (step S47). This process of notifying the physician system of the request for action is realized by the decision function 101d in the processing circuit 101. Specifically, based on the evaluation result derived in step S27, the decision function 101d sends a request for action indicating that physician intervention is necessary, along with the patient status information generated in step S45, to the physician system function 201. The physician system function 201 displays the request for action indicating that physician intervention is necessary, along with the patient status information generated in step S45, on the display 105.

[0073] In step S47, the decision function 101d is configured to send a request for action indicating that a physician's response is necessary to the physician system function 201, but the recipient of the request for action is not limited to this. That is, the recipient of the request for action is arbitrary. For example, if one or more physician systems are connected to the medical support device 10 in a communicable manner, the decision function 101d may, based on the patient status information, send a request for action indicating that a physician's response is necessary, along with the patient status information generated in step S45, to the physician system of a specialist physician who has knowledge of the patient's symptoms included in the patient status information, or it may send a request for action indicating that a physician's response is necessary, along with the patient status information generated in step S45, to either the specialist physician's system or the physician system function 201. Furthermore, while the physician system function 201 is configured to display the request for action on the display 105, it is not limited to this. The decision function 101d may also display the request for action on the display 105.

[0074] Figure 10 shows an example of the display mode of the display 105 of the medical support device 10 according to this embodiment. As shown in Figure 10, the display 105 of the medical support device 10 displays "Request for identification of adverse event" as a request for action, and as patient status information PCI, it displays information indicating that the most recent treatment was changed from radiation therapy to the head and neck to intravenous infusion of cetuximab, and information regarding the patient's symptoms based on the patient's response received in step S25. In addition, the display 105 of the medical support device 10 displays "Suspected pneumonia" as the doctor's response to the request for action.

[0075] Next, as shown in Figure 5, the medical support device 10 determines whether or not it has received a response from a physician to the treatment request (step S49). This process of determining whether or not a response from a physician has been received is implemented by the decision function 101d in the processing circuit 101. In step S49, if the decision function 101d has not received a response from a physician to the treatment request (step S49: No), it repeats the process in step S49 and waits until it receives a response from a physician to the treatment request. Here, receiving a response from a physician means, for example, that the physician system function 201 receives an electrical signal of an input operation received from a physician via the input interface 103, and the decision function 101d receives the physician's response based on the electrical signal of the input operation received from the physician. Alternatively, the decision function 101d may receive an electrical signal of an input operation received from a physician via the input interface 103 and receive the physician's response based on the electrical signal of the input operation received from the physician.

[0076] On the other hand, in step S49, if the decision function 101d receives a response from the doctor to the request for treatment (step S49: Yes), the medical support device 10 decides on the treatment for the patient (step S51), as shown in Figure 5. This process of deciding on the treatment for the patient is realized by the decision function 101d in the processing circuit 101. Specifically, the medical support device 10 decides on the treatment for the patient based on the response from the doctor received in step S49. For example, if the medical support device 10 receives "suspected pneumonia" as the response from the doctor, as shown in Figure 10, it decides on the treatment for the patient, such as requesting a doctor to examine the patient and prescribe medication for suspected pneumonia.

[0077] Next, as shown in Figure 5, the medical support device 10 generates query result information IRIF (step S53). This process of generating query result information IRIF is realized by the decision function 101d in the processing circuit 101. Specifically, the medical support device 10 generates query result information IRIF based on the physician's response to the action request received in step S49 and the patient action decided in step S51. If an adverse event has been identified based on the evaluation results derived in step S27, the medical support device 10 may generate query result information IRIF based on the evaluation results derived in step S27 and the patient action decided in step S51, instead of the physician's response to the action request received in step S49.

[0078] Next, as shown in Figure 5, the medical support device 10 stores the inquiry result information IRIF, the questions, and the patient's answers (step S55). This process of storing the inquiry result information IRIF, the questions, and the patient's answers is realized by the decision function 101d in the processing circuit 101. Specifically, the medical support device 10 stores the inquiry result information IRIF generated in step S53, the questions sent to the patient terminal 30 in step S23 and / or step S33, and the patient's answers received in step S25 in the storage circuit 107.

