Intelligent system for nuclear medicine department management
By designing an intelligent system for nuclear medicine, the complex diagnosis and treatment management links and major security risks in this field are solved, and informatization and intelligent management are realized throughout the process, and management efficiency and security are improved.
Patent Information
- Application Number
- CN202510080634.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2025-05-16
AI Technical Summary
The diagnosis and treatment management links of nuclear medicine are complex, with many points and high security risks, and it is difficult to achieve intelligent management of the entire process of existing information process management.
Design an intelligent system, including preliminary management module, drug management module, examination management module and tracking management module, through these modules, patient information management, drug application and injection, examination process management, and post-treatment tracking, creating an interconnected sharing platform.
The systematic management of the nuclear medicine department has been realized, which reduces the waiting time of patients, ensures the orderly progress of examination work, reduces safety risks, and improves the ability to track and analyze patients' recovery situation.
Smart Images

Figure CN120015258A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of nuclear medicine department management, and in particular to an intelligent system for nuclear medicine department management. Background Art
[0002] Nuclear Medicine is a part of medical imaging, which mainly uses radioactive isotopes (nuclides) and the radiation they emit to diagnose, treat and evaluate diseases. Unlike traditional imaging examinations (such as CT, MRI, X-rays, etc.), nuclear medicine focuses on the functions and metabolic activities of organs and tissues, not just their anatomical structures. Therefore, nuclear medicine has unique advantages in many fields, especially in the early detection of diseases and the evaluation of organ functions. However, nuclear medicine is different from other disciplines. Its daily work involves a lot of radiation, so it needs to be managed rigorously. The existing information process management realizes the information operation mode of each work link, which is convenient for the refined management of the department. It has been increasingly used in department management. However, the diagnosis and treatment management of nuclear medicine has many links, many points, and high safety risks, and it also needs information-based full-process intelligent management.
[0003] Therefore, the present invention provides an intelligent system for nuclear medicine department management. Summary of the invention
[0004] The present invention provides an intelligent system for nuclear medicine management, which can observe the progress and status of each link and create an interconnected sharing platform. Nuclear medicine practitioners can achieve resource sharing and interconnection based on this platform.
[0005] The present invention provides an intelligent system for nuclear medicine management, comprising:
[0006] The preliminary management module is used to match the corresponding injection drugs for each patient according to the patient's appointment information and medical record information, and determine the examination order of the corresponding patient;
[0007] A drug management module, which is used to generate a drug application report for a corresponding patient according to the approval process corresponding to each of the injectable drugs, and after the approval is completed, inject the corresponding injectable drugs for each of the patients according to the injection sequence;
[0008] An examination management module is used to identify the current examination items of the current patient, call up corresponding examination measures to examine the patient, generate a patient examination report for the patient and display it;
[0009] The tracking management module is used to conduct tracking visits to target patients undergoing radionuclide therapy, generate and display tracking management reports for the target patients.
[0010] In one practicable manner,
[0011] Also includes:
[0012] The report query module is used to filter and display the corresponding query information in the patient examination report / tracking management report according to the query instruction issued by the doctor.
[0013] In one practicable manner,
[0014] Also includes:
[0015] The reservation registration module is used to determine a number of examination items corresponding to each patient according to the treatment instructions issued by the doctor for each patient, make reservation registrations for each examination item respectively, generate and display a timetable for the examination items of each patient.
[0016] In one practicable manner,
[0017] Also includes:
[0018] An injection auxiliary module, used for assigning injection numbers to each patient according to the injection sequence;
[0019] Before injecting the patient, the patient's appointment information is matched with the injection drug. If the match is unsuccessful, the doctor is reminded to stop the injection;
[0020] The next injection patient is called to wait for injection according to the injection sequence.
[0021] In one practicable manner,
[0022] Also includes:
[0023] An image processing module, used for respectively acquiring a plurality of examination images of the patient and respectively determining source information corresponding to each of the examination images;
[0024] fusing homologous examination images with the same source information to generate a plurality of comprehensive images of the patient;
[0025] Respectively obtaining the inspection content corresponding to each of the comprehensive images, and identifying the inspection association information between different inspection contents;
[0026] The comprehensive images are combined according to the examination-related information to generate and display several complete examination images of the patient.
