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WO2018000770A1 - Système et procédé d'assistance médicale basés sur la voie clinique - Google Patents

Système et procédé d'assistance médicale basés sur la voie clinique Download PDF

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Publication number
WO2018000770A1
WO2018000770A1 PCT/CN2016/111163 CN2016111163W WO2018000770A1 WO 2018000770 A1 WO2018000770 A1 WO 2018000770A1 CN 2016111163 W CN2016111163 W CN 2016111163W WO 2018000770 A1 WO2018000770 A1 WO 2018000770A1
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WO
WIPO (PCT)
Prior art keywords
information
patient
clinical
clinical path
target disease
Prior art date
Application number
PCT/CN2016/111163
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English (en)
Chinese (zh)
Inventor
张贯京
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深圳市前海安测信息技术有限公司
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Publication date
Application filed by 深圳市前海安测信息技术有限公司 filed Critical 深圳市前海安测信息技术有限公司
Publication of WO2018000770A1 publication Critical patent/WO2018000770A1/fr

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    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16ZINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS, NOT OTHERWISE PROVIDED FOR
    • G16Z99/00Subject matter not provided for in other main groups of this subclass

Definitions

  • the present invention relates to the field of medical information technology, and in particular, to a medical assistance system and method based on a clinical path.
  • the main objective of the present invention is to provide a medical assistance system and method based on a clinical path, which aims to solve the problem that the clinical path and the patient information are not organically combined in the existing medical information system, and cannot be effectively controlled according to different conditions of the patient. Medical costs, reduced medical costs, and improved technical utilization of medical resources.
  • the present invention provides a medical pathway-based medical assistance system.
  • the clinical path-based medical assistance system includes a patient information acquisition module, a clinical path information acquisition module, a clinical path correction module, and a clinical path execution monitoring module, wherein:
  • the patient information acquisition module is configured to acquire patient information
  • the clinical path information acquisition module is configured to use a pre-established clinical path database according to a target disease Matching clinical path information corresponding to the target disease;
  • the clinical path correction module is configured to correct the clinical path decision information of the patient according to the patient information and the clinical path information corresponding to the target disease;
  • the clinical path execution monitoring module is configured to monitor the implementation of the clinical path decision information of the patient according to the clinical path decision information.
  • the patient information includes vital signs information related to the target disease and demographic characteristics information of the patient.
  • the patient information acquisition module includes a vital sign information acquisition sub-module and a demographic information acquisition sub-module, wherein:
  • the vital sign information acquisition sub-module is configured to acquire clinical information of the patient, and extract physical sign information related to the target disease from the clinical information of the patient;
  • the demographic information acquisition sub-module is configured to acquire demographic characteristics information of the patient, and the demographic characteristic information of the patient includes at least a patient's name, gender, date of birth, and medical record number.
  • the clinical path execution monitoring module is further configured to dynamically monitor a fee state during the execution of the clinical path.
  • the clinical path correction module is specifically configured to:
  • the clinical path information corresponding to the target disease is the clinical path decision information of the patient; if not, correcting the clinical corresponding to the target disease Path information, and the corrected clinical path information is used as the clinical path decision information of the patient.
  • the present invention also provides a medical pathway-based medical assistance method.
  • the clinical path-based medical assist method is applied to a doctor workstation, the method comprising the following steps: [0020] acquiring patient information;
  • the patient information includes vital signs information related to the target disease and demographic characteristics information of the patient.
  • the step of acquiring patient information includes:
  • the demographic characteristic information of the patient includes at least a name, a sex, a date of birth, and a medical record number of the patient.
  • the clinical path-based medical assistance method further comprises the steps of:
  • the step of modifying the clinical path decision information of the patient according to the patient information and the clinical path information corresponding to the target disease comprises:
  • the clinical path information corresponding to the target disease is the clinical path decision information of the patient; if not, correcting the clinical corresponding to the target disease Path information, and the corrected clinical path information is used as the clinical path decision information of the patient.
  • the clinical path-based medical assistant system and method provided by the present invention can use the clinical path information to guide the diagnosis and treatment process, and the actual case and the clinical path information can be Combine, modify the clinical path information to form the patient's clinical path decision information, realize the optimal treatment of the actual case, and monitor the implementation of each node during the implementation of the clinical path decision information, which can be effective according to different conditions of the patient Control medical costs, reduce medical expenditures, and improve the utilization of medical resources.
  • 1 is a schematic diagram of functional modules of a preferred embodiment of a medical pathway-based medical assistance system according to the present invention
  • 2 is a schematic flow chart of a preferred embodiment of a medical pathway-based medical assistance method according to the present invention.