[0079] Next, as shown in Figure 5, the medical support device 10 notifies the patient terminal 30 of the query result information IRIF (step S57). This process of notifying the patient terminal 30 of the query result information IRIF is realized by the decision function 101d in the processing circuit 101. Specifically, the medical support device 10 transmits the query result information IRIF generated in step S53 to the patient terminal 30 via the communication circuit 109, thereby notifying the patient terminal 30.

[0080] Figure 11 shows an example of the display mode of the display DSP1 of the patient terminal 30 when the inquiry result information IRIF according to this embodiment is notified. As shown in Figure 11, the display DSP1 of the patient terminal 30 displays the questions sent to the patient by the medical support device 10, the patient's answers to the questions, information about adverse events, and the inquiry result information IRIF notified in step S57. More specifically, as shown in Figure 10, the upper part of the display DSP1 shows that the adverse event is pneumonia, the right side of the display DSP1 shows the patient's answers entered by the patient terminal 30, and the left side of the display DSP1 shows the questions sent to the patient by the medical support device 10 and the inquiry result information IRIF. As shown in Figure 11, the display DSP1 of the patient terminal 30 displays, for example, the doctor's answer "Suspected pneumonia" and the patient's action "I request a doctor to examine me or prescribe medication" as the inquiry result information IRIF.

[0081] In step S57, the notification process according to this embodiment is completed by notifying the patient terminal 30 of the query result information IRIF.

[0082] Figure 12 is a flowchart illustrating the content of the re-querying process performed by the medical support device 10 according to this embodiment. In this re-querying process, after a predetermined period of time has elapsed, the medical support device 10 again queries the patient based on the query result information IRIF, evaluates the patient's condition based on the patient's response, decides on the patient's treatment based on the results of the second evaluation, and notifies the patient terminal 30. For example, the re-querying process is executed when a predetermined period of time has elapsed since the previous response to the patient or a change in the treatment plan.

[0083] As shown in Figure 12, first, the medical support device 10 determines whether a predetermined period has elapsed since the previous response to the patient or the change in the treatment plan (step S61). This process of determining whether a predetermined period has elapsed is realized by the query function 101b in the processing circuit 101. Specifically, if the predetermined period has not elapsed since the notification of the query result information IRIF, which is the previous response to the patient, or since the change in the treatment plan (step S61: No), the medical support device 10 waits by repeating the process in step S61 until the notification of the query result information IRIF, which is the previous response to the patient, or the predetermined period has elapsed since the change in the treatment plan.

[0084] On the other hand, in step S61, if a predetermined period has elapsed since the notification of the inquiry result information IRIF, which is the response to the patient last time, or since the change in the treatment plan (step S61: Yes), the medical support device 10 acquires the inquiry result information IRIF (step S63), as shown in Figure 12. This process of acquiring the inquiry result information IRIF is realized by the medical information acquisition function 101a in the processing circuit 101. Specifically, the medical support device 10 acquires the inquiry result information IRIF generated in the notification process from the memory circuit 107. The medical support device 10 may also acquire the patient's medical information from the memory circuit 107 along with the inquiry result information IRIF.

[0085] Next, as shown in Figure 12, the medical support device 10 obtains questions for the patient (step S65). This process of obtaining questions for the patient is realized by the query function 101b in the processing circuit 101. Specifically, the medical support device 10 obtains questions for the patient from the question list LT1 stored in the memory circuit 107 based on the query result information IRIF.

[0086] Next, as shown in Figure 12, the medical support device 10 selects questions for the patient (step S67). This process of selecting questions for the patient is implemented by the inquiry function 101b in the processing circuit 101. Specifically, the medical support device 10 selects questions from the questions for the patient obtained in step S65. For example, if the adverse event is myelosuppression based on the inquiry result information IRIF, the medical support device 10 selects the question "How high is your fever?" from the myelosuppression question 1. The processing in steps S23 and S25 after step S67 is equivalent to the notification process described above, so its explanation is omitted.