[0027] In one practicable manner,
[0028] The preliminary management module comprises:
[0029] An information processing unit, configured to establish a patient portrait of the patient according to the patient's appointment information and medical record information, perform data mining on the patient portrait to obtain a number of appointment conditions of the patient, perform face recognition on the patient portrait, and obtain activity information of the patient in the hospital;
[0030] An appointment execution unit is used to schedule a corresponding examination item for the corresponding patient according to the appointment condition, calculate an estimated time period for the patient to perform each of the examination items according to the activity information, establish a time sorting axis for each of the examination items, and match a corresponding appointment examination time period and appointment examination sequence for the patient according to a presentation order in each of the time sorting axes;
[0031] a drug matching unit, for screening target examination items with radionuclide drug injection steps, determining a drug preparation time period for each injection drug in combination with the scheduled examination time period and the scheduled examination order corresponding to the patient, determining a waiting time after injection for each patient according to the appointment conditions corresponding to each patient, and establishing an injection information table for the target examination items according to the drug preparation time period and the waiting time after injection for each patient;
[0032] A sequence setting unit is used to determine a number of examination execution items for each of the patients when performing the target examination items based on the injection information table, divide the scheduled examination time period into a number of execution time periods based on the examination execution items, adjust the scheduled examination time period according to the overlapping information of the execution time periods between different patients, obtain the applicable examination time period for each of the patients, and determine the examination order corresponding to the patient according to the order of the applicable examination time periods.
[0033] In one practicable manner,
[0034] The drug management module comprises:
[0035] The automatic application unit is used to obtain the approval process corresponding to each of the injectable drugs, perform semantic processing on the approval process, obtain a number of approval requirements corresponding to the approval process, and use the approval requirements to reorganize the appointment information and medical record information corresponding to the patient to obtain a number of requirement information. When the requirement information corresponds to the approval requirements one by one, a drug application report is generated and transmitted to the storage room of the corresponding injectable drug to wait for approval;
[0036] A drug delivery unit, used to determine a delivery time period of a corresponding injectable drug according to the drug application report, determine a delivery environment requirement for each injectable drug based on basic drug information of the injectable drug, establish a delivery plan for the approved qualified injectable drug based on the delivery time period and delivery environment requirement corresponding to the same injectable drug, and deliver the qualified injectable drug using the delivery plan;
[0037] An injection auxiliary unit, used to determine the injection sequence corresponding to each of the patients according to the examination sequence, set a queuing label for each of the patients according to the injection sequence, and set a drug label for each of the patients according to the injection drug corresponding to each of the patients;
[0038] The injection checking unit is used to determine the examination content of the current patient according to the examination sequence before performing an injection on the current patient, generate a number of conditions to be checked for this injection, use the check conditions to preliminarily check the target queue tag and target drug tag corresponding to the current patient to obtain the patient matching result for this injection, use the conditions to be checked to determine the medical care information to be performed for this injection, obtain the operation information of the medical staff and match it with the medical care information to be performed, and obtain the medical care matching result for this injection;
[0039] The injection supervision unit is used to remind medical staff to inject the corresponding injection medicine into the current patient when the patient matching result is consistent with the condition to be checked and the medical matching result is consistent with the condition to be checked.
[0040] In one practicable manner,
[0041] The inspection management module includes:
[0042] An examination preparation unit, used to determine the current examination item of the current patient based on the appointment information, retrieve the corresponding examination template, determine a number of items to be examined for this examination based on a number of blank items in the examination template, and set corresponding pre-examination preparation according to the examination steps corresponding to each of the items to be examined;
[0043] An inspection imaging unit, used for acquiring real-time inspection data of the current patient, constructing a reconstructed image of the inspection organ of the current patient based on the real-time inspection data, identifying a plurality of organ features corresponding to the inspection organ in the reconstructed image, searching for an inspection result corresponding to each of the organ features and marking the inspection result in the reconstructed image to obtain a plurality of inspection images of the patient;
[0044] An auxiliary identification unit is used to identify a plurality of inherent abnormal features contained in each of the examination images, obtain the doctor's key marks in the examination image, identify the doctor's mark content to establish the key abnormal features of the examination image, and establish and display the patient examination report of the patient based on the first abnormal information corresponding to each of the inherent abnormal features and the second abnormal information corresponding to the key abnormal features.
[0045] In one practicable manner,
[0046] The tracking management module includes:
[0047] A directional screening unit, for determining the drug properties corresponding to each therapeutic drug according to the treatment process of each patient after treating the patient, screening target patients belonging to the nuclide properties, and obtaining known contact information of the target patients;
[0048] A directional access unit, used to obtain the drug usage of the target patient, determine the nuclide tracking period and contact access frequency of the target patient in combination with the corresponding nuclide attribute, remotely access the target patient through the known contact method, and obtain the health data of the target patient in different recovery time periods;
[0049] A data analysis unit is used to construct a health model of the target patient based on the health data, run the health model to determine several physical indicators of the target patient, and establish and display a tracking management report of the target patient.