  • the present invention provides a medical auxiliary system and method based on a clinical path, which is connected in a database by connecting various doctor workstations and databases of various departments in the entire hospital through a hospital information network. Unified storage of standardized clinical path information. After the actual case is diagnosed and treated in a specific department, the patient's patient information is collected through the doctor's workstation, and the target disease of the actual case is determined by the patient information, so that the corresponding clinical path information can be imported into the doctor workstation for guiding diagnosis and treatment. An example implementation of the clinical pathway information is implemented.
  • the clinical pathway-based medical assistance system can use the clinical path information to guide the diagnosis and treatment process, and can combine the actual case with the clinical path information to modify the clinical path information to form the clinical path decision information of the patient during the patient's specific diagnosis and treatment. , to achieve optimal treatment of the actual case, and monitor the implementation of each node in the process of clinical path decision information implementation
  • FIG. 1 is a schematic diagram of functional modules of a preferred embodiment of a clinical pathway-based medical assistance system according to the present invention.
  • the clinical pathway-based medical assistance system 10 runs in a doctor workstation 1 which is a computer having communication and information processing capabilities, including but not limited to a portable computer or a desktop computer.
  • the doctor workstation 1 further includes a storage unit 12, a processing unit 14, and a communication unit 16.
  • the storage unit 12 may be a read only storage unit ROM, an electrically erasable storage unit EEPRO M, a flash storage unit FLASH or a solid hard disk.
  • the processing unit 14 can be a central office Central Processing Unit (CPU), microcontroller (MCU), data processing chip, or information processing unit with data processing function.
  • the communication unit 16 is a wireless communication interface or a wired interface with remote communication functions, for example, wireless or communication technologies supporting GSM, GPRS, WCDMA, CDMA, TD-SCDMA, WiMAX, TD-LTE, FDD-LTE, etc. Wired communication interface
  • the clinical pathway-based medical assistance system 10 includes a patient information acquisition module 101, a clinical pathway information acquisition module 102, a clinical pathway correction module 103, and a clinical pathway execution monitoring module 104.
  • a module referred to in the present invention refers to a series of computer program instruction segments that can be executed by the processing unit 14 and that are capable of performing a fixed function, which are stored in the storage unit 12.
  • the patient information obtaining module 101 is configured to acquire patient information, where the patient information includes vital signs information related to the target disease and demographic characteristics information of the patient.
  • the patient information acquisition module 101 includes a vital information acquisition sub-module 1011 and a demographic information acquisition sub-module 1012.
  • the vital sign information obtaining sub-module 1011 is configured to acquire clinical information of the patient, and extract vital sign information related to the target disease from the clinical information of the patient.
  • the clinical information of the patient is obtained from a medical information system that is in communication with the doctor's workstation 1. It includes the sign information of the patient's visit, the information of the test result after the necessary examination, and the doctor's diagnosis information about the patient's disease.
  • the doctor's disease diagnosis information for the patient includes the target disease.
  • the clinical pathway-based medical assistance system 10 further includes a disease database in which a mapping relationship between the target disease and the vital sign information is stored.
  • the disease database can be pre-established, and the mapping between target disease and vital signs information in the disease database can be synchronized during the operation of the clinical pathway-based medical assistance system 10. For example, adding new target diseases and vital signs related to the target disease, or increasing or decreasing the information about the existing target disease-related signs, makes the disease database more accurate as a basis for disease diagnosis.
  • the vital sign information acquisition sub-module 1011 uses the target disease of the patient as a key to match the vital sign information related to the target disease from the disease database, and further extracts the vital sign information related to the target disease from the clinical information of the patient. Sign information is a necessary condition for disease diagnosis.
  • the demographic information acquisition sub-module 1012 is configured to acquire demographic characteristics information of the patient.
  • the demographic characteristics of the patient include at least the patient's name, gender, date of birth, and medical record number. The last name The name, gender, and date of birth are created in the patient's first electronic medical record, and the patient's medical record number is created.
  • the information is stored in the patient's visit card. Before the patient's subsequent visits, the demographic information of the patient's holding card is read by the card reader, and the patient's visit is generated in the clinical pathway-based medical assistant system 10, and the patient can also be recorded. The consumption situation of each visit and the diagnosis results. As the storage capacity of the visit card increases, more and more information can be stored in the visit card. Preferably, only the patient's demographic information is recorded in the medical card to identify the patient's identity.
  • the clinical path information obtaining module 102 is configured to match the clinical path information corresponding to the target disease from the pre-established clinical path database according to the target disease. Specifically, the mapping relationship between the target disease and the clinical path information is stored in the clinical path database. The clinical path information obtaining module 102 matches the clinical path information corresponding to the target disease from the clinical path database with the target disease as a keyword, and presents the information to the doctor in the form of a flowchart or a node map.