[0087] Figure 13 shows an example of the display mode of the display DSP1 of the patient terminal 30 according to this embodiment. As shown in Figure 13, the display DSP1 of the patient terminal 30 displays questions sent to the patient by the medical support device 10, information on adverse events, and answers entered by the patient via the patient terminal 30. More specifically, as shown in Figure 13, bone marrow suppression is displayed as an adverse event at the top of the display DSP1, the question sent to the patient by the medical support device 10, "Do you have a fever after that? 1. Slight fever 2. High fever" is displayed on the left side of the display DSP1, and the answer "1. Slight fever" entered by the patient via the patient terminal 30 is displayed on the right side of the display DSP1. As shown in Figure 13, the patient terminal 30 may also display the previous query result information IRIF sent by the medical support device 10. That is, the medical support device 10 may send the previous query result information IRIF to the patient terminal 30.

[0088] Next, as shown in Figure 12, the medical support device 10 evaluates the patient's condition (step S69). This process of evaluating the patient's condition is implemented by the query function 101b in the processing circuit 101. Specifically, the medical support device 10 evaluates the patient's condition again based on the patient's response received in step S25 of the re-querying process. More specifically, the medical support device 10 identifies the severity of the symptoms based on the patient's response, evaluates the patient's condition again, and derives an evaluation result again based on the query result information IRIF and the patient's response.

[0089] Furthermore, such evaluation results may include evaluation comments such as whether the symptoms have worsened or improved, based on the inquiry result information IRIF obtained in step S63 and the patient's response, and comparing the severity of symptoms included in the inquiry result information IRIF obtained in step S63 with the severity of symptoms identified in step S69. Steps S29, S31, and S33 from S69 onward are equivalent to the notification process described above, so their explanation is omitted.

[0090] On the other hand, in step S29 of the re-querying process, if the severity of the symptoms is identified based on the evaluation results derived in step S69 and the questions are completed (step S29: Yes), the medical support device 10 determines whether or not a doctor's intervention is necessary (step S71), as shown in Figure 4. Even if the severity of the symptoms is identified and there are still questions remaining from step S65, the medical support device 10 may consider the questions completed without asking the remaining questions.

[0091] In step S71, the process of determining whether or not physician intervention is necessary is implemented by the decision function 101d in the processing circuit 101. Specifically, the medical support device 10 determines whether or not physician intervention is necessary based on the evaluation result derived in step S69 and the inquiry result information IRIF acquired in step S61. If it is determined that physician intervention is not necessary (step S71: No), as shown in Figure 4, the medical support device 10 decides on the treatment of the patient without notifying the physician system function 201 of a request for patient treatment (step S37). Physician intervention is not necessary if, based on the evaluation result derived in step S69 and the inquiry result information IRIF acquired in step S61, the severity of symptoms related to the adverse event has improved. The processing in steps S39, S41, and S43 from step S37 onward is equivalent to the notification processing described above, so its explanation is omitted. After the processing in step S43, the device waits by repeating the processing in step S61 until a predetermined period has elapsed.

[0092] On the other hand, in step S71, if the medical support device 10 determines that physician intervention is necessary based on the evaluation results of the patient's condition in step S69 and the inquiry result information IRIF obtained in step S61 (step S71: Yes), the medical support device 10 generates patient condition information PCI (step S45), as shown in Figure 5. Physician intervention is necessary if, based on the evaluation results derived in step S69 and the inquiry result information IRIF obtained in step S61, the severity of symptoms related to adverse events has not improved or has worsened. The processing in steps S47, S49, S51, S53, S55, and S57 after step S45 is equivalent to the notification processing described above, so its explanation is omitted.

[0093] Figure 14 shows an example of the display mode of the display DSP1 of the patient terminal 30 when the inquiry result information IRIF according to this embodiment is notified. As shown in Figure 14, the display DSP1 of the patient terminal 30 displays the questions sent to the patient by the medical support device 10, the patient's answers to the questions, information on adverse events, and the inquiry result information IRIF notified in step S57. As shown in Figure 14, the inquiry result information IRIF displays, for example, the evaluation result of the patient's condition, such as "Bone marrow suppression: moderate" and "Bone marrow suppression is becoming severe," and the patient's response, such as "Please see a doctor."

[0094] In step S57, the query result information IRIF is notified to the patient terminal 30, thereby ending the re-querying process according to this embodiment.