[0050] In one practicable manner,
[0051] Also includes:
[0052] an abnormal warning unit, used for establishing an estimated recovery effect corresponding to the target patient according to the treatment process;
[0053] Running the health model to analyze the actual recovery effect of the target patient;
[0054] When the difference between the actual recovery effect and the estimated recovery effect is higher than a specified difference, health warning information is generated and transmitted to the terminal corresponding to the target patient for warning display.
[0055] The achievable beneficial effects of the above technical solution are: in order to systematically manage the nuclear medicine department, first determine the injectable drugs that the patient needs when undergoing radionuclide examination based on the patient's appointment information and medical record information, and then automatically generate a drug application report to apply for drugs, effectively reducing the patient's waiting time and providing convenience for the patient. Further, in order to ensure that the examination work is carried out in an orderly manner and avoid chaos in the nuclear medicine department that causes unnecessary harm, an examination sequence is set for the patient after the appointment is successfully made. This can help the patient to reasonably allocate his time and arrive at the examination room at the appropriate time for drug injection. During the examination, the corresponding examination measures are retrieved according to the patient's current examination items, and then the examination is carried out, and the patient's examination report is generated for the patient's and the doctor's reference. Finally, after the patient completes the treatment, a follow-up visit is conducted to the patient for a period of time. On the one hand, the patient's physical recovery can be understood, and on the other hand, it can be analyzed whether the radionuclide has an impact on the patient. A technical reference can be given to the patient, allowing the patient to undergo a reexamination at the appropriate time to improve the intelligence of the system.
[0056] Other features and advantages of the present invention will be described in the following description, and partly become apparent from the description, or understood by practicing the present invention. The purpose and other advantages of the present invention can be realized and obtained by the structures particularly pointed out in the written description and the accompanying drawings.
[0057] The technical solution of the present invention is further described in detail below through the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS
[0058] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0059] Figure 1 It is a schematic diagram of the composition of an intelligent system for nuclear medicine management in an embodiment of the present invention;
[0060] Figure 2 The figure is a schematic diagram of the composition of a drug management module of an intelligent system for nuclear medicine management in an embodiment of the present invention. DETAILED DESCRIPTION
[0061] The preferred embodiments of the present invention are described below in conjunction with the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.
[0062] Example 1
[0063] This embodiment provides an intelligent system for nuclear medicine management. Figure 1 As shown, including:
[0064] The preliminary management module is used to match the corresponding injection drugs for each patient according to the patient's appointment information and medical record information, and determine the examination order of the corresponding patient;
[0065] A drug management module, which is used to generate a drug application report for a corresponding patient according to the approval process corresponding to each of the injectable drugs, and after the approval is completed, inject the corresponding injectable drugs for each of the patients according to the injection sequence;
[0066] An examination management module is used to identify the current examination items of the current patient, call up corresponding examination measures to examine the patient, generate a patient examination report for the patient and display it;
[0067] The tracking management module is used to conduct tracking visits to target patients undergoing radionuclide therapy, generate and display tracking management reports for the target patients.
[0068] In this example, the appointment information refers to the information generated when the patient makes an appointment for the examination under the guidance of the doctor before the examination;
[0069] In this example, the medical record information refers to the information generated when the patient visited the doctor in the past;
[0070] In this example, the injected drug refers to the drug that needs to be injected when performing a nuclear examination;
[0071] In this example, the examination measure represents a measure used to examine the patient;
[0072] In this instance, the purpose of the follow-up visit is to: assess the patient's prognostic status;
[0073] In this example, the system can realize several functions such as appointment registration, medical history inquiry, drug injection, technician examination, electronic call number, report output, and report review.
[0074] The working principle and beneficial effects of the above technical solution are as follows: In order to systematically manage the nuclear medicine department, first determine the injectable drugs that the patient needs when undergoing radionuclide examination based on the patient's appointment information and medical record information, and then automatically generate a drug application report to apply for drugs, effectively reducing the patient's waiting time and providing convenience for the patient. Further, in order to ensure that the examination work is carried out in an orderly manner and to avoid chaos in the nuclear medicine department causing unnecessary harm, an examination sequence is set for the patient after the appointment is successfully made. This can help the patient to reasonably allocate his time and arrive at the examination room at the appropriate time for drug injection. During the examination, the corresponding examination measures are retrieved according to the patient's current examination items, and an examination report is generated for the patient for reference by the patient and the doctor. Finally, after the patient completes the treatment, a follow-up visit is conducted on the patient for a period of time. On the one hand, the patient's physical recovery can be understood, and on the other hand, it can be analyzed whether the radionuclide has an impact on the patient. A technical reference can be given to the patient, allowing the patient to undergo a reexamination at the appropriate time to improve the intelligence of the system.