  • the clinical path correction module 103 is configured to correct the clinical path decision information of the patient according to the patient information and the clinical path information corresponding to the target disease. Specifically, the clinical path correction module 103 determines whether the vital sign information in the patient information is within a threshold range. If yes, the patient belongs to the general patient, and the clinical path correction module 103 sets the clinical path information corresponding to the target disease. As the patient's clinical pathway decision information. If not, it indicates that the patient's vital sign information is beyond the scope of the general patient's vital sign information, and the clinical path correction module 103 corrects the clinical path information corresponding to the target disease.
  • the threshold range refers to a threshold range of corresponding vital sign information set according to doctor experience and target disease information.
  • the clinical path correction module 103 provides the doctor with a way to correct the clinical path information, and uses the corrected clinical path information as the clinical path decision information of the patient.
  • the process module or the node module may be added, deleted or modified to flexibly modify the clinical path information according to the patient information. It can be understood that the clinical path correction module 103 sets some important process modules or node modules to be freely modified or deleted. If modification or deletion is required, the superior personnel need to be approved. Avoiding the doctor's random modification of clinical path information leads to misdiagnosis or misjudgment.
  • the clinical path execution monitoring module 104 is configured to monitor the implementation of the clinical path decision information of the patient according to the clinical path decision information, so as to ensure that the medical staff cannot be missed in the medical activity. Content and links. Specifically, the clinical path execution monitoring module 104 determines whether the corresponding medical activity item in the corresponding inter-day interval is executed according to a predetermined order in the clinical path decision information. If there is a corresponding item that is not executed within the specified interval, a reminder message is displayed on the display of the doctor workstation 1. For items that have already been completed, a tick (or other means) indicates that execution has been performed, while an unfinished item is left blank to indicate a reminder.
  • the clinical pathway execution monitoring module 104 may also deepen or color different fonts of outstanding items. Specifically, different medical treatment items are assigned to different performers for execution. Once a certain medical treatment item is completed, the corresponding performer will tick the corresponding item, and the clinical path execution monitoring module 104 automatically synchronizes the execution status of the item, and then The executed prompt information is displayed on the display screen of the doctor workstation 1, and the completed project execution result is stored in the storage unit 12, such as an inspection report, a medication record, a disease record, and the like.
  • the clinical pathway execution monitoring module 104 is also used to dynamically monitor the cost status during the execution of the clinical pathway.
  • the clinical path execution monitoring module 104 compares the actual cost value with the corresponding cost reference value in the storage storage unit 12, and if there is a difference, displays the information of the cost difference on the display screen of the doctor workstation 1 so that the doctor can analyze the difference. And if there is a problem, you can correct it.
  • the clinical pathway-based medical assistant system provided by the present invention can combine the actual case with the clinical path information and correct the clinical path information to form the patient during the process of using the clinical path information to guide the diagnosis and treatment.
  • the patient's clinical path decision information realizes the optimal treatment of the actual case, and monitors the implementation of each node during the implementation of the clinical path decision information, and can effectively control the medical cost and reduce the medical expenses according to the different conditions of the patient. Improve the utilization of medical resources.
  • FIG. 2 is a schematic flow chart of a preferred embodiment of a medical pathway-based medical assistance method according to the present invention.
  • the clinical path-based medical assistance method runs in the doctor workstation 1, and the method includes the following steps:
  • the patient information includes vital signs information related to the target disease and demographic characteristics information of the patient.
  • the vital information acquisition sub-module 1011 in the patient information acquisition module 101 acquires clinical information of the patient, and extracts vital sign information related to the target disease from the clinical information of the patient.
  • the clinical information of the patient is obtained from a medical information system that is in communication with the doctor workstation 1 . It includes the sign information of the patient's visit, the information of the test result after passing the necessary examination, and the doctor's diagnosis information about the patient's disease.
  • the doctor's disease diagnosis information for the patient includes the target disease.
  • a mapping relationship between the target disease and the vital sign information is stored in the disease database.
  • the disease database can be pre-established, and the mapping relationship between the target disease and the vital information in the disease database can be synchronized during the operation of the method. For example, adding new target diseases and physical signs related to the target diseases, or increasing or decreasing the information about the existing target disease-related signs, makes the disease database more accurate as a basis for disease diagnosis.