[0095] Figure 15 is a flowchart illustrating the contents of the first update process performed by the medical support device 10 according to this embodiment. In this first update process, the medical support device 10 determines whether or not an adverse event has been identified, and if an adverse event cannot be identified, it receives a response from the physician and updates the information regarding the adverse event based on the physician's response. For example, the first update process is performed when the evaluation result of the patient's condition is derived.

[0096] As shown in Figure 15, first, the medical support device 10 determines whether or not an adverse event has been identified (step S81). This process of determining whether or not an adverse event has been identified is realized by the first update function 101e in the processing circuit 101. Specifically, if the medical support device 10 determines that an adverse event has been identified based on the evaluation result derived in step S27 of the notification process described above (step S81: Yes), the first update process according to this embodiment is terminated.

[0097] On the other hand, in step S81, if no adverse event can be identified based on the evaluation result derived in step S27 of the notification process described above (step S81: No), the medical support device 10 determines whether or not it has received a response from the physician, as shown in Figure 15 (step S83). This process of determining whether or not a response from the physician has been received is implemented by the first update function 101e in the processing circuit 101. Specifically, if the medical support device 10 has not received a response from the physician to the request for action (step S83: No), it repeats the process in step S83 and waits until it receives a response from the physician to the request for action.

[0098] On the other hand, if the medical support device 10 receives a response from a physician to the request for action in step S83 (step S83: Yes), as shown in Figure 15, the medical support device 10 updates the information on adverse events stored in the memory circuit 107 (step S85). This process of updating the information on adverse events is realized by the first update function 101e in the processing circuit 101. Specifically, the medical support device 10 updates the information on adverse events stored in the memory circuit 107 based on the physician's response received in step S83. For example, if the physician's response is "suspected pneumonia," the medical support device 10 associates "pneumonia" as an adverse event with information on the symptoms of pneumonia and updates the information on adverse events stored in the memory circuit 107.

[0099] The first update process according to this embodiment is completed by updating the information regarding adverse events in step S85.

[0100] Figure 16 is a flowchart illustrating the contents of the second update process performed by the medical support device 10 according to this embodiment. In this second update process, the medical support device 10 determines whether or not there has been an update to medical information or an update request from a physician, and updates the information regarding adverse events if either an update to medical information or an update request from a physician has been made. For example, the second update process is performed when there has been an update to medical information or an update request from a physician.

[0101] As shown in Figure 16, first, the medical support device 10 determines whether or not the patient's medical information has been updated (step S91). This process of determining whether or not the medical information has been updated is realized by the second update function 101f in the processing circuit 101. If the patient's medical information, such as the results of examinations or the course of treatment, is updated in step S91 (step S91: Yes), then, as shown in Figure 16, the medical support device 10 updates the information on adverse events stored in the memory circuit 107 based on the updated patient's medical information (step S93). More specifically, for example, if the medical support device 10 determines that there are no problems with the digestive system as a result of the examination, it updates the information on adverse events stored in the memory circuit 107 to remove the item related to digestive failure. In addition, if the medical support device 10 updates the patient's medical information, such as the results of examinations or the course of treatment, it may update the information on adverse events stored in the memory circuit 107 based on the updated patient's medical information to add information on adverse events and symptoms related to those adverse events in association with each other.

[0102] On the other hand, if the patient's medical information has not been updated in step S91 (step S91: No), the medical support device 10 determines whether or not it has received an update request from a physician, as shown in Figure 16 (step S95). This process of determining whether or not an update request from a physician has been received is implemented by the second update function 101f in the processing circuit 101. If an update request from a physician has been received in step S91 (step S95: Yes), the medical support device 10 updates the information regarding adverse events based on the received update request from the physician, as shown in Figure 16 (step S93). More specifically, for example, if the medical support device 10 receives an update request from a physician to add pneumonia to the information regarding adverse events, it associates "pneumonia" as an adverse event with the symptoms of "pneumonia" and updates the information regarding adverse events stored in the memory circuit 107.