[0075] Example 2
[0076] Based on Example 1, the intelligent system for nuclear medicine management further includes:
[0077] The report query module is used to filter and display the corresponding query information in the patient examination report / tracking management report according to the query instruction issued by the doctor.
[0078] The working principle and beneficial effects of the above technical solution: By setting the query function, doctors can retrieve corresponding information according to medical needs, assisting doctors to make better diagnosis.
[0079] Example 3
[0080] Based on Example 1, the intelligent system for nuclear medicine management further includes:
[0081] The reservation registration module is used to determine a number of examination items corresponding to each patient according to the treatment instructions issued by the doctor for each patient, make reservation registrations for each examination item respectively, generate and display a timetable for the examination items of each patient.
[0082] The working principle and beneficial effects of the above technical solution: In order to improve the efficiency of patients' medical treatment, a reasonable examination item schedule is generated for the patient according to the arrangement of the examination items that the patient needs to undergo, thereby helping the patient to arrange his or her time reasonably.
[0083] Example 4
[0084] Based on Example 1, the intelligent system for nuclear medicine management further includes:
[0085] An injection auxiliary module, used for assigning injection numbers to each patient according to the injection sequence;
[0086] Before injecting the patient, the patient's appointment information is matched with the injection drug. If the match is unsuccessful, the doctor is reminded to stop the injection;
[0087] The next injection patient is called to wait for injection according to the injection sequence.
[0088] The working principle and beneficial effects of the above technical solution: In order to avoid medical accidents, before injecting the patient, an injection number is set for each patient according to the injection order, and the patient's appointment information and injection drug information are matched before the injection. When the match is unsuccessful, the doctor's operation is stopped in time to avoid harm to the patient.
[0089] Example 5
[0090] Based on Example 1, the intelligent system for nuclear medicine management further includes:
[0091] An image processing module, used for respectively acquiring a plurality of examination images of the patient and respectively determining source information corresponding to each of the examination images;
[0092] fusing homologous examination images with the same source information to generate a plurality of comprehensive images of the patient;
[0093] Respectively obtaining the inspection content corresponding to each of the comprehensive images, and identifying the inspection association information between different inspection contents;
[0094] The comprehensive images are combined according to the examination-related information to generate and display several complete examination images of the patient.
[0095] In this example, the examination image refers to an image generated after examining a patient;
[0096] In this example, the source information indicates the inspection item from which the inspection image originates;
[0097] In this example, the composite image represents the result of fusing several inspection images generated for the same inspection item;
[0098] In this example, the inspection association information represents cross-information between different inspection contents;
[0099] In this example, the complete examination image represents an overall image of the patient generated by overlapping the cross information presented in the comprehensive image and fusing the remaining information.
[0100] The working principle and beneficial effects of the above technical solution: In order to facilitate doctors' consultation, the images generated by the patient under different examination items are fused to establish a complete examination image of the patient. Doctors can understand the patient's physical condition by observing the complete examination image, thereby improving the doctor's consultation efficiency and accuracy.
[0101] Example 6
[0102] Based on Example 1, the intelligent system for nuclear medicine management, the preliminary management module, includes:
[0103] An information processing unit, configured to establish a patient portrait of the patient according to the patient's appointment information and medical record information, perform data mining on the patient portrait to obtain a number of appointment conditions of the patient, perform face recognition on the patient portrait, and obtain activity information of the patient in the hospital;
[0104] An appointment execution unit is used to schedule a corresponding examination item for the corresponding patient according to the appointment condition, calculate an estimated time period for the patient to perform each of the examination items according to the activity information, establish a time sorting axis for each of the examination items, and match a corresponding appointment examination time period and appointment examination sequence for the patient according to a presentation order in each of the time sorting axes;
[0105] a drug matching unit, for screening target examination items with radionuclide drug injection steps, determining a drug preparation time period for each injection drug in combination with the scheduled examination time period and the scheduled examination order corresponding to the patient, determining a waiting time after injection for each patient according to the appointment conditions corresponding to each patient, and establishing an injection information table for the target examination items according to the drug preparation time period and the waiting time after injection for each patient;
[0106] A sequence setting unit is used to determine a number of examination execution items for each of the patients when performing the target examination items based on the injection information table, divide the scheduled examination time period into a number of execution time periods based on the examination execution items, adjust the scheduled examination time period according to the overlapping information of the execution time periods between different patients, obtain the applicable examination time period for each of the patients, and determine the examination order corresponding to the patient according to the order of the applicable examination time periods.