  • the vital information related to the target disease is matched from the disease database, and the vital signs related to the target disease are extracted from the clinical information of the patient, and the vital signs are used as a necessary condition for disease diagnosis. .
  • the demographic information acquisition sub-module 1012 in the patient information acquisition module 101 acquires demographic characteristics information of the patient.
  • the demographic characteristics of the patient include at least the patient's name, gender, date of birth, and medical record number.
  • the name, gender, and date of birth are created in the patient's first electronic medical record, and the patient's medical record number is created.
  • the information is stored in the patient's visit card. Before the patient's subsequent visits, the demographic information of the patient's medical card is read by the card reader, and the patient's consumption and diagnosis can be recorded during the time of the visit. Results, etc. As the storage capacity of the visit card increases, more and more information can be stored in the visit card. Preferably, only the patient's demographic information is recorded in the medical card to identify the patient's identity.
  • S20 matching the clinical path information corresponding to the target disease from the pre-established clinical path database according to the target disease.
  • mapping relationship between the target disease and the clinical path information is stored in the clinical path database.
  • the clinical path information obtaining module 102 matches the clinical path information corresponding to the target disease from the clinical path database with the target disease as a keyword, and presents it to the doctor in the form of a flowchart or a node map.
  • S30 correcting the clinical path of the patient according to the patient information and the clinical path information corresponding to the target disease Policy information.
  • the clinical path correction module 103 determines whether the vital sign information in the patient information is within a threshold range, and if so, indicating that the patient belongs to a general patient, the clinical path correction module 103 uses the clinical path information corresponding to the target disease as The patient's clinical pathway decision information. If not, it indicates that the patient's physical information exceeds the range of the general patient's vital information, and the clinical path information corresponding to the target disease needs to be corrected.
  • the threshold range refers to a threshold range of corresponding vital information set according to doctor experience and target disease information.
  • the clinical path correction module 103 provides the physician with a means to correct the clinical path information and uses the corrected clinical path information as the clinical path decision information for the patient.
  • the process module or the node module may be added, deleted or modified to flexibly modify the clinical path information according to the patient information.
  • the clinical path correction module 103 sets certain important process modules or node modules so as not to be modified or deleted at will. If it is necessary to modify or delete, it needs to be approved by the superior. Avoiding the doctor's random modification of clinical path information leads to misdiagnosis or misjudgment.
  • S40 Monitor the implementation of the clinical path decision information of the patient according to the clinical path decision information.
  • the clinical path execution monitoring module 104 determines whether the corresponding medical activity item in the corresponding inter-day interval is executed according to a predetermined order in the clinical path decision information. If there is a corresponding item that is not executed within the specified interval, a reminder message is displayed on the display of the doctor workstation 1. For items that have already been completed, a tick (or other means) indicates that execution has been performed, while an unfinished item is left blank to indicate a reminder.
  • the clinical pathway execution monitoring module 104 may also deepen or color different fonts for outstanding items. Specifically, different medical treatment items are assigned to different performers for execution.
  • the corresponding performer will tick the corresponding item, and the clinical path execution monitoring module 104 automatically synchronizes the execution status of the item, and then The executed prompt information is displayed on the display screen of the doctor workstation 1, and the completed project execution result is stored in the storage unit 12, such as an inspection report, a medication record, a disease record, and the like.
  • the clinical pathway execution monitoring module 104 also dynamically monitors the cost status during the execution of the clinical pathway.
  • the clinical path execution monitoring module 104 compares the actual cost value with the corresponding cost reference value in the storage storage unit 12, and if there is a difference, displays the information of the cost difference on the display screen of the doctor workstation 1 so that the doctor can analyze the difference. And if there is a problem, you can correct it.
  • the clinical path-based medical assistant method provided by the present invention can combine the actual case with the clinical path information to correct the clinical path information to form the patient during the process of using the clinical path information to guide the diagnosis and treatment.
  • the patient's clinical path decision information realizes the optimal treatment of the actual case, and monitors the implementation of each node during the implementation of the clinical path decision information, and can effectively control the medical cost and reduce the medical expenses according to the different conditions of the patient. Improve the utilization of medical resources.
  • the clinical path-based medical assistant system and method provided by the present invention can use the clinical path information to guide the diagnosis and treatment process, and the actual case and the clinical path information can be Combine, modify the clinical path information to form the patient's clinical path decision information, realize the optimal treatment of the actual case, and monitor the implementation of each node during the implementation of the clinical path decision information, which can be effective according to different conditions of the patient Control medical costs, reduce medical expenditures, and improve the utilization of medical resources.