[0103] Here, receiving a physician update request means, for example, that the physician system function 201 receives an electrical signal of an input operation received from a physician via the input interface 103, and the second update function 101f receives a physician update request based on the electrical signal of the input operation received from the physician. Alternatively, the second update function 101f may receive an electrical signal of an input operation received from a physician via the input interface 103 and receive a physician update request based on the electrical signal of the input operation received from the physician.

[0104] On the other hand, if no update request from the physician is received in step S95 (step S95: No), the medical support device 10 does not update the information on adverse events (step S97), as shown in Figure 16.

[0105] The second update process according to this embodiment is terminated by updating the information regarding adverse events in step S93, or by not updating the information regarding adverse events in step S97.

[0106] Figure 17 is a flowchart illustrating the content of the summary creation process performed by the medical support device 10 according to this embodiment. This summary creation process is performed when a predetermined period has passed since the next medical consultation, by obtaining one or more query result information IRIFs stored in the memory circuit 107 and the patient's answers to the queries, and creating a summary that summarizes information about the patient's condition. For example, the summary creation process is performed when a predetermined period has passed since the next medical consultation.

[0107] As shown in Figure 17, first, the medical support device 10 determines whether or not a predetermined period of time has passed since the next medical consultation (step S101). This process of determining whether or not a predetermined period of time has passed since the next medical consultation is realized by the summary creation function 101g in the processing circuit 101. In step S101, if the predetermined period of time has not passed since the next medical consultation (step S101: No), the medical support device 10 waits by repeating step S101 until the predetermined period of time has passed since the next medical consultation.

[0108] On the other hand, in step S101, if a predetermined period has passed since the next medical consultation (step S101: Yes), the medical support device 10 acquires query result information IRIF (step S103), as shown in Figure 17. This process of acquiring query result information IRIF is realized by the summary creation function 101g in the processing circuit 101. Specifically, the medical support device 10 acquires one or more query result information IRIFs generated in the notification process or re-notification process described above from the storage circuit 107.

[0109] Next, as shown in Figure 17, the medical support device 10 obtains the patient's response to the inquiry (step S105). This process of obtaining the patient's response is realized by the summary creation function 101g in the processing circuit 101. Specifically, the medical support device 10 obtains the patient's response to the inquiry, received in the notification process and re-inquiry process described above, from the memory circuit 107.

[0110] Next, as shown in Figure 17, the medical support device 10 creates a summary (step S107). This summary creation process is realized by the summary creation function 101g in the processing circuit 101. Specifically, the medical support device 10 creates a summary of the patient's condition based on the query result information IRIF obtained in step S103 and the patient's response obtained in step S105. The summary is information that summarizes information such as adverse events based on the query result information IRIF, the patient's symptoms related to these adverse events, and the severity of these symptoms. The summary may also include other information. In other words, the composition of the summary is arbitrary, and for example, it may include information such as the patient ID and prescribed medications.

[0111] Next, as shown in Figure 17, the medical support device 10 generates test order information (step S109). This process of generating test order information is realized by the summary creation function 101g in the processing circuit 101. Specifically, the medical support device 10 generates test order information to request the necessary tests from a physician based on the inquiry result information IRIF obtained in step S103 and the patient's response obtained in step S105.

[0112] The examination order information is the information used when ordering necessary imaging examinations from a medical technologist. This examination information includes at least information about the area to be examined. This examination order information may also be included in the summary. That is, in step S107, the summary may be created and the examination order information may be generated at the same time. If the examination order information is generated in step S107, step S109 is omitted. The medical support device 10 does not have to generate the examination order information. If the examination order information is not generated, step S109 is omitted.

[0113] Next, as shown in Figure 17, the summary creation function 101g notifies the physician system of the summary and examination order information (step S111). This process of notifying the physician system of the summary and examination order information is realized by the summary creation function 101g in the processing circuit 101. Specifically, the summary creation function 101g transmits the summary and examination order information to the physician system function 201 for notification. The physician system function 201 displays the summary and examination order information on the display 105. Although the physician system function 201 is shown to display the summary and examination order information on the display 105, this is not the only option. The summary creation function 101g may also be configured to display and notify the summary and examination order information on the display 105.