[0107] In this example, the patient portrait indicates
[0108] In this example, the reservation condition represents the condition that needs to be fulfilled when the patient makes an appointment for an examination;
[0109] In this example, the activity information represents the patient's activity trajectory in the hospital. The activity information is obtained with the patient's default permission and comes from cameras in various parts of the hospital, and each camera is set in a legal location;
[0110] In this example, the estimated time period indicates an evaluation result of analyzing the time period in which the patient can undergo the project examination based on the patient's activity information;
[0111] In this example, the time sorting axis represents the sorting axis generated when a number of patients are queued for one examination item;
[0112] In this example, the scheduled examination time period indicates the time period during which the patient undergoes the examination. The purpose of setting the scheduled examination time period is to flexibly arrange the examination within the time period if the patient arrives early or is late;
[0113] In this example, the appointment examination order indicates the queueing order of patients;
[0114] In this example, the drug preparation time period indicates the time period during which the drug needs to be prepared before the injection to the patient. The purpose of setting the drug preparation time period is to avoid the phenomenon that some drugs are stored in an unsuitable environment for a long time, resulting in a decrease in drug efficacy.
[0115] In this example, data mining is the process of internal search for patient portraits, and face recognition is the process of external search for patient portraits;
[0116] In this example, the waiting time after injection indicates the length of time the patient needs to wait and observe after completing the drug injection;
[0117] In this example, the injection information represents a time schedule within a department of an examination project;
[0118] In this example, the inspection execution item indicates the items that need to be executed when performing the target inspection;
[0119] In this example, the execution time period indicates the time required to perform an inspection execution item, and one inspection execution item corresponds to one execution time period;
[0120] In this example, adapting the examination time period means reasonably allocating the patient's scheduled examination time period, thereby obtaining a specific time period suitable for the patient to undergo examination.
[0121] The working principle and beneficial effects of the above technical solution: In order to further ensure the smooth progress of the inspection work and improve the inspection efficiency of patients, the patient's appointment conditions and activity information in the hospital are identified by constructing a patient portrait, so that the corresponding inspection items are booked for the patient based on the appointment conditions to derive the estimated time period for the patient to perform each inspection item, and the corresponding appointment inspection time period and appointment inspection order are matched for the patient in combination with the current sorting of the inspection items, and the target inspection items with radionuclide drug injection steps are further screened, and the drug preparation time period is determined based on the patient's appointment inspection time period and appointment inspection order. The injection information table of the target inspection item is established in combination with the patient's waiting time after injection, and the injection information table can divide the appointment inspection time period according to the inspection execution items that the patient needs to perform, and adjust the patient's appointment inspection time period according to the time overlap information between different patients, thereby determining the applicable inspection time period for each patient and the patient's inspection order. In this way, not only can patients be helped to make inspection appointments, but also appointment time periods and appointment orders are provided to patients, so that patients can reasonably allocate time and accurately determine their inspection time periods before they undergo inspections, thereby improving the applicability of inspection items.
[0122] Example 7
[0123] Based on Example 1, the intelligent system for nuclear medicine management, the drug management module, such as Figure 2 As shown, including:
[0124] The automatic application unit is used to obtain the approval process corresponding to each of the injectable drugs, perform semantic processing on the approval process, obtain a number of approval requirements corresponding to the approval process, and use the approval requirements to reorganize the appointment information and medical record information corresponding to the patient to obtain a number of requirement information. When the requirement information corresponds to the approval requirements one by one, a drug application report is generated and transmitted to the storage room of the corresponding injectable drug to wait for approval;
[0125] A drug delivery unit, used to determine a delivery time period of a corresponding injectable drug according to the drug application report, determine a delivery environment requirement for each injectable drug based on basic drug information of the injectable drug, establish a delivery plan for the approved qualified injectable drug based on the delivery time period and delivery environment requirement corresponding to the same injectable drug, and deliver the qualified injectable drug using the delivery plan;
[0126] An injection auxiliary unit, used to determine the injection sequence corresponding to each of the patients according to the examination sequence, set a queuing label for each of the patients according to the injection sequence, and set a drug label for each of the patients according to the injection drug corresponding to each of the patients;
[0127] The injection checking unit is used to determine the examination content of the current patient according to the examination sequence before performing an injection on the current patient, generate a number of conditions to be checked for this injection, use the check conditions to preliminarily check the target queue tag and target drug tag corresponding to the current patient to obtain the patient matching result for this injection, use the conditions to be checked to determine the medical care information to be performed for this injection, obtain the operation information of the medical staff and match it with the medical care information to be performed, and obtain the medical care matching result for this injection;
[0128] The injection supervision unit is used to remind medical staff to inject the corresponding injection medicine into the current patient when the patient matching result is consistent with the condition to be checked and the medical matching result is consistent with the condition to be checked.