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Abstract

L'invention concerne un système et un procédé d'assistance médicale basés sur un trajet clinique, le procédé comprenant les étapes suivantes consistant : à acquérir des informations de patient (S10) ; à mettre en correspondance des informations de voie clinique correspondant à une maladie cible à partir d'une base de données de voie clinique préétablie en fonction de la maladie cible (S20) ; à corriger des informations de décision de voie clinique du patient sur la base des informations de voie clinique correspondant à la maladie cible et aux informations de patient (S30) ; et à surveiller la mise en œuvre des informations de décision de voie clinique du patient sur la base des informations de décision de voie clinique (S40). Dans ce procédé, pendant le guidage du diagnostic et du traitement à l'aide des informations de la voie clinique, le cas réel est combiné aux informations de la voie clinique lorsque le patient présente une condition spécifique pour corriger les informations de la voie clinique afin de créer les informations de décision de la voie clinique du patient, ce qui permet d'obtenir un traitement optimisé du cas réel, et dans la mise en œuvre d'informations de décision de voie clinique, la mise en œuvre de chaque nœud est surveillée pour réguler efficacement les coûts de soins médicaux, pour réduire les dépenses médicales et améliorer l'utilisation des ressources médicales en fonction de différentes conditions du patient.
PCT/CN2016/111163 2016-07-01 2016-12-20 Système et procédé d'assistance médicale basés sur la voie clinique WO2018000770A1 (fr)

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CN201610511782.4A CN106156497A (zh) 2016-07-01 2016-07-01 基于临床路径的医疗辅助系统和方法
CN201610511782.4 2016-07-01

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CN106156497A (zh) * 2016-07-01 2016-11-23 深圳市前海安测信息技术有限公司 基于临床路径的医疗辅助系统和方法
CN107833621A (zh) * 2017-03-06 2018-03-23 平安医疗健康管理股份有限公司 医疗费用控制方法和装置
CN108665975A (zh) * 2017-03-30 2018-10-16 深圳欧德蒙科技有限公司 临床路径匹配方法和系统
CN110211680A (zh) * 2018-02-28 2019-09-06 阿里健康信息技术有限公司 一种虚拟诊疗方法、装置及系统
CN108831518A (zh) * 2018-06-20 2018-11-16 遵义市第人民医院 临床数据管理方法、装置、服务器及可读存储介质
CN111383123A (zh) * 2018-12-29 2020-07-07 天津幸福生命科技有限公司 临床医疗开销的统计方法、装置、存储介质及电子设备
CN112071420A (zh) * 2020-08-12 2020-12-11 福建中榕数据科技有限公司 基于实时数据的临床辅助决策方法、系统、设备和介质
CN111933237A (zh) * 2020-08-31 2020-11-13 平安国际智慧城市科技股份有限公司 慢病处理方法、装置及相关设备
CN112489791B (zh) * 2020-12-09 2024-03-05 镇江市第四人民医院(镇江市妇幼保健院) 一种基于临床路径的辅助决策系统及方法
CN114842929A (zh) * 2021-02-02 2022-08-02 北京金山云网络技术有限公司 临床路径的构建方法、装置、电子设备及存储介质
CN113821833A (zh) * 2021-11-22 2021-12-21 北京嘉和美康信息技术有限公司 临床路径自动执行的方法、装置及电子设备
CN114360674A (zh) * 2021-12-22 2022-04-15 深圳安泰创新科技股份有限公司 基于医疗健康大数据的慢性病诊疗方案预测方法
CN114743647A (zh) * 2022-03-24 2022-07-12 康键信息技术(深圳)有限公司 医疗数据处理方法、装置、设备及存储介质
CN115188483B (zh) * 2022-07-12 2023-02-07 曜立科技(北京)有限公司 基于大数据的自动判定胸痛临床路径识别管理系统
CN115346647A (zh) * 2022-07-26 2022-11-15 杭州吉音医疗科技有限公司 一种智能化dip临床路径规划管理信息方法及系统
CN115312205B (zh) * 2022-10-11 2022-12-20 四川省医学科学院·四川省人民医院 一种单病种临床路径管理系统
CN117995422A (zh) * 2024-03-04 2024-05-07 北京大学深圳医院 一种临床路径校正方法、装置、电子设备及存储介质

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