[0114] Figure 18 shows an example of how summary and examination order information are displayed on the display 105 of the medical support device 10 according to this embodiment. As shown in Figure 18, the display 105 of the medical support device 10 displays the summary as "Possible pneumonia, painful when swallowing solids, no problem with drinking, frequent cough, mild, moderate frequency." In addition, the examination order information included in the summary is displayed as "Request for cervical X-ray examination."

[0115] In step S111, the summary creation process according to this embodiment is completed by notifying the physician system of the summary and examination order information.

[0116] As described above, according to the medical support system 1 of this embodiment, the medical support device 10 asks the patient questions about adverse events based on the patient's medical information, evaluates the patient's condition based on the patient's answers to the questions, and decides on the appropriate course of action for the patient. Therefore, it is possible to provide responses that reflect the patient's medical information. As a result, physicians are no longer required to respond to each instance of a patient's condition outside the hospital, and the increase in the physician's workload can be minimized. In other words, physicians can provide efficient and appropriate medical care to patients.

[0117] Furthermore, the medical support device 10 determines whether or not a physician's intervention is necessary based on the evaluation results of the patient's condition, thus minimizing the increase in the physician's workload while enabling the physician to respond to a patient's condition outside the hospital. Specifically, if a physician's intervention is not required, the medical support device 10 notifies the patient terminal 30 of a response reflecting the patient's medical information. If a physician's intervention is required, the medical support device 10 notifies the physician system of a request for action, and after receiving the physician's response, it can respond to the patient's condition. As a result, physicians can provide efficient and appropriate medical care to patients.

[0118] Furthermore, the medical support system 1 according to this embodiment described above is also applicable when the medical support device 10 and the physician system 150 are separate entities, as shown in Figure 2. When the medical support device 10 and the physician system 150 are separate entities, the processing circuit 101 of the medical support device 10 does not need to have the physician system function 201.

[0119] Furthermore, since the medical support device 10 and the physician system 150 are separate entities, the medical support device 10 transmits and notifies the physician system 150 of action requests, patient status information PCI, summaries, and examination order information via the communication circuit 109. For example, in step S47 of the notification processing and re-query processing shown in Figure 5, the decision function 101d in the processing circuit 101 transmits and notifies the physician system 150 of action requests along with patient status information PCI via the communication circuit 109. Similarly, in step S111 of the summary creation processing shown in Figure 17, the summary creation function 101g in the processing circuit 101 transmits and notifies the physician system 150 of summaries and examination order information via the communication circuit 109.

[0120] Furthermore, since the medical support device 10 and the physician system 150 are separate entities, the medical support device 10 receives the physician's response from the physician system 150 via the communication circuit 109. For example, the decision function 101d in the processing circuit 101 receives the physician's response to the action request via the communication circuit 109 in step S49 of the notification processing and re-inquiry processing shown in Figure 5. Similarly, the second update function 101f in the processing circuit 101 receives the physician's update request via the communication circuit 109 in step S95 of the second update processing shown in Figure 16.

[0121] As described above, even when the medical support device 10 and the physician system 150 are separate units, the medical support device 10 notifies the patient terminal 30 of a response reflecting the patient's medical information, just as it would be if the medical support device 10 and the physician system 150 were integrated. If a physician's response is required, the medical support device 10 notifies the physician system of a request for action, and after receiving the physician's response, it can respond to the patient's condition. As a result, physicians can provide efficient and appropriate medical care to patients.

[0122] In the above explanation, the term "processor" refers to circuits such as a CPU (Central Processing Unit), a GPU (Graphics Processing Unit), an Application Specific Integrated Circuit (ASIC), or a programmable logic device (e.g., a Simple Programmable Logic Device (SPLD), a Complex Programmable Logic Device (CPLD), and a Field Programmable Gate Array (FPGA)). The processor functions by reading and executing a program stored in the memory circuit 107. Alternatively, instead of storing the program in the memory circuit 107, the processor may be configured to directly incorporate the program into its circuitry. In this case, the processor functions by reading and executing the program incorporated into the circuitry. The processor is not limited to being a single circuit; it may also be composed of multiple independent circuits combined to form a single processor and achieve its functions. Furthermore, the multiple components shown in Figure 3 may be integrated into a single processor to achieve its functions.