[0129] In this example, the approval process represents the process that needs to be performed when applying for a drug;
[0130] In this example, the approval requirement indicates the conditions that need to be met in order to apply for a drug;
[0131] In this instance, the requirement information represents known information that can be matched with the approval requirement;
[0132] In this example, the purpose of establishing a delivery plan is to: avoid damage to the drug during delivery;
[0133] In this example, the examination content indicates the content that the patient currently needs to undergo examination;
[0134] In this example, the patient matching result indicates the result of reviewing the patient's information, and the medical matching result indicates the result of reviewing the medical staff's information.
[0135] The working principle and beneficial effects of the above technical solution: In order to improve the effectiveness of the inspection work and avoid medical accidents, the patient's appointment information and medical record information are processed according to the approval process of the injection drug before the inspection, and the patient's several demand information and approval requirements are determined, and then a drug approval report is constructed to wait for approval. When the approval is passed, a delivery plan is established according to the drug delivery time period and delivery environment requirements to achieve delivery. Further, when performing the injection work, queue labels and drug labels are set for the patient, so that a two-way check is performed before the injection, that is, patient check and medical check, which effectively improves the quality of information check. Finally, the medical staff is reminded to complete the injection. In this way, the probability of accidents can be effectively reduced and the normal work of the hospital can be guaranteed.
[0136] Example 8
[0137] Based on Example 1, the intelligent system for nuclear medicine management, the inspection management module, includes:
[0138] An examination preparation unit, used to determine the current examination item of the current patient based on the appointment information, retrieve the corresponding examination template, determine a number of items to be examined for this examination based on a number of blank items in the examination template, and set corresponding pre-examination preparation according to the examination steps corresponding to each of the items to be examined;
[0139] An inspection imaging unit, used for acquiring real-time inspection data of the current patient, constructing a reconstructed image of the inspection organ of the current patient based on the real-time inspection data, identifying a plurality of organ features corresponding to the inspection organ in the reconstructed image, searching for an inspection result corresponding to each of the organ features and marking the inspection result in the reconstructed image to obtain a plurality of inspection images of the patient;
[0140] An auxiliary identification unit is used to identify a plurality of inherent abnormal features contained in each of the examination images, obtain the doctor's key marks in the examination image, identify the doctor's mark content to establish the key abnormal features of the examination image, and establish and display the patient examination report of the patient based on the first abnormal information corresponding to each of the inherent abnormal features and the second abnormal information corresponding to the key abnormal features.
[0141] In this example, the real-time examination data refers to the data generated when the current patient is examined;
[0142] In this example, the examination organ refers to the organ examined by the examination item;
[0143] In this example, the inherent abnormal feature refers to a feature of a disease occurring in the patient's examination organ presented on the examination image;
[0144] In this example, the key mark indicates the mark made by the doctor on the examination image, and the key mark does not necessarily exist;
[0145] In this example, the focused abnormal features represent the features marked by the physician regarding the patient's disease;
[0146] In this example, the first abnormal information represents information corresponding to the inherent abnormal feature, and the second abnormal feature represents information corresponding to the key abnormal feature.
[0147] The working principle and beneficial effects of the above technical solution are as follows: before examining the patient, first retrieve the examination template required for this examination, determine a number of items to be examined for this examination based on the blank items in the template, prepare them, and then construct a reconstructed image based on the patient's real-time examination data during the examination, thereby identifying the reconstructed image to construct the patient's examination image, and finally identify the abnormal information contained in the examination image, and establish a patient examination report based on the abnormal information. In this way, the patient's examination organs can be deeply examined and the patient's disease information can be determined, so as to facilitate subsequent corresponding treatment.
[0148] Example 9
[0149] Based on Example 1, the intelligent system for nuclear medicine management, the tracking management module, includes:
[0150] A directional screening unit, for determining the drug properties corresponding to each therapeutic drug according to the treatment process of each patient after treating the patient, screening target patients belonging to the nuclide properties, and obtaining known contact information of the target patients;
[0151] A directional access unit, used to obtain the drug usage of the target patient, determine the nuclide tracking period and contact access frequency of the target patient in combination with the corresponding nuclide attribute, remotely access the target patient through the known contact method, and obtain the health data of the target patient in different recovery time periods;
[0152] A data analysis unit is used to construct a health model of the target patient based on the health data, run the health model to determine several physical indicators of the target patient, and establish and display a tracking management report of the target patient.
[0153] In this example, the nuclide tracking period indicates the length of time that the patient needs to be tracked, during which the nuclide may affect the patient;
[0154] In this example, the recovery time period represents the time between two adjacent contact access frequencies;
[0155] In this example, the contact visit frequency indicates the frequency of visits to the patient.
[0156] The working principle and beneficial effects of the above technical solution are as follows: patients undergoing radionuclide therapy need to be managed in a focused manner. After the patient completes the treatment, the tracking period and visit frequency of the patient are determined based on the patient's drug usage and radionuclide properties. The patient is then visited through known contact information, the obtained health data is processed, a health model of the patient is constructed, and the patient's physical indicators are determined, thereby constructing a tracking management report. In this way, the patient's prognosis and health can be tracked to achieve humanized medical care.
[0157] Example 10
[0158] Based on Example 9, the intelligent system for nuclear medicine management further includes:
[0159] an abnormal warning unit, used for establishing an estimated recovery effect corresponding to the target patient according to the treatment process;
[0160] Running the health model to analyze the actual recovery effect of the target patient;
[0161] When the difference between the actual recovery effect and the estimated recovery effect is higher than a specified difference, health warning information is generated and transmitted to the terminal corresponding to the target patient for warning display.
[0162] In this example, the prescribed difference value indicates a value set in advance, which is generally 10% of the estimated restoration effect.
[0163] The working principle and beneficial effects of the above technical solution: Based on the gap between the patient's estimated recovery effect and the actual recovery effect, an early warning is issued when necessary to ensure the patient's personal safety.
[0164] Obviously, those skilled in the art can make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalents, the present invention is also intended to include these modifications and variations.
Claims
1. An intelligent system for nuclear medicine management, characterized in that: include: The preliminary management module is used to match the corresponding injection drugs for each patient according to the patient's appointment information and medical record information, and determine the examination order of the corresponding patient; A drug management module, which is used to generate a drug application report for a corresponding patient according to the approval process corresponding to each of the injectable drugs, and after the approval is completed, inject the corresponding injectable drugs for each of the patients according to the injection sequence; An examination management module is used to identify the current examination items of the current patient, call up corresponding examination measures to examine the patient, generate a patient examination report for the patient and display it; The tracking management module is used to conduct tracking visits to target patients undergoing radionuclide therapy, generate and display tracking management reports for the target patients.
2. An intelligent system for nuclear medicine management as claimed in claim 1, characterized in that: Also includes: The report query module is used to filter and display the corresponding query information in the patient examination report / tracking management report according to the query instruction issued by the doctor.
3. An intelligent system for nuclear medicine management as claimed in claim 1, characterized in that: Also includes: The reservation registration module is used to determine a number of examination items corresponding to each patient according to the treatment instructions issued by the doctor for each patient, make reservation registrations for each examination item respectively, generate and display a timetable for the examination items of each patient.
4. An intelligent system for nuclear medicine management as claimed in claim 1, characterized in that: Also includes: An injection auxiliary module, used for assigning injection numbers to each patient according to the injection sequence; Before injecting the patient, the patient's appointment information is matched with the injection drug. If the match is unsuccessful, the doctor is reminded to stop the injection; The next injection patient is called to wait for injection according to the injection sequence.
5. The intelligent system for nuclear medicine management according to claim 1, characterized in that: Also includes: An image processing module, used for respectively acquiring a plurality of examination images of the patient and respectively determining source information corresponding to each of the examination images; fusing homologous examination images with the same source information to generate a plurality of comprehensive images of the patient; Respectively obtaining the inspection content corresponding to each of the comprehensive images, and identifying the inspection association information between different inspection contents; The comprehensive images are combined according to the examination-related information to generate and display several complete examination images of the patient.
6. An intelligent system for nuclear medicine management as claimed in claim 1, characterized in that: The preliminary management module comprises: An information processing unit, configured to establish a patient portrait of the patient according to the patient's appointment information and medical record information, perform data mining on the patient portrait to obtain a number of appointment conditions of the patient, perform face recognition on the patient portrait, and obtain activity information of the patient in the hospital; An appointment execution unit is used to schedule a corresponding examination item for the corresponding patient according to the appointment condition, calculate an estimated time period for the patient to perform each of the examination items according to the activity information, establish a time sorting axis for each of the examination items, and match a corresponding appointment examination time period and appointment examination sequence for the patient according to a presentation order in each of the time sorting axes; a drug matching unit, for screening target examination items with radionuclide drug injection steps, determining a drug preparation time period for each injection drug in combination with the scheduled examination time period and the scheduled examination order corresponding to the patient, determining a waiting time after injection for each patient according to the appointment conditions corresponding to each patient, and establishing an injection information table for the target examination items according to the drug preparation time period and the waiting time after injection for each patient; A sequence setting unit is used to determine a number of examination execution items for each of the patients when performing the target examination items based on the injection information table, divide the scheduled examination time period into a number of execution time periods based on the examination execution items, adjust the scheduled examination time period according to the overlapping information of the execution time periods between different patients, obtain the applicable examination time period for each of the patients, and determine the examination order corresponding to the patient according to the order of the applicable examination time periods.