[0123] Although several embodiments have been described above, these embodiments are presented only as examples and are not intended to limit the scope of the invention. The novel apparatus and methods described herein can be implemented in a variety of other forms. Furthermore, various omissions, substitutions, and modifications can be made to the embodiments of the apparatus and methods described herein, without departing from the spirit of the invention. The appended claims and equivalents are intended to include such embodiments and modifications that are included in the scope and spirit of the invention. [Explanation of Symbols]

[0124] 1…Medical support system, 10…Medical support device, 30…Patient terminal, 50…Radiation therapy management system, 70…Radiation therapy device, 90…Treatment planning device, 110…Medical image diagnostic device, 130…Medical image storage device, 101…Processing circuit, 103…Input interface, 105…Display, 107…Memory circuit, 109…Communication circuit, NW…Network

Claims

1. The medical information acquisition unit acquires patients' past medical information, An inquiry unit that selects adverse events for the patient based on the patient's past medical information and inquires about the patient's condition through questions related to those adverse events, An evaluation unit receives the patient's response to the aforementioned inquiry and evaluates the patient's condition, including the adverse events that occurred to the patient and the severity of the symptoms related to those adverse events, based on the response. A decision unit that determines whether or not medical intervention is necessary based on the adverse events and the severity of the symptoms experienced by the patient, as included in the patient's evaluation results, A medical support device equipped with the following features.

2. The aforementioned determination unit, If the aforementioned physician intervention is required, the physician system will be notified of the request for action. The medical support device according to claim 1, wherein if the aforementioned physician response is not required, the physician system is notified of a request for action.

3. The medical support device according to claim 2, wherein the decision unit generates patient status information relating to the patient's condition based on the evaluation result, or the patient's response and / or the patient's past medical information, and transmits the request for action to the physician system along with the patient status information for notification.

4. The medical support device according to claim 2 or 3, wherein the decision unit, upon receiving a response from a physician to the request for treatment, determines how to treat the patient based on the physician's response.

5. The medical support device according to claim 4, wherein the decision unit generates inquiry result information regarding the result of the inquiry based on the evaluation result or the physician's response to the request for action and the action taken by the patient, and notifies the patient terminal of the said inquiry result information.

6. After the decision unit notifies the decision unit of the inquiry result information, the inquiry unit, after a predetermined period of time has elapsed, will again inquire about the patient's condition using the aforementioned questions. The medical support device according to claim 5, wherein the evaluation unit evaluates the patient's condition again based on the patient's response.

7. The aforementioned decision unit determines, based on the results of the re-evaluation, whether or not medical intervention is necessary. If the aforementioned physician intervention is required, the physician system will be notified of the request for action. The medical support device according to claim 6, wherein if the aforementioned physician response is not required, the physician system is notified of a request for action.

8. The medical support device according to any one of claims 1 to 7, further comprising a second update unit that updates information regarding adverse events based on the patient's medical information or a physician's request for updates.

9. The medical support device according to claim 8, wherein the second update unit determines whether the patient's medical information has been updated, and if the patient's medical information has been updated, updates the information regarding the adverse event based on the patient's medical information.

10. The medical support device according to claim 8, wherein the second update unit determines whether or not it has received an update request from the physician, and if it has received an update request from the physician, it updates the information regarding the adverse event based on the update request from the physician.

11. The medical support device according to any one of claims 5 to 7, further comprising a summary creation unit that creates a summary of information regarding the patient's condition based on the inquiry result information and the patient's response to the inquiry.

12. The medical information acquisition unit acquires patients' past medical information, An inquiry unit that selects adverse events for the patient based on the patient's past medical information and inquires about the patient's condition through questions related to those adverse events, An evaluation unit receives the patient's response to the aforementioned inquiry and evaluates the patient's condition, including the adverse events that occurred to the patient and the severity of the symptoms related to those adverse events, based on the response. A medical support device comprising: a determination unit that determines whether or not medical intervention is necessary based on the adverse events and the severity of the symptoms experienced by the patient, as included in the patient's evaluation results; A patient terminal that receives the questions from the medical support device, accepts the patient's answers to the inquiries, and transmits the patient's answers to the inquiries to the medical support device, A medical support system equipped with these features.

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