7. An intelligent system for nuclear medicine management as claimed in claim 1, characterized in that: The drug management module comprises: The automatic application unit is used to obtain the approval process corresponding to each of the injectable drugs, perform semantic processing on the approval process, obtain a number of approval requirements corresponding to the approval process, and use the approval requirements to reorganize the appointment information and medical record information corresponding to the patient to obtain a number of requirement information. When the requirement information corresponds to the approval requirements one by one, a drug application report is generated and transmitted to the storage room of the corresponding injectable drug to wait for approval; A drug delivery unit, used to determine a delivery time period of a corresponding injectable drug according to the drug application report, determine a delivery environment requirement for each injectable drug based on basic drug information of the injectable drug, establish a delivery plan for the approved qualified injectable drug based on the delivery time period and delivery environment requirement corresponding to the same injectable drug, and deliver the qualified injectable drug using the delivery plan; An injection auxiliary unit, used to determine the injection sequence corresponding to each of the patients according to the examination sequence, set a queuing label for each of the patients according to the injection sequence, and set a drug label for each of the patients according to the injection drug corresponding to each of the patients; The injection checking unit is used to determine the examination content of the current patient according to the examination sequence before performing an injection on the current patient, generate a number of conditions to be checked for this injection, use the check conditions to preliminarily check the target queue tag and target drug tag corresponding to the current patient to obtain the patient matching result for this injection, use the conditions to be checked to determine the medical care information to be performed for this injection, obtain the operation information of the medical staff and match it with the medical care information to be performed, and obtain the medical care matching result for this injection; The injection supervision unit is used to remind medical staff to inject the corresponding injection medicine into the current patient when the patient matching result is consistent with the condition to be checked and the medical matching result is consistent with the condition to be checked.
8. An intelligent system for nuclear medicine management as claimed in claim 1, characterized in that: The inspection management module comprises: An examination preparation unit, used to determine the current examination item of the current patient based on the appointment information, retrieve the corresponding examination template, determine a number of items to be examined for this examination based on a number of blank items in the examination template, and set corresponding pre-examination preparation according to the examination steps corresponding to each of the items to be examined; An inspection imaging unit, used for acquiring real-time inspection data of the current patient, constructing a reconstructed image of the inspection organ of the current patient based on the real-time inspection data, identifying a plurality of organ features corresponding to the inspection organ in the reconstructed image, searching for an inspection result corresponding to each of the organ features and marking the inspection result in the reconstructed image to obtain a plurality of inspection images of the patient; An auxiliary identification unit is used to identify a plurality of inherent abnormal features contained in each of the examination images, obtain the doctor's key marks in the examination image, identify the doctor's mark content to establish the key abnormal features of the examination image, and establish and display the patient examination report of the patient based on the first abnormal information corresponding to each of the inherent abnormal features and the second abnormal information corresponding to the key abnormal features.
9. An intelligent system for nuclear medicine management as claimed in claim 1, characterized in that: The tracking management module includes: A directional screening unit, for determining the drug properties corresponding to each therapeutic drug according to the treatment process of each patient after treating the patient, screening target patients belonging to the nuclide properties, and obtaining known contact information of the target patients; A directional access unit, used to obtain the drug usage of the target patient, determine the nuclide tracking period and contact access frequency of the target patient in combination with the corresponding nuclide attribute, remotely access the target patient through the known contact method, and obtain the health data of the target patient in different recovery time periods; A data analysis unit is used to construct a health model of the target patient based on the health data, run the health model to determine several physical indicators of the target patient, and establish and display a tracking management report of the target patient.
10. An intelligent system for nuclear medicine management as claimed in claim 9, characterized in that: Also includes: an abnormal warning unit, used for establishing an estimated recovery effect corresponding to the target patient according to the treatment process; Running the health model to analyze the actual recovery effect of the target patient; When the difference between the actual recovery effect and the estimated recovery effect is higher than a specified difference, health warning information is generated and transmitted to the terminal corresponding to the target patient for warning display.